首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.1 >HENEA-3: A SECOND-LAW BASED EXPERT ASSISTANT FOR THE SYNTHESIS OF HEAT EXCHANGER NETWORKS
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HENEA-3: A SECOND-LAW BASED EXPERT ASSISTANT FOR THE SYNTHESIS OF HEAT EXCHANGER NETWORKS

机译:HENEA-3:基于第二定律的热交换网络综合专家

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摘要

The present paper describes the latest development of an Expert System for the design and optimization of Heat Exchange Networks (HEN). The code described herein, HENEA (acronym for Heat Exchanger Network Expert Assistant) is a Knowledge Based System capable of interacting with a Process Engineer to generate an optimal configuration for a HEN under several different objective functions. Contrary to most of the currently available methods, the code is able to produce such solutions by making explicit use of a set of Second Law Analysis criteria and of some of the basic principles of the "Pinch Method". With respect to the previous version, HENEA now includes an additional application, "HEN-SPLIT" that accounts for the possibility of splitting one or more of the participating streams according with a general "minimal entropy generation" criterion. In its present version, HENEA can be used both for process design (new HEN) and for process structural optimization (retrofit problems). The optimization procedure is based on Sama's "Second Law Insight Method" and is directly and explicitly finalized to the reduction of the global entropy generation. The code is also endowed with a cost calculations utility, and can be thus employed to search for the optimum using two alternative optimization criteria: it generates in fact both a Maximum Energy Recovery (MER) and Minimum Exchange Area configuration (MCC, Minimum Capital Cost). Since the code is though intended for practical industrial use, and it is well known that a thermodynamically optimal configuration is not always the "most convenient" one from an engineering point of view, HENEA presents to the user also a certain number of additional sub-optimal configurations. An interactive graphic user interface makes HENEA very user-friendly: furthermore, the user can (indirectly) interrogate HENEA about its choices and understand the underlying physic in an unambiguous and immediate way. Several tests conducted on some of the available benchmarks have proven that the solutions generated by HENEA are always comparable to those produced by other optimization criteria (Pinch Method or Second Law method): in fact, for large problems (many participating streams, several splittings) they are often better than those obtained with its competitors.
机译:本文介绍了用于热交换网络(HEN)设计和优化的专家系统的最新开发。本文所述的代码HENEA(换热器网络专家助手的缩写)是一个基于知识的系统,能够与过程工程师进行交互,以在几种不同的目标功能下为HEN生成最佳配置。与大多数当前可用的方法相反,该代码能够通过明确使用一组第二定律分析标准和“收缩方法”的一些基本原理来产生此类解决方案。关于以前的版本,HENEA现在包括一个附加应用程序“ HEN-SPLIT”,该应用程序考虑了根据一般的“最小熵生成”标准拆分一个或多个参与流的可能性。在当前版本中,HENEA既可以用于过程设计(新HEN),也可以用于过程结构优化(改造问题)。优化过程基于Sama的“第二法则洞察方法”,并且直接明确地完成了减少全局熵生成的过程。该代码还具有成本计算实用程序,因此可用于使用两个替代的优化标准来搜索最优值:它实际上生成了最大能量回收(MER)和最小交换面积配置(MCC,最小资本成本) )。由于该代码虽然旨在用于实际工业用途,并且众所周知,从工程学的角度来看,热力学最佳配置并不总是“最方便”的配置,所以HENEA还向用户提供了一定数量的其他子代码。最佳配置。交互式图形用户界面使HENEA非常用户友好:此外,用户可以(间接)询问HENEA关于其选择的内容,并以明确,直接的方式了解底层物理。在某些可用基准上进行的几次测试已经证明,HENEA生成的解决方案始终可以与其他优化标准(“捏法”或“第二定律”方法)生成的解决方案相比:实际上,对于大问题(许多参与的流,多次拆分)它们通常比竞争对手获得的产品更好。

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