A novel multi-level and multi-branch geothermal well system for synergetic geothermal energy exploitation and mine heat hazard prevention: numerical investigation

IF 3.5 2区 工程技术 Q3 ENERGY & FUELS
Baiyi Li , Luwei Ding , Jixiong Zhang , Meng Li , Hengfeng Liu , Junmeng Li
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Abstract

With the increasing of mining depth, heat hazard faced by deep coal mines is increasingly prominent. The inability to carry out mining work in high-temperature environments limits the exploitation of high-quality coal resources in deep areas. In this research, the idea of a synergetic geothermal exploitation method and mine heat hazard prevention was proposed to liberate the high temperature coal resources. The key of this study is to exploit geothermal resources while achieving efficient cooling of coal seams and ensure the safety of water inrush in this process. Therefore, based on actual conditions of mines in eastern China, the multilevel directional branch layout modes of channels were proposed and the parametric range of water injection-endangering safety was determined. Numerical Fluid Mechanics and heat transfer models of underground mining areas were developed in COMSOL Multiphysics by taking single channels as examples. Thereafter, influences of pressure, temperature, and level spacing of water injection on the temperature reduction effect of the model and heat adsorption effect were revealed. The results showed that higher water injection pressure, lower water injection temperature, and small-interference level spacing in a safety range can well demonstrate the temperature reduction effect of the model. On this basis, the optimal scheme can be determined to help obtain the number of channel branches in a full range. The developed intact numerical model in the application zone has three channel branches and the average temperature of coal seams in the case of 1.8 years is reduced below 26 °C. The results proved that this scheme delivers efficient temperature-reduction performance.
一种新型多级多支路地热井系统协同地热能开发与矿井热害防治研究
随着开采深度的增加,深部煤矿面临的热危害日益突出。不能在高温环境下进行采矿工作,限制了深部优质煤炭资源的开采。本研究提出了地热开采与矿井热害防治协同开发的思路,以解放高温煤炭资源。本研究的关键是在开发地热资源的同时实现煤层的高效冷却,并保证突水安全。因此,根据华东地区矿山实际情况,提出了多级定向分支通道布置模式,确定了注水危及安全的参数范围。以单通道为例,在COMSOL Multiphysics中建立了井下流体力学和传热数值模型。随后,揭示了注水压力、注水温度和注水液面间距对模型降温效果和热吸附效果的影响。结果表明:在一定的安全范围内,较高的注水压力、较低的注水温度和较小的干涉层间距都能很好地体现模型的降温效果。在此基础上,可以确定最优方案,以帮助获得全范围的通道分支数。应用区内开发的完整数值模型具有3个通道分支,1.8年的煤层平均温度降至26℃以下。结果表明,该方案具有较好的降温性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Geothermics
Geothermics 工程技术-地球科学综合
CiteScore
7.70
自引率
15.40%
发文量
237
审稿时长
4.5 months
期刊介绍: Geothermics is an international journal devoted to the research and development of geothermal energy. The International Board of Editors of Geothermics, which comprises specialists in the various aspects of geothermal resources, exploration and development, guarantees the balanced, comprehensive view of scientific and technological developments in this promising energy field. It promulgates the state of the art and science of geothermal energy, its exploration and exploitation through a regular exchange of information from all parts of the world. The journal publishes articles dealing with the theory, exploration techniques and all aspects of the utilization of geothermal resources. Geothermics serves as the scientific house, or exchange medium, through which the growing community of geothermal specialists can provide and receive information.
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