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首页> 外文期刊>Natural Gas Industry B >Electric property evidences of carbonification of organic matters in marine shales and its geologic significance: A case study of the Lower Cambrian Qiongzhusi shale in the southern Sichuan Basin
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Electric property evidences of carbonification of organic matters in marine shales and its geologic significance: A case study of the Lower Cambrian Qiongzhusi shale in the southern Sichuan Basin

机译:海相页岩有机质碳化的电性证据及其地质意义-以四川盆地南部下寒武统Qi竹寺页岩为例

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Searching for some reliable evidences that can verify the carbonification of organic matters in marine shales is a major scientific issue in selecting shale gas fairways in old strata. To this end, based on core, logging and testing data, the electric property of two organic-rich shale layers in the Lower Cambrian Qiongzhusi Fm. and the Lower Silurian Longmaxi Fm. in the southern Sichuan Basin was compared to examine the carbonification signs of organic matters in the Qiongzhusi shale and its influence on gas occurrence in the shales. The following conclusions were reached: (1) the electric property experiment shows that the Qiongzhusi shale in the study area has had carbonification of organic matters. The low resistivity of dry samples from this highly mature organic-rich shale and ultra-low resistivity on downhole logs can be used to directly judge the degree of organic matter carbonification and the quality of source rocks; (2) in the Changning area, the Qiongzhusi shale shows low resistivity of dry samples and low to ultra-low resistivity on logs, indicating that organic matters are seriously carbonized, while in the Weiyuan area, the Qiongzhusi shale shows a basically normal resistivity on log curves, indicating its degree of graphitization between the Longmaxi Fm. and Qiongzhusi Fm. in the Changning area; (3) shale with medium-to-high resistivity is remarkably better than that with ultra-low resistivity in terms of gas generation potential, matrix porosity and gas adsorption capacity; (4) industrial gas flow has been tested in the organic shales with medium-to-high resistivity in the Jianwei–Weiyuan–Tongnan area in the north, where the Qiongzhusi shale is a favorable shale gas exploration target.
机译:在选择旧地层中的页岩气航道时,寻找一些可靠的证据来验证海洋页岩中有机物的碳化是一个重大的科学问题。为此,根据岩心,测井和测试数据,确定了下寒武统琼竹寺组两个有机质丰富的页岩层的电学性质。和下志留纪龙马溪组。比较了四川盆地南部的to竹寺页岩中有机质的碳化迹象及其对页岩气发生的影响。得出以下结论:(1)电性能实验表明,研究区琼竹寺页岩有机质已碳化。来自这种高度成熟的富含有机物的页岩的干燥样品的低电阻率和井下测井的超低电阻率可用于直接判断有机物的碳化程度和烃源岩的质量; (2)在长宁地区,琼竹寺页岩表现出干样品的低电阻率,在测井曲线上呈现低至超低电阻率,表明有机质严重碳化,而在威远地区,琼竹寺页岩显示出基本电阻率正常。对数曲线,表明其在Longmaxi Fm之间的石墨化程度。还有琼竹寺在长宁地区; (3)中高电阻率的页岩在产气潜力,基质孔隙度和气体吸附能力方面明显优于超低电阻率的页岩。 (4)在北部的建威-威远-T南地区,在中等电阻率至高电阻率的有机页岩中测试了工业气体流,琼竹寺页岩是页岩气勘探的有利目标。

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