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Simultaneous optimization of the district heating network topology and the Organic Rankine Cycle sizing of a geothermal plant

机译:同时优化地热网络拓扑结构和地热发电厂的有机朗肯循环尺寸

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This contribution presents the optimization of parallel distribution between electricity and heat production for a geothermal plant. The geothermal fluid is split into two streams, one used for an Organic Rankine Cycle (ORC) system, and the other for a District Heating Network (DHN). The superstructure to be used for the optimization problem includes the ORC components, one of which is an optional internal heat exchanger which allows exchange between the outlet streams of the turbine and the pump. Each of the components' characteristic dimensions (used in the installation cost) is an optimization variable. The operating cost of the ORC is proportional to the installation cost. The superstructure also includes the DHN topology constituted by a definite consumer and optional consumers. A Mixed Integer Non-Linear Programming (MINLP) optimization problem is formulated and solved using the GAMS software. The strategy used to overcome the critical point of the initialization of the MINLP problem is presented. It consists in dividing the general problem into sub-problems which are solved successively. Three different academic study cases are compared to a reference case. The results validate the stability and the robustness of this optimization tool. A sensitivity analysis is performed in geothermal source conditions. All these results highlight the relevance of the simultaneous approach. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这一贡献为地热发电厂的发电和供热之间的平行分配提供了优化。地热流体分为两股流,一股用于有机朗肯循环(ORC)系统,另一股用于区域供热网络(DHN)。用于优化问题的上部结构包括ORC组件,其中之一是可选的内部热交换器,该内部热交换器允许涡轮机和泵的出口流之间进行交换。每个组件的特征尺寸(用于安装成本)都是一个优化变量。 ORC的运营成本与安装成本成正比。上层结构还包括由确定的使用者和可选的使用者组成的DHN拓扑。使用GAMS软件制定并解决了混合整数非线性规划(MINLP)优化问题。提出了用于克服MINLP问题初始化关键点的策略。它包括将一般问题划分为相继解决的子问题。将三个不同的学术研究案例与参考案例进行比较。结果验证了此优化工具的稳定性和鲁棒性。在地热源条件下进行敏感性分析。所有这些结果都突出了同步方法的相关性。 (C)2018 Elsevier Ltd.保留所有权利。

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