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Experimental and Numerical Analysis on the Specific Storage of Low Permeable Sandstone for Supercritical CO_2

机译:低渗透砂岩超临界CO_2比容实验与数值分析

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Experimental tests and numerical analysis were undertaken to investigate the specific storage of sedimentary rocks for supercritical CO_2. New laboratory system of constant flow pump permeability test was developed in order to measure permeability and specific storage of sedimentary rock in similar physical condition of deep aquifer where CO_2 tends to be in supercritical phase. To analyze experimental results, numerical analysis was established by extending the theoretical model of constant flow permeability to deal with two phase flow drainage displacement. For the examination of its applicability, experimental test was undertaken in which Ainoura sandstone used as core sample, injected with supercritical CO_2 under laboratory condition of 35°C constant reservoir temperature, 10 MPa initial hydraulic pressure, and 20 MPa constant overburden pressure The experimental results show that, average specific storage of Ainoura sandstone is about 3.74×10~(-4) I/Pa at a maximum CO_2 saturation of 0.55, and volumetric strain increases about 0.7%. The accuracy of specific storage measured was validated with ratio of the specific storage of the sandstone to the storage capacity of the pump used in the permeability test. This finding suggested that newly developed constant flow pump technique with its numerical analysis can be used to effectively obtain specific storage of sedimentary rock for CO_2 in supercritical phase.
机译:进行了实验测试和数值分析,以研究超临界CO_2沉积岩的比容。开发了新的恒流泵渗透率测试实验室系统,以测量在深层含水层相似物理条件下(CO_2趋于超临界阶段)沉积岩的渗透率和比容。为了分析实验结果,通过扩展恒流渗透率理论模型来处理两相流排水位移,建立了数值分析。为了检验其适用性,进行了试验,以Ainoura砂岩为岩心样品,在35°C恒定油藏温度,10 MPa初始水压和20 MPa恒定上覆压力的实验室条件下注入超临界CO_2。结果表明,在最大CO_2饱和度为0.55时,Ainoura砂岩的平均比储量约为3.74×10〜(-4)I / Pa,体积应变增加约0.7%。用砂岩的比存储与渗透率测试中使用的泵的存储容量之比来验证所测量的比存储的准确性。这一发现表明,新开发的恒流泵技术及其数值分析可以有效地获得超临界相中CO_2沉积岩的比容。

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