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A Novel Constant-Pressure Pumped Hydro Combined with Compressed Air Energy Storage System

机译:新型恒压抽水结合压缩空气储能系统

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As intermittent renewable energy is receiving increasing attention, the combination of intermittent renewable energy with large-scale energy storage technology is considered as an important technological approach for the wider application of wind power and solar energy. Pumped hydro combined with compressed air energy storage system (PHCA) is one of the energy storage systems that not only integrates the advantages but also overcomes the disadvantages of compressed air energy storage (CAES) systems and pumped hydro energy storage systems to solve the problem of energy storage in China’s arid regions. Aiming at the variable working conditions of PHCA system technology, this study proposes a new constant-pressure PHCA. The most significant characteristics of this system were that the water pump and hydroturbine work under stable conditions and this improves the working efficiency of the equipment without incurring an energy loss. In addition, the constant-pressure PHCA system was subjected to energy and exergy analysis, in expectation of exploring an attractive solution for the large-scale storage of existing intermittent renewable energy.
机译:随着间歇性可再生能源越来越受到重视,间歇性可再生能源与大规模储能技术的结合被认为是广泛应用风能和太阳能的重要技术手段。抽水蓄能与压缩空气储能系统(PHCA)相结合是一种储能系统,它不仅整合了优点,而且还克服了压缩空气储能(CAES)系统和抽水储能系统的弊端,从而解决了这一问题中国干旱地区的能源存储。针对PHCA系统技术的可变工作条件,本研究提出了一种新型的恒压PHCA。该系统最显着的特点是水泵和水轮机在稳定的条件下工作,这提高了设备​​的工作效率,而不会造成能量损失。此外,对恒压PHCA系统进行了能量和火用分析,以期为大规模存储现有的间歇性可再生能源寻求有吸引力的解决方案。

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