采矿与安全工程学报
採礦與安全工程學報
채광여안전공정학보
JOURNAL OF MINING AND SAFETY ENGINEERING
2015年
3期
491-497
,共7页
林志斌%李元海%高文艺%张顺金%桂常林
林誌斌%李元海%高文藝%張順金%桂常林
림지빈%리원해%고문예%장순금%계상림
透明岩体%数字照相%PFC3D%变形破裂
透明巖體%數字照相%PFC3D%變形破裂
투명암체%수자조상%PFC3D%변형파렬
transparent rock%digital photography%PFC3D%deformation and fracture
为获得高应力作用下岩体内部的变形破裂时空演化规律,以平煤集团的一条深埋巷道为背景,分别采用透明岩体相似材料和三维离散颗粒流软件PFC3D对其开挖过程进行物理模拟和数值模拟,并在获得岩体内部变形破裂随开挖时间的发展演化规律的基础上,提出深埋圆形巷道的支护对策。研究结果表明:1)本文提出的透明岩体实验方法能够有效获得深部岩体的内部变形破裂时空演化规律。2)巷道顶底板处的岩体径向位移y均与其距巷道表面的距离x呈指数衰减关系;围岩变形在巷道刚开挖通过的1~2h内增长速度最快,当开挖通过2h后,如不进行后续推进开挖,围岩变形发展就基本保持稳定。3)巷道开挖后,巷道顶底板处的岩体均不发生破裂,而巷道两帮岩体则在拱腰处先出现剪切滑移破裂并随时间逐渐往深部和顶底板方向扩展。
為穫得高應力作用下巖體內部的變形破裂時空縯化規律,以平煤集糰的一條深埋巷道為揹景,分彆採用透明巖體相似材料和三維離散顆粒流軟件PFC3D對其開挖過程進行物理模擬和數值模擬,併在穫得巖體內部變形破裂隨開挖時間的髮展縯化規律的基礎上,提齣深埋圓形巷道的支護對策。研究結果錶明:1)本文提齣的透明巖體實驗方法能夠有效穫得深部巖體的內部變形破裂時空縯化規律。2)巷道頂底闆處的巖體徑嚮位移y均與其距巷道錶麵的距離x呈指數衰減關繫;圍巖變形在巷道剛開挖通過的1~2h內增長速度最快,噹開挖通過2h後,如不進行後續推進開挖,圍巖變形髮展就基本保持穩定。3)巷道開挖後,巷道頂底闆處的巖體均不髮生破裂,而巷道兩幫巖體則在拱腰處先齣現剪切滑移破裂併隨時間逐漸往深部和頂底闆方嚮擴展。
위획득고응력작용하암체내부적변형파렬시공연화규률,이평매집단적일조심매항도위배경,분별채용투명암체상사재료화삼유리산과립류연건PFC3D대기개알과정진행물리모의화수치모의,병재획득암체내부변형파렬수개알시간적발전연화규률적기출상,제출심매원형항도적지호대책。연구결과표명:1)본문제출적투명암체실험방법능구유효획득심부암체적내부변형파렬시공연화규률。2)항도정저판처적암체경향위이y균여기거항도표면적거리x정지수쇠감관계;위암변형재항도강개알통과적1~2h내증장속도최쾌,당개알통과2h후,여불진행후속추진개알,위암변형발전취기본보지은정。3)항도개알후,항도정저판처적암체균불발생파렬,이항도량방암체칙재공요처선출현전절활이파렬병수시간축점왕심부화정저판방향확전。
To obtain spatio-temporal evolution rule of deformation and fracture in the rock under high pressure stress, set in a deep roadway of Pingdingshan Coal Mining Group, physical and numerical si-mulation of excavation process has been performed by using transparent rock-similar materials and three-dimensional particle flow code software called PFC3D. The evolution rule of deformation and fracture in the rock changing with excavation process has been acquired. On this basis, supporting measures of deep circular roadway have been put forward. Research results are as follows:1) The expe-rimental method of transparent rock in this paper can effectively obtain the spatio-temporal evolution law of the internal deformation and cracking in deep rock mass. 2) Rock radial y-displacement at the roof and floor of model roadway decreases in an exponential relationship with the distance x from the roadway surface;after excavating, the deformation of surrounding rock grows fastest within one or two hours, and the deformation keeps basically stable two hours later without further excavation. 3) Rocks at the roof and floor of roadway don’t break after excavation, while shearing slippage fracture of rocks at the two sides appears in the hance and gradually expands into great depth in the direction of roof and floor with the passage of time.