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Analysis Product List and Ranking from 382 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

Analysis Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

  1. ダイコーテクノ Hiroshima//others
  2. 中電シーティーアイ 本社 Aichi//Service Industry
  3. アイテス Shiga//Electronic Components and Semiconductors
  4. 4 環境シミュレーション Tokyo//software
  5. 5 同仁グローカル Kumamoto//others

Analysis Product ranking

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

  1. 水処理分野向け 流体解析サービス 中電シーティーアイ 本社
  2. Metabolome analysis 同仁グローカル
  3. FEM (Finite Element Method) Contract Analysis Service ベンカン機工
  4. 4 Hepasine™ liver-related health indicator analysis service for medical institutions. プロトセラ
  5. 5 AI-supported app for KY activities 'HACARUS KY' HACARUS

Analysis Product List

436~450 item / All 1060 items

Displayed results

Raw water analysis (processing speed measurement and toxicity testing)

Confirm the suitability of treatment methods through raw water analysis! Based on the analysis results, we will lead to efficient capital investment.

Mitsubishi Chemical Aqua Solutions Co., Ltd. conducts "raw water analysis (treatment speed measurement and toxicity testing)." In water treatment plants that accept industrial wastewater, raw water analysis (treatment speed measurement and toxicity testing) is essential for establishing treatment methods. We understand the impact of raw water characteristics on living organisms and connect it to suitable treatment methods. 【Features】 ■ Toxicity is determined by the respiration rate of organisms ≈ decomposition rate ■ Combination evaluation based on various test results and information *For more details, please refer to the related links or feel free to contact us.

  • Wastewater/wastewater treatment equipment

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MBR membrane analysis

Analyze the membrane used in the test to confirm its processing capacity and the effects/impact during chemical cleaning!

"MBR membrane analysis" is a combination of the conventional activated sludge method and membrane separation. It enables stable and advanced treatment water quality, making it possible to reuse wastewater, and it can handle high concentrations of activated sludge. Our company offers lab tests with small-scale MBRs and demonstration experiments with test equipment to confirm treatment capacity in actual operations. [Features] ■ Confirmation of treatment capacity of MBR (Membrane Bioreactor) ■ Adjustment of sludge load in accordance with normal operation ■ Solutions and prevention of membrane fouling ■ Confirmation of the effects and impacts of chemical cleaning ■ Recommendations for suitable equipment and processes *For more details, please refer to the related links or feel free to contact us.

  • Wastewater/wastewater treatment equipment

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[Analysis Case] Mold Cooling Analysis

Consider the cooling pipes of the mold! Understand the displacement with higher accuracy and the temperature distribution inside the mold.

We would like to introduce our "Mold Cooling Analysis." By conducting an analysis that takes cooling effects into account, it is possible to confirm the displacement of products due to cooling and the temperature distribution inside the mold. This approach allows for the optimization of the arrangement of cooling pipes, maximizing the cooling effect and achieving a uniform temperature distribution within the mold. Even for product shapes that we have not previously encountered, we can reduce the number of prototypes and achieve rapid product commercialization by identifying and resolving issues in advance through simulation. 【Features】 ■ Conducts analysis considering cooling effects, allowing confirmation of product displacement due to cooling and the temperature distribution inside the mold. ■ Optimizes the arrangement of cooling pipes to maximize the cooling effect, resulting in a uniform temperature distribution within the mold. *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis

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Modal analysis and static analysis of turbine rotors【AIFEM】

Created a mesh model using the mesh creation tool within AIFEM! Results demonstrating the effectiveness of the software.

In this case, we will introduce the modal analysis and static analysis of the turbine rotor using the structural analysis software AIFEM. The analysis results obtained with AIFEM demonstrated the effectiveness of the software through comparison with reference data (a certain commercial software). The model subject to analysis consists of a hub, shroud, and seven blades, forming the turbine rotor. The shape data used is in .stp format, and a mesh model was created using the mesh creation tool within AIFEM. *For detailed content of the article, you can view it through the related links. For more information, please download the PDF or feel free to contact us.*

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  • Turbine
  • Structural Analysis

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[AIFEM] Static stiffness analysis of vehicle body

Compare the maximum displacements of the analysis results and reference values, and also conduct a verification of the analysis accuracy!

The resistance to twisting and bending of the vehicle body are important indicators for evaluating the comfort, handling, and safety of the car. This analysis was conducted using high-performance computing servers to perform a static analysis of the automobile body with millions of elements, investigating the torsional and bending resistance. *For more detailed information, you can view it through the related link. For further details, please download the PDF or feel free to contact us.*

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  • Other analysis software

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Analysis of Pressure Loss in the Engine Intake Port【AICFD】

By checking the state of the velocity field, we can evaluate what kind of flow is occurring internally!

The intake port is a crucial component of the intake system in automotive engines and has a significant impact on the mixing of air and fuel. In the early stages of design, the intake volume and pressure loss are evaluated in advance using CFD analysis to optimize the design. In this case study, the pressure loss of the intake port will be analyzed based on the conditions of inlet total pressure and outlet static pressure, and accuracy verification will be conducted by comparing the results with reference values. *For more detailed information, please refer to the related links. For further inquiries, feel free to download the PDF or contact us.

  • Other analysis software

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AICFD Large Truck Aerodynamic Analysis

The analysis results visualize the static pressure distribution on the model surface, allowing for an understanding of pressure fluctuations!

