Диссертация (1172988), страница 31
Текст из файла (страница 31)
7(5). p. 4347.78.Fu L., Shen R. Selection of CBM drilling & completion methods by hierarchicalanalysis. Oil Drilling & Production Technology. 2011. 33(4). p. 10-14.79.Mazumder S., Jiang J., Sharma V., Sugiarto I. Production Data Analysis of CBMWells in Surat Basin. 2013. SPE 167076-MS.80.Queensland’s petroleum and coal seam gas 2015-16.
Queensland Department ofNatural Resources and Mines. 2017.81.Gatens M. Coalbed Methane Development: Practices and Progress in Canada. 2005.Petroleum Society of Canada. PETSOC-05-08-WPC2.82.Palmer I. Coalbed methane completions: A world view. International Journal of CoalGeology. 2010. 82. p. 184-195.83.Li X., Wang Z., Zhang J., Wang K., et al. Optimization of Branch Spacing for Multilateral Horizontal Well in CBM Reservoirs.
Science Technology and Engineering.2012. 12(8). p. 1885-1888.84.Li Y., Tang D. Characteristics of Structural Controlled Coalbed Methane in EastMargin of Ordos Basin. Coal Science and Technology. 2014. 42(6). p. 112-116.85.Ouyang Y., Sun B., Wang B., Tian W., et al.
CBM sealing system and its relationshipwith CBM enrichment. Natural Gas Industry. 2016. 36(10). p. 19-27.86.197Wang S. CBM development well type for steep seam in Fukang Baiyanghe miningarea,Xinjiang. Journal of China Coal Society. 2014. 39(9). p. 1914-1918.87.Palmer I., Mansoori J. How Permeability Depends on Stress and Pore Pressure inCoalbeds: A New Model.
1998. SPE 52607-PA.88.Harpalani S., Schraufnagel R.A. Influence of Matrix Shrinkage and Compressibilityon Gas Production From Coalbed Methane Reservoirs'. 1990. SPE 20729-MS.89.Gray I. Reservoir Engineering in Coal Seams: Part 1-The Physical Process of GasStorage and Movement in Coal Seams. 1987. SPE 12514-PA.90.Fu X., Qin Y. Physical and numerical simulations of permeability of coal reservoirsin central and southern part of the Qinshui Basin, Shanxi. Scientia Geologica Sinica.2003. 38(2). p. 221-229.91.Paul S., Chatterjee R.
Determination of in-situ stress direction from cleat orientationmapping for coal bed methane exploration in south-eastern part of Jharia coalfield,India. International Journal of Coal Geology. 2011. 87(2). p. 87-96.92.Ji T., Yang D. Geological Condition Evaluation of CBM in Qinshui Basin. CoalGeology of China.
2007. 19(5). p. 28-30, 61.93.Ворошилов В.Г. Изотермическое исследование сорбционных свойств угольногопласта К12 на участке Талдыкудукский Карагандинского угольного бассейна.Проблемы геологии и освоения недр. Томск, Россия. 2017. С. 155-156.94.Mora C.A., Wattenbarger R.A., McKetta S. Comparison of Computation Methods forCBM Performance. 2009.
Petroleum Society of Canada. PETSOC-09-04-42.95.Mavor M.J., Vaughn J.E. Increasing Coal Absolute Permeability in the San Juan BasinFruitland Formation. 1998. SPE 39105-PA.96.Li J., Liu F. Desorption characteristics of coalbed methane reservoirs and affectingfactors. Petroleum Exploration and Development. 2008. 35(1). p. 52-58.97.Thakur P., Schatzel S., Aminian K. Coal Bed Methane: From Prospect to Pipeline (1stEdition). Elsevier.
2014, p. 440.98.Li Z., Kang Y., Jiang S., Zhang B., et al. Analysis on major factors affected toadsorption time of high rank coal in Qinshui Basin. Coal Science and Technology.2017. 45(2). p. 115-121.99.198Liu Y., Yang K. Adsorption characteristics of coal reservoirs in key block of QinshuiBasin and its influencing factors.
Clean Coal Technology. 2014. 20(1). p. 49-53.100. Li X., Si S. Coalbed gas desorption characteristics of coal reservoir in China. CoalGeology & Exploration. 2004. 32(2). p. 27-29.101. Ma J., Wang B. Adsorption Property of High-rank Coal. Natural Gas Technology.2008. 2(6). p. 31-34.102. Sun Lidong Z.Y. Research on Effect of Pressure, Geo-temperature and Stress Fieldson Permeability of Coalbed-gas-bearing Seams in Qinshui Basin.
