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Development of a Cost Effective Power Train Cooling System for a Passenger Car with Rear Engine

机译:具有后发动机乘用车乘用车成本效益动力列车冷却系统的开发

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The present automobile era in India is driven by development of small-size and low-cost "value for money" cars. Proper utilization of space and low-cost engineering of the vehicle aggregates plays a key role for attaining the goal of low-cost small cars. This paper illustrates the development of power train cooling system of such cost sensitive passenger car with rear engine and rear-mounted heat exchangers. The major obstacle for the power train cooling system of rear engine-rear-mounted heat exchanger (radiator) is absence of ram air effect at higher vehicle speeds and air temperatures higher then ambient, as observed for front-mounted heat exchanger. The subject vehicle encountered power train cooling system failure at max speed operating condition and the project timeline required a quick solution without any major modifications and cost escalation. In case of subject vehicle because of its packaging, the air flow rate for heat exchanger was fully dependent of fan capacity. However, at higher vehicle speeds there was an opportunity to boost the air flow rate by proper air management within vehicle boundaries. After DOE and CFD analysis, an air deflector was introduced at the bottom of heat exchanger which improved the heat transfer rate by utilizing the high-velocity air underneath the vehicle.
机译:印度目前的汽车时代是由汽车小尺寸和低成本的“物有所值”的发展驱动。车辆聚集的空间和低成本的工程合理利用起到了实现低成本小型车的目标的关键作用。本文示出了动力传动系冷却这种成本敏感乘用车的系统与后置发动机和后置式热交换器的发展。用于后发动机后置式热交换器(散热器)的动力传动系的冷却系统的主要障碍是在较高的车辆速度下和空气温度高于室温的情况下冲压空气效果,作为用于前装式热交换器观察。遇到动力火车以最大速度工作条件和项目时间表冷却系统故障的对象车辆所需没有任何重大修改和成本上升迅速解决。由于其包装的对象车辆的情况下,对于热交换器的空气流速为完全依赖的风扇容量。然而,在较高的车速有通过适当的空气管理车辆范围内,以提高空气流速的机会。后DOE和CFD分析,空气导流板在换热器的底部,其通过利用高速空气在车辆下方提高了传热速率引入。

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