首页> 外文会议>ASME international mechanical engineering congress and exposition >THE THERMODYNAMIC PERFORMANCE OF LIQUID-VAPOR SEPARATION AIR-COOLED CONDENSER IN ORC SYSTEM AT LOW AMBIENT TEMPERATURE
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THE THERMODYNAMIC PERFORMANCE OF LIQUID-VAPOR SEPARATION AIR-COOLED CONDENSER IN ORC SYSTEM AT LOW AMBIENT TEMPERATURE

机译:低温环境下ORC系统中气液分离空冷冷凝器的热力学性能

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摘要

This paper investigated the thermodynamic performance of a novel condenser, liquid-vapor separation condenser (LSC), under the ORC conditions with extreme ambient air temperature. By contrast, a common parallel flow condenser (PFC) with the identical structure of tube and fin, together with the heat transfer area was measured under the same condition. The average condensing temperature was chosen as 35°C, R134a was chosen as the working fluid. The experimental results announced that the in-tube average heat transfer coefficients (AHTCs) of the LSC were 96.7% to 109.1% of the PFC when the initial air temperature varied from -10°C to 10°C, at the R134a inlet mass flux from 437kg/(m~2s) to 750kg/(m~2s), and heat flux from 3kW/m2 to 5 kW/rrr. Specially, the pressure drop was only 35.1% to 53.2% of the PFC under the experiment conditions. The tube wall temperatures of the LSC decreased slower than the PFC. The thermodynamic performance of the LSC was superior to the PFC under the ORC conditions. The result indicates the LSC is a promising condenser in ORC system.
机译:本文研究了一种新型冷凝器,即液汽分离冷凝器(LSC)在极端环境空气温度下的ORC条件下的热力学性能。相比之下,在相同条件下测量了具有相同管和翅片结构的普通平行流冷凝器(PFC),以及传热面积。平均冷凝温度选择为35°C,R134a选择为工作流体。实验结果表明,当初始空气温度在-10°C到10°C之间变化时,在R134a入口质量流量下,LSC的管内平均传热系数(AHTC)为PFC的96.7%至109.1%从437kg /(m〜2s)到750kg /(m〜2s),热通量从3kW / m2到5 kW / rrr。特别地,在实验条件下,压降仅为PFC的35.1%至53.2%。 LSC的管壁温度下降速度比PFC慢。在ORC条件下,LSC的热力学性能优于PFC。结果表明,LSC是ORC系统中有希望的冷凝器。

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