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首页> 外文期刊>Energy Conversion & Management >Geothermal energy from flooded mines: Modeling of transient energy recovery with thermohaline stratification
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Geothermal energy from flooded mines: Modeling of transient energy recovery with thermohaline stratification

机译:淹没矿山的地热能:利用热盐层化进行瞬态能量回收的建模

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摘要

Geothermal energy from flooded mines is a high-potential clean energy resource that can provide heating to large communities with power comparable to small-scale power plants. The transient energy recovery process for utilizing this energy resource, however, has not been well understood, especially those involving the heat transfer in mine water with the widely-observed layering phenomenon where the temperature and salinity are stratified. To better understand the transient energy recovery process considering such a layering phenomenon, this study presents a numerical analysis of transient heat extraction from a flooded mine shaft with mine water dominated by thermohaline stratification. The numerical analysis is conducted based on a realistic case using an open-loop heat pump system. The simulation results show that, when normal pumping rates are used, the water temperature available to heat pumps almost keeps unchanged because the transient energy recovery using an open-loop system only leads to a temperature reduction of 0.2-0.3 K. By comparison, the simulation results in this study are consistent with those measured from real demonstration projects, showing the accuracy of the simulations and confirming the high efficiency and reliability of this energy innovation. The modeling results in this study also reveal that heat extraction does not affect the stability of thermohaline stratification when normal pumping rates, e.g.,0.0014-0.03 m(3)/s, are adopted, but will break thermohaline stratification with pumping rates over a hundred times of the commonly-used ones. These findings provide guidelines for future applications at different scales, and the methodology reported in this study can be used to assist the design of the energy recovery systems.
机译:来自淹没矿山的地热能是一种潜在的清洁能源,可以为大型社区提供与小型发电厂相当的电力。然而,对于利用这种能量的瞬态能量回收过程还没有很好地理解,特别是涉及矿井水中的热传递的过程,其具有广泛观察到的分层现象,其中温度和盐度分层。为了更好地了解考虑到这种分层现象的瞬态能量回收过程,本研究提供了以热盐分层为主的矿井水淹没矿井中瞬态热量提取的数值分析。数值分析是根据实际情况使用开环热泵系统进行的。仿真结果表明,使用正常抽水率时,热泵可用的水温几乎保持不变,因为使用开环系统进行的瞬时能量回收只会导致温度降低0.2-0.3K。本研究中的模拟结果与实际演示项目测得的结果一致,表明了模拟的准确性并确认了这种能源创新的高效性和可靠性。该研究的建模结果还表明,采用正常抽水速率(例如0.0014-0.03 m(3)/ s)时,热抽出不会影响热盐分层的稳定性,但是当抽水速率超过100时,将破坏热盐分层。常用次数。这些发现为将来在不同规模下的应用提供了指导,并且本研究报告的方法可用于辅助能量回收系统的设计。

著录项

  • 来源
    《Energy Conversion & Management》 |2019年第11期|111956.1-111956.14|共14页
  • 作者

    Bao Ting; Liu Zhen (Leo);

  • 作者单位

    Michigan Technol Univ Dept Civil & Environm Engn 1400 Townsend Dr Dow 854 Houghton MI 49931 USA|Cent S Univ Minist Educ Key Lab Metallogen Predict Nonferrous Met & Geol 932 Lushan S Rd Changsha 410083 Hunan Peoples R China;

    Michigan Technol Univ Dept Civil & Environm Engn 1400 Townsend Dr Dillman 201F Houghton MI 49931 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mine water; Thermohaline stratification stability; Heat extraction; Pumping rate; Open-loop system;

    机译:矿井水;盐卤分层稳定性;热量提取;抽速;开环系统;

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