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Characteristics of lacustrine shale porosity evolution, Triassic Chang 7 Member, Ordos Basin, NW China

机译:中国西北鄂尔多斯盆地三叠系昌7段湖相页岩孔隙度演化特征

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With low mature Triassic Chang 7 Member shale samples from the Ordos Basin as study object, the 3-D porosity evolution with temperature increase and its main controlling factors are analyzed based on the physical modeling under high temperature & pressure and nano-CT scanning data. More and more nano-pores were developed in Chang 7 Member organic-rich shale with the increase of maturity. The porosity calculated from the nano-CT scanning model increased from 0.56% to 2.06%, more than 250% times larger, when temperature increased from 20 °C to 550 °C. The process of porosity evolution can be divided into three phases. Firstly, porosity decreased rapidly from immature to low mature stage because of weak hydrocarbon generation and strong compaction; Secondly, porosity increased rapidly when the maturity increased from low mature stage to mature and post-mature stage, organic matter cracked into hydrocarbon (HC) massively, and clay minerals transformed intensively; Thirdly, porosity system kept stable when the shale entered into post-mature stage and the intensity of both HC generation and clay mineral transformation decreased. Organic matter thermal evolution, clay mineral transformation and brittle mineral transformation make different contribution to the porosity of shale, and the ratio is 6:3:1 respectively. It is inferred abundant organic matter pores occur whenRois over 1.2%.
机译:以鄂尔多斯盆地低成熟三叠系长7段页岩样品为研究对象,基于高温高压下的物理模型和纳米CT扫描数据,分析了随温度升高的3-D孔隙度演化及其主要控制因素。随着成熟度的增加,长7段富含有机质的页岩中形成了越来越多的纳米孔。当温度从20°C升高到550°C时,从nano-CT扫描模型计算出的孔隙率从0.56%增加到2.06%,是原来的250%倍。孔隙度的演化过程可以分为三个阶段。首先,由于生烃能力弱和压实作用强,孔隙度从不成熟阶段迅速下降到低成熟阶段。其次,当成熟度从低成熟期增加到成熟期和后成熟期时,孔隙度迅速增加,有机质大量裂解成烃(HC),粘土矿物强烈转化。第三,页岩进入成熟期后,孔隙系统保持稳定,HC生成和粘土矿物转化的强度均降低。有机质热演化,粘土矿物转化和脆性矿物转化对页岩孔隙度的贡献不同,其比例分别为6:3:1。可以推测,当Rois超过1.2%时,会出现大量的有机质孔。

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