基于反褶积驱动的长期压力和速率分析的凝析气田井距验证

Muratbek Aibazarov, B. Kaliyev, G. Mutaliyev, Emanuele Vignati, D. Gulyaev, V. Krichevsky, A. Buyanov
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引用次数: 4

摘要

在油藏钻井阶段,井距优化是非常重要的。这对整个项目的经济性至关重要。在油藏已经钻探完成后,了解现有井是否耗尽了为提高采收率所需的所有储量是非常重要的。在卡拉恰甘纳克凝析气田西部试验区解决了这一问题。它有一个复杂的地质,作为石炭纪时代的一个巨大的非均质碳酸盐礁。储层流体的PVT特性随深度变化显著。该地区采用水平井生产,以最大限度地与储层接触。基于多井历史速率反褶积和井底的多井回溯测试(MRT)揭示了井排水面积和井干扰(1 - Aslanyan, 2018;2 - Aslanyan 2017, 3 - Aslanyan 2019)。MRT研究表明,在西部构造核心等特定区域,压力枯竭趋势明显,井间连接良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Well Spacing Verification At Gas Condensate Field Using Deconvolution Driven Long-Term Pressure and Rate Analysis
Well spacing optimization is very important at the stage of drilling the reservoir. It is critical for the whole project economics. After the reservoir is already drilled it is very important to understand does existing wells drain all the reserves of infill drilling requires to improve recovery. Such task was solved on a tested area - Western part of Karachaganak gas condensate field. It has a complex geology, built as a massive heterogeneous carbonate reef of a Carboniferous age. PVT properties of the reservoir fluid significantly varies with depth. The area is produced with horizontal wells to maximize contact with the reservoir. The Multi-well Retrospective Testing (MRT) on base of multi-well deconvolution of historical rate and bottom-hole revealed well drainage area and well interference (1 – Aslanyan, 2018; 2 – Aslanyan 2017, 3 – Aslanyan 2019). The MRT study is showing a strong pressure depletion trend and a fair connection between wells in the certain areas like core of western build up.
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