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Erschienen in: Chemistry and Technology of Fuels and Oils 2/2023

08.06.2023 | INNOVATIVE TECHNOLOGIES OF OIL AND GAS

Study on Collapse Pressure Prediction of Fractured Strata

verfasst von: Biao Ou, Yongzhang Hu, Zhangliang Long, Qiming Liu, Haiming Liang, Xiangwei Kong

Erschienen in: Chemistry and Technology of Fuels and Oils | Ausgabe 2/2023

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Abstract

The Xujiahe Formation in western Sichuan has complex geological characteristics, fractures and fractures, and is prone to collapse in drilling. In this paper, the in-situ stress field around the wellbore, pore pressure, internal pressure in the wellbore and additional stress field generated by fluid flow are taken into account, and combined with the mechanical strength of rock in the target block, the in-situ stress parameters are calculated, the collapse pressure model of fractured formation is established, and the formation pressure profile of the well area is obtained, so as to predict the safe drilling fluid density window. The results show that the accuracy of the in-situ stress model is high, and the maximum error is 1.3%, which meets the engineering requirements. In the target block, the collapse pressure of Section 5 of Xinsheng 101 well and Section 5 – Section 3 of Xin601 well is high, reaching 1.8 g/cm3, and the safe drilling fluid density is narrow. Therefore, the drilling fluid density should be carefully designed to ensure the stability of borehole wall and prevent the occurrence of borehole wall collapse caused by too low drilling fluid density.

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Literatur
1.
Zurück zum Zitat Chen Bin. Wellbore Stability analysis of shale complex formation based on Mg-C criterion [D]. Yangtze University, 2021. Chen Bin. Wellbore Stability analysis of shale complex formation based on Mg-C criterion [D]. Yangtze University, 2021.
2.
Zurück zum Zitat Fan Yu, Wang Jiajun, Liu Houbin, et al. Formation mechanical properties and wellbore stability of whole well interval in Luzhou Block [J]. Science Technology and Engineering,20,20(16):6433-6439. Fan Yu, Wang Jiajun, Liu Houbin, et al. Formation mechanical properties and wellbore stability of whole well interval in Luzhou Block [J]. Science Technology and Engineering,20,20(16):6433-6439.
3.
Zurück zum Zitat Zhang Can. Stability analysis and sand production prediction of Buried Hill in Bohai Sea [D]. China University of Petroleum (Beijing), 2020. Zhang Can. Stability analysis and sand production prediction of Buried Hill in Bohai Sea [D]. China University of Petroleum (Beijing), 2020.
4.
Zurück zum Zitat Yu Zhongbao, Zheng Zheng, He Yabin, et al. Mechanical characteristics and in-situ stress analysis of F Block in Ordos Basin [J]. Science Technology and Engineering,20,20(05):1805-1811. Yu Zhongbao, Zheng Zheng, He Yabin, et al. Mechanical characteristics and in-situ stress analysis of F Block in Ordos Basin [J]. Science Technology and Engineering,20,20(05):1805-1811.
5.
Zurück zum Zitat Liu Chang. Study on logging interpretation method of shallow rock mechanics in Chad oilfield [D]. Southwest Petroleum University, 2019. Liu Chang. Study on logging interpretation method of shallow rock mechanics in Chad oilfield [D]. Southwest Petroleum University, 2019.
6.
Zurück zum Zitat Ding Wangui, Wu Xiaoguang, Feng Li, et al. Three-pressure profile calculation method based on drilling parameters in Linxing block [J]. Energy and Energy Conservation, 2019(12):2-5. Ding Wangui, Wu Xiaoguang, Feng Li, et al. Three-pressure profile calculation method based on drilling parameters in Linxing block [J]. Energy and Energy Conservation, 2019(12):2-5.
7.
Zurück zum Zitat Shi Yahong. Establishment and application of three-pressure profile in Changning shale gas horizontal well [D]. Southwest Petroleum University, 2019. Shi Yahong. Establishment and application of three-pressure profile in Changning shale gas horizontal well [D]. Southwest Petroleum University, 2019.
8.
Zurück zum Zitat Wisdom. Establishment and application of three-pressure profile in HL block of Zhongjiang Gas Field [J]. Xinjiang Oil and Gas,20,16(03):30-32+2-3. Wisdom. Establishment and application of three-pressure profile in HL block of Zhongjiang Gas Field [J]. Xinjiang Oil and Gas,20,16(03):30-32+2-3.
9.
Zurück zum Zitat Demingli. Study on three-pressure profile of Paleogene strata in Pearl River Mouth Basin [J]. Guangdong Chemical Industry, 20,47(07):40-41. Demingli. Study on three-pressure profile of Paleogene strata in Pearl River Mouth Basin [J]. Guangdong Chemical Industry, 20,47(07):40-41.
10.
Zurück zum Zitat Liu Ying. Three-pressure prediction and borehole stability analysis of continental shale formation [J]. Journal of Jianghan Petroleum Workers University, 2021, 34(05):5-7. Liu Ying. Three-pressure prediction and borehole stability analysis of continental shale formation [J]. Journal of Jianghan Petroleum Workers University, 2021, 34(05):5-7.
11.
Zurück zum Zitat Health and well-being. Mechanical experiment of ultra-deep carbonate rocks and study on shaft wall collapse pressure [D]. China University of Geosciences (Beijing), 2021. Health and well-being. Mechanical experiment of ultra-deep carbonate rocks and study on shaft wall collapse pressure [D]. China University of Geosciences (Beijing), 2021.
Metadaten
Titel
Study on Collapse Pressure Prediction of Fractured Strata
verfasst von
Biao Ou
Yongzhang Hu
Zhangliang Long
Qiming Liu
Haiming Liang
Xiangwei Kong
Publikationsdatum
08.06.2023
Verlag
Springer US
Erschienen in
Chemistry and Technology of Fuels and Oils / Ausgabe 2/2023
Print ISSN: 0009-3092
Elektronische ISSN: 1573-8310
DOI
https://doi.org/10.1007/s10553-023-01529-1

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