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作 者:王春禹[1] 杨晶[1] 孟祥雯 孙守檬 李勇志[1] 冯春[1] WANG Chun-yu;YANG Jing;MENG Xian-wen;SUN Shou-meng;LI Yong-zhi;FENG Chun(Northeast Petroleum University,Heilongj iang Daqing 163318,China)
出 处:《当代化工》2018年第6期1231-1234,共4页Contemporary Chemical Industry
摘 要:利用微流量计量仪,通过"压差-流量"法,精确测定了油藏水驱和乳状液驱的启动压力梯度,深入分析了油藏非线性渗流特征,重点研究了乳状液对油藏启动压力梯度的影响和作用机理。结果表明,油藏的压差-流量曲线是一条上凹型曲线,这条曲线并不具备达西特征,相反,拥有非达西渗流特征。启动压力梯度和渗透率之间存在某种关系,经过研究之后发现是乘幂关系。渗透率减小时,启动压力梯度会增大。水驱平均启动压力梯度为0.05 MPa/m,乳状液驱平均启动压力梯度为0.039 MPa/m。乳状液之所以会有效降低启动压力梯度,是因为它能够显著降低界面张力,减小了边界层的渗流阻力。乳状液界面张力越低,启动压力梯度也就越小。Using micro flow meter, by the "differential pressure flow" method, the start-up pressure gradients of reservoir water drive and emulsion flooding were precisely determined, and the nonlinear seepage characteristics of reservoir were analyzed. The influence and mechanism of emulsion on the start-up pressure gradient of reservoir were mainly studied. The results showed that the pressure difference flow curve of the reservoir was a concave curve, and it had not the characteristics of Darcy flow; the starting pressure gradient had exponential relationship with the permeability, the starting pressure gradient increased with the decrease of permeability, the water flooding average starting pressure gradient was 0.05 MPa/m, the emulsion flooding starting pressure gradient was 0.039 MPa/m;the lower the interfacial tension of the emulsion, the smaller the starting pressure gradient.
分 类 号:TE83[石油与天然气工程—油气储运工程]
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