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
2013年
3期
437-442,448
,共7页
李子文%林柏泉%郝志勇%高亚斌%刘非非
李子文%林柏泉%郝誌勇%高亞斌%劉非非
리자문%림백천%학지용%고아빈%류비비
多孔介质%孔隙度%分形维数%压汞实验
多孔介質%孔隙度%分形維數%壓汞實驗
다공개질%공극도%분형유수%압홍실험
porous media%porosity%fractal dimension%mercury injection experiment
煤体是一种多孔介质,其内部孔隙结构十分复杂,准确评价煤体的孔隙特征对研究瓦斯的吸附解吸和高效瓦斯抽采具有重要意义。根据分形理论,研究了一种描述多孔介质孔隙空间分布的随机分形模型,并根据其构造方法,建立了煤体多孔介质孔隙度和分形维数之间的关系。通过压汞实验,验证了分形模型的正确性。对煤体多孔介质孔隙度进行了分形描述,结果表明:分形维数决定了孔隙度,分形维数越大,孔隙度越小;观测尺度越小,孔隙度越大,同一阶次孔隙平均直径越小,孔隙度越小,同一阶次孔隙数量越少,孔隙度越小;相同孔隙度条件下的孔径分布不尽相同,这也导致了瓦斯流动和吸附解吸规律的不同。因此,煤体多孔介质的分形维数反映了煤体内部孔径分布特征,对研究煤体孔隙类型和探讨煤层内瓦斯流动有重要意义。
煤體是一種多孔介質,其內部孔隙結構十分複雜,準確評價煤體的孔隙特徵對研究瓦斯的吸附解吸和高效瓦斯抽採具有重要意義。根據分形理論,研究瞭一種描述多孔介質孔隙空間分佈的隨機分形模型,併根據其構造方法,建立瞭煤體多孔介質孔隙度和分形維數之間的關繫。通過壓汞實驗,驗證瞭分形模型的正確性。對煤體多孔介質孔隙度進行瞭分形描述,結果錶明:分形維數決定瞭孔隙度,分形維數越大,孔隙度越小;觀測呎度越小,孔隙度越大,同一階次孔隙平均直徑越小,孔隙度越小,同一階次孔隙數量越少,孔隙度越小;相同孔隙度條件下的孔徑分佈不儘相同,這也導緻瞭瓦斯流動和吸附解吸規律的不同。因此,煤體多孔介質的分形維數反映瞭煤體內部孔徑分佈特徵,對研究煤體孔隙類型和探討煤層內瓦斯流動有重要意義。
매체시일충다공개질,기내부공극결구십분복잡,준학평개매체적공극특정대연구와사적흡부해흡화고효와사추채구유중요의의。근거분형이론,연구료일충묘술다공개질공극공간분포적수궤분형모형,병근거기구조방법,건립료매체다공개질공극도화분형유수지간적관계。통과압홍실험,험증료분형모형적정학성。대매체다공개질공극도진행료분형묘술,결과표명:분형유수결정료공극도,분형유수월대,공극도월소;관측척도월소,공극도월대,동일계차공극평균직경월소,공극도월소,동일계차공극수량월소,공극도월소;상동공극도조건하적공경분포불진상동,저야도치료와사류동화흡부해흡규률적불동。인차,매체다공개질적분형유수반영료매체내부공경분포특정,대연구매체공극류형화탐토매층내와사류동유중요의의。
Coal is a kind of porous media, in which the pore structure is very complex. Thus, the accu-rate evaluation of the pore characteristics of coal mass has great significance to research the adsorption and desorption of gas and the efficient gas drainage. In this paper, based on fractal theory, a kind of random fractal model which can be use to describe the pore space distribution of porous was researched, and on the basis of its construction method, the relationship between porous media porosity and fractal dimension was established. In addition, by mercury injection experiment, the correctness of fractal model was verified, and the fractal description of porosity for porous media of coal mass was carried out. The results show that porosity is determined by fractal dimension, and the porosity decreases with the increase of fractal dimension. Meanwhile, the smaller the observing scale, the bigger the porosity, the smaller the average diameter of the same order pore, the smaller the porosity, and the less the amount of the same order pore, the smaller the porosity. Moreover, the pore size distribution can be different with the same porosity, which leads to different gas flow, and adsorption and desorption laws. Therefore, the fractal dimension can reflect the characteristics of pore size distribution in coal mass, which has great significance to the study of pore types of coal mass and gas flow in the coal seam.