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Evaluation of development potential of pumped hydroelectric storage and geothermal utilization system in abandoned coal mine
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作者 WANG Meng guo ping-ye +3 位作者 JIN Xin DANG Guan-jie guo Yi-chen LI Yi 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第8期2872-2890,共19页
Every year in China,a significant number of mines are closed or abandoned.The pumped hydroelectric storage(PHS)and geothermal utilization are vital means to efficiently repurpose resources in abandoned mine.In this wo... Every year in China,a significant number of mines are closed or abandoned.The pumped hydroelectric storage(PHS)and geothermal utilization are vital means to efficiently repurpose resources in abandoned mine.In this work,the development potentials of the PHS and geothermal utilization systems were evaluated.Considering the geological conditions and meteorological data available of Jiahe abandoned mine,a simple evaluation model for PHS and geothermal utilization was established.The average efficiency of the PHS system exceeds 70%and the regulatable energy of a unit volume is over 1.53 kW·h/m^(3).The PHS system achieves optimal performance when the wind/solar power ratio reaches 0.6 and 0.3 in daily and year scale,respectively.In the geothermal utilization system,the outlet temperature and heat production are significantly affected by the injection flow rate.The heat production performance is more stable at lower rate flow,and the proportion of heat production is higher in the initial stage at greater flow rate.As the operating time increases,the proportion of heat production gradually decreases.The cyclic heat storage status has obvious advantages in heat generation and cooling.Furthermore,the energy-saving and emission reduction benefits of PHS and geothermal utilization systems were calculated. 展开更多
关键词 abandoned mine underground reservoir wind/solar energy pumped hydroelectric storage GEOTHERMAL
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矿山地热防控与利用研究进展 被引量:18
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作者 郭平业 卜墨华 +1 位作者 张鹏 何满潮 《工程科学学报》 EI CSCD 北大核心 2022年第10期1632-1651,共20页
从矿山地热致灾形式、热害控制技术、热能利用方法3个方面,对相关文献进行归纳,总结已有研究成果.结果表明,矿山地热的致灾形式有加剧煤岩体性质劣化、诱发支护结构失效和导致高温高湿环境三类,具体包括加剧围岩变形破坏、诱发吸附瓦斯... 从矿山地热致灾形式、热害控制技术、热能利用方法3个方面,对相关文献进行归纳,总结已有研究成果.结果表明,矿山地热的致灾形式有加剧煤岩体性质劣化、诱发支护结构失效和导致高温高湿环境三类,具体包括加剧围岩变形破坏、诱发吸附瓦斯溢出、降低锚杆锚固强度、加剧锚护材料腐蚀、损害工人身心健康、降低工人工作效率和增加机械设备故障率七方面.热害控制技术有非人工降温技术和人工降温技术两种,其中非人工降温技术分为热源控制技术、热湿环境调控技术和个体防护技术3类;根据制冷工质不同,可以将人工制冷降温系统分成气冷式、冰冷式和水冷式3大类,包括压缩空气制冷降温、冰制冷降温、地面集中制冷降温、地面排热井下集中降温、回风排热井下集中降温、地面热电联产制冷降温和热害资源化利用等制冷系统.通过提取矿井水和矿井回风中的余热用于矿区井口防冻、洗浴供暖和建筑物供暖,是目前矿山地热利用的主要方法.而直接提取巷道围岩热能的同时实现矿井降温是近年来的研究热点,也是矿山地热直接利用的关键;将地埋管换热器布置在采空区充填材料或巷道围岩内提取围岩热能、实现矿区多种清洁能源协同利用是未来矿山地热利用的发展方向之一. 展开更多
关键词 矿山地热 矿井热害 降温系统 热能利用 高温高湿
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Stability control of gate groups in deep wells 被引量:8
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作者 guo Zhi-biao guo ping-ye +1 位作者 HUANG Mao-hong LIU Yin-gen 《Mining Science and Technology》 EI CAS 2009年第2期155-160,共6页
In order to study stability control methods for a deep gate group under complex stresses,we conducted field investigations and analyses of reasons for damage in the Xuzhou mining district.Three reasons are proposed:de... In order to study stability control methods for a deep gate group under complex stresses,we conducted field investigations and analyses of reasons for damage in the Xuzhou mining district.Three reasons are proposed:deep high stress,improper roadway layout and support technology.The stability control countermeasures of the gate group consist of an intensive design technology and responding bolt-mesh-anchor truss support technology.Our research method has been applied at the -1000 m level gate group in Qishan Coal Mine.Suitable countermeasures have been tested by field monitoring. 展开更多
关键词 deep gate group stability intensive design bolt-mesh-anchor truss support
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