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CFD Analysis of Axial Flow Fans for Radiator Cooling in Automobile Engines

机译:汽车发动机散热器冷却轴流风机的CFD分析

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Radiators are installed in automobiles to remove heat from the coolant. The use of higher output engines with highly compacted under hood packaging, the addition of new emission components, and aerodynamic front end styling with narrow openings are creating a hostile thermal environment in the engine compartment.This results in a smaller volume of under hood cooling air.So, to handle higher volume flow rates of air axial flow fans are used to cool the radiators. These fans consume considerable amount of power from the engine and hence the performance of the axial flow fan is an important parameter of efficiency of the engine cooling system.CFD is used as a major design tool to investigate the major issues related to the performance of fan like volume flow rate and static pressure rise etc. The present work investigates the characteristics of the flow over axial flow fans, which are used for radiator cooling using CFD code FLUENT 6.0. Comparison between CFD simulation and results from Blade Element Theory of two typical commercial axial flow fans with different blade profiles are presented. It is noticed that the fan efficiency can be improved by a fixed ring at the fan tip which avoids the back flow from casing. The heat from the engine coolant can be converted into work using an Axial-flow turbine before entering into the radiator.
机译:散热器安装在汽车中,用于从冷却液中除去热量。使用更高输出功率的发动机,发动机罩下的包装高度紧凑,增加了新的排放部件以及狭窄开口的空气动力学前端造型,在发动机舱内形成了不利的热环境,这导致发动机罩下的冷却空气体积减小了因此,为了处理更高的空气流量,轴流风扇用于冷却散热器。这些风扇从发动机消耗大量功率,因此轴流风扇的性能是发动机冷却系统效率的重要参数。CFD被用作研究与风扇性能相关的主要问题的主要设计工具。例如体积流量和静压上升等。本工作研究了轴流风扇的流量特性,这些风扇用于使用CFD代码FLUENT 6.0进行散热器冷却。介绍了两种具有不同叶片轮廓的典型商用轴流风机的CFD仿真与叶片元件理论的结果之间的比较。注意到,通过在风扇尖端处的固定环可以提高风扇效率,该环避免了来自壳体的回流。来自发动机冷却液的热量可以在进入散热器之前使用轴流式涡轮机转化为功。

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