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首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >Thermal Behaviors and Lubrication Properties in Rotary Blade Coupling of Sports Utility Vehicles
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Thermal Behaviors and Lubrication Properties in Rotary Blade Coupling of Sports Utility Vehicles

机译:越野车旋转叶片联轴器的热行为和润滑性能

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摘要

This study attempts to improve the local high temperature distributions in rotary-blade-coupling (RBC), which is the source of motive power for sport-utility-vehicles (SUV). The experiment takes RBC with forced convection and circumferential ribs for the research on heat transfer enhancement. During rotation, RBC produces centrifugal fluid flow, convection phenomenon and temperature distributions that differ with rotational speed. Simultaneously, rotation enhances the turbulence intensity of the flow field, promoting heat transfer and destabilizing Taylor vortices. This instability influences the local heat transfer distribution and damages the machine parts because of overheating. To analyze the actual convection of the rotary flow field, the experiment testing section is designed based on the actual size of the RBC. In the experiment, the RBC is cooled via forced exterior oil supply, and ring-shaped turbulence ribs of three aspect ratios (AR = 5/3, 2.5, and 10/3) are added to augment the heat transfer area, for discussing the axial temperature distributions at the top and bottom of the RBC. The experiment adopts major physical parameters within 2.856x 10~5 ≤ Ta ≤ 2.031 x 10~6 and 0.053 ≤ Re ≤ 1.054 to discuss the heat transfer effect in the interior rotary flow distribution groove of RBC in the four-wheel-drive (4WD) vehicle. Finally, based on the relevant experimental results, an empirical correlation is established for the reference of 4WD vehicle designers.
机译:这项研究试图改善旋转叶片联轴器(RBC)中的局部高温分布,而旋转叶片联轴器(RBC)是运动型多功能车(SUV)的动力来源。实验采用带对流和肋肋的RBC进行强化传热的研究。在旋转过程中,RBC会产生离心流体流量,对流现象和温度分布,它们随转速而变化。同时,旋转增强了流场的湍流强度,促进了传热并使泰勒涡流不稳定。这种不稳定性会影响局部传热分布,并会因过热而损坏机器零件。为了分析旋转流场的实际对流,根据RBC的实际尺寸设计了实验测试部分。在实验中,通过强制外部供油来冷却RBC,并添加了三个长宽比(AR = 5 / 3、2.5和10/3)的环形湍流肋,以增加传热面积,从而讨论了RBC顶部和底部的轴向温度分布。实验采用2.856x 10〜5≤Ta≤2.031 x 10〜6和0.053≤Re≤1.054的主要物理参数来讨论四轮驱动(4WD)中RBC内部旋转流分配槽中的传热效果)车辆。最后,根据相关实验结果,建立了经验相关性,以供四轮驱动车辆设计者参考。

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