矿业安全与环保
礦業安全與環保
광업안전여배보
Mining Safety & Environmental Protection
2015年
5期
108-111
,共4页
赵兵朝%同超%王文彬%冯文生
趙兵朝%同超%王文彬%馮文生
조병조%동초%왕문빈%풍문생
黄土沟壑区%坡体稳定性%基采比%基载比%地表损害特征
黃土溝壑區%坡體穩定性%基採比%基載比%地錶損害特徵
황토구학구%파체은정성%기채비%기재비%지표손해특정
loess hilly area%stability of slope%ratio of bedrock thickness and mining height%ratio of bedrock thickness and overburden thickness%surface damage characteristics
为进一步分析和揭示黄土沟壑区煤层开采损害特征形成的机理,在分析影响黄土沟壑区的采矿、地质条件及开采损害特征的基础上,分析了影响黄土沟壑区开采损害特征的3个关键因素:黄土沟壑区坡体稳定性、基采比和基载比,并以其为关键参数,分析了不同基采比和基载比条件下的覆岩破坏形态,揭示了黄土沟壑区煤层开采损害特征形成的机理. 通过工程实例,验证了以基采比、基载比和坡体自身稳定性为关键参数进行分析的黄土沟壑区煤层开采地表损害特征的可靠性,可为进一步研究黄土沟壑区条件下煤层开采地表损害特征的形成机理提供依据.
為進一步分析和揭示黃土溝壑區煤層開採損害特徵形成的機理,在分析影響黃土溝壑區的採礦、地質條件及開採損害特徵的基礎上,分析瞭影響黃土溝壑區開採損害特徵的3箇關鍵因素:黃土溝壑區坡體穩定性、基採比和基載比,併以其為關鍵參數,分析瞭不同基採比和基載比條件下的覆巖破壞形態,揭示瞭黃土溝壑區煤層開採損害特徵形成的機理. 通過工程實例,驗證瞭以基採比、基載比和坡體自身穩定性為關鍵參數進行分析的黃土溝壑區煤層開採地錶損害特徵的可靠性,可為進一步研究黃土溝壑區條件下煤層開採地錶損害特徵的形成機理提供依據.
위진일보분석화게시황토구학구매층개채손해특정형성적궤리,재분석영향황토구학구적채광、지질조건급개채손해특정적기출상,분석료영향황토구학구개채손해특정적3개관건인소:황토구학구파체은정성、기채비화기재비,병이기위관건삼수,분석료불동기채비화기재비조건하적복암파배형태,게시료황토구학구매층개채손해특정형성적궤리. 통과공정실례,험증료이기채비、기재비화파체자신은정성위관건삼수진행분석적황토구학구매층개채지표손해특정적가고성,가위진일보연구황토구학구조건하매층개채지표손해특정적형성궤리제공의거.
In order to further reveal the formation mechanism of the mining-induced damage characteristics in loess hilly area, analysis was made on the key factors affecting the mining-induced damage characteristics such as the slope stability, the ratio of bedrock thickness and mining height and the ratio of bedrock thickness and overburden thickness based on the analysis of the mining and geological conditions and mining-induced damage characteristics, and by taking these factors as key parameters, analysis was also carried out on the failure form of the overburden strata with different ratio of the bedrock thickness and mining height and ratio of the bedrock thickness and overburden thickness, which revealed the formation mechanism of the mining-induced damage characteristics in the loess hilly area. In-situ engineering practice results showed that it was reliable to get the surface damage characteristics with these key parameters, which provided basis for further studying the formation mechanism of the mining-induced damage characteristics in the loess hilly area.