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油藏主侧向渗透率关系研究及应用
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作者 马万里 高月红 付亮 《石油化工应用》 CAS 2015年第4期25-26,30,共3页
油藏在成藏过程中,沿着砂体主侧向砂颗粒分布不同导致渗透率不同。沿砂体主向、侧向的渗透率关系在数模、探测半径研究中具有重要意义,据调研,岩心分析主侧向渗透率规律不明显,本文利用动态方法,研究了油藏主侧向渗透率关系。
关键词 侧向渗透率 探测半径 注采比计算
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全直径岩心孔渗分析技术 被引量:5
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作者 郑新卫 刘新华 +3 位作者 马天游 张玲俐 刘伟 卿华 《录井工程》 2013年第2期27-30,90,共4页
全直径岩心分析是从储集层中取出整段岩心进行物性分析检测。由于特殊的非均质储集层在溶孔、裂缝发育段进行取样时,尤其是在大溶孔、网状缝或延伸大的裂缝处取小岩样时易于破碎,所取岩样往往不能准确反映某深度点整个井眼的孔隙发育情... 全直径岩心分析是从储集层中取出整段岩心进行物性分析检测。由于特殊的非均质储集层在溶孔、裂缝发育段进行取样时,尤其是在大溶孔、网状缝或延伸大的裂缝处取小岩样时易于破碎,所取岩样往往不能准确反映某深度点整个井眼的孔隙发育情况;而且,对孔隙欠发育且连通性较差的严重非均质地层,小岩样往往仅反映微小的局部地层,不能反映所对应深度的真实情况。为此,开展了全直径岩心分析技术的研究,详细介绍孔隙度、渗透率监测分析原理以及测量实验的操作步骤,进行了全直径岩心孔隙度、垂向和侧向渗透率、克氏渗透率的实验。经实例效果检验结果表明,通过全直径岩心分析获得的孔隙度、渗透率数据更合理准确,可提高缝洞、溶洞型非均质储集层物性参数的精度,从而为非均质储集层的油气层开发提供更为可靠的依据。 展开更多
关键词 全直径岩心 非均质储集层 物性参数 孔隙度 垂向渗透 侧向渗透率 克氏渗透
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Non-Darcy flow seepage characteristics of saturated broken rocks under compression with lateral constraint 被引量:2
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作者 Yu Bangyong Chen Zhanqing +1 位作者 Ding Qile Wang Luzhen 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第6期1145-1151,共7页
Using an MTS816.03 test system and self-designed seepage apparatus, seepage tests of saturated broken rocks were conducted, and the influence of lithology, axial stress, grain size distribution and loading rate on see... Using an MTS816.03 test system and self-designed seepage apparatus, seepage tests of saturated broken rocks were conducted, and the influence of lithology, axial stress, grain size distribution and loading rate on seepage characteristics was analyzed. The results show that: (1) Under the same axial stress (12 MPa), the permeability of different lithologic samples increases in the order: gangue 〈 mudstone 〈 sandstone 〈 limestone. The permeability of gangue is 3 magnitudes lower than that of limestone. The absolute value of the non-Darcy coefficient β increases in the order: limestone 〈 sandstone 〈 mudstone 〈 gangue. The non-Darcy coefficient β of limestone, which is positive, is 5 magnitudes lower than that of gangue. (2) With increasing axial stress, the permeability of saturated broken sandstone decreases, and the absolute value of the non-Darcy coefficient β increases. After the axial stress exceeds 12 MPa, the curves of permeability and non-Darcy coefficient β all tend to be stable. (3) With increasing Talbol power exponent, the permeability increases, and the absolute value of the non-Darcy coefficient β decreases. (4) With increasing loading, the permeability increases, and the absolute value of the non-Darcy coefficient β decreases. When the loading rate is 0.5 kN/s, the non-Darcy coefficient β is positive. 展开更多
关键词 Saturated broken rocks Seepage test Permeability Non-Darcy coefficient β
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