油气藏评价与开发 ›› 2025, Vol. 15 ›› Issue (2): 194-204.doi: 10.13809/j.cnki.cn32-1825/te.2025.02.004

• 油气勘探 • 上一篇    下一篇

四川盆地长宁地区深层煤层气成藏特征与勘探潜力

杨雪1,2(), 田冲1,2, 杨雨然1,2, 张景缘1,2, 王青1,2, 吴伟1,2, 罗超1,2   

  1. 1.中国石油西南油气田页岩气研究院,四川 成都 610051
    2.中国石油西南油气田公司页岩气研究院页岩气评价与 开采四川省重点实验室,四川 成都 610051
  • 收稿日期:2024-07-29 发布日期:2025-04-01 出版日期:2025-04-26
  • 作者简介:杨雪(1994—),女,硕士,工程师,从事页岩气、煤层气综合地质研究工作。地址:四川省成都市成华区建设北路一段83号,邮政编码:610051。E-mail:yangx63@petrochina.com.cn
  • 基金资助:
    中国石油科技项目“新区新层系有利区优选与勘探评价关键技术研究”(2023ZZ21-04);中国石油西南油气田分公司科学研究与技术开发项目“四川盆地龙潭组深层煤岩气有利区优选研究”(2024D104-01-10)

Accumulation characteristics and exploration potential of deep coalbed methane in Changning area of Sichuan Basin

YANG Xue1,2(), TIAN Chong1,2, YANG Yuran1,2, ZHANG Jingyuan1,2, WANG Qing1,2, WU Wei1,2, LUO Chao1,2   

  1. 1. Shale Gas Research Institute, PetroChina Southwest Oil & Gasfield Company, Chengdu, Sichuan 610051, China
    2. Shale Gas Evaluation and Exploitation Key Laboratory of Sichuan Province, Shale Gas Research Institute of PetroChina Southwest Oil & Gasfield Company, Chengdu, Sichuan 610051, China
  • Received:2024-07-29 Online:2025-04-01 Published:2025-04-26

摘要:

四川盆地煤层气资源丰富,筠连地区浅层煤层气已获得商业开发,邻区长宁地区多口过路井在二叠系煤层中测试获气,揭示了盆地煤层气的巨大潜能。随着国内深层煤层气勘探开发取得突破性进展,借鉴沁水盆地、鄂尔多斯盆地深层煤层气开发经验,为明确长宁地区深层煤层气的资源潜力,利用测井、煤层取心、实验测试等资料,系统开展了长宁地区煤层的地质分析、深层煤层气含气性评价、煤层气成藏主控因素及有利区研究。结果表明:四川盆地长宁地区7号至8号煤层煤组是一套厚度大、发育稳定的高品质煤层,以高煤阶、高固定碳含量的原生结构煤岩为主,已处于热解生气高峰,生烃潜力巨大;煤层具有高孔隙度、高渗透率、高割理密度特征,储集空间充足;顶底板以泥岩为主,保存条件优越。与筠连浅层煤层气相比,长宁地区深层煤层气构造更加稳定,游离气比例升高,煤体结构更加完整,在远离剥蚀线、Ⅰ级断层区形成区域性煤层气藏,富含游离气的特征将更加有利于后期煤层气开发。结合地质工程条件,建立了长宁煤层气评价的地质-工程双“甜点”指标体系,优选了区内深层煤层气发育区1 300 km2,计算资源量1 700×108 m3,有利区主要位于罗场向斜、建武向斜。研究成果有效指导了区内煤层气井位部署,助力实现四川盆地非常规天然气高质量发展。

关键词: 四川盆地, 长宁地区, 深层煤层气, 成藏特征, 地质-工程“甜点”

Abstract:

The Sichuan Basin is rich in coalbed methane resources, and shallow coalbed methane in the Junlian area has been commercially developed. In the adjacent Changning area, multiple drilling wells have tested and obtained gas in the Permian coal seam, revealing significant potential for coalbed methane in the Sichuan Basin. With significant breakthrough in the exploration and development of deep coalbed methane in China, and drawing from experiences in the Qinshui Basin and the Ordos Basin, a comprehensive study was conducted to assess the resource potential of deep coalbed methane in the Changning area. This study utilized data from logging, coal seam coring, and experimental testing to analyze the geology of the coal seams, evaluate gas-bearing properties, and investigate the main factors influencing reservoir formation and favorable zones. The study found that the 7th and 8th coal seams in the study area are thick, regionally stable, and high-quality, mainly composed of primary structural coals with high rank and high fixed carbon content. These seams are at the peak of pyrolysis gas generation, suggesting significant hydrocarbon generation potential. Coal seams have characteristics of high porosity, high permeability, and high cleat density, providing ample storage space, while the coal seam roof and floor—predominantly mudstone—offer excellent preservation conditions. Compared to the shallow coalbed methane in Junlian, the deep coalbed methane in the Changning area features a more stable structure, a higher proportion of free gas, and a more intact coal matrix. Coalbed methane reservoirs are formed in the target area far from erosion boundary and Class Ⅰ fault zones. The abundant free gas is more conducive to subsequent development. Based on geo-engineering conditions, a dual geo-engineering “sweet spot” index system for evaluating coalbed methane in the Changning area has been established. A favorable deep coalbed methane development area of 1 300 km² has been identified, with a calculated resource volume of 1 700×108 m3, primarily located in the Luochang and Jianwu synclines. The research results have effectively guided the deployment of coalbed methane wells in the region, contributing to the high-quality development of unconventional natural gas in the Sichuan Basin.

Key words: Sichuan Basin, Changning area, deep coalbed methane, accumulation characteristic, geo-engineering “sweet spot”

中图分类号: 

  • TE37