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DEPHLEGMATOR DESIGN IN LOW TEMPERATURE GAS SEPARATION

机译:低温气体分离器的除雾器设计

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摘要

Dephlegmators can be used to reduce power consumption in low temperature gas separation processes.Most existing models have focused on separation process simulation,while the heat exchange characteristics and the refrigeration design were either ignored or based on highly simplified assumptions.This paper presents a new framework for the design of dephlegmators that addresses simulation of multicomponent partial condensation,design of plate-fin heat exchangers (PFHEs) and design of the refrigeration processes that service the dephlegmator.For simulation,a film model is applied to estimate local mass and heat transfer and integration across the separation area.In the design of PFHEs,the key issue is to determine the controlling stream according to the flow pattern in the separation passages.Design of refrigeration focuses on the optimization of the composition when mixed refrigerants are used,and on partition temperature when cascade cycles are used.A systematic methodology is proposed to include all these aspects.Various cases are studied to provide guidelines in the design of dephlegmators used for multicomponent gas mixtures with different refrigeration systems.
机译:分离器可用于降低低温气体分离过程中的功耗。大多数现有模型都集中在分离过程模拟上,而热交换特性和制冷设计则被忽略或基于高度简化的假设。本文提出了一个新的框架用于设计多组分局部冷凝模拟的分馏器,板翅式换热器(PFHE)的设计以及为分馏器服务的制冷过程的设计。为了模拟,应用薄膜模型估算局部质量和传热,在PFHE的设计中,关键问题是根据分离通道中的流型确定控制流。制冷设计着重于使用混合制冷剂时成分的优化以及分配。使用级联循环时的温度包括所有这些方面。研究了各种情况,以提供设计用于具有不同制冷系统的多组分气体混合物的解吸器的指南。

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