Seismic prediction on the favorable efficient development areas of the Longwangmiao Fm gas reservoir in the Gaoshiti-Moxi area, Sichuan Basin

被引:3
|
作者
Zhang G. [1 ,2 ]
Liao Q. [2 ]
Yu Y. [2 ]
Ran Q. [2 ]
Xiao Y. [2 ]
Lu X. [2 ]
Liang H. [2 ]
Zeng M. [2 ]
机构
[1] Chengdu University of Technology, Chengdu, 610059, Sichuan
[2] PetroChina Southwest Oil and Gas Field Company, Chengdu, 610051, Sichuan
关键词
3D seismic; Early Cambrian; Gaoshiti-Moxi area; Global automatic seismic interpretation; Longwangmiao Fm gas reservoir; Sichuan Basin; Well-oriented amplitude processing; Well-oriented high resolution frequency expanding;
D O I
10.3787/j.issn.1000-0976.2017.01.008
中图分类号
学科分类号
摘要
The Longwangmiao Fm gas reservoir in the Gaoshiti-Moxi area, Sichuan Basin, is a super giant monoblock marine carbonate gas reservoir with its single size being the largest in China. The key to the realization of high and stable production gas wells in this gas reservoir is to identify accurately high-permeability zones where there are dissolved pores or dissolved pores are superimposed with fractures. However, high quality dolomite reservoirs are characterized by large burial depth and strong heterogeneity, so reservoir prediction is of difficult. In this paper, related seismic researches were carried out and supporting technologies were developed as follows. First, a geologic model was built after an analysis of the existing data and forward modeling was carried out to establish a reservoir seismic response model. Second, by virtue of well-oriented amplitude processing technology, spherical diffusion compensation factor was obtained based on VSP well logging data and the true amplitude of seismic data was recovered. Third, the resolution of deep seismic data was improved by using the well-oriented high resolution frequency-expanding technology and prestack time migration data of high quality was acquired. And fourth, multiple shoal facies reservoirs were traced by using the global automatic seismic interpretation technology which is based on stratigraphic model, multiple reservoirs which are laterally continuous and vertically superimposed could be predicted, and the areal distribution of high quality reservoirs could be described accurately and efficiently. By virtue of the supporting technologies, drilling trajectory is positioned accurately, and the deployed development wells all have high yield. These technologies also promote the construction of a modern supergiant gas field of tens of billions of cubic meters. © 2017, Natural Gas Industry Journal Agency. All rights reserved.
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页码:66 / 75
页数:9
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