Journal ofShandong University of Science and Technology. 2007. 26(3). p. 12-14, 31.103. Reeves S., Gonzalez R. Measurement and Prediction of Single- and MultiComponent Methane, Carbon Dioxide and Nitrogen Isotherms for U.S. Coals.Internationale Coalbed Methane Symposium. 2005.104. Peng L., Qiao L., Gong M., Gong Y. Factors affecting the production performance ofcoalbed methane wells with multiple-zone. Journal of China Coal Society. 2014.39(10). p. 2060-2067.105. Дияшев P.H. Совместная разработка нефтяных пластов. М.: Недра, 1984. — 208с.106.
Huang H., Sang S., Miao Y., Song H., et al. Drainage control of single vertical wellwith multi-hydraulic fracturing layers for coalbed methane development. Journal ofChina Coal Society. 2014. 39(Supp. 2). p. 422-431.107. Ni X., Su X., Li G. Feasibility of Multi-layer Drainage for No 3 and No 15 CoalSeams in the Fanzhuang Area. Natural Gas Geoscience.
2010. 21(1). p. 144-149.108. Xiong T., Sun G., Chi B., Sun P. Feasibility Study of Separate Layer Fracturing andMulti-layer Drainage for CBM in Sange Area, Eastern Margin of Ordos Basin. CoalGeology of China. 2013. 25(12). p. 52-54.109. Xie X., Li X., Chen Z., Qin X., et al. Research on the feasibility of layered fractureand commingled water drainage & gas production for No.2 and No.10 coal seams inYanchuannan area. Reservoir Evaluation and Development.
2011. 1(3). p. 65-69.110. Huang L., Hu Q., Guo Y., Zhou J. Discussion on the feasibility of multi-layercombined gas production in Shouyang Block, Qinshui Basin. Natural Gas Technology199and Economy. 2017. 11(2). p. 21-25.111. Xie X., Zhang W. Factor Analysis of Combining Production of Coal Bed Methane inBaiyanghe Block. Science and Technology of West China. 2014. 13(3).
p. 29-31.112. Zhang S., Guo H. Individual Pressure Fracturing and Combined Mining Technologyof Coal Bed Methane Wells in Panzhuang Mine and Application. Coal Engineering.2014. 46(5). p. 51-56.113. ЗакировР.Х.Рольгеолого-гидродинамическогомоделированияприпроектировании разработки нефтяных месторождений.
Геотехнефтегаз. 2009.4(32). С. 34-36.114. БахтийН.С.,АбдулинаМ.В.Гидродинамическоемоделированиесиспользованием программного обеспечения «Техсхема». Тюменское отделение«СургутНИПИнефть», ОАО «Сургутнефтегаз». 2016. — 273 с.115. Садыгов Б.М. Гидродинамическое моделирование как одна из эффективныхтехнологий при проектировании, разработке и эксплуатации нефтяных игазовыхместорождений.Интеллектуальныетехнологииитехникавпроизводстве и промышленности. Омск, Россия. 18 октября. 2017. С.
84-90.116. Аль-Джубори А., Джонстон Ш., Бойер Ч., Ламберт С.У. Метан угольныхпластов - чистая энергия для всего мира. Нефтегазовое Обозрение. 2009. 21(2).С. 4-17.117. Li D., Zhang S. Effect simulation of horizontal well fracturing through strata basedon coal seam permeability anisotropy test. Acta Petrolei Sinica. 2015. 36(8). p. 988994.118. Wang H., Shi X., Ganghuyage, Tang Y. Characteristics of fillings in cracks of seamand influences to seam permeability.
Coal Science & Technology. 2016. 44(9). p. 115121.119. Zhang Y., Meng Z., Liu H., Yang Y. Dynamic model for bottomhole flowing pressurein initial stage of CBM wells drainage and its application. Coal Geology &Exploration. 2016. 44(2). p. 29-33.120. Wu C., Zhang X., Liu Q.
