首页> 外文会议>IMECE2009;ASME international mechanical engineering congress and exposition >HEAT TRANSFER AUGMENTATION OF PARALLEL FLOWS BY MEANS OF ELECTRIC CONDUCTION PHENOMENON IN MACRO- AND MICRO-SCALE
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HEAT TRANSFER AUGMENTATION OF PARALLEL FLOWS BY MEANS OF ELECTRIC CONDUCTION PHENOMENON IN MACRO- AND MICRO-SCALE

机译:宏观和微观尺度上的导电现象手段对平行流动的传热强化

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Electrohydrodynamic (EHD) conduction phenomenon takes advantage of the electrical Coulomb force exerted on a dielectric liquid generated by externally applied electric field. The conduction phenomenon can be applied to enhance or control mass transport and heat transfer in both terrestrial and microgravity environments with advantages of simplicity and no degradation of fluid properties for isothermal as well as non-isothermal liquids. This paper numerically studies the heat transfer augmentation of externally driven macro- and micro-scale parallel flows by means of electric conduction phenomenon. The electric conduction is generated via electrode pairs embedded against the channel wall to solely enhance the heat transfer; it is not utilized to pump the liquid. Two cases of Poiseuille and Couette parallel flows are considered where for the former, a constant external pressure gradient is applied along the channel and for the latter, the channel wall moves with a constant velocity. The electric field and electric body force distributions along with the resultant velocity fields are presented. The heat transfer enhancements are illustrated under various operating conditions for both scales.
机译:电流体动力学(EHD)传导现象利用了由外部施加的电场产生的电库仑力所施加的电库仑力。传导现象可用于增强或控制地面和微重力环境中的传质和传热,其优点是简单且不会降低等温和非等温液体的流体性能。本文通过电导现象,数值研究了外部驱动的宏观和微观平行流的传热增加。导电是通过嵌入在通道壁上的电极对产生的,以仅增强传热。它不用于泵送液体。考虑Poiseuille和Couette平行流动的两种情况,对于前者,沿通道施加恒定的外部压力梯度,对于后者,通道壁以恒定速度移动。给出了电场和电场力分布以及合成的速度场。两种刻度在各种运行条件下的传热效果都得到了说明。

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