首页> 外文会议>International Institute of Refrigeration;IIR International congress of refrigeration;Ministry of Economy, Trade and Industry;Ministry of Agriculture, Forestry and Fisheries >DESIGN SENSITIVITY ANALYSIS OF A DIRECT EVAPORATOR FOR LOW-TEMPERATURE WASTE HEAT RECOVERY ORCS USING VARIOUS FLOW BOILING HEAT TRANSFER CORRELATIONS
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DESIGN SENSITIVITY ANALYSIS OF A DIRECT EVAPORATOR FOR LOW-TEMPERATURE WASTE HEAT RECOVERY ORCS USING VARIOUS FLOW BOILING HEAT TRANSFER CORRELATIONS

机译:基于各种流沸腾换热关联的低温废热回收器直接蒸发器设计灵敏度分析

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The study evaluates 14 flow boiling heat transfer correlations in an annular-finned horizontal round tube direct evaporator design problem for a low-temperature waste heat recovery Organic Rankine cycle (ORC) case. The direct evaporation is realized through an industrial flue gas having a volumetric flow of 10000 Nm~3/h, with inlet and outlet temperatures of 232℃, which is representative for typical waste heat recovery operations for annealing furnaces, drying, baking, exhaust gas internal combustion engine. An iterative evaporator design is performed, where each of the considered flow boiling correlations are separately used for finding the in-tube convective heat transfer coefficients. The error margins of the tube length, overall heat transfer coefficient, transferred heat, cost, fan power and pressure drops are assessed. The considered working fluid is R245fa and the deduced optimal evaporation temperature (OET) is 120℃. The corresponding total transferred heat in the evaporator is approximately 300 kW in all calculations.
机译:该研究针对低温余热回收有机朗肯循环(ORC)案例评估了环形翅片卧式圆管直接蒸发器设计问题中的14种沸腾流传热关系。直接蒸发通过体积流量为10000 Nm〜3 / h,进口和出口温度为232℃的工业烟气实现,这是典型的废热回收操作,用于退火炉,干燥,烘烤,废气内燃机。执行迭代蒸发器设计,其中每个考虑的流沸腾相关性分别用于找到管内对流传热系数。评估管长,总传热系数,传热,成本,风扇功率和压降的误差范围。考虑的工作流体为R245fa,推导出的最佳蒸发温度(OET)为120℃。在所有计算中,蒸发器中相应的总传递热量约为300 kW。

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