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Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult for other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be published online. Especially, please see a demonstration for the actual mesh creation and movement!
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Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult for other general-purpose fluid analysis software!! Recently, there has been an increase in applications for automotive and construction machinery oil pumps, with examples such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, we encourage you to see the actual mesh creation and movement through a demo presentation!
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Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various valves, pumps, and compressors. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The greatest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult for other general-purpose fluid analysis software!! In addition to valve analysis, there has been an increase in achievements with oil pumps for automotive and construction machinery, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, please see the demo for actual mesh creation and movement!!
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Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The greatest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult for other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, please see a demo presentation for the actual mesh creation and movement!!
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CFD, which allows for the shortening of product development periods, reduction of prototype costs, and acquisition of detailed data that is difficult to measure through experiments. In this article, we will introduce application examples that can be useful for product development using Simerics' CAE/CFD software. Check valves (non-return valves) play an important role in preventing water hammer and regulating flow direction. Research and development are being conducted daily to enhance the durability of piping. However, this requires significant time and cost for prototyping and testing the valves. Additionally, even when performing CFD simulations, setting up the mesh deformation associated with the opening and closing of flow paths can be quite labor-intensive. With Simerics' CFD, high-performance template meshes are provided, and all the mesh deformation that occurs during computation is automated, allowing anyone to easily and quickly generate meshes. This is expected to significantly reduce labor and costs! There are many more reasons to use Simerics' CFD software. You can find more details through the link below or feel free to contact us anytime!
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CFD allows for the shortening of product development periods, reduction of prototype costs, and acquisition of detailed data that is difficult to measure through experiments. In this article, we will introduce application examples that can be useful for product development using Simerics' CAE/CFD software. One common component used in hydraulic machinery, such as automotive oil pumps, is the internal gear. Research and development is continuously conducted to enhance the efficiency of transporting hydraulic fluid. However, this requires significant time and cost for prototyping and testing the oil pump. Additionally, even when performing CFD simulations, generating the computational mesh for the gear teeth can be quite labor-intensive. With Simerics' CFD, high-performance template meshes are provided, and the deformation of the computational mesh that occurs during calculations is fully automated, allowing anyone to easily and quickly generate meshes. This is expected to significantly reduce labor and costs! There are many more reasons to use Simerics' CFD software. You can find more details through the link below, or feel free to contact us anytime!
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Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The greatest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery applications, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and movement should definitely be demonstrated in a demo!
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Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automobiles and construction machinery, with examples including vane pumps for power steering and CVTs, as well as trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, we encourage you to see the actual mesh creation and movement in a demo presentation!!
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PumpLinx is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The greatest strength is the ability to automatically create meshes for clearances in the µm range, which is difficult for other general-purpose fluid analysis software!! Recently, there has been an increase in applications for oil pumps used in automobiles and construction machinery, with examples including vane pumps for power steering and CVTs, as well as trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. In particular, we encourage you to see the actual mesh creation and movement through a demo presentation!!
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PumpLinx is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, we encourage you to see the actual mesh creation and movement through a demo presentation!!
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Simerics MP+ is a fluid analysis software designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid analysis software Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The greatest strength is the ability to automatically create meshes even for clearances in the micrometer range, which is difficult for other general-purpose fluid analysis software!! Recently, there has been an increase in achievements for oil pumps used in automobiles and construction machinery, with more examples such as vane pumps for power steering and CVTs, and trochoid pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and movement should definitely be demonstrated in a demo!
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PumpLinx is a fluid analysis software designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid analysis software Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes with clearances in the µm range, which is difficult for other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, we encourage you to see the actual mesh creation and movement in a demonstration!
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PumpLinx is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variations of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements for oil pumps used in automobiles and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoid pumps for engine lubrication. *There is a lot of information that cannot be posted online. Particularly, the actual mesh creation and movement should definitely be demonstrated in a demo!
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PumpLinx is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variations of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes with clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery, such as vane pumps for power steering and CVTs, as well as trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, we encourage you to see the actual mesh creation and movement through a demo presentation!!
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PumpLinx is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The greatest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automobiles and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. In particular, we encourage you to see the actual mesh creation and motion through a demonstration!
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PumpLinx is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variations of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements for oil pumps used in automobiles and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. In particular, please see a demo for the actual mesh creation and movement!!
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PumpLinx is a fluid analysis software designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid analysis software Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vector, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes with clearances in the µm range, which is difficult for other general-purpose fluid analysis software!! Recently, there has been an increase in applications for automotive and construction machinery oil pumps, with examples such as vane pumps for power steering and CVTs, as well as trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, we encourage you to see the actual mesh creation and movement through a demo presentation!
