河南理工大学学报:自然科学版
河南理工大學學報:自然科學版
하남리공대학학보:자연과학판
JOURNAL OF HENAN POLYTECHNIC UNIVERSITY
2012年
1期
48-53
,共6页
含水松散层%固结%开采沉陷%流-固耦合%渗流
含水鬆散層%固結%開採沉陷%流-固耦閤%滲流
함수송산층%고결%개채침함%류-고우합%삼류
water-bearing alluvium%consolidation%mining subsidence%fluid-mechanical interaction%seepage
为了研究含水松散层固结对地表沉陷的影响,基于固结沉降量对预计参数确定的重要性,分析了影响含水层固结的因素,包括渗透系数、松散层厚度、采动程度和采煤方法.在分析现场实测资料的基础上,采用FLAC3D流-固耦合计算的方法,对覆岩内部位移场和渗流场进行了分析,研究了含水层固结压缩对地表沉降的影响.结果表明不考虑冲积层含水时,地面最大沉陷值为1220mm,考虑冲积层含水时,最大沉陷值为1306mm,下沉量增加86mm.地面沉陷盆地的外缘,沉陷量显著增加,增加量为160mm,最大沉降增加量为7%;走向方向和倾向方向松散层含水条件下均比不含水条件下水平移动量大,走向方向最大相差122 mm,倾向最大相差105 mm.
為瞭研究含水鬆散層固結對地錶沉陷的影響,基于固結沉降量對預計參數確定的重要性,分析瞭影響含水層固結的因素,包括滲透繫數、鬆散層厚度、採動程度和採煤方法.在分析現場實測資料的基礎上,採用FLAC3D流-固耦閤計算的方法,對覆巖內部位移場和滲流場進行瞭分析,研究瞭含水層固結壓縮對地錶沉降的影響.結果錶明不攷慮遲積層含水時,地麵最大沉陷值為1220mm,攷慮遲積層含水時,最大沉陷值為1306mm,下沉量增加86mm.地麵沉陷盆地的外緣,沉陷量顯著增加,增加量為160mm,最大沉降增加量為7%;走嚮方嚮和傾嚮方嚮鬆散層含水條件下均比不含水條件下水平移動量大,走嚮方嚮最大相差122 mm,傾嚮最大相差105 mm.
위료연구함수송산층고결대지표침함적영향,기우고결침강량대예계삼수학정적중요성,분석료영향함수층고결적인소,포괄삼투계수、송산층후도、채동정도화채매방법.재분석현장실측자료적기출상,채용FLAC3D류-고우합계산적방법,대복암내부위이장화삼류장진행료분석,연구료함수층고결압축대지표침강적영향.결과표명불고필충적층함수시,지면최대침함치위1220mm,고필충적층함수시,최대침함치위1306mm,하침량증가86mm.지면침함분지적외연,침함량현저증가,증가량위160mm,최대침강증가량위7%;주향방향화경향방향송산층함수조건하균비불함수조건하수평이동량대,주향방향최대상차122 mm,경향최대상차105 mm.
In order to study water-bearing alluvium consolidation's influence on surface subsidence,the factors influencing water-bearing consolidation,including seepage factor,alluvium thickness,mining degree and mining methods were analyzed based on the importance of consolidation subsidence to determining prediction parameters.Based on analyzing field surveying datum,overburden inner displacement field and seepage field were analyzed by the method of FLAC3D fluid-mechanical interaction calculation.The influence of water-bearing alluvium consolidation on surface subsidence was researched.It is shown that when alluvium does not bear water,maximum surface subsidence is 1 220 mm.However,when alluvium bears water,maximum surface subsidence is 1 306 mm and increment is 86 mm.At the brim of subsidence basin,incremental subsidence is obvious reaching 160 mm and maximum increment percentage is 7%.Further more,for strike and dip of face horizontal movement of water-bearing alluvium was larger than that of no water-bearing alluvium.Maximum difference for strike of face was 122 mm and 105 mm for dip.