Easy CFD on CAD 'Simerics MP for SW'
Advanced analysis can be easily performed on SOLIDWORKS! For shortening development time and reducing costs!
"Simerics MP for SOLIDWORKS" is a CAD-integrated thermal fluid analysis software that can be operated within SOLIDWORKS. Integrated into the SOLIDWORKS GUI, designers can perform everything from design to analysis themselves. The calculation settings are also simple, allowing for quick mastery of the operation. By enabling designers to conduct various analyses that were traditionally outsourced, such as optimal shape consideration, problem identification, and performance verification, it leads to reduced development time, improved quality, and cost savings. 【Features】 ■ Supports a wide range of simulations including flow, turbulence, heat conduction, and convection ■ Automatically generates calculation meshes directly from CAD surfaces ■ Extremely fast, accurate, and robust solver ■ Stable iterative calculations for very challenging problems such as micro-meter scale shapes ■ Accurate calculation results that show excellent correlation with physical tests *For more details, please refer to the materials. Feel free to contact us with any inquiries.
basic information
【Physical Models】 ◎ Compressible/Incompressible ◎ Steady/Unsteady ◎ Internal/External Flow ◎ Heat Transfer ◎ Laminar/External Flow ◎ Particle Tracking ◎ Radiation ◎ Sliding Mesh ◎ Cavitation ◎ Free Surface ◎ Rigid Body Motion ◎ Multicomponent ◎ Parallel Computing *For more details, please refer to the materials. Feel free to contact us with any inquiries.
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*For more details, please refer to the materials. Feel free to contact us as well.*
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Online seminar on the utilization of the latest thermal fluid analysis software and turbo design software.
Wavefront Inc. will hold an online seminar titled "Utilization of the Latest Thermal Fluid Analysis Software and Turbo Design Software"! In recent years, various initiatives have been undertaken to achieve a carbon-neutral society. For example, in the automotive industry, with the further promotion of electrification, energy conservation, and efficiency, there is a growing demand for thermal fluid analysis, including cooling simulations for electric motors (water cooling/oil cooling) and oil agitation simulations for planetary gear mechanisms used in EVs/HEVs. In this seminar, we will introduce the thermal fluid analysis software "Simerics MP+" specialized for these complex simulations! Additionally, the construction of small hydropower plants contributing to sustainable renewable energy supply is becoming increasingly active. Since installation locations are not limited as long as there is a drop and flow, many potential development sites remain, and many companies are entering this field. We will also introduce the turbo design software "CFturbo," which serves as a stepping stone for those involved in small hydropower generation to increase turbine efficiency while reducing design time and costs, as further proliferation and diversification of small hydropower generation is anticipated!
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The Piston Cooling template has been added to SimericsMP+!
A Piston Cooling template for two-phase flow piston cooling simulation using oil injection has been added. It is now possible to model multiple pistons with a single piston cooling module. Additionally, conjugate heat transfer simulations can be performed without using Python scripts.
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The 【SimericsMP+】Fuel Tank template has been added!
A Fuel Tank template has been added to simulate two-phase flow in the fuel tank of a vehicle.
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The Vehicle template has been added to SimericsMP+!
A Vehicle template has been added for performing simulations of automotive exterior, under-hood airflow, and thermal damage analysis. Additionally, a new mesh type has been introduced, allowing selected solid components or internal fluid components to be retained within the template. Furthermore, "Drag development" has been added to the output of drag calculations.
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The Marine template has been added to SimericsMP+!
A Marine template has been added for performing hull simulations. Additionally, a "Submerged hull" type for simulating underwater objects such as submarines and UAVs has been added. It is also possible to choose whether to maintain the water surface and whether to include propulsion.