This analysis examines the drag and pressure distribution that occurs on the body of a large truck under specific conditions. Under the condition where air flows at a speed of 20 [m/s] from the inlet boundary, we will evaluate the impact on the truck's body. By using simulations to confirm the drag coefficient and the state of the flow field, we can obtain information that leads to improved fuel efficiency by understanding the airflow and resistance around the truck. *For more detailed information, please refer to the related links. For further details, you can download the PDF or feel free to contact us.*

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  • Other analysis software

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[AIFEM] Strength Analysis of Automotive Floor

By comparing the results of strength analysis and eigenvalue analysis with reference results, the verification of AIFEM's analysis accuracy is also conducted simultaneously!

The rear floor of the vehicle is influenced by both the static load of the tires and the dynamic load from the road surface. Verifying the deformation and stress distribution of the floor plays an important role not only in improving the safety performance of the vehicle but also in leading to proposals for new structural designs. In this analysis, we will conduct structural strength and eigenvalue analysis of the vehicle floor to investigate its structural performance. *For more detailed information, please refer to the related links. For further details, you can download the PDF or feel free to contact us.*

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  • Other analysis software

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[AICFD] Cooling Analysis of Battery Packs for New Energy Vehicles

Using a porous media model! Create and evaluate the temperature distribution map on the model surface and the temperature distribution map of the central cross-section.

Battery packs are currently widely used in electric vehicles, smartphones, and energy storage technologies, and in such systems, improving the performance of battery packs often becomes the key to product enhancement. In this analysis, we will evaluate the heat dissipation and air cooling effects of a battery module for electric vehicles using a porous medium model instead of a heat sink, and assess the temperature results. As analysis conditions, we set the inlet flow velocity to 5 [m/s] and the outlet static pressure to 0 [Pa], applying the porous medium model to the fins of the heat sink. *For more detailed information, you can view the related links. For further details, please download the PDF or feel free to contact us.*

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  • Other analysis software

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Strength analysis of the steel structure of the transfer device.

Conducted strength analysis using AIFEM! High strength performance is required for structures.

This article introduces the strength analysis of the steel structure of a transfer device used offshore, conducted using the general-purpose finite element analysis software AIFEM. The transfer device is used for transporting and moving large marine equipment, thus requiring high strength performance in its structure. Strength analysis was performed using AIFEM to identify the weak points of the structure under different working conditions. *For more detailed information, please refer to the related links. You can download the PDF for more details or feel free to contact us.*

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  • Structural Analysis

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Performance Analysis of Rotor37 Compressor

The analysis results were compared with reference values, and temperature, total pressure, and efficiency were evaluated.

Using the general-purpose thermal fluid analysis software AICFD, we will conduct a performance analysis of the Rotor37 compressor. Rotor37 is a classic case of CFD compressible fluid calculations and is often used to verify the software's performance in the flow problem around the blades of a transonic axial compressor. We will analyze the three-dimensional flow characteristics of the compressor rotor, focusing on rotating machinery with practical engineering backgrounds derived from research results by NASA. *For more detailed information, please refer to the related links. For further inquiries, feel free to download the PDF or contact us directly.*

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  • Thermo-fluid analysis

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Reliability analysis of solid fuel rockets

Evaluate the entire process from curing and cooling to transportation and storage, as well as discharge heating and cooling, using AIFEM.

This article introduces the reliability analysis of solid fuel rockets using the general-purpose finite element analysis software AIFEM. The formulation, molding process, materials, and manufacturing processes of the rocket's solid fuel propellant directly affect the engine's performance. By using AIFEM to comprehensively evaluate the performance state throughout the entire lifecycle of the propellant column—from curing and cooling to transportation, storage, and discharge heating and cooling—we can achieve a comprehensive reliability assessment solution. *For more details, please refer to the related links. For further information, feel free to download the PDF or contact us.

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  • Other analyses
  • Other analysis software

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Topology optimization analysis of aircraft engine turbine disks.

By considering manufacturing constraints, it leads to obtaining an even more ideal shape.

Using the general-purpose finite element analysis software AIFEM, we will conduct topology optimization analysis of an aircraft engine turbine disk. Since a typical turbine disk is designed based on the engineer's experience, knowledge, and numerous tests, it can be time-consuming and costly, and it may be difficult to achieve an ideal design effect that breaks through existing design thinking. By utilizing AIFEM's topology optimization function, we will perform structural optimization of the turbine disk, taking into account the coupling of thermal loads and centrifugal forces, to obtain a better shape. *For more detailed information, please refer to the related links. For further details, you can download the PDF or feel free to contact us.*

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  • Other analyses
  • Other analysis software

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AICFD M6 Wing Transonic Flow Analysis

The analysis conditions adopt Mach number, angle of attack, and Reynolds number. A comparison of the wing surface pressure coefficient distribution is also conducted.

Using the general-purpose thermal fluid analysis software AICFD, we will conduct a transonic analysis of the M6 wing. The M6 wing is a classical test case for studying transonic flow and is a semi-infinite airfoil designed by the French aerospace research institute ONERA. The M6 wing exhibits typical transonic airfoil characteristics, such as shock waves that appear on the wing under specific conditions and expansion waves behind the shock waves. *For more detailed information, please refer to the related links. For further details, you can download the PDF or feel free to contact us.*

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  • Other analyses
  • Thermo-fluid analysis
  • Thermo-fluid analysis software

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Analysis of pressure loss and cooling in energy storage converters.

A comparison was made between the temperature and pressure results obtained from AICFD and the reference results.

Using the general-purpose thermal fluid analysis software AICFD, we will analyze the pressure loss and cooling performance of the energy storage converter. We will conduct an analysis that includes a cooling fan, and check the internal flow field and the temperature conditions of the mounted IGBTs. The mesh model to be analyzed consists of 2 inlets and 3 outlets, with boundary conditions assigned. *For more detailed information, please refer to the related links. For further details, you can download the PDF or feel free to contact us.*

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  • Thermo-fluid analysis
  • Thermo-fluid analysis software

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