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Experimental investigation of thermal and hydrodynamic performances of a partial cross-wavy recuperator for microturbine applications

机译:用于微型涡轮机的部分交叉波浪同流换热器的热力学和流体力学性能的实验研究

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In order to improve the thermal efficiency of the microturbines, the compact and high efficient primary surface heat exchangers are mandatory. Recently, the thermal and hydrodynamic performances of a cross-wavy (CW) primary surface recuperator are experimentally investigated. The recuperator tested in the experiment is only 1/3 part of the whole recuperator which is designed for a lOOkW microturbine. The experimental results have shown that the comprehensive thermal and hydrodynamic performances of the CW primary surface recuperator are competitive. The overall heat transfer coefficients and the pressure drops of the recuperator are tested in the experiments. And the range of the Reynolds number is from 150 to 400. The corresponding correlations between heat transfer coefficients and Reynolds numbers and the correlations between friction factors and Reynolds numbers are obtained. The Genetic Algorithm (GA) has been used to separate the coefficients of heat transfer correlations in the hot and cold sides of the partial recuperator by separating the overall heat transfer coefficient without experimentally knowing wall temperatures. In order to improve the hydrodynamic performance, the flow arrangement is also carefully designed. Furthermore, the experimental results have also confirmed that the flow distribution in the recuperator is quite uniform.
机译:为了提高微型涡轮机的热效率,紧凑而高效的一次表面换热器是必不可少的。最近,通过实验研究了交叉波浪状(CW)一次表面换热器的热和流体力学性能。在实验中测试的换热器仅是为100kW微型涡轮机设计的整个换热器的1/3。实验结果表明,连续波一次表面换热器的综合热力和流体动力性能具有竞争力。在实验中测试了换热器的整体传热系数和压降。雷诺数的范围是150至400。获得了传热系数和雷诺数之间的对应关系以及摩擦系数和雷诺数之间的关系。遗传算法(GA)已用于通过分离总传热系数来分离部分同流换热器热侧和冷侧的传热相关系数,而无需通过实验就知道壁温。为了改善流体力学性能,还对流量布置进行了精心设计。此外,实验结果还证实了换热器中的流量分布非常均匀。

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