首页> 外文会议>ASME Fluids Engineering Division summer meeting >HEAT TRANSFER ENHANCEMENT WITH DELTA WINGLETS VORTEX GENERATOR FOR DIFFERENT ARRANGEMENT IN A CIRCULAR TUBE
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HEAT TRANSFER ENHANCEMENT WITH DELTA WINGLETS VORTEX GENERATOR FOR DIFFERENT ARRANGEMENT IN A CIRCULAR TUBE

机译:圆管中不同布置的Delta小翼涡发生器增强传热

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摘要

Various technologies have been developed to enhance the heat transfer. Vortex generator (VG) is one of the passive techniques which can change the flow behavior and ultimately enhances the heat transfer performance. Delta winglet (DW) vortex generator can create longitudinal and horseshoe vortices which do not decay until further downstream and consequently increase heat transfer coefficient with comparatively lower pressure drop. With this vortex generator, it is expected to have higher Nusselt number with some increase of friction factor. Therefore, this study is to study the effect of pitch ratio (PR) and attack angle (B) of DW vortex generator to increase the thermal performance of heat exchanger. Four delta winglets are attached into a ring. Those rings attached with VGs will be used to investigate the influence of different parameters to heat transfer performance. In this study VGs were placed inside a circular copper tube and the heating coil was wrapped up around the outer surface of the copper tube to generate a constant heat flux condition. The experimental setup consists of a blower, orifice meter, flow straightener, calm/ flow developing section and test section. The results show the friction factor, Nusselt number, and Thermal Performance Enhancement. It increases the thermal performance due to the formation of longitudinal vortex inside the circular tube. Pitch ratio and attack angle seem to have significant impact on the flow and heat transfer. The Pitch ratio of 1.6 have the highest impact on both (f/f_o) and (Nu/Nu_o) followed by attack angle. Smoke flow visualization technique was used to study flow behavior and flow structures.
机译:已经开发了各种技术来增强热传递。涡流发生器(VG)是无源技术之一,可以改变流动特性并最终提高传热性能。三角翼小翼(DW)涡流发生器可以产生纵向和马蹄形涡流,这些涡流不会衰减,直到更下游,从而以相对较低的压降增加传热系数。使用该涡流发生器,随着摩擦系数的增加,有望获得更高的努塞尔数。因此,本研究旨在研究DW涡流发生器的螺距比(PR)和迎角(B)对提高热交换器的热性能的影响。四个三角翼小翼连接成一个环。那些与VG相连的环将用于研究不同参数对传热性能的影响。在这项研究中,将VG放置在圆形铜管内,并将加热线圈包裹在铜管的外表面,以产生恒定的热通量条件。实验装置包括鼓风机,孔板流量计,矫直机,镇静/流动展开部分和测试部分。结果显示了摩擦系数,努塞尔数和热性能增强。由于在圆形管内形成了纵向涡流,因此提高了热性能。螺距比和迎角似乎对流动和热传递具有显着影响。螺距比1.6对(f / f_o)和(Nu / Nu_o)的影响最大,其次是攻角。烟气流动可视化技术用于研究流动行为和流动结构。

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