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Utility Exchanger Network synthesis for Total Site Heat Integration

机译:实用程序交换器网络综合,用于总站点热集成

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摘要

Total Site Heat Integration (TSHI) targeting and optimisation methods have been well developed while few studies deal with detailed Utility Exchanger Network (UEN) design. The UEN is the network of heat exchangers that connect a site’s centralised utility system to provide the required process heating and cooling while also facilitating inter-process heat recovery, i.e. TSHI. This paper presents a new UEN design procedure based on the recently developed Unified TSHI targeting method. The Unified method applies more strict constraints on the UEN network, compared to Conventional methods, allowing series utility exchanger matches for a non-isothermal utility if the exchangers in series are from the same process. This constraint reduces the dependency of the individual processes that constitute the Total Site. In UEN design procedure based on the Unified method, calculated utility targets can be archived after UEN design and the number of exchangers reduces compared to the Conventional methods’ design procedure. Also, different Exchanger Minimum Approach Temperature in the UEN synthesis may have an influence on network design and the exchanger configuration but the identical heat recovery and utility targets are achieved after UEN design based on both design procedures.
机译:总站点热集成(TSHI)的目标和优化方法已经得到了很好的开发,而很少有研究涉及详细的公用事业交换网络(UEN)设计。 UEN是一个热交换器网络,它连接站点的集中式公用系统,以提供所需的过程加热和冷却,同时还促进过程间的热量回收,即TSHI。本文介绍了一种基于最近开发的Unified TSHI定位方法的新的UEN设计程序。与传统方法相比,统一方法对UEN网络施加了更严格的约束条件,如果串联的交换器来自同一工艺,则允许串联的交换器与非等温公用事业匹配。此约束减少了组成整个站点的各个过程的依赖性。在基于统一方法的UEN设计过程中,可以在UEN设计之后将计算出的效用目标进行归档,并且与传统方法的设计过程相比,交换器的数量减少了。同样,在UEN合成中,不同的交换器最低进近温度可能会影响网络设计和交换器配置,但在根据两个设计程序进行UEN设计后,将达到相同的热回收和效用目标。

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