Reservoir Evaluation and Development ›› 2020, Vol. 10 ›› Issue (3): 115-120.doi: 10.13809/j.cnki.cn32-1825/te.2020.03.018
• Comprehensive Research • Previous Articles Next Articles
ZHAO Xinglong
Received:
2019-12-24
Online:
2020-07-03
Published:
2020-06-26
CLC Number:
Xinglong ZHAO. Reasonable production allocation and drainage control of coalbed methane wells in South Yanchuan CBM field[J]. Reservoir Evaluation and Development, 2020, 10(3): 115-120.
Table 1
Specific value of bottom hole flow pressure at peak gas production and Langmuir pressure of part of CBM wells in South Yanchuan CBM field"
井号 | 兰氏压力/MPa | 峰值产气量时井底流压/MPa | 比值 |
---|---|---|---|
Y1-1 | 2.22 | 2.66 | 1.20 |
Y1-2 | 2.32 | 2.45 | 1.06 |
Y1-3 | 2.29 | 2.29 | 1.00 |
Y1-4 | 2.36 | 2.62 | 1.11 |
Y1-5 | 2.51 | 2.96 | 1.18 |
Y3-1 | 3.60 | 3.67 | 1.02 |
Y3-2 | 3.57 | 3.97 | 1.11 |
Y3-3 | 3.99 | 4.12 | 1.03 |
Y3-4 | 4.20 | 3.64 | 0.87 |
Y3-5 | 3.47 | 2.92 | 0.84 |
Y3-6 | 3.48 | 2.99 | 0.86 |
Y3-7 | 3.55 | 3.38 | 0.95 |
Y3-8 | 3.68 | 3.69 | 1.00 |
Y3-9 | 3.59 | 3.31 | 0.92 |
Table 2
Comparison of parameter control during different drainage stages of high and stable production wells and low production wells in Tanping structural belt"
排采阶段 | 排采天数/d | 平均日降流压/MPa | |||
---|---|---|---|---|---|
Y1-5井 | Y1-6井 | Y1-5井 | Y1-6井 | ||
快排期 | 42 | 55 | 0.110 | 0.044 9 | |
缓慢降压排水期 | 112 | 105 | 0.004 | 0.010 4 | |
上产期 | 100 | 190 | 0.005 | 0.009 7 | |
产量波动期 | 322 | 730 | 0.003 | 0.001 0 | |
稳产期 | 148 | 0.001 |
Table 3
Comparison of parameter control during different drainage stages of high and stable production wells and low production wells in Wanbaoshan structural belt"
排采阶段 | 排采天数/d | 平均日降流压/MPa | |||
---|---|---|---|---|---|
Y3-1井 | Y3-10井 | Y3-1井 | Y3-10井 | ||
快排期 | 32 | 50 | 0.083 | 0.127 | |
缓慢降压排水期 | 84 | 101 | 0.003 | 0.011 | |
上产期 | 251 | 127 | 0.009 | 0.016 | |
产量波动期 | 303 | 308 | 0.002 | 0.019 | |
稳产期 | 380 | 0.001 |
[1] | 杨秀春, 李明宅. 煤层气排采动态参数及其相互关系[J]. 煤田地质与勘探, 2008,36(2):19-27. |
YANG X C, LI M Z. Dynamic parameters of CBM well drainage and relationship among them[J]. Coal Geology and Exploration, 2008,36(2):19-27. | |
[2] | 闫泊计. 浅析影响煤层气井产量的几个因素[J]. 山西焦煤科技, 2010,34(10):31-33. |
YAN B J. Analysis on several factors of influence output in coal bed gas well[J]. Shanxi Coking Coal Science & Technology, 2010,34(10):31-33. | |
[3] | 樊彬, 秦义, 崔金榜, 等. 压降速度对煤层气井产量的影响分析[J]. 中国煤层气, 2010,7(6):20-23. |
FAN B, QIN Y, CUI J B, et al. Analysis of the influence of pressure drop velocity on CBM well production[J]. China Coalbed Methane, 2010,7(6):20-23. | |
[4] | 倪小明, 王延斌, 接铭训, 等. 煤层气井排采初期合理排采强度的确定方法[J]. 西南石油大学学报, 2007,29(6):101-104. |
NI X M, WANG Y B, JIE M X, et al. Reasonable production intensity of coal-bed methane wells in initial production[J]. Journal of Southwest Petroleum University, 2007,29(6):101-104. | |
[5] | 谢学恒, 樊明珠, 王前阔, 等. 煤层气井排采强度对产气量敏感性的数值模拟[J]. 油气藏评价与开发, 2013,3(5):74-76. |
XIE X H, FAN M Z, WANG Q K, et al. Sensitivity numerical simulation of production intensity on the gas production rate of CBM wells[J]. Reservoir Evaluation and Development, 2013,3(5):74-76. | |
