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A city-wide investigation on the subsurface temperature evolution and geothermal capacity evaluation
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作者 Liwei Zhang Chun Liu +2 位作者 Bin Shi peter bayer Huan Geng 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第6期3609-3618,共10页
The subsurface urban heat island(UHI)effect can provide latent clean geothermal potentials for cities.Understanding the city-wide subsurface temperature evolution under different land surfaces is significant in making... The subsurface urban heat island(UHI)effect can provide latent clean geothermal potentials for cities.Understanding the city-wide subsurface temperature evolution under different land surfaces is significant in making better use of geothermal energy.This research presents a study of Nanjing to identify the city-wide temperature distribution and evolution characteristics and further estimates the geothermal potential in Nanjing.Low-cost satellite-measured temperatures were used to derive the subsurface temperatures through a liner regression correction method,with higher accuracy verified by measured borehole data.The simulation results indicate that the concrete surface exhibits higher average temperatures than the grassland surface,resulting in relatively higher subsurface temperatures.The deviations of simulated subsurface temperatures are attributed to many factors,including the influence of complex atmospheric conditions on satellite-measured temperature accuracy,land surface heat absorption,and infiltration in the shallower layer.Furthermore,it reveals that the urban areas have 14.7%greater geothermal potential compared to rural areas,due to the subsurface UHI effect.This study provides a potentially efficient and convenient method for the estimation of potential urban geothermal energy. 展开更多
关键词 Field-monitoring Satellite temperature correction Temperature distribution Geothermal capacity evaluation
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南京市浅层地温场研究——基于分布式光纤测温技术 被引量:8
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作者 李济琛 陈明珠 +3 位作者 汤强 刘春 梁立唯 peter bayer 《中国地质》 CAS CSCD 北大核心 2021年第3期939-947,共9页
浅层地热能作为新型能源受到了国际国内的广泛关注,常规的电阻式温度传感器受电磁干扰,不适合长期在野外复杂环境中使用。本文应用抗干扰能力强的分布式光纤测温技术,对南京市19个百米深钻孔进行地温测量,获得了2018年冬季与2019年春季... 浅层地热能作为新型能源受到了国际国内的广泛关注,常规的电阻式温度传感器受电磁干扰,不适合长期在野外复杂环境中使用。本文应用抗干扰能力强的分布式光纤测温技术,对南京市19个百米深钻孔进行地温测量,获得了2018年冬季与2019年春季南京市浅层地下温度分布。综合南京市水文和地质条件,得出结论:浅层地温的变化相对于气温的变化存在着滞后现象;对于同一地点的浅层地温,地下水的流动会使得地温在不同季节出现差异;构造条件显著影响着南京市浅层地温分布。本项研究结果为南京市浅层地热能的利用分区与进一步开发提供参考。 展开更多
关键词 浅层地热能 分布式光纤 地下水 洁净能源工程 南京
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