煤炭工程 ›› 2020, Vol. 52 ›› Issue (3): 88-92.doi: 10.11799/ce202003018

• 研究探讨 • 上一篇    下一篇

陕北浅埋煤层绿色保水开采技术研究

余学义,张冬冬,陈辉,穆驰   

  1. 1. 西安科技大学
    2.
  • 收稿日期:2019-03-29 修回日期:2019-05-30 出版日期:2020-03-10 发布日期:2020-05-11
  • 通讯作者: 张冬冬 E-mail:404911392@qq.com

Research on Green Water Conservation Technology in Shallow Buried Coal Seam in North of Shaanxi Province

  • Received:2019-03-29 Revised:2019-05-30 Online:2020-03-10 Published:2020-05-11

摘要: 王家沟煤矿为陕北典型浅埋煤层矿井,地下煤炭资源开采有可能破坏萨拉乌苏组潜水含水层。为有效的控制导水裂隙发育,最大限度保护地表含水层,基于协调开采的原理,结合力学模型和相似材料模拟试验,对比研究了一次采全高和限高留煤柱两种开采方法导水裂隙发育规律。研究表明,一次采全高条件下导水裂隙呈间歇式变速发育最大高度94m,穿过含水层|限高留煤柱协调开采导水裂隙发育平缓,最大高度60m|关键层的稳定决定着含水层的稳定,限高留煤柱能够显著的控制协调关键层挠曲下沉,有效的抑制导水裂隙发育,实现含水层下绿色保水开采。

关键词: 浅埋煤层, 导水裂隙, 协调开采, 力学模型, 相似模拟

Abstract: The Wangjiagou coal mine is a typical shallow buried coal seam mine in northern Shaanxi. The groundwater is heavily distributed in the Sawaiwusu Formation aquifer, which may cause the aquifer to rupture and destroy the water body. In order to effectively inhibit the development of water-conducting fissures and maximize the protection of surface aquifers, based on the principle of coordinated mining, combined with mechanical models and similar material simulation tests, the coal mining method with limited height and retained coal pillars is used to coordinate the mining of the Wangjiagou coal mine. The development law of water fissure zone was studied.The research shows that, based on the coordinated mining mechanics model, the ultimate span of the main key layer is 75m, the spacing of the coal pillars is 70m, and the LCD<LAB can be kept stable. Under the condition of full mining, the overburden shows the two zones of the falling belt-water guiding fissure zone. Distribution, water-conducting fissure runs through the entire aquifer, and the high-coordinated mining overburden presents a “three-zone” distribution, and the water-conducting fissure is closed at the main key layer; the high-coordinated mining uses the support of the coal pillar to control the movement of the main key layer, and then Control the overlying rock movement, effectively inhibit the development of water-conducting fissures, reduce the height of the water-conducting fissure zone, and achieve green water-retaining mining.

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