...
首页> 外文期刊>Ciencia Tecnologia y Futuro >EVALUACIóN CUANTITATIVA DE LA DIAGéNESIS Y DE LA EVOLUCIóN DE LA POROSIDAD DE YACIMIENTOS DE ARENAS COMPACTAS: UN CASO DE ESTUDIO DE LA FORMACIóN YANCHANG EN LA CUENCA ORDOS DEL SUR, CHINA.
【24h】

EVALUACIóN CUANTITATIVA DE LA DIAGéNESIS Y DE LA EVOLUCIóN DE LA POROSIDAD DE YACIMIENTOS DE ARENAS COMPACTAS: UN CASO DE ESTUDIO DE LA FORMACIóN YANCHANG EN LA CUENCA ORDOS DEL SUR, CHINA.

机译:砂砾岩成岩作用和孔隙度演化的定量评价-以中国鄂尔多斯德尔苏尔盆地延长组形成为例。

获取原文

摘要

Evaluation of the pore evolution is key to gaining a better understanding of oil migration and accumulation in tight oil exploration for tight sandstone; to study the diagenesis and porosity evolution of tight sandstone reservoirs, we analysed the 8th member of the Yanchang Formation by core observation, thin section observation, cathodoluminescence, scanning electron microscopy, and logging data analysis. The following conclusions can be drawn (1) In the typical tight sandstone reservoir, numerous secondary pores developed at burial depths in the range of 1300 m to 1400 m, and approximately 1500 m to 1600 m. (2) Compaction was the most influential factor of reservoir density and decreased the average pore size by 24.8%. Carbonate cementation decreased the porosity by 8.2%. The most important diagenetic process for increasing the reservoir porosity was dissolution, which increased the pore size by 5.1%. In addition, chlorite played an active role in inhibiting secondary quartz growth and preserving primary pores. (3) The early gas invasion can inhibit diagenesis, and the organic acids produced by the later oil can increase dissolution, so that the high oil saturation phenomenon becomes more obvious.
机译:评估孔隙演化是更好地了解致密砂岩致密油勘探中油运移和聚集的关键。为了研究致密砂岩储层的成岩作用和孔隙度演化,我们通过岩心观察,薄片观察,阴极发光,扫描电镜和测井资料分析对了延长组的第8段进行了分析。可以得出以下结论:(1)在典型的致密砂岩储层中,埋藏深度在1300 m至1400 m以及大约1500 m至1600 m范围内发育出许多次生孔隙。 (2)压实是影响储层密度的最大因素,平均孔径降低了24.8%。碳酸盐胶结使孔隙率降低了8.2%。增加储层孔隙度最重要的成岩作用是溶解,孔隙度增加了5.1%。此外,亚氯酸盐在抑制次生石英的生长和保留初级毛孔方面也起着积极的作用。 (3)早期的气体入侵可以抑制成岩作用,后期的油产生的有机酸可以增加溶解度,从而使高油饱和度现象更加明显。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号