Electric motor cooling simulation: direct vs indirect

Jonathan Raisin, TotalEnergies

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Optimization of the Piston cooling oil jet using Particleworks with modeFRONTIER

David Percival, EnginSoft SpA | Rod Giles, Royal Enfield

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Particleworks MPS method validation for oil piston cooling jets in a high-performance engine application

Francesco Porta, HPE COXA

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Refining the design of a spout for a laundry detergent

Nobuhito Nakagawa and Taishi Nakamura, Lion Corporation | Akiko Kondoh, Prometech Software

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Flexible stand-up pouch filling process analysis by Coupling Particle-Based CFD and Multi-Flexible Body Dynamics Simulation

Matteo Berlato, University of Trento

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Visualization of Oil Lubrication in the Transfer Case and the Transmission using Particleworks

Toshiyuki Morimi, Prometech Software Inc.

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Estimation of cycle average convective heat transfer coefficient on the underside of a racing piston for different layouts of oil jets

Gaspare Argento, Ducati Motor Holding - Ducati Corse Division

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Comparison between CFD and MPS Methods for Numerical Simulation of Pelton turbine

Riccardo Bergamin, ZECO | Michele Merelli, EnginSoft

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Free Flow Coolant Simulation in Electric Motors using Moving Particle Semi-Implicit (MPS) Method

Sebastian Jugelt, Development Engineer, System Development E-Traction, IAV GmbH

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Testing ParticleWorks coupled with Recurdyn to simulate water behavior in water technology products

Chiaki Miyazawa, LIXIL Corporation | Akiko Kondoh, Prometech Software

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Simulating fire extinguishing equipment for historical buildings with Particleworks and Granuleworks

Sunao Tokura, Shun Fujimoto and Akiko Kondoh, Prometech Software, Inc.

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Thermal Simulation of an Oil-Cooled E-Motor

Martin Brada, Ricardo

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Thermal Optimisation of e-Drives Using Moving Particle Semi-implicit (MPS) Method

Luca Martinelli, Matt Hole, Drive System Design Ltd | Davide Pesenti, Massimo Galbiati, EnginSoft

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Designing and analysing the cooling of a medium speed engine piston using MPS method

Sami Ojala, Wärtsilä Finland Oy

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Piston oil jet simulation

Yuki Takahashi, Hitachi Automotive Systems, Ltd

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Oil splashing, Lubrication and Churning losses prediction by moving Particle Simulation

Salvatore Ruffino, Comer Industries | Ragnar Skoglund and Massimo Galbiati, EnginSoft

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Simulation of hydraulic losses of a single-speed transmission in an Electric-Drive-Unit using Particleworks

Tobias Moll, Institute for combustion engines – RWTH Aachen University) | Simon Harbeke, EnginSoft GmbH

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Oil lubricated bearing support analysis on electric generators with mesh-less CFD methods

Nicola Pretto, MarelliMotori | D. Pesenti and M. Galbiati, EnginSoft

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Churning oil path optimization process development

Chulmin Ahn, Hyundai Motor Group R&D Division, Gyeonggi-do, Korea

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Gearbox lubrication studies with meshless CFD methods

Henning Dombrowski, GKN Driveline

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Gear oil jet lubrication efficiency

Oscar Cuevas, GIMA Transmission Technology

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Churning Losses Evaluation in Swashplate Axial Piston Pump using Moving Particle Approach

Francesco Canestri, Dana Motion Systems | G. Parma, EnginSoft | A. Lucchi, Dana Motion Systems | M. Galbiati, EnginSoft

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Oil flow rate optimization of an axle with an integrated input planetary stage for an uphill and downhill path

Elisabetta Fava, Comer Industries SpA

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Oil Path Prediction and Optimization for High Speed Transmissions with ParticleWorks

Elisabetta Fava, Comer Industries SpA

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