地质勘探

延145-延128井区致密储层单砂体分布特征及开发潜力

  • 罗腾跃 ,
  • 米乃哲 ,
  • 王念喜 ,
  • 乔向阳 ,
  • 杜永慧 ,
  • 赵鹏飞 ,
  • 潘福友
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  • 1.陕西延长石油(集团)有限责任公司研究院,陕西 西安 710075;
    2.北京福瑞宝能源科技有限公司,北京 100176
罗腾跃(1982—),男,高级工程师,2005年毕业于东华理工学院资源勘查专业,2008年毕业于西北大学地球化学专业,获硕士学位,现主要从事油气田勘探开发管理工作。

收稿日期: 2021-09-13

  修回日期: 2022-03-21

  网络出版日期: 2023-01-09

基金资助

国家科技重大专项“延安地区陆相页岩气勘探开发关键技术”(2017zx05039);延长石油集团科研攻关项目“延145-延128井区剩余气分布规律研究”(ycsy2019ky-A-21)

Distribution Characteristics and Development Potential of Single Sand Bodies in Tight Reservoirs, Well Blocks Yan 145-Yan 128

  • Luo Tengyue ,
  • Mi Naizhe ,
  • Wang Nianxi ,
  • Qiao Xiangyang ,
  • Du Yonghui ,
  • Zhao Pengfei ,
  • Pan Fuyou
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  • 1. Shaanxi Yanchang Petroleum (Group) Co., Ltd., Xi'an, Shaanxi 710075, China;
    2. Beijing Furuibao Energy Technology Co., Ltd., Beijing 100176, China

Received date: 2021-09-13

  Revised date: 2022-03-21

  Online published: 2023-01-09

摘要

针对鄂尔多斯盆地延145-延128井区主力气层山2段、山1段、盒8段产量递减快,开发效果不佳的问题,利用精细地质研究手段,对主力气层的地质特征以及砂体接触关系开展储层综合评价,进一步明确储层沉积微相展布特征,刻画优质单砂体储层分布范围,落实井位部署潜力区。研究结果表明:延145-延128井区储层为三角洲前缘亚相沉积,砂体基本上呈现连片发育特征,厚度一般为4~6 m;多层叠加砂体垂向厚度和横向规模较大,砂体连通性较好;孤立型砂体垂向厚度和横向规模有限,砂体连通性一般;横向上单砂体存在孤立型、叠加型等接触关系,对于孤立型砂体,未射孔动用则基本为原始气藏状态,剩余气富集,孤立型砂体可以作为下一步重点挖潜对象;根据剩余气分布特征,可采用加密、补孔、扩边等措施提高储量动用程度,计划部署加密井12口、扩边井15口,补孔36井次,预计增加可采储量83×108m3。该研究可为同类气藏的开发调整提供重要的参考依据。

本文引用格式

罗腾跃 , 米乃哲 , 王念喜 , 乔向阳 , 杜永慧 , 赵鹏飞 , 潘福友 . 延145-延128井区致密储层单砂体分布特征及开发潜力[J]. 特种油气藏, 2022 , 29(3) : 43 -49 . DOI: 10.3969/j.issn.1006-6535.2022.03.006

Abstract

In response to the problem of rapid production decline and poor development effectiveness of the main gas reservoirs in Shan2 Member, Shan1 Member and He8 Member, Well Blocks Yan145-Yan128, Ordos Basin, a comprehensive reservoir evaluation was performed on the geological characteristics of the main gas reservoirs and the sand body contact relationship by means of refined geologic studies to further definite the distribution characteristics of sedimentary microfacies in reservoirs, characterize the distribution range of high-quality single sand body reservoirs, and identify the potential area of well deployment. The study results showed that the reservoirs in Well Blocks Yan 145-Yan 128 were delta front subfacies deposits, and the sand bodies basically were continuously developed, with a general thickness of 4 to 6 m; the vertical thickness and horizontal size of multi-layer superimposed sand bodies were large, and the connectivity of sand bodies was preferable; the vertical thickness and horizontal size of the isolated sand bodies were limited, and the connectivity of sand bodies was average; single sand bodies were isolated and superimposed in the horizontal direction; for isolated sand bodies, the unperforated production was basically at the original gas reservoirs, with abundant remaining gas, so isolated sand bodies might be the key target for further tapping the potential; according to the characteristics of residual gas distribution, measures such as infilling, re-perforating and set-out, could be taken to increase the production of reserves; it was planned to add 12 infilling wells, 15 set-out wells and 36 re-perforating wells, and it was expected to increase the recoverable reserves by 83×108 m3. The study provides an important reference for the development and adjustment of similar gas reservoirs.

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