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- ISED | 综合能源规划仿真软件
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工业软件
- 流体软件
- FLOW-3D | 多物理场
- FLOW-3D HYDRO | 水利、环境、土木
- FLOW-3D (X) | 参数优化
- M-Star CFD | 生物反应器
- CharLES | 大涡模拟
- Fidelity CFD | 流体机械
- Fidelity Automesh | 模型预处理
- POINTWISE | 混合网格
- 数字能源
- ISED | 综合能源规划仿真软件
- MGMS | 数字化综合能源管控软件
- gPROMS | 工艺仿真平台
- HOMER Pro | 风光储分析软件
- 热仿真
- Celsius EC | 电子产品热仿真软件
- 智能制造
- Flow3D AM | 增材制造工艺仿真
- FLOW-3D CAST | 压铸工艺
-
仪器装备
- 科学仪器
- 工业装备
-
水下机器人
-
解决方案
- 行业应用
- 水利环境
- 航空航天
- 船舶海洋
- 汽车智造
- 生物医药
- 石油化工
- 消费产业
- 学科应用
- 能源动力
- 增材制造
- 激光焊接
- 机电电子
- 防灾减灾
-
技术中心
- 资源中心
- 技术咨询
- 下载中心
- 新闻资讯
-
关于斌析
FLOW-3D--汽车行业--参考文献
以下FLOW-3D在汽车行业方面的应用
159-22 Shihao Li, Yan Yan, Wei Wei, Zhao Wang, Zhonghua Ni, Numerical simulation on the thermal dynamic behavior of liquid hydrogen in a storage tank for trailers, Case Studies in Thermal Engineering, 40; 102520, 2022. doi.org/10.1016/j.csite.2022.102520
53-22 Ilias Papadimitriou, Michael Just, Manufacturing of structural components for internal combustion engine, electric motor and battery using casting and 3D printing, Advances in Engine and Powertrain Research and Technology, Mechanisms and Machine Science 114, Ed. Tigran Parikyan, 2022. doi.org/10.1007/978-3-030-91869-9_15
33-21 Xiaozhou Hu Ao Wang Pingping Li Jianing Wang, Influence of dynamic attitudes on oil supply for bearings and churning power losses in a splash lubricated spiral bevel gearbox, Tribology International, 159; 106951, 2021. doi.org/10.1016/j.triboint.2021.106951
72-18 Hunchul Jeong, Kyungbae Park, Sungjin Baek, Dong-Yoon Kim, Moon-Jin Kang, Jungho Cho, Three-dimensional numerical analysis of weld pool in GMAW with fillet joint, International Journal of Precision Engineering and Manufacturing, 19.8; pp. 1171-1177, 2018. doi.org/10.1007/s12541-018-0138-4
43-18 R.A. Ibrahim, B. Singh, Assessment of ground vehicle tankers interacting with liquid sloshing dynamics, International Journal of Heavy Vehicle Systems, 25.1; 2018. doi.org/10.1504/IJHVS.2018.089894
34-17 Hidenori Arisawa, Yuji Shinoda, Mitsuaki Tanaka, Tatsuhiko Goi, Hirofumi Akahori. Mamoru Yoshitomi, Classification of Fluid Dynamic Loss in Aeroengine Transmission Gears – Experimental Analysis and CFD Validation, Proceedings of ASME Turbo Expo 2017, Charlotte, NC, USA, June 26-30, 2017.
26-15 Herbert Obame Mve, Romuald Rullière, Philippe Haberschill, Modeling and Parametric Study of the Heat Transfer Inside a Lithium Bromide Flow Confined by Wire Screen, 9; pp. 417-425. doi.org/10.17265/1934-8975/2015.05.001 Available in shared drive: Automotive
17-15 Peyman Jafarian, Gear interlocking effect study using CFD, Flow Science, 2015.
23-14 Daiki Saegusa and Shinji Kawai, CFD Analysis of Lubricant Fluid Flow in Automotive Transmission, SAE Technical Paper 2014-01-1772, 2014, doi:10.4271/2014-01-1772, Copyright © 2014 SAE International.
15-14 Hidenori Arisawa, Motohiko Nishimura, Hideyuki Imai and Tatsuhiko Goi, CFD Simulations and Experiments for Reduction of Oil Churning Loss and Windage Loss in Aeroengine Transmission Gears, Journal of Engineering for Gas Turbines and Power, ASME, doi:10.1115/1.4026952, 2014.
87-13 Daiki Saegusa and Shinji Kawai, Technique for Prediction of Automotive Transmission Lubrication Performance, Honda R&D Technical Review, October 2013.
26-13 Hidenori Arisawa, Motohiko Nishimura, Hideyuki Imai, Kenichiro Tanaka, and Tatsuhiko Goi, CFD Simulations and Experiments for Reduction of Oil Churning Loss and Windage Loss on Aeroengine Transmission Gears, No. 2012-JCT-0705, © 2013 The Japan Society of Mechanical Engineers. In Japanese.
53-09 Hidenori Arisawa, Motohiko Nishimura, Hideyuki Imai and Tatsuhiko Goi, CFD Simulation for Reduction of Oil Churning Loss and Windage Loss on Aeroengine Transmission Gears, ASME Turbo Expo 2009: Power for Land, Sea and Air, Orlando, Florida, USA, June 8-12, 2009.
45-09 Chih-Chung Chang, Sy-Chi Kuo, Chen-Kang Huang, and Sih-Li Chen, The Investigation of Motor Cooling Performance, International Journal of Mechanical, Industrial and Aerospace Engineering, 3:1, 2009.
37-04 U, H., Cleghorn, W. and Mills, J., Design and Analysis of Fuel Tank Baffles to Reduce the Noise Generated From Fuel Sloshing, SAE Technical Paper 2004-01-0403, 2004, doi:10.4271/2004-01-0403.
38-03 Hidenori Arisawa, Katsuya Umemoto, Atsushi Ueshima and Yuichi Kawamoto, CFD Simulation of the Lubricating Oil Flow in Motorcycle Oilpan, 2003 SAE/JSAE Small Engine Technology, Conference & Exhibition, Madison, Wisconsin, USA, September 15-18, 2003.
