Quantitative Calculation of Horizontal Well Reservoir Boundary Using Shear Wave Reflection Technique

Horizontal wells and volumetric fracturing techniques are used to develop low permeability conglomerate reservoirs. Boundaries of reservoir is key parameters for the evaluation of well configuration and hydraulic fracturing design. Geological modeling, resistivity inversion, and gamma inversion are...

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Main Authors: CHEN Huayong, LIN Jingqi, GONG Jie, ZHOU Jufeng, LINGHU Song, ZHENG Yujun, GUO Xuyang
Format: Article
Language:zho
Published: Editorial Office of Well Logging Technology 2023-12-01
Series:Cejing jishu
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Online Access:https://www.cnpcwlt.com/#/digest?ArticleID=5545
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author CHEN Huayong
LIN Jingqi
GONG Jie
ZHOU Jufeng
LINGHU Song
ZHENG Yujun
GUO Xuyang
author_facet CHEN Huayong
LIN Jingqi
GONG Jie
ZHOU Jufeng
LINGHU Song
ZHENG Yujun
GUO Xuyang
author_sort CHEN Huayong
collection DOAJ
description Horizontal wells and volumetric fracturing techniques are used to develop low permeability conglomerate reservoirs. Boundaries of reservoir is key parameters for the evaluation of well configuration and hydraulic fracturing design. Geological modeling, resistivity inversion, and gamma inversion are affected by the modeling methods and by the depth of investigation, and the accuracy of boundary calculation is low, making it hard to quantify the boundaries. In the low permeability reservoirs in the Junggar basin, the formation inclination angles are small; the wave impedances contrast of reservoir and cap rock are large; horizontal well trajectory angles are nearly 90°. In this environment, the propagation of dipole shear wave is perpendicular to reservoir boundaries, with strong reflection signals at boundaries. Based on these characteristics, a method of quantitative calculation of reservoir boundary in horizontal wells by using shear wave reflection technique is proposed. This method can accurately calculate the distance between horizontal wellbores and the boundaries only based on orthogonal dipole acoustic wave data. Then, based on formation occurrence, thickness, and well configuration, altitudes of reservoir boundaries can be obtained. As a result, vertical profiles of horizontal well reservoir, well configuration, and upper and lower interlayers can be determined. The study improves the evaluation accuracy of horizontal well reservoir and well configurations, and it provides quantitative references for the commercial development of low permeability conglomerate reservoirs.
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id doaj-art-cf50a13d72804fae833eb5db8bc32110
institution OA Journals
issn 1004-1338
language zho
publishDate 2023-12-01
publisher Editorial Office of Well Logging Technology
record_format Article
series Cejing jishu
spelling doaj-art-cf50a13d72804fae833eb5db8bc321102025-08-20T02:33:23ZzhoEditorial Office of Well Logging TechnologyCejing jishu1004-13382023-12-0147671071610.16489/j.issn.1004-1338.2023.06.0091004-1338(2023)06-0710-07Quantitative Calculation of Horizontal Well Reservoir Boundary Using Shear Wave Reflection TechniqueCHEN Huayong0LIN Jingqi1GONG Jie2ZHOU Jufeng3LINGHU Song4ZHENG Yujun5GUO Xuyang6Xinjiang Branch, China National Logging Corporation, Karamay, Xinjiang 834000, ChinaXinjiang Branch, China National Logging Corporation, Karamay, Xinjiang 834000, ChinaXinjiang Branch, China National Logging Corporation, Karamay, Xinjiang 834000, ChinaXinjiang Branch, China National Logging Corporation, Karamay, Xinjiang 834000, ChinaXinjiang Branch, China National Logging Corporation, Karamay, Xinjiang 834000, ChinaXinjiang Branch, China National Logging Corporation, Karamay, Xinjiang 834000, ChinaSchool of Petroleum Engineering, China University of Petroleum (Beijing), Beijing 102249, ChinaHorizontal wells and volumetric fracturing techniques are used to develop low permeability conglomerate reservoirs. Boundaries of reservoir is key parameters for the evaluation of well configuration and hydraulic fracturing design. Geological modeling, resistivity inversion, and gamma inversion are affected by the modeling methods and by the depth of investigation, and the accuracy of boundary calculation is low, making it hard to quantify the boundaries. In the low permeability reservoirs in the Junggar basin, the formation inclination angles are small; the wave impedances contrast of reservoir and cap rock are large; horizontal well trajectory angles are nearly 90°. In this environment, the propagation of dipole shear wave is perpendicular to reservoir boundaries, with strong reflection signals at boundaries. Based on these characteristics, a method of quantitative calculation of reservoir boundary in horizontal wells by using shear wave reflection technique is proposed. This method can accurately calculate the distance between horizontal wellbores and the boundaries only based on orthogonal dipole acoustic wave data. Then, based on formation occurrence, thickness, and well configuration, altitudes of reservoir boundaries can be obtained. As a result, vertical profiles of horizontal well reservoir, well configuration, and upper and lower interlayers can be determined. The study improves the evaluation accuracy of horizontal well reservoir and well configurations, and it provides quantitative references for the commercial development of low permeability conglomerate reservoirs.https://www.cnpcwlt.com/#/digest?ArticleID=5545horizontal wellreservoir boundaryreflection wavequantitative calculation
spellingShingle CHEN Huayong
LIN Jingqi
GONG Jie
ZHOU Jufeng
LINGHU Song
ZHENG Yujun
GUO Xuyang
Quantitative Calculation of Horizontal Well Reservoir Boundary Using Shear Wave Reflection Technique
Cejing jishu
horizontal well
reservoir boundary
reflection wave
quantitative calculation
title Quantitative Calculation of Horizontal Well Reservoir Boundary Using Shear Wave Reflection Technique
title_full Quantitative Calculation of Horizontal Well Reservoir Boundary Using Shear Wave Reflection Technique
title_fullStr Quantitative Calculation of Horizontal Well Reservoir Boundary Using Shear Wave Reflection Technique
title_full_unstemmed Quantitative Calculation of Horizontal Well Reservoir Boundary Using Shear Wave Reflection Technique
title_short Quantitative Calculation of Horizontal Well Reservoir Boundary Using Shear Wave Reflection Technique
title_sort quantitative calculation of horizontal well reservoir boundary using shear wave reflection technique
topic horizontal well
reservoir boundary
reflection wave
quantitative calculation
url https://www.cnpcwlt.com/#/digest?ArticleID=5545
work_keys_str_mv AT chenhuayong quantitativecalculationofhorizontalwellreservoirboundaryusingshearwavereflectiontechnique
AT linjingqi quantitativecalculationofhorizontalwellreservoirboundaryusingshearwavereflectiontechnique
AT gongjie quantitativecalculationofhorizontalwellreservoirboundaryusingshearwavereflectiontechnique
AT zhoujufeng quantitativecalculationofhorizontalwellreservoirboundaryusingshearwavereflectiontechnique
AT linghusong quantitativecalculationofhorizontalwellreservoirboundaryusingshearwavereflectiontechnique
AT zhengyujun quantitativecalculationofhorizontalwellreservoirboundaryusingshearwavereflectiontechnique
AT guoxuyang quantitativecalculationofhorizontalwellreservoirboundaryusingshearwavereflectiontechnique