首页> 外文会议>ASME Heat Transfer Conference >PERFORMANCE EVALUATION OF MULTI-STAGE SHELL AND TUBE TRANSPORT MEMBRANE CONDENSER HEAT EXCHANGERS FOR LOW GRADE WASTE HEAT AND WATER RECOVERY
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PERFORMANCE EVALUATION OF MULTI-STAGE SHELL AND TUBE TRANSPORT MEMBRANE CONDENSER HEAT EXCHANGERS FOR LOW GRADE WASTE HEAT AND WATER RECOVERY

机译:多级壳体输送膜冷凝器热交换器的性能评价,用于低级余热和水回收

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In this work for the first time the performance of multi-stage shell and tube Transport Membrane Condenser (TMC) based heat exchangers are evaluated numerically. The present heat exchanger is design to work under high pressure and temperature condition for both heat and water recovery in Oxy-Combustion processes. TMC heat exchangers use the nano-porous and ceramic membrane technology to extract the water vapor and latent heat of condensation from the flue-gas. The most important application of TMC heat exchangers is in the power plants which the water vapor in the presence of other non-condensable gases (i.e. CO_2, O_2 and N_2) exist. Effect of the different arrangement of the multi-stage shell and tube TMC heat exchangers, number of branches and number of heat exchangers in each branch on the heat transfer and water recovery have been studied numerically. A single phase multi-component model is used to assess the capability of single stage TMC heat exchangers in terms of waste heat and water recovery at various inlet conditions. Numerical simulation has been performed using ANSYS-FLUENT software and the condensation rate model has been implemented applying User Define Function. Finally, an optimum configuration for the TMC heat exchanger unit has been proposed and the results of numerical simulations are depicted in terms of temperature and water vapor mass fraction contours.
机译:在这项工作中,首次进行了多级壳和管传输膜冷凝器(TMC)的热交换器的性能进行了数值在数值上进行了评价。本发明的热交换器是在高压和温度条件下工作的,用于氧气燃烧过程中的热量和水回收。 TMC热交换器使用纳米多孔和陶瓷膜技术从烟道气中提取水蒸气和静电的凝聚热。 TMC热交换器最重要的应用是存在于存在其他不可冷凝气体(即CO_2,O_2和N_2)的情况下的水蒸汽。数值研究了多级壳和管TMC热交换器的不同布置,分支的分支数和热交换器的数量和热交换器的数量。单相多组分模型用于评估单级TMC热交换器在各种入口条件下的废热和水回收方面的能力。使用ANSYS-FLUENT软件执行了数值模拟,并且已经实现了应用用户定义功能的冷凝率模型。最后,已经提出了用于TMC热交换器单元的最佳配置,并且在温度和水蒸气质量分数轮廓方面描绘了数值模拟的结果。

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