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We have published an interview on how Aisin Seiki transitioned to PumpLinx and how it is being utilized. Please take a look.
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CFD provides a way to shorten product development periods and reduce prototyping costs, as well as obtain detailed data that is difficult to measure through experiments. In this article, we will introduce application examples that can be useful for product development using Simerics' CAE/CFD software. Centrifugal pumps, which utilize centrifugal force to draw up liquids, are widely used for water supply and irrigation, as well as for general industrial applications. An important challenge in the design process is that, due to the principle of expelling liquid with centrifugal force, cavitation tends to occur easily. Research and development are continuously conducted to suppress this and enhance pump efficiency and durability. However, this requires spending a lot of time and costs on prototyping and experimenting with centrifugal pumps. With Simerics' CFD, multiple cavitation models can be used, and erosion prediction is also possible, allowing for accurate and physically meaningful simulations! This is expected to significantly reduce labor and costs! There are still many reasons to use Simerics' CFD software. You can find more information through the link below or feel free to contact us anytime!
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Our strength lies in the ability to generate meshes for various computational fluid dynamics (CFD) software. For example, we can integrate with most commercial CFD solvers such as Simerics MP, Ansys CFX, and STAR-CCM+, as well as engineering software. We can create meshes for complex screw compressors without being limited by the solver. By using SCORG solely for the creation of complex meshes like those for two-axis screw pumps and compressors while continuing to use your familiar solver, you can significantly reduce the cumbersome effort involved in analysis. Additionally, you can conduct simulations leveraging existing know-how without having to learn a new solver, which drastically reduces both effort and costs compared to switching solvers. Furthermore, we have presented a case study on fluid analysis (CFD) of a two-axis screw compressor at the Japan Society of Refrigerating and Air Conditioning Engineers. For more details, please contact us.
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Our strength lies in the ability to generate meshes for various computational fluid dynamics (CFD) software. For example, we can integrate with most commercial CFD solvers such as Simerics MP, Ansys CFX, and STAR-CCM+, as well as engineering software. We can create complex meshes for screw compressors without being influenced by the solver. By using SCORG solely for the creation of complex meshes like those for two-axis screw pumps and compressors while continuing to use your familiar solver, you can significantly reduce the cumbersome effort involved in analysis. Additionally, you can conduct simulations leveraging existing know-how without the need to learn a new solver, which greatly reduces both effort and costs compared to switching solvers. Furthermore, we have presented a case study on fluid analysis (CFD) of a two-axis screw compressor at the Japan Society of Refrigerating and Air Conditioning Engineers. Please contact us for more details.
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Our strength lies in the ability to generate meshes for various computational fluid dynamics (CFD) software. For example, we can integrate with most commercial CFD solvers such as Simerics MP, Ansys CFX, and STAR-CCM+, as well as engineering software. We can create meshes for complex screw compressors without being influenced by the solver. By using SCORG solely for the creation of complex meshes, such as for two-axis screw pumps and compressors, while still utilizing your familiar solver, you can significantly reduce the cumbersome effort involved in analysis. Additionally, you can perform simulations by leveraging existing know-how without having to learn a new solver, which greatly reduces both effort and costs compared to switching solvers. Furthermore, we have a case study on fluid analysis (CFD) of a two-axis screw compressor that we presented at the Japan Society of Refrigerating and Air Conditioning Engineers. Please contact us for more details.
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Our strength lies in the ability to generate meshes for various computational fluid dynamics (CFD) software. For example, we can integrate with most commercial CFD solvers such as Simerics MP, Ansys CFX, and STAR-CCM+, as well as engineering software. We can create complex meshes for screw compressors without being dependent on the solver. By using SCORG solely for the creation of complex meshes like those for twin-screw pumps and compressors while continuing to use your familiar solver, you can significantly reduce the cumbersome effort involved in analysis. Additionally, you can perform simulations by leveraging existing know-how without having to learn a new solver, which drastically reduces both the effort and cost compared to switching solvers. We also have a case study on fluid analysis (CFD) of twin-screw compressors that we presented at the Japan Society of Refrigerating and Air Conditioning Engineers. Please contact us for more details.
