Calculation model for borehole collapse volume in horizontal openhole in formation with multiple weak planes
In view of borehole collapse in testing of horizontal wells, a calculation model for borehole collapse volume of horizontal open-hole in multiple-weak-plane formation was set up to analyze the factors affecting collapse volume. It was compared with the single-weak-plane model by field application. A...
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KeAi Communications Co., Ltd.
2014-02-01
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Series: | Petroleum Exploration and Development |
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doaj-7aa44b10fc4d47f59f1bc73cacf34f232021-02-02T08:29:38ZengKeAi Communications Co., Ltd.Petroleum Exploration and Development1876-38042014-02-01411113119Calculation model for borehole collapse volume in horizontal openhole in formation with multiple weak planesZhiyuan LIU0Mian CHEN1Yan JIN2Xiangtong YANG3Yunhu LU4Qiquan XIONG5Faculty of Petroleum Engineering, China University of Petroleum, Beijing 102249, China; Corresponding authorFaculty of Petroleum Engineering, China University of Petroleum, Beijing 102249, ChinaFaculty of Petroleum Engineering, China University of Petroleum, Beijing 102249, ChinaTarim Oilfield Company, Korla, Xinjiang 841000, ChinaFaculty of Petroleum Engineering, China University of Petroleum, Beijing 102249, ChinaFaculty of Petroleum Engineering, China University of Petroleum, Beijing 102249, ChinaIn view of borehole collapse in testing of horizontal wells, a calculation model for borehole collapse volume of horizontal open-hole in multiple-weak-plane formation was set up to analyze the factors affecting collapse volume. It was compared with the single-weak-plane model by field application. After analyzing the influences of fracture occurrence, well-bore azimuth, in-situ stress anisotropy, number of weak planes and fluid density on well-bore collapse volume, this study reveals: When the fracture dip is small, the volume of well-bore collapse is big and the well-bore stability is poor; When the fracture dip is big, the collapse volume varies greatly with the change of well-bore azimuth and fracture trend; The maximum collapse volume appears with different well-bore azimuth if fracture trend is different; The greater the in-situ stress difference is, the greater the well-bore collapse volume will be; The collapse volume decreases with the increase of borehole fluid density, and is more sensitive to the change of fluid density when fluid density is near the equivalent density of pore pressure. Field application results show that, compared with the single-weak-plane model, the multiple-weak- plane model gets big collapse volume in most cases so it can assess the collapse risk more reliably. Key words: multiple weak planes, fractured formation, collapse volume, borehole stability, horizontal wellhttp://www.sciencedirect.com/science/article/pii/S1876380414600136 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhiyuan LIU Mian CHEN Yan JIN Xiangtong YANG Yunhu LU Qiquan XIONG |
spellingShingle |
Zhiyuan LIU Mian CHEN Yan JIN Xiangtong YANG Yunhu LU Qiquan XIONG Calculation model for borehole collapse volume in horizontal openhole in formation with multiple weak planes Petroleum Exploration and Development |
author_facet |
Zhiyuan LIU Mian CHEN Yan JIN Xiangtong YANG Yunhu LU Qiquan XIONG |
author_sort |
Zhiyuan LIU |
title |
Calculation model for borehole collapse volume in horizontal openhole in formation with multiple weak planes |
title_short |
Calculation model for borehole collapse volume in horizontal openhole in formation with multiple weak planes |
title_full |
Calculation model for borehole collapse volume in horizontal openhole in formation with multiple weak planes |
title_fullStr |
Calculation model for borehole collapse volume in horizontal openhole in formation with multiple weak planes |
title_full_unstemmed |
Calculation model for borehole collapse volume in horizontal openhole in formation with multiple weak planes |
title_sort |
calculation model for borehole collapse volume in horizontal openhole in formation with multiple weak planes |
publisher |
KeAi Communications Co., Ltd. |
series |
Petroleum Exploration and Development |
issn |
1876-3804 |
publishDate |
2014-02-01 |
description |
In view of borehole collapse in testing of horizontal wells, a calculation model for borehole collapse volume of horizontal open-hole in multiple-weak-plane formation was set up to analyze the factors affecting collapse volume. It was compared with the single-weak-plane model by field application. After analyzing the influences of fracture occurrence, well-bore azimuth, in-situ stress anisotropy, number of weak planes and fluid density on well-bore collapse volume, this study reveals: When the fracture dip is small, the volume of well-bore collapse is big and the well-bore stability is poor; When the fracture dip is big, the collapse volume varies greatly with the change of well-bore azimuth and fracture trend; The maximum collapse volume appears with different well-bore azimuth if fracture trend is different; The greater the in-situ stress difference is, the greater the well-bore collapse volume will be; The collapse volume decreases with the increase of borehole fluid density, and is more sensitive to the change of fluid density when fluid density is near the equivalent density of pore pressure. Field application results show that, compared with the single-weak-plane model, the multiple-weak- plane model gets big collapse volume in most cases so it can assess the collapse risk more reliably. Key words: multiple weak planes, fractured formation, collapse volume, borehole stability, horizontal well |
url |
http://www.sciencedirect.com/science/article/pii/S1876380414600136 |
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