矿业安全与环保
礦業安全與環保
광업안전여배보
MINING SAFETY & ENVIRONMENTAL PROTECTION
2015年
2期
80-83
,共4页
相对隔水层%裂隙率%孔隙结构%充填程度
相對隔水層%裂隙率%孔隙結構%充填程度
상대격수층%렬극솔%공극결구%충전정도
relative water-resisting layer%percentage of fissures%pore structure%degree of filling
针对龙固煤矿21煤开采受奥陶系岩溶含水层威胁的问题,系统分析研究了奥陶系顶部碳酸盐岩的岩性、裂隙发育程度、充填程度、孔隙结构、钻孔涌水量等特性。研究结果表明:①矿区奥陶系顶部存在约60 m厚的相对隔水层,由裂隙发育且充填率较高的八陡组石灰岩和部分裂隙不发育的阁庄组白云岩构成;②奥陶系顶部八陡组相对隔水层裂隙率为2%~9%,阁庄组相对隔水层裂隙率为2%~3%,相对隔水层残留裂隙较少且消压阻水作用明显;③奥陶系顶部碳酸盐岩孔隙直径绝大多数小于30μm,孔隙连通性差,有效孔喉比例小,天然条件下渗流能力较差;④出水钻孔均位于断层或者岩层裂隙发育等区域,断层、岩层破碎等导水通道是相对隔水层破坏的主要区域,也是21煤开采重点探测防治部位;⑤龙固煤矿奥陶系顶部存在60 m厚的相对隔水层,可以为21煤安全开采提供一定的保障。
針對龍固煤礦21煤開採受奧陶繫巖溶含水層威脅的問題,繫統分析研究瞭奧陶繫頂部碳痠鹽巖的巖性、裂隙髮育程度、充填程度、孔隙結構、鑽孔湧水量等特性。研究結果錶明:①礦區奧陶繫頂部存在約60 m厚的相對隔水層,由裂隙髮育且充填率較高的八陡組石灰巖和部分裂隙不髮育的閣莊組白雲巖構成;②奧陶繫頂部八陡組相對隔水層裂隙率為2%~9%,閣莊組相對隔水層裂隙率為2%~3%,相對隔水層殘留裂隙較少且消壓阻水作用明顯;③奧陶繫頂部碳痠鹽巖孔隙直徑絕大多數小于30μm,孔隙連通性差,有效孔喉比例小,天然條件下滲流能力較差;④齣水鑽孔均位于斷層或者巖層裂隙髮育等區域,斷層、巖層破碎等導水通道是相對隔水層破壞的主要區域,也是21煤開採重點探測防治部位;⑤龍固煤礦奧陶繫頂部存在60 m厚的相對隔水層,可以為21煤安全開採提供一定的保障。
침대룡고매광21매개채수오도계암용함수층위협적문제,계통분석연구료오도계정부탄산염암적암성、렬극발육정도、충전정도、공극결구、찬공용수량등특성。연구결과표명:①광구오도계정부존재약60 m후적상대격수층,유렬극발육차충전솔교고적팔두조석회암화부분렬극불발육적각장조백운암구성;②오도계정부팔두조상대격수층렬극솔위2%~9%,각장조상대격수층렬극솔위2%~3%,상대격수층잔류렬극교소차소압조수작용명현;③오도계정부탄산염암공극직경절대다수소우30μm,공극련통성차,유효공후비례소,천연조건하삼류능력교차;④출수찬공균위우단층혹자암층렬극발육등구역,단층、암층파쇄등도수통도시상대격수층파배적주요구역,야시21매개채중점탐측방치부위;⑤룡고매광오도계정부존재60 m후적상대격수층,가이위21매안전개채제공일정적보장。
To counter to the threat of the Ordovician karst aquifer during the mining of 21st coal seam in Longgu Mine, systematic analysis and research were made in this paper on the lithological property, the development degree of fissures, the filling degree, the structural characteristics of pores, the water inflow from boreholes and so on of the carbonate rock on the top of the Ordovician system. Research results showed that:①There is a relative water-resisting layer with the thickness about 60 m on the top of the Ordovician system, which was composed of Badou limestone stratum with developed fissures and high filling rate and Gezhuang dolomite stratum with nondevelopment of partial fissures;②The fissure percentage of the relative water-resisting layer of BADOU stratum and GEZHUANG on the top of Ordovician system is 2% ~9% and 2% ~3% respectively, with less residual fissures in the relative water-resisting layer and abvious pressure eliminating and water blocking effect;③ The diameter of most pores of the carbonate rock on the top of Ordovician system is less than 30μm, with poor connectivity among them, small effective pore-throat ratio and bad seepage capacity under natural condition;④Drain holes are all located in faults or fractured zones, the water flowing channels such as faults and broken rock are the main zones where the relative water-resisting layer is fractured, and they are also the places need to be detected and controlled during the mining of 21 st coal seam;and⑤There is a relative water-resisting layer in 60 m thick on the top of Ordovician system in Longgu Mine, which can provide a certain protection for the safe mining of 21st coal seam.