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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Performance prediction of finned air-cooled condenser using a conjugate heat-transfer model
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Performance prediction of finned air-cooled condenser using a conjugate heat-transfer model

机译:使用缀合物传热模型的翅片空气冷凝器的性能预测

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摘要

Finned air-cooling condensers save a significant amount of water in Rankine cycle power plants; however, their heat-removal capability is difficult to predict due to the condensation in finned tubes resulting from the coupled heat transfer between vapor and cooling air fluid. This study develops a conjugate-model-based approach to characterize the thermal-hydraulic development by the transverse flow of vapor and cooling air in a finned tube, and to quantify effects of varying vapor and cooling air operation on the in-tube condensation and out-tube air convection. The approach proposes all uncoupled conditions of a conjugate model on the heat-exchange interfaces, which guarantees that the temperature and heat flux are equal everywhere on the finned tube. Applied to an engineering finned tube, the model verifies that a high vapor mass flux likely reduces the condensation level, and the effect of non-condensable gases with the inlet mass fraction of 0-5% is negligible to the vapor condensation; an increase of cooling air velocity enhances the performance of both vapor condensation and cooling air convection effectively, and a decrease of atmosphere pressure reduces them obviously. The approach is beneficial in designing an enhanced finned tube and operating a field condenser efficiently.
机译:翅片空气冷却冷凝器在朗肯循环发电厂中保存大量的水;然而,由于蒸汽和冷却空气流体之间的耦合热传递产生的翅片管中的缩合,它们难以预测它们的消热能力难以预测。本研究开发了一种基于共轭模型的方法,以通过翅片管中的蒸汽和冷却空气的横向流动来表征热液力发育,并量化不同蒸气和冷却空气操作对管内冷凝和外部的影响-Tube空运。该方法提出了热交换界面上的共轭模型的所有未耦合条件,这保证了温度和热通量在翅片管上的各处。应用于工程翅片管,该模型验证了高蒸汽质量通量可能降低冷凝水平,并且与蒸汽凝结的入口质量分数的不可冷凝气体的效果可忽略不计;冷却空气速度的增加提高了蒸汽冷凝和冷却空气对流的性能有效,并且大气压的降低明显减少了它们。该方法在设计增强的翅片管并有效地操作场冷凝器是有益的。

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