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运用分布式水文模型模拟采煤沉陷区的水文循环。

Simulating the hydrologic cycle in coal mining subsidence areas with a distributed hydrologic model.

机构信息

State Key Laboratory of Simulation and Regulation of Water Cycles in River Basins, China Institute of Water Resources and Hydropower Research, Beijing, 100038, P. R. China.

出版信息

Sci Rep. 2017 Jan 20;7:39983. doi: 10.1038/srep39983.

Abstract

Large-scale ground subsidence caused by coal mining and subsequent water-filling leads to serious environmental problems and economic losses, especially in plains with a high phreatic water level. Clarifying the hydrologic cycle in subsidence areas has important practical value for environmental remediation, and provides a scientific basis for water resource development and utilisation of the subsidence areas. Here we present a simulation approach to describe interactions between subsidence area water (SW) and several hydrologic factors from the River-Subsidence-Groundwater Model (RSGM), which is developed based on the distributed hydrologic model. Analysis of water balance shows that the recharge of SW from groundwater only accounts for a small fraction of the total water source, due to weak groundwater flow in the plain. The interaction between SW and groundwater has an obvious annual cycle. The SW basically performs as a net source of groundwater in the wet season, and a net sink for groundwater in the dry season. The results show there is an average 905.34 million m per year of water available through the Huainan coal mining subsidence areas (HCMSs). If these subsidence areas can be integrated into water resource planning, the increasingly precarious water supply infrastructure will be strengthened.

摘要

采煤及随后的注水引起的大规模地面沉降导致严重的环境问题和经济损失,特别是在潜水位较高的平原地区。阐明沉降区的水文循环对环境修复具有重要的实际价值,并为沉降区水资源开发利用提供科学依据。本文提出了一种模拟方法,用于描述基于分布式水文模型开发的河槽-沉降区-地下水模型(RSGM)中沉降区水(SW)与几个水文因素之间的相互作用。水均衡分析表明,由于平原地区地下水流动较弱,SW 对地下水的补给仅占总水源的一小部分。SW 与地下水之间的相互作用具有明显的年周期。SW 在雨季基本上是地下水的净补给源,而在旱季则是地下水的净汇。结果表明,淮南采煤沉陷区(HCMSs)每年可提供 9.0534 亿立方米的水。如果这些沉陷区能够纳入水资源规划,日益脆弱的供水基础设施将得到加强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84d8/5247746/9ffc01894b0c/srep39983-f1.jpg

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