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Our strength lies in the ability to generate meshes for various computational fluid dynamics (CFD) software. For example, we can integrate with most commercial CFD solvers such as Simerics MP, Ansys CFX, and STAR-CCM+, as well as engineering software. We can create meshes for complex screw compressors without being constrained by the solver. By using SCORG solely for the creation of complex meshes like those for two-axis screw pumps and compressors while continuing to use your familiar solver, you can significantly reduce the tedious effort involved in analysis. Additionally, you can perform simulations leveraging existing know-how without the need to learn a new solver, which greatly reduces both effort and costs compared to switching solvers. We also have a case study on fluid analysis (CFD) of a two-axis screw compressor that we presented at the Japan Society of Refrigerating and Air Conditioning Engineers. Please contact us for more details.
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Our strength lies in the ability to generate meshes for various computational fluid dynamics (CFD) software. For example, we can integrate with most commercial CFD solvers such as Simerics MP, Ansys CFX, and STAR-CCM+, as well as engineering software. We can create complex meshes for screw compressors without being dependent on the solver. By using SCORG solely for the creation of complex meshes like those for two-axis screw pumps and compressors while continuing to use your familiar solver, you can significantly reduce the tedious effort involved in analysis. Additionally, you can perform simulations leveraging existing know-how without having to learn a new solver, which greatly reduces both the effort and cost compared to switching solvers. Furthermore, we have presented a case study on fluid analysis (CFD) of two-axis screw compressors at the Japan Society of Refrigerating and Air Conditioning Engineers. Please contact us for more details.
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Our strength lies in the ability to generate meshes for various computational fluid dynamics (CFD) software. For example, we can integrate with most commercial CFD solvers such as Simerics MP, Ansys CFX, and STAR-CCM+, as well as engineering software. We can create complex meshes for screw compressors without being limited by the solver. By using SCORG solely for the creation of complex meshes like those for two-axis screw pumps and compressors while still utilizing your familiar solver, you can significantly reduce the cumbersome effort involved in analysis. Additionally, you can conduct simulations leveraging existing know-how without having to learn a new solver, which greatly reduces both effort and costs compared to switching solvers. We also have a case study on fluid analysis (CFD) of a two-axis screw compressor that we presented at the Japan Society of Refrigerating and Air Conditioning Engineers. Please contact us for more details.
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We will visualize the personalized maintenance operations! 【Main Reasons for Selection & Implementation Effects】 ■ Real-time visualization of the production site, improving operational efficiency ■ Reduction of defective products to one-fifth (By detecting and preventing signs of defects in advance, we can reduce defective products) ■ Visualization of "bottlenecks" in the production line, leading to reduced overtime ■ Reduction in report creation costs ■ Acceleration of the PDCA cycle ■ Immediate access to desired information for analysis ■ Reduction in time and costs for report creation (You can directly output graph data on the screen to Excel, PowerPoint, or PDF)
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PipelinePilot is software that allows you to perform all tasks related to data analysis, including data preprocessing, analysis, and visualization such as graph creation, all within a single product. It can be used for narrowing down candidates during new material development and for discovering correlations in complex data where relationships are not apparent. 【Features】 ◆ Easily create data processing flows without programming knowledge ◆ Simplifies data preprocessing, which can be a bottleneck when handling large-scale data ◆ Many successful implementations in chemical and drug discovery companies *For more details, please contact us.
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PipelinePilot is software that allows you to perform all tasks related to data analysis, including data preprocessing, analysis, and visualization such as graph creation, all within a single product. It can be used for narrowing down candidates during new material development and for discovering correlations in complex data where relationships are not apparent. 【Features】 ◆ Easily create data processing flows without programming knowledge ◆ Simplifies data preprocessing, which can be a bottleneck when handling large-scale data ◆ Many successful implementations in chemical and drug discovery companies *For more details, please contact us.
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PipelinePilot is software that allows you to perform all tasks related to data analysis, such as data preprocessing, analysis, and visualization through graph creation, all within a single product. Since it only requires connecting over 3000 parts, no programming is necessary! It has been implemented in chemical and drug discovery companies for tasks such as narrowing down candidates during new material development. 【Do you have any of these concerns?】 ◆ "I have a lot of experimental result data, but I don't know how to analyze it and want to utilize it." ◆ "I want to see trends using machine learning from the experimental results." *For more details, please contact us or download the PDF to view.
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CFD provides detailed data that is difficult to obtain through experiments, helping to shorten product development periods and reduce prototyping costs. In this article, we will introduce application examples that can assist in product development using Simerics' CAE/CFD software. Check valves (non-return valves) play an important role in preventing water hammer and regulating flow direction. Research and development are ongoing daily to enhance the durability of piping. However, this requires spending a lot of time and costs on prototyping and testing the valves. Even when performing CFD simulations, setting up mesh deformation due to the opening and closing of flow paths can be quite cumbersome. With Simerics' CFD, high-performance template meshes are provided, and the movement and deformation of the computational mesh that occurs during calculations are fully automated, allowing anyone to easily and quickly generate meshes. This is expected to significantly reduce man-hours and costs! There are still many reasons to use Simerics' CFD software. You can find more details through the link below or feel free to contact us anytime!
