Dynamic Sealing Behavior of Sand Self-Juxtaposition Windows on a Trap-Bounding Fault in a Natural Gas Storage Site

Author:

Zhang Xiaoling1,Fu Xiaofei12ORCID,Wang Yachun1,Meng Lingdong123ORCID,Du Ruishan12,Hong Shuxin45,Yang Hongsong6,Fu Xiandi5,Cheng Yabin7,Li Jian7,Zhang Baishuang8

Affiliation:

1. 1 School of Earth Sciences Northeast Petroleum University Daqing Heilongjiang 163318 China dqpi.edu.cn

2. 2 Key Laboratory of Continental Shale Hydrocarbon Accumulation and Efficient Development Ministry of Education Northeast Petroleum University Daqing Heilongjiang 163318 China dqpi.edu.cn

3. 3 FAPS Energy Technology Ltd. Daqing Heilongjiang 163318 China

4. 4 Daqing Oilfield Research Branch of Key Laboratory of Carbonate Reservoir CNPC Daqing Heilongjiang 163712 China cnpc.com.cn

5. 5 Exploration and Development Research Institute of Daqing Oilfield Company Ltd. Daqing Heilongjiang 163712 China cnpc.com.cn

6. 6 No. 3 Oil Production Plant of Daqing Oilfield Company Ltd. Daqing Heilongjiang 163113 China

7. 7 Research Institute of Exploration and Development Dagang Oilfield Company Tianjin 300280 China

8. 8 Jia Jing Petroleum Engineering Technology Ltd. Daqing Heilongjiang 163318 China

Abstract

Abstract An understanding of across-fault seals is essential for planning an injection/production strategy for a fault-bounded gas storage site. In addition, it is more likely to permit lateral leakage for a fault with sand self-juxtaposition windows. This paper is aimed at identifying the dynamic sealing behaviors of a sand self-juxtaposition fault on the geological and gas injection timescales. Banzhongbei gas storage site, China, was taken as a target area, and fault seals and hydrocarbon distributions within the original reservoirs were studied. The results showed that across-fault pressure differences of 0.085~0.146 MPa (equivalent to 41.6~71.5 m oil-column and 27.0~46.4 m gas-column heights) were supported by sand self-juxtaposition windows on the B816 fault, and the resultant absolute permeability (5.97×10−2~5.69×10−1 mD) of the fault was nearly 3~4 orders of magnitude lower than the average absolute permeability of reservoirs (1.16×102 mD). Gas composition contrasts, between the original and injection gas coupled with dynamic pressure monitoring data, indicated that lateral leakage occurred across sand self-juxtaposition windows under the condition of high across-fault pressure difference. However, the low-permeability fault showed strong negative influence on the efficiency of fluid flow in the model calculations and prolongs the timescales of pressure-difference decayed as much as 5 orders of magnitude relative to those of nonfault model calculations. These modeled dynamic sealing behaviors of sand self-juxtaposition windows may lead to a better understanding of the relative retardation of across-fault gas flow by weak sealing faults on the gas injection/production timescale.

Funder

Natural Science Research Team Project of Heilongjiang

National Natural Science Foundation Joint Fund Project

National Natural Science Foundation of China

Publisher

GeoScienceWorld

Subject

Geology

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5. Internal structure and sealing properties of the volcanic fault zones in Xujiaweizi fault depression, Songliao Basin, China;Meng;Petroleum Exploration and Development,2014

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