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A Novel Small Scale Liquefied Natural Gas Production Process at Filling Stations: Thermodynamic Analysis and Parametric Investigation

机译:新型加气站小规模液化天然气生产工艺:热力学分析和参数研究

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In the last years, the increased demand of the energy market has led to the increasing penetration of renewable energies in order to achieve the primary energy supply. However, simultaneously natural gas still plays a key role in the energy market, mainly as gaseous fuel for stationary energy generation, but also as liquefied fuel, as an alternative to the diesel fuel, in vehicular applications. Liquefied Natural Gas (LNG) is currently produced in large plants directly located at the extraction sites. In this study, the idea of realizing plug & play solutions to produce LNG directly at vehicle's filling stations has been investigated. A novel process of LNG production for filling stations has been analyzed, consisting in a single stage Joule-Thompson isenthalpic expansion process, with intercooled compression. Furthermore, the presented layout has been developed with the purpose of optimizing the energy consumption of the plant, obtaining moderately pressurized LNG. With the aim of investigating the feasibility of this novel LNG generation process, a thermodynamic analysis has been carried out and presented in this study. Moreover, the minimization of energy consumption has been investigated with a parametric analysis, in order to optimize the LNG production and to maximize the efficiency of the process. Furthermore, novel performance indicators have been defined, in order to account the efficiency of the LNG production process. Results of the optimization analysis show that, with the proposed layout, an energy consumption equal to about 1.9 MJ/kg of produced LNG can be achieved.
机译:在过去的几年中,能源市场需求的增长导致可再生能源的普及率不断提高,从而实现了一次能源的供应。然而,同时天然气在能源市场上仍然起着关键作用,主要是作为用于固定能源生产的气态燃料,而且在车辆应用中还作为液化燃料,作为柴油的替代品。目前,液化天然气(LNG)是在直接位于提取地点的大型工厂中生产的。在这项研究中,研究了实现即插即用解决方案以直接在车辆加气站生产LNG的想法。分析了一种用于加气站的新型液化天然气生产工艺,包括单级焦耳-汤普森等焓膨胀工艺和中间冷却压缩工艺。此外,提出的布局是为了优化工厂的能源消耗,获得适度加压的液化天然气而开发的。为了研究这种新型液化天然气生产工艺的可行性,已经进行了热力学分析,并在本研究中进行了介绍。此外,已经通过参数分析研究了能源消耗的最小化,以优化液化天然气的生产并最大程度地提高了工艺效率。此外,为了考虑液化天然气生产过程的效率,已经定义了新颖的性能指标。优化分析的结果表明,采用建议的布局,可以实现大约1.9 MJ / kg的生产液化天然气的能耗。

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