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SimericsMP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements for oil pumps used in automobiles and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and movement should definitely be demonstrated in a demo presentation!!
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SimericsMP+ is a fluid simulation tool designed to calculate the transient characteristics of various valves, volumetric pumps, and compressors. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances on the order of micrometers, which is difficult for other general-purpose fluid analysis software!! In addition to valve analysis, there has been an increase in achievements for automotive and construction machinery oil pumps, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, please see the actual mesh creation and movement in a demo presentation!!
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SimericsMP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The greatest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automobiles and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and movement should definitely be demonstrated in a demo!
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"Materials Studio" A suite of molecular modeling/simulation tools for next-generation materials development equipped with quantum mechanics (density functional theory), classical mechanics (molecular dynamics calculations), mesoscale (dissipative particle dynamics calculations, etc.), statistics, and analysis/crystallization tools. 【Features】 ■ Simulation software that streamlines materials development Available for use by those engaged in research, development, design, and manufacturing across various industries and fields. ■ Compatible with various types of materials ■ All tasks, including crystal structure creation, calculation condition settings, and calculation result display, can be performed on a single GUI screen. 【Examples】 Tribochemical (lubrication) reactions Analysis of CFRP (carbon-based materials) Research and development of crystal growth, thin film formation, fuel cells, lubricants, etc. Catalysts, polymers and mixtures, metals and alloys, batteries and fuel cells, etc. *For more details, please feel free to contact us.*
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The front database "Dr.Sum" solves these kinds of problems! "I can't perform other tasks because data extraction and processing take too much time." "The burden of regularly creating documents such as monthly reports and meeting materials is significant." "I can't quickly obtain the information I need when I need it." "I have to rely on the IT department for data creation requests, which takes time." ★Over 6,100 companies have implemented it★ 【Main Features】 - A user-friendly interface that anyone can use without programming - High-speed aggregation of large volumes of data - No increase in costs even with an increase in the number of users - Easy maintenance - Integration with higher-level systems is also possible
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"MotionBoard" is a tool for "business improvement in production sites" that intuitively visualizes valuable information in real-time. [Main Reasons for Selection & Implementation Effects] ■ Visualizes production sites in real-time, improving operational efficiency ■ Reduces defective products to one-fifth (By detecting and preventing signs of defects in advance, it leads to a reduction in defective products) ■ Visualizes "bottlenecks" in the production line, reducing overtime hours ■ Reduces report creation costs ■ Accelerates the PDCA cycle ■ Immediate access to desired information for analysis ■ Reduces time and costs for report creation (Graph data on the screen can be directly output to Excel, PowerPoint, or PDF) ☆ A one-month free trial is available!
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While full implementation across the company is challenging, starting with project-based implementation is possible. A small start is feasible. **Features & Easy Usability** - Simple, easy to implement and operate (proven track record of operation with 4,000 users without the need for dedicated staff) - Compatible with OFFICE (Word, Excel, PPT) / PC, tablet (Apple), and various web browsers - Easy to operate without worrying about layout - Simply drag and drop the necessary data files from various sections (MS Office, Chemical Sketch, PDF, etc.) - Searchable within the electronic lab notebook, allowing for bulk management of experimental values, papers, and other data.
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Support for the "Cloud Version" While full implementation across the company is challenging, starting with project-based implementation is possible, allowing for a small start. You can create extensions in the versatile data processing software development environment "BIOVIA Foundation," which can be called from this product. We have achieved automatic report generation from experimental notebooks and integration with other databases. 【Features】 ■ Simple ■ Easy to implement and operate ■ Compatible with OFFICE (Word, Excel, PPT) ■ Proven track record of operation with 4000 users without the need for dedicated staff ■ Scalability (compatible with BIOVIA Foundation) and customization available ■ Compatible with PC, tablets (Apple), and various web browsers 【User-friendly Operation】 - Easy to operate without worrying about layout - Simply drag and drop the necessary data files from various sections (MS Office, Chemical Sketch, PDF, etc.) - Search within the electronic laboratory notebook is possible, allowing for bulk management of experimental values, papers, and other data *For more details, please feel free to contact us.*
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This is a fluid simulation tool for calculating the transient characteristics of positive displacement pumps, compressors, and valves. It achieves high-precision fluid simulations by accurately solving the conservation laws of mass, momentum, energy, and chemical species. 【Features】 ◆ Automatic generation of computational meshes for rotational deformation, which is difficult with other software ◆ Analysis of characteristics such as flow rate, pressure pulsation, torque, aeration/cavitation, etc. ◆ Real-time display of calculation results and progress *There are cases where this has been adopted by Kyushu Institute of Technology, a national university corporation. For more details, please contact us or download the PDF to view.