Typical indexes analysis of different drainage phases forCBM U-shaped well in southern Shizhuang Block of Qinshui Basin. Coal Science200and Technology. 2015. 43(2). p. 123-126.121. Hu Y., Zhang S., Gao Z., Li D., et al. Optimization of hole bottom fluid pressure dropsystem in CBM wells based on Fuzzy Mathematical Method. Coal Science &Technology.
2015. 43(3). p. 64-67,72.122. Rao M., Jiang S. Analysis on Drainage Techniques of Coalbed Methane Well. ChinaCoalbed Methane. 2010. 7(1). p. 22-25.123. Liu S., Zhang X., Yuan W., Tian X. Regularity of coal powder production andconcentration control method during CBM well drainage. Journal of China CoalSociety. 2012. 37(Supp. 2). p. 412-415.124.
Clarkson C.R., Bustin M. Coalbed Methane: Current Evaluation Methods, FutureTechnical Challenges. 2010. SPE 131791-MS.125. Yuan Z., Liu P. Experiment research of change law and control factor on gas phasepermeability of coal. The 6th National Natural Gas Reservoir High EfficiencyDevelopment Technology Seminar. Beijing, China. 2015.
p. 214-219.126. Ayers W.B. Coalbed gas systems, resources, and production and a review ofcontrasting cases from the San Juan and Powder River Basins. AAPG Bulletin. 2002.86(11). p. 1853-1890.127. Sun J. Coalbed methane exploration and gathering in Qinshui. National CoalbedMethane Symposium. 2013. p. 1-9.128. Jaeger J.C., Cook N.G.W., Zimmerman R.W. Fundamentals of Rock Mechanics (4thEd). Blackwell Publishing. 2014, p.
216-221.129. Jin Y., Chen M. Petroleum Related Rock Mechanics. China University Of Petroleum.2007. p. 60-62.130. Зотеев О.В. Геомеханика. Екатеринбург: УГГУ, ИГД УРО РАН. 2003. 252 c.131. Lou Y., Jin Y. Rock Mechanics in Petroleum Engineering. Petroleum Industry Press.2006. p.191.132. Рахманкулов Р.Р. Разрушение горных пород методом скалывания поповерхностям элементарных призм. Научное сообщество студентов XXIстолетия.
Тенические Науки: сб. ст. по мат. XX междунар. студ. науч.-практ.конф. № 5(20). г. Новосибирск, Россия. 2014.201133. Meng Z., Tian Y., Li G. Characteristics of In-Situ Stress Field in Southern QinshuiBasin and Its Research Significance. Journal of China Coal Society. 2010. 35(6). p.975-981.134. Meng Z., Tian Y., Li G. Relationship and Control Mechanism of Coal ReservoirPermeability and Geostress in Southern Qinshui Basin. Progress in Natural Science.2009. 19(10). p. 1142-1148.135. Zhang W., Li M., Jiang Z. Study of Criteria for Judging Collapse Failure of CBMWell Sidewall. China Coalbed Methane.
2011. 8(6). p. 37-41.136. Zhao Y., Zhang S., Liu B., He J. Optimum technology of horizontal well drilling layerin coal reservoir. Coal Science and Technology. 2017. 45(3). p. 147-153.137. Cheng Y., Cheng L., Li H., Han Z., et al. Research on testing methods of biotcoefficient in reservoir with different permeability and its influencing factors. ChineseJournal of Rock Mechanics and Engineering. 2015. 34(2). p. 3998-4004.138. Zhu Z.
Experimentation and Application of Open-Hole Cavity Completion in BaodeCBM Block. Coal Geology of China. 2013. 25(12). p. 75-78.139. Li H., Zhang X. Cavity-Perforated Casing Completing Technology for CBM Well.China Coalbed Methane. 2012. 9(2). p. 13-17.140. Xu Y., Li Y., Xia W., Zhang X. CBM Cave Completion Technology. ExplorationEngineering(Rock & Soil Drilling and Tunneling). 2017. 44(5). p. 7-30.141. Palmer I.D., Mavor M.J., Seidle J.P., Spitler J.L., et al. Openhole Cavity Completionsin Coalbed Methane Wells in the San Juan Basin.
1993. SPE 24906-PA.142. Mavor M.J., Robinson J.R. Analysis of Coal Gas Reservoir Interference and CavityWell Tests. 1993. SPE 25860-MS.143. Zhang X., Tong D. Effect of roof aquifers on the coalbed methane well patternproductivity. Journal of China Coal Society. 2009.