If you're using software that claims to be able to analyze but actually can't, or software that can do it but takes too much effort for tasks like mesh creation, then it's time to switch!
SimericsMP+ is a fluid simulation (CFD) software that excels in analyzing various volumetric pumps, compressors, and valves, specifically for calculating the transient characteristics of fluids. 【The following fluid analyses (CFD) 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, such as between gear pump teeth! While other software may take time for model creation like mesh generation, SimericsMP+ can complete the analysis in that time. Utilize specialized tools for time savings as part of work style reform! *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! User case studies https://www.wavefront.co.jp/CAE/PumpLinx/interview.html
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basic information
(1) Automatic generation of calculation meshes! Even for complex flow paths, automatic generation of calculation meshes is possible with simple button operations. Additionally, for pump chambers involving rotation/volume changes, high-precision calculation meshes can be automatically generated using a dedicated mesh creation module. It is possible to automatically execute the movement/rotation/deformation of high-precision meshes without tedious tasks. (2) Fluid analysis of various gear pumps is possible! SimericsMP+ has mesh creation capabilities for various pumps, including different gear pumps, making it easy to perform calculations for various pumps. It also has a mesh creation function for valves, allowing for calculations of flow paths that include valves, and coupled analysis is also possible. (3) More accurate modeling of aeration/cavitation! It includes a high-precision cavitation model, enabling the prediction of non-condensable gas expansion and vapor generation due to cavitation. (4) Calculation of free surface flow As a new feature, the calculation of free surface flow has become possible. It is now possible to analyze oil splashing inside the gearbox and oil suction from the oil pan during pump startup.
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The price may vary depending on the options, so please feel free to contact us.
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P6
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Applications/Examples of results
SimericsMP+ (Simerics MP Plus) is widely used in Japan, primarily by automobile manufacturers and automotive parts manufacturers, with numerous achievements in oil pumps used in automotive ATs and CVTs, as well as engine oil pumps. Additionally, it has a broad range of implementation achievements not only in the automotive industry but also globally. Examples of achievements worldwide by the developer: http://www.simerics.com/testimonials/ Some examples from Japan: https://www.wavefront.co.jp/CAE/simerics-mp-plus/interview.html https://doi.org/10.5739/jfps.52.8 Recently, there has been an increase in projects related to screw pumps for air conditioning and turbo machinery, which we propose alongside our turbo machinery modeling software, 'CFturbo.' CFturbo: https://www.wavefront.co.jp/CAE/CFturbo/ We also accept commissioned analyses, so please feel free to contact us!
Detailed information
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[Analysis Case] Simulation of Gear Pump Self-Priming Performance [Fluid Analysis] This is a simulation of a gear pump when drawing engine oil from a car's oil pan. It is calculated using free surface flow (VOF).
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[Analysis Case] Automotive Lubrication System [Fluid Analysis] Coupling of Internal Gear Pump and Spool Valve
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[Case Study] Simulation of Automotive Lubrication System [Fluid Analysis] Coupling between External Gear Pump and Pressure Regulating Valve
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[Analysis Case] Coupling of Piston Pump and Valve [Fluid Analysis] Cross-section: Magnitude of Velocity Valve: Pressure
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[Analysis Case] Simulation of an Internal Gear Pump [Fluid Analysis] Visualization of cavitation in an internal gear pump.
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[Analysis Case] Simulation of External Gear Pump [Fluid Analysis] Visualization of cavitation in the external gear pump.
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[Case Study] Simulation of Vane Pump [Fluid Analysis] Simulation of Cavitation in Vane Pump
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[Analysis Case] Simulation of a Swash Plate Axial Piston Pump [Fluid Analysis] Simulation of Cavitation in a Swash Plate Axial Piston Pump
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[Analysis Case] Coupling of Fuel Injection Pump and Valve [Fluid Analysis] Gas Volume Fraction
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Our company develops and sells a "Maintenance Management System" for managing and operating various plants, factories, and other facilities and assets. Currently, this system is undergoing significant evolution into one that incorporates IoT technologies, such as sensor information and input from tablet devices, as well as AI technologies like machine learning, featuring functions for failure prediction and automatic scheduling. Additionally, as part of the recent trend towards digital transformation (DX), there is a growing movement to digitize and automate manufacturing processes and research and development sites in factories to enhance operational efficiency. In line with this trend, our company provides a solution aimed at improving efficiency in research and development environments, known as the Laboratory Information Management System (LIMS), which includes features such as workflow management, data tracking, data management, data analysis, and integration of electronic lab notebooks.