首页> 外文会议>2002 ASME Pressure Vessels and Piping Conference, Aug 5-9, 2002, Vancouver, British Columbia, Canada >CHARACTERIZATION OF THE PERFORMANCE OF COUPLED HEAT EXCHANGERS WITH AN INTERMEDIATE HEAT LOAD
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CHARACTERIZATION OF THE PERFORMANCE OF COUPLED HEAT EXCHANGERS WITH AN INTERMEDIATE HEAT LOAD

机译:中等热负荷条件下耦合换热器性能的表征

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Heat exchanger design is both an art and a science. The science part of it is premised on the fundamentals of convective and conductive heat transfer and the art part of it is based on determining how to effectively package the design to meet the process requirements with cost constraints. This paper is not concerned with the art portion of heat exchanger design. Rather, the paper presents a method of characterizing the performance of coupled heat exchangers with an intermediate heat load in process systems. In process plants, it is not uncommon to see heat exchangers that are coupled. Determining the performance of such heat exchanger arrangements can be daunting, but not insurmountable. Using first principles equations, engineers iteratively establish the performance of the heat exchanger arrangement This process is time consuming. In this paper, we present a specific case of two coupled heat exchangers with an intermediate heat load in the intermediate system. The resultant model allows an engineer to perform sensitivity studies of the arrangement prior to investing resources in an actual design of the system. This method is expected to facilitate the process of examining the performance of similarly configured heat exchanger arrangements. Similar techniques can be used to simplify more complex heat exchanger arrangements.
机译:换热器设计既是一门艺术,也是一门科学。它的科学部分以对流和传导热传递的基础为前提,而艺术部分则基于确定如何有效封装设计以满足成本约束下的工艺要求。本文与换热器设计的艺术部分无关。相反,本文提出了一种在过程系统中表征具有中等热负荷的耦合热交换器性能的方法。在加工厂中,经常会看到热交换器耦合在一起。确定这种热交换器布置的性能可能是艰巨的,但并非不可克服的。工程师使用第一原理方程式,反复确定热交换器布置的性能。此过程非常耗时。在本文中,我们介绍了在中间系统中具有中间热负荷的两个耦合热交换器的特殊情况。最终的模型允许工程师在将资源投入到系统的实际设计中之前,对该装置进行敏感性研究。期望该方法有助于检查类似构造的热交换器布置的性能的过程。可以使用类似的技术来简化更复杂的热交换器布置。

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