中国石油勘探 ›› 2025, Vol. 30 ›› Issue (6): 120-133.DOI: 10.3969/j.issn.1672-7703.2025.06.009

• 石油地质 • 上一篇    下一篇

深层—超深层优质原生孔隙型砂岩储层成储演化模式及勘探下限预测——以河套盆地临河坳陷古近系为例

伍劲1,朱洁琼2,刘占国1,项鑫2,李熹微2,刘喜恒2,刘静2,胡延旭2,王浩宇2   

  1. 1 中国石油杭州地质研究院;2 中国石油华北油田公司
  • 出版日期:2025-11-14 发布日期:2025-11-14
  • 作者简介:伍劲(1990-),男,四川成都人,硕士,2015年毕业于中国石油大学(北京),高级工程师,现主要从事储层地质学方面工作。地址:浙江省杭州市西湖区西溪路920号中国石油杭州地质研究院,邮政编码:310023。
  • 基金资助:
    中国石油天然气集团有限公司攻关性应用性科技专项“超深层碎屑岩大中型油气田形成条件与有利区评价”(2023ZZ14YJ01);中国石油天然气集团有限公司基础性前瞻性重大科技专项“叠合盆地中下组合油气成藏与保持机制研究”(2023ZZ02)。

Reservoir formation and evolution mode of high-quality primary porous sandstone reservoirs in deep to ultra-deep formations and prediction of lower exploration depth limit: a case study of the Paleogene in Linhe Depression, Hetao Basin

Wu Jin1,Zhu Jieqiong2,Liu Zhanguo1,Xiang Xin2,Li Xiwei2,Liu Xiheng2,Liu Jing2,Hu Yanxu2,Wang Haoyu2   

  1. 1 PetroChina Hangzhou Research Institute of Geology; 2 PetroChina Huabei Oilfield Company
  • Online:2025-11-14 Published:2025-11-14

摘要: 河套盆地临河坳陷多口探井在古近系临河组深层—超深层砂岩储层获日产百吨至千吨高产油流,尤其是河探101井在6500m以深测试自喷日产油1285.77m3、日产气1.07×104m3,是国内断陷湖盆超深层碎屑岩领域首口日产千吨油流井,也是国内超深层碎屑岩领域日产油量最高的井,研究揭示其储集空间主要为原生粒间孔,大大突破了传统原生孔隙型砂岩储层的油气勘探深度下限。基于薄片、岩心、钻井、测井和大量岩矿分析化验资料,开展临河组深层—超深层优质原生孔隙型砂岩储层成储模式及有效储层勘探下限综合分析。临河组优质储层主要为高成分、高结构成熟度的富石英碎屑砂岩,储集空间主要为原生粒间孔,具大孔粗喉特征,储层成储演化受静岩压实动力场、热压实动力场、流体盐度场和流体压力场四场控制。优质储层成储演化可分为早期持续埋藏—快速减孔、中早期长期缓埋—缓慢减孔、中晚期快速深埋弱压实减孔和晚期持续深埋—油气充注增压保孔等4个成岩演化阶段,超深层优质储层油气充注前孔隙度可达20%~30%。建立时温指数TTI与孔隙度幂函数关系模型,预测洼槽区厚层(大于1m)低填隙物砂岩为有效储层,常规有效储层孔隙度下限为8.5%,有效储层埋深下限可达9200m,极大拓展了深层—超深层原生孔隙型砂岩储层油气勘探深度下限。

关键词: 河套盆地, 临河坳陷, 古近系临河组, 深层—超深层, 储层特征, 成储演化, 勘探下限

Abstract: In Linhe Depression, Hetao Basin, high-yield oil flows with a daily rate of 100–1000 t/d have been achieved in deep to ultra-deep sandstone reservoirs in the Paleogene Linhe Formation in multiple exploration wells. Specially, the open flow oil and gas rates of 1285.77 m3/d and 1.07×104 m3/d were tested at a depth of 6500 m in Well Hetan 101, which was the first high-yield well with an oil rate level of 1000 t/d in the ultra-deep clastic rocks in faulted lake basin in China, and also the highest oil flow well in the ultra-deep clastic rocks, with the main reservoir space of primary intergranular pores, greatly breaking through the lower depth limit of oil and gas exploration in conventional primary porosity type sandstone reservoirs. Based on thin sections, core samples, well drilling, logging, and a large amount of rock mineral laboratory test data, a comprehensive study of reservoir formation mode and lower exploration depth limit of effective primary porosity type sandstone reservoirs in the deep to ultra-deep formations has been conducted. The study results show that the high-quality reservoirs in Linhe Formation are mainly composed of high composition and high structural maturity quartz rich clastic sandstones. The reservoir space is dominated by primary intergranular pores with characteristics of large pores and coarse throats. The reservoir formation and evolution were controlled by four fields, including static rock compaction dynamic field, thermal compaction dynamic field, fluid salinity field, and fluid pressure field. The evolution of high-quality reservoirs experienced four diagenetic stages, namely early constant burial depth increase–rapid pore reduction, early–middle stage long-term slow burial depth increase–slow pore reduction, middle–late stage rapid burial depth increase–weak compaction pore reduction, and late stage continuous burial depth increase–hydrocarbon charging for pressurization and pore preservation, and the porosity of ultra-deep high-quality reservoirs before hydrocarbon charging reached up to 20%–30%. Furthermore, a power function relationship model between time temperature index TTI and porosity has been established, which indicates that thick sandstone (greater than 1 m) with low interstitial material content in the trough area is effective reservoir, the lower porosity limit of effective conventional reservoir is 8.5%, and the lower depth limit of effective reservoir reaches 9200 m, greatly expanding the lower depth limit of oil and gas exploration in deep to ultra-deep primary porosity type sandstone reservoirs.

Key words: Hetao Basin, Linhe Depression, Paleogene Linhe Formation, deep to ultra-deep formation, reservoir characteristics, reservoir evolution, lower exploration depth limit

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