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Abstrakty
The Knothe infl uence function method was introduced to China in 1965 and began to abundant research and widely applied from 1980s. Based on the Knothe influence function method, the prediction model of surface movement and deformation of flat seam mining is established, then the calculation programs and drawing software are developed. The relationship between surface movement calculation parameters and geological mining conditions is systematically summarized, and national technical regulations and standards are compiled. The method has been widely applied in special coal mining and got enormous economic benefits, meanwhile, the method is applied in metal mine, oil and gas, groundwater, halite mining and underground engineering. In recent years, the Chinese scholars enrich and develop the probability integral method, and the prediction model of surface movement and deformation with special mining conditions, such as extremely inadequate mining and steeply inclined seam mining is established. Through introducing the Knothe infl uence function method of application in China, the 100th birthday of Professor Knothe and the great contribution to the mining subsidence prediction is commemorated.
Wydawca
Czasopismo
Rocznik
Tom
Strony
137--144
Opis fizyczny
Bibliogr. 50 poz., rys., tab.
Twórcy
autor
- Institute for Mine Surveying and Mining Subsidence Engineering, Shandong University of Science and Technology, Qingdao, PR China
autor
- Liaoning Technical University, Liaoning Fuxin, PR China
autor
- Scientifi c Assistant, Institute of Mine Geology, Shandong University of Science and Technology, Qingdao, PR China
autor
- Institute for Mine Surveying, Mining Subsidence Engineering and Geophysics in Mining, RWTH Aachen University, Germany
autor
- Strata Mechanics Research Institute of the Polish Academy of Sciences (IMG PAN), Kraków, Poland, TU Bergakademie Freiberg, Germany
Bibliografia
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- [4] Baochen L., Guohua L.: The Basic Rule of Surface Movement in Coal Mine [M]. Beijing: China Industry Press, 1965.
- [5] Tianquan L., Jiajun Z.: The Mining of Protective Coal Pillar and the Reinforcement of Ground Buildings [M]. Beijing: China Industry Press, 1966.
- [6] Ministry of Coal Industry. Coal Mine Survey Handbook [K]. Beijing: Coal Industry Press, 1979.
- [7] China University of Mining and Technology. Liaoning Technical University, Jiaozuo Mining Institute. Coal Mine Strata and Surface Movement [M]. Beijing: Coal Industry Press, 1981.
- [8] Beijing Mining Institute of Coal Science Research Institute. The Law and Application of Surface Movement and Overburden Failure of Coal Mine [M]. Beijing: Coal Industry Press, 1981.
- [9] Guoquan Z., Jixian C., Guangrong L., etc.: Coal Mining Under the Building [M]. Beijing: Coal Industry Press, 1981.
- [10] Zhiwei C., Juecheng Z.: Strata Movement and Coal Mining under Three ircumstances [M]. Beijing: Coal Industry Press, 1986.
- [11] Guoqing H., Lun Y., Gengdi L., etc.: Mining Subsidence [M]. Xuzhou: China University of Mining and Technology Press, 1991.
- [12] Guanghan S., Baiying L., Ge W.: Theory and Practice of Special Mining in Mines [M]. Beijing: Coal Industry Press, 1992.
- [13] Xueli F., Wensheng L., Deshen Z. et al.: Theory and Practice of Mining Damage Protection in Northeast China Coal Mining Area [M]. Beijing: Coal Industry Press, 1998.
- [14] Kan W., Jiaxin G., Lingding W. et al.: Integrated Prediction Method of Mining Subsidence [M]. Xuzhou: China University of Mining and Technology Press, 1998.
- [15] Youfeng Z., Kazhong D., Weimin M.: Mine Mining Subsidence Project [M]. Xuzhou: China University of Mining and Technology Press, 2003.
- [16] Huayang D., Jinzhuang W.: Mining Subsidence in Steep Coal Strata [M]. Beijing: China Science and Technology Press, 2005.
- [17] Yan J., Preusse A., Sroka A.: Application of Surface Movement and Mine Mining Damage [M]. Essen: VGE Verlag, 2006.
- [18] Kazhong D., Zhixiang T.: Theory and Practice of Coal Mining under the Building [M]. Xuzhou: China University of Mining and Technology Press, 2009.
- [19] Yonghai T., Zhixin T., Zhigang Z.: Research and Application of Surface Subsidence Law of Fully Mechanized Top Coal Caving Mining [M]. Beijing: Coal Industry Press, 2009.
- [20] Xueyi Y., Enqiang Z.: Mining Damage [M]. Beijing: Coal Industry Press, 2010.
- [21] Song R., Deyi J., Chunhe Y. et al.: Solution Mining Subsidence of Rock Salt and Stable Phase of Cavity [M]. Chongqing: Chongqing University Press, 2012.
- [22] Kazhong D., Zhixiang T., Yan J., et al.: Deformation Monitoring and Subsidence Engineering [M]. Xuzhou: China University of Mining and Technology Press, 2014.
- [23] Yan J., Yongmei X., Yue J., et al.: Theory and Application of Surface Movement and Deformation Prediction [M]. Xuzhou: China University of Mining and Technology Press, 2015.
- [24] Ministry of Coal Industry. Coal Pillar Set and Coal Mining Regulations for Buildings, Water, Railways and Main Wells [S]. Beijing: Coal Industry Press, 1985.