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"Materials Studio" A suite of molecular modeling/simulation tools for next-generation materials development equipped with quantum mechanics (density functional theory), classical mechanics (molecular dynamics calculations), mesoscale (dissipative particle dynamics calculations, etc.), statistics, and analysis/crystallization tools. 【Features】 ■ Simulation software that streamlines materials development Available for use by those engaged in research, development, design, and manufacturing across various industries and fields. ■ Supports various types of materials Effective in predicting how the structure of atoms and molecules relates to the physical properties and behaviors of materials in the fields of materials science and chemistry, aiding in the understanding of physical phenomena. ■ Examples Tribochemical (lubrication) reactions Research and development of crystal growth, thin film formation, fuel cells, lubricants, etc. Catalysts, polymers and mixtures, metals and alloys, batteries and fuel cells, etc. ■ Enhanced visualization with "Materials Studio Visualizer" ■ All tasks, including crystal structure creation, calculation condition settings, and calculation result display, can be performed on a single GUI screen. *For more details, please feel free to contact us.
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"Materials Studio" A suite of molecular modeling/simulation tools for next-generation materials development equipped with quantum mechanics (density functional theory), classical mechanics (molecular dynamics calculations), mesoscale (dissipative particle dynamics calculations, etc.), statistics, and analysis/crystallization tools. 【Features】 ■ Simulation software that streamlines material development Available for use by those engaged in research, development, design, and manufacturing across various industries and fields. ■ Supports various types of materials Effective in predicting how the structure of atoms and molecules relates to the physical properties and behaviors of materials in the fields of materials science and chemistry, aiding in the understanding of physical phenomena. ■ Examples Tribochemical (lubrication) reactions Research and development of crystal growth, thin film formation, fuel cells, lubricants, etc. Catalysts, polymers and mixtures, metals and alloys, batteries and fuel cells, etc. ■ Enhanced visualization with "Materials Studio Visualizer" ■ All tasks, including crystal structure creation, calculation condition settings, and calculation result display, can be performed on a single GUI screen. *For more details, please feel free to contact us.
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The document titled "Total Solutions for Ensuring Safety, Reliability, and Maintenance" introduces the equipment maintenance and manufacturing quality management systems of Wavefront Co., Ltd., which engages in the development and sales of software for electronic computers, as well as analysis, design, and consultation using software. It clearly presents the positioning of various products such as the calendar-type equipment maintenance and manufacturing quality management system "FLiPS" and the reliability analysis and optimization system "AWB/RWB." [Contents] - Positioning of each product within the solution and images of each product - Positioning of each product within the solution - Positioning of each product within the solution and data exchange between products *For more details, please refer to the catalog or feel free to contact us.
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The document titled "Total Solutions for Ensuring Safety, Reliability, and Maintenance" introduces the equipment maintenance and manufacturing quality management systems of Wave Front Co., Ltd., which engages in the development and sales of software for electronic computers, analysis using software, design, and consultation. It clearly presents the positioning of various products such as the calendar-type equipment maintenance and manufacturing quality management system "FLiPS" and the reliability analysis and optimization system "AWB/RWB." [Contents] - Positioning of each product within the solution and the image of each product - Positioning of each product within the solution - Positioning of each product within the solution and data exchange between products *For more details, please refer to the catalog or feel free to contact us.
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Are you spending too much time on recording, checking, and reporting tasks for forms, or on understanding issues at the site? By combining the real-time BI dashboard 'Motion Board' with the tablet-based electronic form system 'i-Reporter', you can solve on-site challenges such as: "I want to streamline recording and reporting tasks using paper forms." "I want to eliminate data transcription to Excel." "I want to improve the delay in analysis that takes several days from collecting daily reports, so that countermeasures can be implemented more quickly!" ◆ Benefits of Implementation ◆ ◇ Timely identification of causes of defects and implementation of countermeasures, reducing defective products by 1/5. ◇ Input using iPads has reduced manual data entry time to Excel from about 80 minutes daily to 0 minutes. ◇ Visualization of line "bottlenecks" has reduced overtime by 1 hour each day. ◆ For more product details, please download the materials ◆
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