Multistage hydraulic jet acid fracturing technique for horizontal wells
Acid fracturing in deep carbonate reservoirs is challenged by deep well stimulation with high temperature (>120 °C), high fracture pressure (>2.0 MPa/m), high flow friction, and strong reservoir heterogeneity. To meet these challenges, a new stimulation method, called the hydraulic jet acid fr...
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KeAi Communications Co., Ltd.
2012-02-01
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doaj-a15c777e1fda40f4b6d33cbdc475254a2021-02-02T05:30:43ZengKeAi Communications Co., Ltd.Petroleum Exploration and Development1876-38042012-02-01391107112Multistage hydraulic jet acid fracturing technique for horizontal wellsGensheng LI0Mao SHENG1Shouceng TIAN2Zhongwei HUANG3Yuanbin LI4Xuefang YUAN5State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum, Beijing 102249, China; Corresponding authorState Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum, Beijing 102249, ChinaState Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum, Beijing 102249, ChinaState Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum, Beijing 102249, ChinaPetroChina Tarim Oilfield Company, Korla 841000, ChinaPetroChina Tarim Oilfield Company, Korla 841000, ChinaAcid fracturing in deep carbonate reservoirs is challenged by deep well stimulation with high temperature (>120 °C), high fracture pressure (>2.0 MPa/m), high flow friction, and strong reservoir heterogeneity. To meet these challenges, a new stimulation method, called the hydraulic jet acid fracturing technique, was developed. According to the mechanisms of hydraulic jet acid fracturing, the authors self-design the downhole injector and pipe strings used in multistage hydraulic jet acid fracturing and provide optimization standards for the nozzle number and diameter combination, abrasive perforating parameter, and pumping program. The technique realizes multistage acid fracturing by hydraulic separation and features simple downhole tools, high temperature resistance (160 °C), low cost and risk. In addition, hydraulic acid injection can extend effective acid corrosion distance nearby well and enhance the acidification effect. The optimal jet phasing is 60 degrees with spiral arrangement to lower formation fracture pressure. A relationship chart between optimal flow rate and wellhead pressure is established, which helps to increase flow rate as far as possible under wellhead assembly capacity and to determine nozzle diameter and number. Results from field tests show that this method can work at a maximum depth of 6 400.53 m, with a total acid volume of up to 618 m3. It is effective in creating acid fractures in ultra-deep horizontal wells. Key words: horizontal well, deep formation, water jet, multistage acid-fracturing, field testhttp://www.sciencedirect.com/science/article/pii/S1876380412600214 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Gensheng LI Mao SHENG Shouceng TIAN Zhongwei HUANG Yuanbin LI Xuefang YUAN |
spellingShingle |
Gensheng LI Mao SHENG Shouceng TIAN Zhongwei HUANG Yuanbin LI Xuefang YUAN Multistage hydraulic jet acid fracturing technique for horizontal wells Petroleum Exploration and Development |
author_facet |
Gensheng LI Mao SHENG Shouceng TIAN Zhongwei HUANG Yuanbin LI Xuefang YUAN |
author_sort |
Gensheng LI |
title |
Multistage hydraulic jet acid fracturing technique for horizontal wells |
title_short |
Multistage hydraulic jet acid fracturing technique for horizontal wells |
title_full |
Multistage hydraulic jet acid fracturing technique for horizontal wells |
title_fullStr |
Multistage hydraulic jet acid fracturing technique for horizontal wells |
title_full_unstemmed |
Multistage hydraulic jet acid fracturing technique for horizontal wells |
title_sort |
multistage hydraulic jet acid fracturing technique for horizontal wells |
publisher |
KeAi Communications Co., Ltd. |
series |
Petroleum Exploration and Development |
issn |
1876-3804 |
publishDate |
2012-02-01 |
description |
Acid fracturing in deep carbonate reservoirs is challenged by deep well stimulation with high temperature (>120 °C), high fracture pressure (>2.0 MPa/m), high flow friction, and strong reservoir heterogeneity. To meet these challenges, a new stimulation method, called the hydraulic jet acid fracturing technique, was developed. According to the mechanisms of hydraulic jet acid fracturing, the authors self-design the downhole injector and pipe strings used in multistage hydraulic jet acid fracturing and provide optimization standards for the nozzle number and diameter combination, abrasive perforating parameter, and pumping program. The technique realizes multistage acid fracturing by hydraulic separation and features simple downhole tools, high temperature resistance (160 °C), low cost and risk. In addition, hydraulic acid injection can extend effective acid corrosion distance nearby well and enhance the acidification effect. The optimal jet phasing is 60 degrees with spiral arrangement to lower formation fracture pressure. A relationship chart between optimal flow rate and wellhead pressure is established, which helps to increase flow rate as far as possible under wellhead assembly capacity and to determine nozzle diameter and number. Results from field tests show that this method can work at a maximum depth of 6 400.53 m, with a total acid volume of up to 618 m3. It is effective in creating acid fractures in ultra-deep horizontal wells. Key words: horizontal well, deep formation, water jet, multistage acid-fracturing, field test |
url |
http://www.sciencedirect.com/science/article/pii/S1876380412600214 |
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