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Energy and exergy recovery in a natural gas compressor station - A technical and economic analysis

机译:天然气压缩机站的能量和火用回收-技术和经济分析

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The paper presents possible solutions to improve the thermodynamic performance of a natural gas compressor station equipped with various type of compressor units and operated at part-load conditions. A method for setting a simplified energy and exergy balance based on the available metering information has been presented. For a case study plant, it has been demonstrated that the current part-load operation leads to a significant decrease in energy and exergy efficiency compared to the nominal state of machinery. Three alternative improvement strategies have been proposed: (1) installation of a heat recovery hot water generator for covering the existing heat demand of the plant; (2) installation of a heat recovery thermal oil heater for covering the existing heat demand and driving an organic Rankine cycle (ORC) for electricity generation; (3) installation of a heat recovery thermal oil heater with and ORC and gas expanders for switching into full-load operation of the gas turbine unit. Energy and exergy performance of the proposed strategies as well as their economic feasibility have been analyzed. The second scenario involving an ORC unit provides the highest local energy savings, however, its economic feasibility is not achieved under the current part-load operating conditions. A hypothetic scenario of the same station operated at full-load due to an increased gas transmission capacity demonstrate the economic feasibility (possible under optimistic price conditions). Finally, it has been shown that the possibility of waste energy recovery from natural gas transmission systems (in particular, from compressor stations) depends on legal regulations defining the status of the transmission network operator. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了可能的解决方案,以改善配备有各种类型的压缩机单元并在部分负载条件下运行的天然气压缩机站的热力学性能。已经提出了一种基于可用的计量信息来设置简化的能量和火用平衡的方法。对于一个案例研究工厂,已经证明,与机械的标称状态相比,当前的部分负荷运行导致能源和火用效率显着下降。提出了三种替代的改进策略:(1)安装一个热回收热水发生器,以满足工厂现有的热量需求; (2)安装热能回收导热油加热器,以覆盖现有的热量需求并驱动有机朗肯循环(ORC)进行发电; (3)安装带有ORC和气体膨胀器的热回收导热油加热器,以切换到燃气轮机单元的满负荷运行。分析了所提出策略的能量和火用性能以及其经济可行性。第二种方案涉及ORC单元,可以最大程度地节省本地能源,但是,在当前的部分负荷运行条件下,其经济可行性还无法实现。由于增加的天然气传输能力,同一站点满负荷运行的假设场景证明了经济可行性(在乐观的价格条件下可能)。最后,已经表明,从天然气传输系统(尤其是从压缩机站)回收废能的可能性取决于定义传输网络运营商状态的法律法规。 (C)2015 Elsevier Ltd.保留所有权利。

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