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Impact of Battery and Water Storage on the Transition to an Integrated 100 Renewable Energy Power System for Saudi Arabia

机译:电池和储水对沙特阿拉伯综合100%可再生能源系统的影响

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Saudi Arabia can transition to a 100% renewable energy system by 2040 including the integration of the power, desalination and non-energetic industrial gas sectors. Single-axis tracking PV and battery storage contribute the highest to the final LCOE of the system. By 2050, single-axis tracking PV accounts for 77% of the total electricity generation. Battery storage accounts for 44% of the total electricity demand. Desalination plants provide additional flexibility to the energy system. Through sensitivity analysis, it is found that decreasing the capex of desalination plants results in a decrease in battery storage output and ultimately the total system capex throughout the transition. However, the required SWRO capex decrease seems to be higher than possible, leading to a lower cost flexibility provided by solar PV and battery storage than possible by very low cost water storage. This is because the relatively more expensive SWRO desalination prefers baseload operation for total energy system cost reasons.
机译:沙特阿拉伯可以将2040年到100%可再生能源系统的转型,包括电力,海水淡化和非精力充沛的工业气体部门的整合。单轴跟踪PV和电池存储贡献最高到系统的最终LCoE。到2050年,单轴跟踪PV占总发电的77%。电池存储占总电费的44%。海水淡化厂为能源系统提供额外的灵活性。通过灵敏度分析,发现减少海水淡化厂的支出导致电池存储输出的减少,并最终整个过渡过程中的总系统资源。然而,所需的SWRO CAPEX似乎高于可能,导致太阳能光伏电池和电池存储提供的成本灵活性,而不是通过非常低的成本储存。这是因为相对较高昂贵的Swro脱盐更喜欢基于能量系统成本的总能量的基础运行。

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