- [25] The State Coal Industry Bureau. Coal Pillar Set and Coal Mining Regulations for Buildings, Water, Railways and Main Wells [S]. Beijing: Coal Industry Press, 2000.
- [26] Technical Appraisal Committee for Coal Mining Damage. Prediction Method of Coal Mining Subsidence (MJ/T2014-0001) [S]. Beijing: Coal Industry Press, 2014.
- [27] National Safety Supervision Administration, the State Coal Mine Safety Supervision Bureau, the National Energy Board, the National Railway Administration. Coal Pillar Set and Coal Mining Regulations for Buildings, Water, Railways and Main Wells [S]. Beijing: Coal Industry Press, 2017.
- [28] Yunjia W., Lixin W., Kazhong D., etc.: 60 Years of Mine Surveying in China 953-2013 [M]. Beijing: Surveying and Mapping Press, 2016.
- [29] Baochen L., Huayang D.: Research Development and Origin of Probability Integral Method [J]. Coal Mining Technology, 2016, 21(2): 1-3.
- [30] Lun Y., Huayang D., Thoughts of Calculation Method of Coal Mining Subsidence in Home [J]. Coal Mining Technology, 2016, 21(2): 7-9, 102.
- [31] Lailiang C., Xiaohua M., Kan W., et al.: Steep Coal Seam Mining Subsidence Predictionon Considering Floor Strata Movement [J]. Chinese Journal of Underground Space and Engineering, 2016, 12(4): 1048-1054.
- [32] Kan W., Jiaxin G., Ming Z., et al.: Some Modifi cations of Using Probability Integral Method To Predicate Model [J]. Journal Of China Coal Society, 1998, 23(1): 33-36.
- [33] Huayang D., Jinzhuang W.: Prediction model for surface movement and deformation induced by sub-critical extraction [J]. Journal Of China Coal Society, 2003, 28(6) 583-587.
- [34] Zhengzhang G., Heping X., Jinzhuang W.: Applying probability distribution density function to predict the surface subsidence caused by subcritical extraction [J]. Journal Of China Coal Society, 2004, 29(2): 155-158.
- [35] Lun Y., Jiyang W., Shiquan Y.: The law of subsidence and calculation method in the case of utmost non-full extraction [J]. The Chinese Journal of Geological Hazard and Control, 2005, 16(1): 81-83.
- [36] Jianfeng Z., Guangli G., Haitao Z. et al.: Present Situation and Prospect of Correction System for Probability Integral Method [J]. Metal Mine. 2008, 379(1): 15-18.
- [37] Wenbing G., Kazhong D., Youfeng Z.: Artifi cial Neural Network Model for Predicting Parameters of Probability-Integral Method [J]. Journal of China University of Mining & Technology, 2004, 33(3): 322-326.
- [38] Fan Y., Fenghai M.: Prediction parameters of surface movement of neural network [J]. The Chinese Journal of Geological Hazard and Control, 2004, 15(1): 102-106.
- [39] Guangli G., Yunjia W.: Study of Robust Determining Parameters Model for Probability-integral Method and its Application [J]. Acta Geodaetica Et Artographic Sinica, 2000, 29(2): 162-165.
- [40] Kan W., Jianming J., Ziqiang D.: Improvement on probability integral method prediction come down quantity [J]. Journal of Liaoning Technical University, 2003, 22(1): 20-22.
- [41] Kazhong D., Dongzhi Z., Zhouquan Z.: The prediction and control of surface subsidence under deep mining conditions [J]. Journal Of China University Of Mining & Technology, 2000, 29(1): 52-55.
- [42] Huaxing Z.: Theory And Technology Of Coal Pillar Mining [D]. Beijing: General Coal Science Research Institute, 1991.
- [43] Zhixiang T., Kazhong D.: Comprehensive Analysis And Application Study On Ground Deformation Prediction Parameters Of Fully-Mechanized Mining With Sublevel Caving [J]. Chinese Journal of Rock Mechanics and Engineering, 2007, 26(5): 1041-1047.
- [44] Yan J., Preusse A., Sroka A., et al.: Influence Of Mining Speed On Surface Structures [C]. Beijing: Proceedings of 34th International Conference on ground Control in Mining, Science Press, 2015, 173-177.
- [45] Yue J., Preusse A., Sroka A., et al.: Effect of face advancing speed on surface structures [C]. Beijing: Proceedings of 35th International conference on ground control in mining (China, 2016), China coal industry publishing house, 2016, 84-87.
- [46] Zhenhe M.: Measurement Of Salt Caves Mining Area [J]. China Salt Industry, 2011, 141(6): 10-13.
- [47] Yan J., Zhuofeng Z., Fengbin W.: Surface movement and deformation monitoring of rock salt water soluble mining [J]. China Salt Industry, 2011, (9): 24-28.
- [48] Yongmei X., Yan J., Yue J., et al.: Prediction of ground subsidence caused by the convergence of rock salt solution cavity [J]. China Salt Industry, 2013, (3): 32-35.
- [49] Yan J., Maoyi T.: Prediction of subsidence caused by exploiting oil and gas. Journal of Liaoning Technical University [J]. 2003, 22(6): 746-748.
- [50] Yan J., Maoyi T.: Mining Subsidence Prediction Mapping and Surveying [J]. 2002, (12), 8-9,67.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-86652eaf-af4e-42b1-8496-b29bfde7a214