Off-Design Performance Evaluation of a LNG Production Plant Coupled With Renewables

M. A. Ancona, M. Bianchi, L. Branchini, F. Catena, A. D. Pascale, F. Melino, A. Peretto
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Abstract

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. Simultaneously, natural gas is predicted to play a vital and strategic role in the energy market, on account of its lower environmental impact than other fossil fuels, both as gaseous fuel for stationary energy generation and as liquefied fuel. In particular, the Liquefied Natural Gas (LNG) is becoming interesting in transports as an alternative to diesel fuel, allowing a decrease in pollutant emissions and a reduction in fuel’s costs for the users. As a consequence, in this context, the LNG production process can be seen as an electrical storage system by the integration with renewables, becoming an interesting solution to avoid the issues related to intermittency and unpredictability of renewables. The aim of the paper is the development of a calculation code and the evaluation of the off-design operation of a LNG production plant coupled with wind renewable energy sources. With this purpose, on the basis of mathematical models from literature, a dedicated calculation code has been developed, able to thermodynamically analyze both design and off-design operation of the integrated process. In addition, in this study the proposed model is employed to investigate the correct integration between renewables and LNG generation, in order to define the optimal choice of the wind size for a given LNG production plant. With this purpose, the LNG plant size of a real prototype has been considered and an economic analysis has been carried out, accounting for the revenue of the LNG sale, the costs for NG purchase, for operation and maintenance and for the initial investment costs, but also with the aim to minimize the electricity introduction into the grid, considered in this study as a penalty.
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LNG生产装置与可再生能源的非设计性能评价
在过去的几年里,能源市场需求的增加导致了可再生能源的不断渗透,以实现一次能源供应。同时,预计天然气将在能源市场上发挥至关重要的战略作用,因为无论是作为固定能源生产的气态燃料还是作为液化燃料,天然气对环境的影响都比其他矿物燃料小。特别是,液化天然气(LNG)作为柴油燃料的替代品在运输中变得越来越有趣,可以减少污染物排放并降低用户的燃料成本。因此,在这种情况下,通过与可再生能源的整合,液化天然气生产过程可以被视为一个电力存储系统,成为一个有趣的解决方案,以避免与可再生能源的间歇性和不可预测性相关的问题。本文的目的是开发一种计算规范,并对LNG生产工厂与风能可再生能源的非设计运行进行评估。为此,在文献数学模型的基础上,开发了一个专用的计算代码,能够对集成过程的设计和非设计操作进行热力学分析。此外,在本研究中,所提出的模型用于研究可再生能源和液化天然气发电之间的正确整合,以定义给定液化天然气生产工厂的最佳风力选择。为此,考虑了真实原型的LNG工厂规模,并进行了经济分析,考虑了LNG销售的收入,购买NG的成本,运营和维护成本以及初始投资成本,同时还旨在最大限度地减少向电网引入的电力,在本研究中认为这是一种惩罚。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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