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首页> 外文期刊>The Journal of Canadian Petroleum Technology >Understanding SAGD Producer Wellbore/Reservoir Damage Using Numerical Simulation
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Understanding SAGD Producer Wellbore/Reservoir Damage Using Numerical Simulation

机译:使用数值模拟了解SAGD生产井眼/储层伤害

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摘要

This paper reports on the results of a numerical simulation study of a SAGD well pair at Husky's Pikes Peak thermal project in the Lloydminster area. The pressure difference between the injector and producer wells gradually increased over a period of a year followed by a sudden and significant decline in the fluid production rate. Initial numerical simulation identified the problem as being due to damage near the production well, because only this damage pattern matched observations of field production and pressure. A detailed history match of the field data was then conducted. By adjusting the value of skin factor, excellent matches on the production rate and injection and production pressure were obtained. It was shown that by the time the skin factor had increased by a factor of 8 as a result of damage, and the pressure difference was about 900 kPa, the production rate started to drop significantly. Thereafter, the skin factor increased rapidly, and reached 30 times its original value. An acid treatment was performed on the production well. After the treatment, the skin factor returned to its original value, and the well pair returned to normal production. This case study is an example of how numerical simulation can be used as a tool to diagnose, identify and analyze SAGD operational problems.
机译:本文报告了在劳埃德明斯特地区赫斯基的派克峰热工项目的SAGD井对的数值模拟研究结果。注入井和生产井之间的压力差在一年的时间内逐渐增大,随后流体生产率突然而显着下降。最初的数值模拟将问题确定为是由于生产井附近的损坏所致,因为只有这种损坏方式才与现场生产和压力的观测值相匹配。然后进行了现场数据的详细历史匹配。通过调整表皮系数的值,可以在生产率,注射量和生产压力方面获得出色的匹配。结果表明,当表皮因子因损坏而增加了8倍,并且压差约为900 kPa时,生产率开始显着下降。此后,皮肤因子迅速增加,并达到其原始值的30倍。在生产井上进行了酸处理。处理后,表皮因子恢复到其原始值,并且该对井恢复了正常产量。此案例研究是一个示例,说明了如何将数值模拟用作诊断,识别和分析SAGD操作问题的工具。

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