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Application of intensified heat transfer for the retrofit of heat exchanger network

机译:强化传热在换热网改造中的应用

摘要

A number of design methods have been proposed for the retrofit of heat exchanger networks (HEN) during the last three decades. Although considerable potential for energy savings can be identified from conventional retrofit approaches, the proposed solutions have rarely been adopted in practice, due to significant topology modifications required and resulting engineering complexities during implementation. The intensification of heat transfer for conventional shell-and-tube heat exchangers can eliminate the difficulties of implementing retrofit in HEN which are commonly restricted by topology, safety and maintenance constraints, and includes high capital costs for replacing equipment and pipelines. This paper presents a novel design approach to solve HEN retrofit problems based on heat transfer enhancement. A mathematical model has been developed to evaluate shell-and-tube heat exchanger performances, with which heat-transfer coefficients and pressure drops for both fluids in tube and shell sides are obtained. The developed models have been compared with the Bell-Delaware, simplified Tinker and Wills-Johnston methods and tested with the HTRI® and HEXTRAN® software packages. This demonstrates that the new model is much simpler but can give reliable results in most cases. For the debottlenecking of HEN, four heuristic rules are proposed to identify the most appropriate heat exchangers requiring heat transfer enhancements in the HEN. The application of this new design approach allows a significant improvement in energy recovery without fundamental structural modifications to the network. © 2011 Elsevier Ltd.
机译:在过去的三十年中,已经提出了许多设计方法来改造热交换器网络(HEN)。尽管可以从常规的改造方法中确定出巨大的节能潜力,但由于需要对拓扑结构进行重大修改并在实施过程中造成工程复杂性,因此在实践中很少采用建议的解决方案。常规管壳式换热器的强化传热可以消除在HEN中实施改造的困难,这通常受到拓扑,安全和维护方面的限制,并且包括更换设备和管道的高投资成本。本文提出了一种新颖的设计方法来解决基于传热增强的HEN改造问题。已经开发了数学模型来评估管壳式换热器的性能,通过该模型可以获得管壳侧的流体的传热系数和压降。已将开发的模型与Bell-Delaware,简化的Tinker和Wills-Johnston方法进行了比较,并已使用HTRI®和HEXTRAN®软件包进行了测试。这表明新模型要简单得多,但在大多数情况下可以提供可靠的结果。为了消除HEN的瓶颈,提出了四个启发式规则,以识别需要增强HEN传热的最合适的热交换器。这种新设计方法的应用可以显着提高能量回收率,而无需对网络进行根本的结构修改。 ©2011爱思唯尔有限公司。

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