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深部花岗岩风化带热储能效浅析))) 以白塔地区新兴地热井为例
引用本文:荣玉伟,胡国庆,徐希强,王新峰. 深部花岗岩风化带热储能效浅析))) 以白塔地区新兴地热井为例[J]. 南水北调与水利科技(中英文), 2017, 0(3): 102-104
作者姓名:荣玉伟  胡国庆  徐希强  王新峰
作者单位:1. 山东省第七地质矿产勘查院, 山东 临沂 276000; 2. 山东科技大学 地质工程学院, 山东 青岛 266590;3. 中国地质调查局 水文地质环境地质调查中心, 河北 保定 071051
基金项目:中国地质大调查项目( 12120113104000) ; 国家自然科学基金( 41240021)
摘    要:地热资源作为一种绿色环保能源对地方经济的可持续发展起到至关重要的作用, 研究区内地热资源与沂沭断裂带有着密切的关系, 区内不同走向断裂纵横交错, 构造裂隙发育, 为地下水的存储、 运移和深循环提供了空间, 沿主断裂径流的深循环地下水受热增温后向其分枝断裂带迁移, 地下热水在泰山群花岗岩风化层及断裂构造破碎带中富集, 故地热资源的勘探应以花岗岩风化层及断裂构造破碎带为重点, 其能效可相当于 3 000 多 t 煤的能量。

关 键 词:地热   深部花岗岩   热储能效   白塔地区

Deep granite weathering zone in thermal energy storage efficiency analysis) In the Emerging Area of geothermal wells Baita an example
RONG Yu-wei,HU Guo-qing,XU Xi-qiang,WANG Xin-feng. Deep granite weathering zone in thermal energy storage efficiency analysis) In the Emerging Area of geothermal wells Baita an example[J]. South-to-North Water Transfers and Water Science & Technology, 2017, 0(3): 102-104
Authors:RONG Yu-wei  HU Guo-qing  XU Xi-qiang  WANG Xin-feng
Affiliation:1. N o. 7 Ex p loration Institute of Geology and M ineral Resources, Liny i 276000, China;2. Geological Engineering College of Shandong University of Science and Technology , Qingdao 266590, China;3. Center f or H y drogeology and Environmental Geology , CGS, Baoding 071051, China
Abstract:Geothermal resources as a green energy for sustainable development of the local economy plays a crucial role, Geothermal resources inthe study area and Yishu fault zone has a close relationship. Different faults criss2cross the region to construct fractured, groundwater storage,transport and deep cycle provides space. Deep groundwater circulation heat along the main fault rupture runoff after warming migrate its bran2ches, underground water enriched in T aiShan group weathered g ranite layer and Fracture Zone in. Exploration of geothermal resources shouldhaunt weathered granite and Fracture Zone, focusing their energy efficiency can be the equivalent of more than 3000 tons of coal energy.
Keywords:geothermal   deep granite   effect of thermal energy storage   Baita
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