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BUOYANCY-DRIVEN CIRCULATION FLOW OF AN ELECTRICALLY CONDUCTIVE LIQUID IN A RECTANGULAR ANNULUS

机译:矩形环中导电性流体的浮力驱动的环流

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A study on the characteristics of a buoyancy-driven flow in a rectangular circulation channel in a solar-energy-harvesting device is presented in this paper. The solar-energy-harvesting device is projected to convert solar radiation into electrical energy. As a first step of the energy conversion in the device, a flow is generated by an imbalance of buoyancy forces in the heating and cooling sections for a liquid in the circulation channel. Whereas solar energy is collected to provide the heat, free convection of ambient air provides the cooling in the device. The fluid used in the circulation channel is electrically conductive and has high thermal expansion coefficient. The present investigation focuses on the effects of channel dimensions on the buoyancy-driven flow field and uniformities of velocities. Both analytical and numerical approaches are applied in the study. Analytical closed-form solution is obtained by assuming uni-direction flow. Steady-state two-dimensional laminar solutions are obtained by numerical computation using QUICK scheme and SIMPLE algorithm.
机译:本文研究了一种太阳能收集装置中矩形环流通道中浮力驱动流的特性。预计该太阳能收集设备可将太阳辐射转换为电能。在设备中进行能量转换的第一步是,在加热和冷却部分中,由于流通通道中液体的浮力不平衡而产生气流。收集太阳能以提供热量,而周围空气的自由对流则为设备提供了冷却。在循环通道中使用的流体是导电的并且具有高的热膨胀系数。目前的研究集中在通道尺寸对浮力驱动流场和速度均匀性的影响上。分析和数值方法都应用在研究中。通过假设单向流动获得解析的闭式解。利用QUICK方案和SIMPLE算法通过数值计算获得了稳态二维层流解。

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