Petroleum Reservoir Evaluation and Development >
2023 , Vol. 13 >Issue 3: 385 - 392
DOI: https://doi.org/10.13809/j.cnki.cn32-1825/te.2023.03.014
Development quality evaluation of natural gas hydrate reservoir
Received date: 2021-12-20
Online published: 2023-06-26
The development of the natural gas hydrate reservoirs has the typical characteristics of high risk, high difficulty and high investment, so the correct evaluation of development quality is a prerequisite and the key to the issue. In order to solve the problems that the evaluation index has limitations and the evaluation results has ambiguity for the development of the natural gas hydrate reservoirs, the factor set is chosen based on the main controlling factors, and the scoring criteria of main controlling factors are defined. The weight set is established by the comprehensive weight calculated by analytic hierarchy process, and then fuzzy comprehensive evaluation of development quality of natural gas hydrate reservoir is further completed. This method is used to evaluate the development quality of Messoyakha and other typical natural gas hydrate reservoirs, and the applicability and feasibility of the method are verified, so as to provide theoretical basis and technical support for the efficient development of the natural gas hydrate reservoirs.
Qiannan YU , Han ZHANG , Ning LI , Huimin TANG , Chenglong LI , Zhuolin WU , Wei PENG . Development quality evaluation of natural gas hydrate reservoir[J]. Petroleum Reservoir Evaluation and Development, 2023 , 13(3) : 385 -392 . DOI: 10.13809/j.cnki.cn32-1825/te.2023.03.014
[1] | 魏纳, 白睿玲, 周守为, 等. 碳达峰目标下中国深海天然气水合物开发战略[J]. 天然气工业, 2022, 42(2): 156-165. |
[1] | WEI Na, BAI Ruiling, ZHOU Shouwei, et al. China's deepwater gas hydrate development strategies under the goal of carbon peak[J]. Natural Gas Industry, 2022, 42(2): 156-165. |
[2] | SAHU C, KUMAR R, SANGWAI J S. Comprehensive review on exploration and drilling techniques for natural gas hydrate reservoirs[J]. Energy & Fuels, 2020, 34(10): 11813-11839. |
[3] | 黄满, 吴亮虹, 宁伏龙, 等. 天然气水合物储层改造研究进展[J]. 天然气工业, 2022, 42(7): 160-174. |
[3] | HUANG Man, WU Lianghong, NING Fulong, et al. Research progress in natural gas hydrate reservoir stimulation[J]. Natural Gas Industry, 2022, 42(7): 160-174. |
[4] | ZHAO J F, LIU Y L, GUO X W, et al. Gas production behavior from hydrate-bearing fine natural sediments through optimized step-wise depressurization[J]. Applied Energy, 2020, 260(2): 114275. |
[5] | ZHAO J F, ZHU Z H, SONG Y C, et al. Analyzing the process of gas production for natural gas hydrate using depressurization[J]. Applied Energy, 2015, 142: 125-134. |
[6] | LI X S, XU C G, ZHANG Y, et al. Investigation into gas production from natural gas hydrate: A review[J]. Applied Energy, 2016, 172: 286-322. |
[7] | LI G, MORIDIS G J, KENI Z, et al. Evaluation of gas production potential from marine gas hydrate deposits in Shenhu area of South China Sea[J]. Energy & Fuels, 2010, 24(11): 6018-6033. |
[8] | 吴能友, 黄丽, 苏正, 等. 海洋天然气水合物开采潜力地质评价指标研究: 理论与方法[J]. 天然气工业, 2013, 33(7): 11-17. |
[8] | WU Nengyou, HUANG Li, SU Zheng, et al. A study of geological evaluation indicators for the exploitation potential of marine natural gas hydrates: Theory and methodology[J]. Natural Gas Industry, 2013, 33(7): 11-17. |
[9] | ZATSEPINA O, POOLADI-DARVISH M, HONG H. Behavior of gas production from type Ⅲ hydrate reservoirs[J]. Journal of Natural Gas Science and Engineering, 2011, 3(3): 496-504. |
[10] | 业渝光. 天然气水合物实验探测和测试技术[J]. 海洋地质前沿, 2011, 27(6): 37-43. |
[10] | YE Yuguang. Detection and testing techniques in gas hydrate experiments[J]. Marine Geology Frontiers, 2011, 27(6): 37-43. |