[6] | 李金海, 苏现波, 林晓英, 等. 煤层气井排采速率与产能的关系[J]. 煤炭学报, 2009,34(3):376-380. |
LI J H, SU X B, LIN X Y, et al. Relationship between discharge rate and productivity of coalbed methane wells[J]. Journal of China Coal Society, 2009,34(3):376-380. | |
[7] | 康永尚, 邓泽, 刘洪林, 等. 我国煤层气井排采工作制度探讨[J]. 天然气地球科学, 2008,19(3):423-426. |
KANG Y S, DENG Z, LIU H L, et al. Discussion about the CBM well draining technology[J]. Natural Gas Geoscience, 2008,19(3):423-426. | |
[8] | 康永尚, 赵群, 王红岩, 等. 煤层气井开发效率及排采制度的研究[J]. 天然气工业, 2007,27(7):79-82. |
KANG Y S, ZHAO Q, WANG H Y, et al. Developing efficiency and the working system of wells during the de-watering gas production process in coalbed methane reservoirs[J]. Natural Gas Industry, 2007,27(7):79-82. | |
[9] | 饶孟余, 江舒华. 煤层气井排采技术分析[J]. 中国煤层气, 2010,7(1):22-25. |
RAO M Y, JIANG S H. Analysis on drainage techniques of coalbed methane well[J]. China Coalbed Methane, 2010,7(1):22-25. | |
[10] | 李仰民, 王立龙, 刘国伟, 等. 煤层气井排采过程中的储层伤害机理研究[J]. 中国煤层气, 2010,7(6):39-47. |
LI Y M, WANG L L, LIU G W, et al. Study on coal reservoir damage mechanism in dewatering and extraction process of CBM wells[J]. China Coalbed Methane, 2010,7(6):39-47. | |
[11] | 周叡, 杨经栋, 汪勇, 等. 沁水盆地南部煤层气单井产量影响因素敏感性分析[J]. 中国煤层气, 2016,13(5):22-25. |
ZHOU R, YANG J D, WANG Y, et al. Sensitivity analysis on influencing factors of CBM single well production in south Qinshui basin[J]. China Coalbed Methane, 2016,13(5):22-25. | |
[12] | 薛志亮. 沁水盆地南部煤层气问题井原因分析及技术探讨[J]. 中国煤层气, 2017,14(2):17-20. |
XUE Z L. Cause analysis and technical discussion of CBM problem wells in southern Qinshui basin[J]. China Coalbed Methane, 2017,14(2):17-20. | |
[13] | 伊永祥, 唐书恒, 张松航, 等. 沁水盆地柿庄南区块煤层气井储层压降类型及排采控制分析[J]. 煤田地质与勘探, 2019,47(5):118-126. |
YI Y X, TANG S H, ZHANG S H, et al. Analysis on the type of reservoir pressure drop and drainage control of coalbed methane well in the southern block of Shizhuang[J]. Coal Geology & Exploration, 2019,47(5):118-126. | |
[14] | 胡秋嘉, 毛崇昊, 石斌, 等. 沁水盆地南部高煤阶煤层气井“变速排采—低恒套压”管控方法[J]. 煤炭学报, 2019,44(6):1795-1803. |
HU Q J, MAO C H, SHI B, et al. “Variable speed drainage-low casing pressure” control method of high rank CBM wells in South Qinshui Basin[J]. Journal of China Coal Society, 2019,44(6):1795-1803. | |
[15] | 卢凌云, 张遂安, 郭文朋, 等. 煤层气直井低产原因与高产因素诊断分析[J]. 非常规油气, 2017,4(5):71-75. |
LU L Y, ZHANG S A, GUO W P, et al. The diagnosis and analysis of the low-yield cause and high-yield factor of vertical well in coalbed methane[J]. Unconventional Oil & Gas, 2017,4(5):71-75. | |
[16] | 穆福元, 王红岩, 吴京桐, 等. 中国煤层气开发实践与建议[J]. 天然气工业, 2018,38(9):55-60. |
MU F Y, WANG HONGYAN, WU JINGTONG, et al. Practice of and suggestions on CBM development in China[J]. Natural Gas Industry, 2018,38(9):55-60. | |
[17] | 胡秋嘉, 贾慧敏, 祁空军, 等. 高煤阶煤层气井单相流段流压精细控制方法——以沁水盆地樊庄—郑庄区块为例[J]. 天然气工业, 2018,38(9):76-81. |
HU Q J, JIA H M, QI K J, et al. A fine control method of flowing pressure in single-phase flow section of high-rank CBM gas development wells: A case study from the Fanzhuang-Zhengzhuang Block in the Qinshui Basin[J]. Natural Gas Industry, 2018,38(9):76-81. | |
