锂离子电池储能有助于实现约旦2020-2030年能源战略

Khaled Almasri, S. Zawaydeh, Emad Abdelsalam, M. Alkasrawi, Yahya AlMashayikh, Tareq Salamah
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摘要

2012年约旦可再生能源和能源效率法(13)是改变约旦能源结构的起点。约旦政府采取了巨大的措施,转向使用当地的可再生能源资源(风能和太阳能光伏),使电网可再生能源装机容量达到32.5%,这是世界上所有国家中可再生能源装机比例最高的国家(2014年至2020年)。可再生能源发电的高度存在导致约旦目前的电网受到限制,由于输电网络中的高负荷,这可能会限制或减少可再生能源新容量的数量。本文评估了使用锂离子电池储能系统的解决方案,允许更多的可再生能源系统并入电网,以确保电网的安全运行。本文评估了约旦在电网中安装锂离子储能系统的技术优势和财务可行性。根据约旦2020-2030年能源战略,已经制定了三个主要方案,以实现节能,减少二氧化碳排放,并在2030年之前将需求侧的储能增加1%,3%和5% (365 GWh)。另一种方案是,将发电侧的柴油发电机替换为698吉瓦时的光伏板和锂离子存储器,从而减少发电侧的能量并存储能量。其结果是每年节省1.02亿约旦第纳尔(JD),并从发电端节省698千瓦时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lithium-ion Battery Storage Contributions To Achieve Jordan Energy Strategy 2020-2030
The Jordan Renewable Energy and Energy Efficiency Law (13) year 2012, was the starting point in the journey towards changing the energy mix in Jordan. Gigantic steps were taken by the government of Jordan to shift towards using the local renewable energy resources (Wind and Solar PV) which resulted in 32.5% RE power installed capacity on grid, which is the highest percentage of RE power integration (between 2014 – 2020) among all countries in the world. This high presence of renewable energy generation results a limitation in Jordan’s electrical grid nowadays, which could limit or reduce the number of new capacities of renewable energy sources due to the high loading in the transmission network.This paper evaluates the solution of using Lithium-ion battery storage systems to allow more renewable energy systems to be integrated into the grid, to ensure the safe operation of the grid. This paper evaluates the technical advantages and the financial feasibility of installing Lithium-ion storage into the grid in Jordan.Three major scenarios have been developed to achieve energy savings, reduce the CO2 emissions, and to increase the energy storage on the demand side by 1%, 3%, and 5 % or 365 GWh by 2030 according to the Jordanian energy strategy 2020-2030. Another scenario has been made to decrease the energy from the generation side and store the energy by replacing the diesel generators on the generation side and replace it with 698 GWh PV panels and Lithium-ion storage. The result was savings by 102 million Jordanian Dinar (JD) annually, and 698 GWh from the generation side.
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