Flow structure and rock-breaking feature of the self-rotating nozzle for radial jet drilling
Abstract For improving the hole-enlarging capability, roundness and rock-breaking efficiency of the nozzle in radial jet drilling, a new structure of self-rotating nozzle was put forward. The flow structure and rock-breaking features of the self-rotating nozzle were investigated with sliding mesh mo...
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doaj-5f9d62ec28da49c5831ad5cc327fef2f2020-11-25T04:08:31ZengSpringerOpenPetroleum Science1672-51071995-82262019-11-0117121122110.1007/s12182-019-00378-0Flow structure and rock-breaking feature of the self-rotating nozzle for radial jet drillingHua-Lin Liao0Xia Jia1Ji-Lei Niu2Yu-Cai Shi3Hong-Chen Gu4Jun-Fu Xu5Key Laboratory of Unconventional Oil and Gas Development (China University of Petroleum (East China)), Ministry of EducationKey Laboratory of Unconventional Oil and Gas Development (China University of Petroleum (East China)), Ministry of EducationKey Laboratory of Unconventional Oil and Gas Development (China University of Petroleum (East China)), Ministry of EducationKey Laboratory of Unconventional Oil and Gas Development (China University of Petroleum (East China)), Ministry of EducationShengli Offshore Drilling Co, SINOPECShengli Offshore Drilling Co, SINOPECAbstract For improving the hole-enlarging capability, roundness and rock-breaking efficiency of the nozzle in radial jet drilling, a new structure of self-rotating nozzle was put forward. The flow structure and rock-breaking features of the self-rotating nozzle were investigated with sliding mesh model and labortary tests and also compared with the straight and the swirling integrated nozzle and multi-orifice nozzle which have been applied in radial jet drilling. The results show that the self-rotating jet is energy concentrated, has longer effective distance, better hole-enlarging capability and roundness and impacts larger circular area at the bottom of the drilling hole, compared with the other two nozzles. Forward jet flow generated from the nozzle is peak shaped, and the jet velocity attenuates slowly at the outer edge. Due to periodic rotary percussion, the pressure fluctuates periodically on rock surface, improving shear and tensile failures on the rock matrix and thereby enhancing rock-breaking efficiency. The numerical simulation results of the flow structure of the nozzle are consistent with the experiments. This study provides an innovative approach for radial jet drilling technology in the petroleum industry.http://link.springer.com/article/10.1007/s12182-019-00378-0Self-rotating nozzleFlow field characteristicNumerical simulationRock-breaking |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hua-Lin Liao Xia Jia Ji-Lei Niu Yu-Cai Shi Hong-Chen Gu Jun-Fu Xu |
spellingShingle |
Hua-Lin Liao Xia Jia Ji-Lei Niu Yu-Cai Shi Hong-Chen Gu Jun-Fu Xu Flow structure and rock-breaking feature of the self-rotating nozzle for radial jet drilling Petroleum Science Self-rotating nozzle Flow field characteristic Numerical simulation Rock-breaking |
author_facet |
Hua-Lin Liao Xia Jia Ji-Lei Niu Yu-Cai Shi Hong-Chen Gu Jun-Fu Xu |
author_sort |
Hua-Lin Liao |
title |
Flow structure and rock-breaking feature of the self-rotating nozzle for radial jet drilling |
title_short |
Flow structure and rock-breaking feature of the self-rotating nozzle for radial jet drilling |
title_full |
Flow structure and rock-breaking feature of the self-rotating nozzle for radial jet drilling |
title_fullStr |
Flow structure and rock-breaking feature of the self-rotating nozzle for radial jet drilling |
title_full_unstemmed |
Flow structure and rock-breaking feature of the self-rotating nozzle for radial jet drilling |
title_sort |
flow structure and rock-breaking feature of the self-rotating nozzle for radial jet drilling |
publisher |
SpringerOpen |
series |
Petroleum Science |
issn |
1672-5107 1995-8226 |
publishDate |
2019-11-01 |
description |
Abstract For improving the hole-enlarging capability, roundness and rock-breaking efficiency of the nozzle in radial jet drilling, a new structure of self-rotating nozzle was put forward. The flow structure and rock-breaking features of the self-rotating nozzle were investigated with sliding mesh model and labortary tests and also compared with the straight and the swirling integrated nozzle and multi-orifice nozzle which have been applied in radial jet drilling. The results show that the self-rotating jet is energy concentrated, has longer effective distance, better hole-enlarging capability and roundness and impacts larger circular area at the bottom of the drilling hole, compared with the other two nozzles. Forward jet flow generated from the nozzle is peak shaped, and the jet velocity attenuates slowly at the outer edge. Due to periodic rotary percussion, the pressure fluctuates periodically on rock surface, improving shear and tensile failures on the rock matrix and thereby enhancing rock-breaking efficiency. The numerical simulation results of the flow structure of the nozzle are consistent with the experiments. This study provides an innovative approach for radial jet drilling technology in the petroleum industry. |
topic |
Self-rotating nozzle Flow field characteristic Numerical simulation Rock-breaking |
url |
http://link.springer.com/article/10.1007/s12182-019-00378-0 |
work_keys_str_mv |
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