[18] | 刘羽欣. 柿庄北区块煤层气井排采制度研究[J]. 特种油气藏, 2019,26(5):118-123. |
LIU Y X. Drainage gas recovery system of CBM well in the north Shizhuang block[J]. Special Oil & Gas Reservoirs, 2019,26(5):118-123. | |
[19] | 康圆圆, 邵先杰, 王彩凤. 高—中煤阶煤层气生产特征及影响因素分析——以樊庄、韩城矿区为例[J]. 石油勘探与开发, 2012,39(6):728-732. |
KANG Y Y, SHAO X J, WANG C F. Production characteristics and affecting factors of high-mid rank coalbed methanewells: Taking Fanzhuang and Hancheng mining areas as examples[J]. Petroleum Exploration and Development, 2012,39(6):728-732. | |
[20] |
刘燕红, 李梦溪, 杨鑫, 等. 沁水盆地樊庄区块煤层气高产富集规律及开发实践[J]. 天然气工业, 2012,32(4):29-32.
doi: 10.3787/j.issn.1000-0976.2012.04.007 |
LIU Y H, LI M X, YANG X, et al. Laws of coalbed methane enrichment and high productivity in Fanzhuang Block of the Qinshui Basin and development practices[J]. Natural Gas Industry, 2012,32(4):29-32.
doi: 10.3787/j.issn.1000-0976.2012.04.007 |
|
[21] |
秦义, 李仰民, 白建梅, 等. 沁水盆地南部高煤阶煤层气井排采工艺研究与实践[J]. 天然气工业, 2011,31(11):22-25.
doi: 10.3787/j.issn.1000-0976.2011.11.006 |
QIN Y, LI Y M, BAI J M, et al. Technologies in the CBM drainage and production of wells in the southern Qinshui Basin with high-rank coal beds[J]. Natural Gas Industry, 2011,31(11):22-25.
doi: 10.3787/j.issn.1000-0976.2011.11.006 |
|
[22] | 李国富, 侯泉林. 沁水盆地南部煤层气井排采动态过程与差异性[J]. 煤炭学报, 2012,37(5):798-803. |
LI G F, HOU Q L. Dynamic process and difference of coalbed methane wells production in southern Qinshui Basin[J]. Journal of China Coal Society, 2012,37(5):798-803. | |
[23] | 李清, 彭兴平. 延川南工区煤层气排采速率定量分析[J]. 石油天然气学报, 2012,34(12):123-127. |
LI Q, PENG X P. Quantified analysis on coalbed methane(CBM) drainage rate in Southern Yanchuan Block[J]. Journal of Oil and Gas Technology, 2012,34(12):123-127. | |
[24] | 彭兴平. 鄂尔多斯盆地东南缘高煤阶煤层气井排采制度研究与应用——以延川南煤层气田为例[J]. 油气藏评价与开发, 2014,4(2):55-60. |
PENG X P. Research and application of CBM production in high coal rank of southeast margin, Ordos basin-taking CBM of South Yanchuan block for example[J]. Reservoir Evaluation and Development, 2014,4(2):55-60. | |
[25] | 陈贞龙, 郭涛, 李鑫, 等. 延川南煤层气田深部煤层气成藏规律与开发技术[J]. 煤炭科学技术, 2019,47(9):112-118. |
CHEN Z L, GUO T, LI X, et al. Enrichment law and development technology of deep coalbed methane in South Yanchuan Coalbed Methane Field[J]. Coal Science and Technology, 2019,47(9):112-118. | |
[26] | ZHAO X L, XU Z W, TANG D Z, et al. The influence of high-yield-water characteristics on productivity of CBM wells and expulsion and production method carried Out in South Yanchuan block of the Ordos basin, China[J]. Journal of Coal Science & Engineering, 2013,19(4):514-521. |
[27] | 张波, 胡维强, 徐爽, 等. 煤层气快速解吸方法研究[J]. 非常规油气, 2018,5(6):34-37. |
ZHANG B, HU W Q, XU S, et al. Study on the method of rapid desorption of Coalbed Methane[J]. Unconventional Oil & Gas, 2018,5(6):34-37. |
[1] | XUE Gang,GUO Tao,ZHANG Ye,XU Xiangyang,WANG Wei,HAN Kening,GUO Dongxin,JIN Xiaobo. Analysis of general geological conditions of coalbed methane in coal seam C25 of Permian Longtan Formation, south Chongqing [J]. Petroleum Reservoir Evaluation and Development, 2024, 14(3): 492-503. |
