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机构地区:[1]北京奥伯特华能科技发展有限公司,北京100084 [2]中国石油大学石油天然气工程学院,北京102249 [3]胜利油田分公司采油工艺研究院,山东东营257000
出 处:《断块油气田》2010年第5期566-570,共5页Fault-Block Oil & Gas Field
基 金:国家科技重大专项课题"热力开采后稠油油藏提高采收率技术"(2009ZX05009-004)
摘 要:三维静态温度分布的计算是依据稠油油藏导热特性,结合井温测井资料及水平井筒微元导热机理分析,并合理假设油藏条件,建立油层三维导热柱状温度分布模型,采用差分方程径向与轴向先分离再结合的方法进行整合,再使用不完全LU分解和ORTHOMIN加速方法对数学模型进行求解。利用该模型分析稠油热采水平井三维导热机理,计算热采水平井焖井地层网格的温度分布差异,计算水平井蒸汽吞吐静态三维温度场,为最终优选注采参数及提高最终采收率提供依据。The calculation of three-dimensional static temperature profile is based on the thermal conductivity characteristics of heavy oil reservoir and combined with the temperature logging data and the analysis of infinitesimal length thermal conductivity mechanism in horizontal wellbore.Through reasonably assuming the reservoir conditions,this paper established the temperature profile model of three-dimensional thermal conductivity and used the method of firstly separating differential equation into radial and axial and then integrating.The mathematical model can be solved by using the incomplete LU solution and the accelerated method of ORTHOMIN.By the use of the mathematical model,three-dimensional thermal conductivity mechanism of heavy oil and thermal recovery horizontal well were analyzed.The difference of temperature profile in thermal recovery horizontal wells and the static three-dimensional temperature field for steam huff and puff of horizontal well were calculated,which can provide a basis for optimizing injection and production parameters and improving EOR.
关 键 词:稠油热采 水平井 三维导热模型 温度剖面 有限差分 导热系数 井温测井
分 类 号:TE345[石油与天然气工程—油气田开发工程]
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