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Performance Improvement of HVAC by Optimizing the Design of Blower Involute and Casing

机译:通过优化鼓风机渐开线和外壳设计的HVAC性能改进

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The present study describes the design optimization of blower scroll of an automotive AC system to improve the overall performance. An automobile AC unit mainly consists of blower unit and heating/cooling unit, the blower being a very crucial unit controls the basic performance of AC unit such as wind volume, sound and cooling performance. It has always been a general practice to develop HVAC with less sound, a compact design to package easily in the instrument panel and less power/fuel consumption. It is therefore necessary to design and optimize the HVAC unit and blower unit in order to enhance the air flow amount, to increase the flow uniformity on the heat exchanger and duct outlet, to increase the cooling performance, temperature linearity and to reduce the power consumption by the blower motor. A 3-dimensional Computational Fluid Dynamics (CFD) was used to determine the flow characteristics numerically and the simulation results were helped to optimize the base design of HVAC and blower. The results from the numerical prediction are in good agreement with the prototype tested. Thus it has help to reduce the cost and time required to reach the desired objective and to understand many complex situations which will be databank for future program of the HVAC development.
机译:本研究描述了汽车AC系统的鼓风机涡旋的设计优化,以提高整体性能。汽车AC单元主要由鼓风机单元和加热/冷却装置组成,鼓风机是一个非常关键的单元控制AC单元的基本性能,如风量,声音和冷却性能。它一直是一种普遍的做法,可以在仪表板上轻松封装,并且在仪表板上轻松封装,较少的功率/油耗,这一直是一种普遍的做法。因此,有必要设计和优化HVAC单元和鼓风机单元,以提高空气流量,以增加热交换器和管道出口上的流动均匀性,以提高冷却性能,温度线性度和减少功耗。由鼓风机电机。三维计算流体动力学(CFD)用于数值上确定流动特性,并有助于优化HVAC和鼓风机的基础设计。数值预测的结果与测试的原型吻合良好。因此,它有助于降低达到所需目标所需的成本和时间,并了解许多复杂的情况,即将成为HVAC开发的未来计划的数据库。

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