[11] | 王英梅, 张梦迪, 吴青柏, 等. 水合物一次分解压力对记忆效应的影响[J]. 石油与天然气化工, 2021, 50(4): 66-72. |
[11] | WANG Yingmei, ZHANG Mengdi, WU Qingbai, et al. Influence of primary decomposition pressure of hydrate on memory effect[J]. Chemical Engineering of Oil & Gas, 2021, 50(4): 66-72. |
[12] | 刘昌岭, 孙运宝. 海洋天然气水合物储层特性及其资源量评价方法[J]. 海洋地质与第四纪地质, 2021, 41(5): 44-57. |
[12] | LIU Changling, SUN Yunbao. Characteristics of marine gas hydrate reservoir and its resource evaluation methods[J]. Marine Geology & Quaternary Geology, 2021, 41(5): 44-57. |
[13] | 罗东坤, 汪华. 运用模糊综合评价法评估油气开发投资风险[J]. 国际石油经济, 2004, 12(2): 38-40. |
[13] | LUO Dongkun, WANG Hua. Assessment of investment risk in oil and gas development using fuzzy integrated evaluation method[J]. International Petroleum Economics, 2004, 12(2): 38-40. |
[14] | 于倩男, 刘义坤, 于洋. 基于层次分析的精控压裂井层模糊评价研究[J]. 数学的实践与认识, 2018, 48(3): 107-114. |
[14] | YU Qiannan, LIU Yikun, YU Yang. Research on fuzzy comprehensive evaluation of fine controlled fracturing wells and layers based on analytical hierarchy process[J]. Mathematics in Practice and Theory, 2018, 48(3): 107-114. |
[15] | 袁永真, 裴发根, 张鹏辉, 等. 利用模糊统计法进行天然气水合物靶区预测—以青海木里地区为例[J]. 物探与化探, 2017, 41(6): 1281-1286. |
[15] | YUAN Yongzhen, PEI Fagen, ZHANG PengHui, et al. Fuzzy statistic method used to prediction of gas hydrate target area: A case study of Muli area in Qinghai Province[J]. Geophysical and Geochemical Exploration, 2017, 41(6): 1281-1286. |
[16] | 魏纳, 周守为, 崔振军, 等. 南海北部天然气水合物物性参数评价与分类体系构建[J]. 天然气工业, 2020, 40(8): 59-67. |
[16] | WEI Na, ZHOU Shouwei, CUI Zhenjun, et al. Evaluation of physical parameters and construction of a parameter classification system for natural gas hydrate in the northern South China Sea[J]. Natural Gas Industry, 2020, 40(8): 59-67. |
[17] | 刘振坤, 王晖, 王盘根, 等. 加拿大油砂SAGD开发储量品质评价关键参数研究[J]. 海洋地质前沿, 2019, 35(12): 55-61. |
[17] | LIU Zhenkun, WANG Hui, WANG Pangen, et al. Key parameters of reserve quality evaluation for oil sand SAGD development in Canada[J]. Marine Geology Frontiers, 2019, 35(12): 55-61. |
[18] | 李淑霞, 刘亚平, 陈月明, 等. 天然气水合物藏品质评价的多级模糊综合评价[J]. 现代地质, 2010, 24(3): 463-466. |
[18] | LI Shuxia, LIU Yaping, CHEN Yueming, et al. Evaluating the quality of natural gas hydrate reservoir by hierarchy fuzzy assessment[J]. Geoscience, 2010, 24(3): 463-466. |
[19] | 徐立涛, 何玉林, 石万忠, 等. 琼东南盆地深水区天然气水合物成藏主控因素及模式[J]. 石油学报, 2021, 42(5):598-610. |
[19] | XU Litao, HE Yulin, SHI Wanzhong, et al. Main controlling factors and patterns of gas hydrate accumulation in the deep water area of Qiongdongnan Basin[J]. Acta Petrolei Sinica, 2021, 42(5): 598-610. |
[20] | 史斗, 郑军卫. 世界天然气水合物研究开发现状和前景[J]. 地球科学进展, 1999, 14(4): 330-339. |
[20] | SHI Dou, ZHENG Junwei. The status and prospects of research and exploitation of natural gas hydrate in the world[J]. Advances in Earth Science, 1999, 14(4): 330-339. |
[21] | COLLETT T S. Energy resource potential of natural gas hydrates[J]. AAPG Bulletin, 2002, 86(11): 1971-1992. |
[22] | MORIDIS G J, COLLETT T S, BOSWELL R, et al. Toward production from gas hydrates: Current status, assessment of resources, and simulation-based evaluation of technology and potential[J]. SPE Reservoir Evaluation & Engineering, 2009, 12(5): 745-771. |
[23] | 刘建辉, 李占东, 赵佳彬. 神狐海域天然气水合物研究新进展[J]. 矿产与地质, 2021, 35(3): 596-602. |
[23] | LIU Jianhui, LI Zhandong, ZHAO Jiabin. New progress in the study of natural gas hydrate in Shenhu area[J]. Mineral Resources and Geology, 2021, 35(3): 596-602. |
[24] | 付强, 周守为, 李清平. 天然气水合物资源勘探与试采技术研究现状与发展战略[J]. 中国工程科学, 2015, 17(9): 123-132. |
[24] | FU Qiang, ZHOU Shouwei, LI Qingping. Research status and development strategy of gas hydrate resource exploration and development technologies[J]. Engineering Science, 2015, 17(9): 123-132. |
/
〈 | 〉 |