[2] | LIU Xiao. Comparison of seam network morphology in coal reservoirs under different fracturing scales: A case of Yanchuannan CBM Gas Field [J]. Petroleum Reservoir Evaluation and Development, 2024, 14(3): 510-518. |
[3] | SANG Shuxun,HAN Sijie,ZHOU Xiaozhi,LIU Shiqi,WANG Yuejiang. Deep coalbed methane resource and its exploration and development prospect in East China [J]. Petroleum Reservoir Evaluation and Development, 2023, 13(4): 403-415. |
[4] | ZHANG Si,PENG Xiaolong. Calculation method of critical desorption pressure in undersaturated CBM reservoirs [J]. Petroleum Reservoir Evaluation and Development, 2022, 12(4): 589-595. |
[5] | ZHU Suyang,MENG Shangzhi,PENG Xiaolong,LI Xiangchen,ZHANG Qiangui,ZHANG Si. Mechanism of coal wettability on storage state of undersaturated CBM reservoirs [J]. Petroleum Reservoir Evaluation and Development, 2022, 12(4): 580-588. |
[6] | SHI Juntai,LI Wenbin,ZHANG Longlong,JI Changjiang,LI Guofu,ZHANG Sui'an. An inversion method of initial coal reservoir pressure using fracturing process data [J]. Petroleum Reservoir Evaluation and Development, 2022, 12(4): 564-571. |
[7] | CHEN Yue,WANG Liya,LI Guofu,ZHANG Lin,YANG Fu,MA Zhuoyuan,GAO Zheng. Prediction of favorable areas for low-rank coalbed methane based on Random Forest algorithm [J]. Petroleum Reservoir Evaluation and Development, 2022, 12(4): 596-603. |
[8] | YAO Hongsheng,CHEN Zhenlong,GUO Tao,LI Xin,XIAO Cui,XIE Fei. Stimulation practice of geology-engineering integration fracturing for deep CBM in Yanchuannan Field [J]. Petroleum Reservoir Evaluation and Development, 2021, 11(3): 291-296. |
[9] | GE Jingtao,YE Xinmin,TAO Wenwen,SONG Guanwei. Loosely coupled automatic drainage and production control technology of CBM [J]. Reservoir Evaluation and Development, 2020, 10(6): 126-130. |
[10] | GE Jingtao,YAO Rongchang,MA Jisheng. Research on non-destructive intelligent inter-pumping technology for CBM wells in South Yanchuan Block [J]. Reservoir Evaluation and Development, 2020, 10(4): 97-100. |
[11] | WANG Zhe. Application of controllable shock wave plugging removal and permeability improvement technology in CBM gas field of Southern Yanchuan [J]. Reservoir Evaluation and Development, 2020, 10(4): 87-92. |
[12] | WU Haoqiang,PENG Xiaolong,ZHU Suyang,FENG Ning. Research progress of coal fine formation, migration and control in CBM well [J]. Reservoir Evaluation and Development, 2020, 10(4): 70-80. |
[13] | ZHOU Yatong. Dynamic characteristics and SEC dynamic reserve assessment of CBM gas field in South Yanchuan [J]. Reservoir Evaluation and Development, 2020, 10(4): 53-58. |
[14] | LI Xin,XIAO Cui,CHEN Zhenlong,JIN Xiaobo. Analysis of low-efficiency wells in CBM gas field of South Yanchuan and optimization of measures [J]. Reservoir Evaluation and Development, 2020, 10(4): 32-38. |
[15] | XIAO Cui,WANG Wei,LI Xin,YANG Xiaolong. Numerical simulation of residual gas distribution in CBM gas field of south Yanchuan based on advanced production data analysis [J]. Reservoir Evaluation and Development, 2020, 10(4): 25-31. |
|