共查询到19条相似文献,搜索用时 421 毫秒
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为了提高某V型发动机冷却性能,对该机原冷却水套模型结构分5个阶段进行了改进,包括加大左右侧排气端气缸垫通道面积,增加气缸盖和气缸体水套通道,开通气缸盖水套排气侧中间断口。利用Ricardo三维流体软件VECTIS对原水套和每阶段改进水套进行了三维数值模拟计算,并进行了比较分析。结果表明,最终改进后的水套流动性能比原水套有明显的改善。 相似文献
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柴油机缸内冷却液流动的数值模拟 总被引:1,自引:1,他引:0
利用三维CAD软件Pro/E对6缸柴油机冷却水套建立模型,然后对其进行网格划分,用CFD商用软件Fluent进行模拟计算,得到整机冷却水套内冷却液速度分布、压力损失以及各缸流量分布等信息,计算结果用于指导冷却水套结构的优化设计。 相似文献
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发动机冷却水套内三维流动的数值模拟研究 总被引:4,自引:0,他引:4
应用FIRE软件对某一发动机冷却水套进行了三维数值模拟,得到了冷却液流场速率、换热系数分布、压力损失以及流量分布等流场信息。从计算结果中发现,该发动机缸体水套的第2缸、第3缸等区域存在流动死区.水套进、排气侧流量分布相差较大.整体水套压力损失与同类机型相比偏小等不合理的流动现象,是导致其第2缸、第3缸“拉缸”的主要原因。最后提出了相应的解决方案。 相似文献
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The in-wheel motor used in electric vehicles was designed and constructed for an electric direct-drive traction system. It is difficult to connect cooling water piping to the in-wheel motor because the in-wheel motor is located within the wheel structure. In the air cooling structure for the in-wheel motor, an outer surface on the housing is provided with cooling grooves to increase the heat transfer area. In this study, we carried out the analysis on the fluid flow and thermal characteristics of the in-wheel motor for various motor speeds and heat generations. In order to resolve heat release, the analysis has been performed using conjugate heat transfer (conduction and convection). As a result, flow fields and temperature distribution inside the in-wheel motor were obtained for base speed condition (1250 rpm) and maximum speed condition (5000 rpm). The thermo-flow analysis of the in-wheel motor for vehicles was performed in consideration of ram air effect. Also, in order to improve cooling effect of the motor, we variously changed geometries of housing. Therefore, we confirmed the feasibility of the air cooling for the motors of 25 kW capacity with housing geometry having cooling grooves and investigated the cooling performance enhancement. We found that the cooling effect was most excellent, in case that cooling groove direction was same with air flow direction and arranged densely. 相似文献