采矿专业英语外文翻译---综放开采巷旁充填沿空留巷技术研究
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1、 2300 单词, 11860 英文字符 ,3290 汉字 原 文 : Study on gob-side entry retaining technique with roadside packing in longwall top-coal caving technology Abstract: Pointed out some technical difficulties of gob-side entry retaining with roadside packing in longwall top-coal caving technology (LTCT), and analyzed
2、 the function mechanism of roadside filling body. Theory analysis shows the mechanical properties of highwater material fit for the feature of deformation of gob-side entry retaining in LTCT, and gob-side entry retaining in LTCT face is one of effective ways to increase the recovery ratio of mining
3、district. Key words : gob-side entry retaining, roadside packing, longwall top-coal caving, support resistance Introduction Now the longwall top-coal caving technology (LTCT) in China has shown its advantages such as advanced technique, small investment, low cost, high efficiency in production and g
4、ood safety and the like. The LTCT will be adopted widely in view of the abundant reserves of thick seam in China. However,the mining district recovery ratio in LTCT is still very low because of some restricts from LTCT process. The statistics shows that the coal loss caused by coal pillar is about 9
5、.5% of that of the whole district and that a great number of gate-roads by LTCT are protected by wide chain pillars, resulting a plenty of coal lost and limiting seriously the further increase of the coal recovery ratio in LTCT. According to the features of the LTCT, lots of in-situ tests and theore
6、tical researches have been done, and conclusion is of momentous significance for increasing district recovery ratio, decreasing tunnel drivage rate and releasing exca-vations replacement to realize non-pillar mining. At the same time, the sustainable development of the LTCT can be promoted further.
7、Gob-side entry retaining with roadside filling is one of the ways to realize non-pillar mining in LTCT. 1 Several technical problems (1) With the great height of coal seam mined out once, the scope of ground behaviors increase accordingly. Because of the increase of the mining height and the superpo
8、sition of the abutment pressure caused by mining from face and neighbor mined areas, the surrounding rock stress of the roadway increases, and the maximum value of it is 5 to 6 times of in-situ rocks. In LTCT, the distance influenced by the front abutment pressure of working face gets longer, moreov
9、er, the mining roadways are fully extracted in coal seam, so the ground pressure behaviors is sharp. It is well known that the roof-to-floor convergence of the gob-side entry is in direct proportion to the shearing height. When thick seam is extracted out once, the roof-to-floor convergence of the r
10、oadway is several times of multi-slicing method, and the reduction of cross section area of roadway ahead of working face in LTCT is very large. If a proper support pattern and a advance trestle timbering arent adopted, the deformation of the gob-side entry will rapidly increase and even be out of c
11、ontrol, resulting the roadway not to be used normally in next sector. (2) What is on the top of the gob-side entry is coal seam. Being low strength, the top-coal is crushed easily to fall into goaf, which often leads to a unsupported roof appearing above the roadway. So, it is anessential and diffic
12、ult issue to keep the stability of the top-coal of roadway. (3) Long-term research on the ground pressure behavior rule of gob-side entry in LTCT indicates:top-coal, immediate roof and main roof all present as overhanging beams, the bearing point of which is the coal wall. With approaching working f
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