Quantitative evaluation method for the effect of supercritical carbon dioxide injection on the pore-throat structure of low-permeability sandstone reservoirs
A technology for carbon dioxide and sandstone reservoirs, applied in permeability/surface area analysis, measurement devices, water resources assessment, etc., can solve problems that do not involve quantitative evaluation, and achieve the effect of maintaining the original characteristics and authentic experimental results
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Embodiment 1
[0050] A quantitative evaluation method for the impact of supercritical carbon dioxide injection on the pore throat structure of low-permeability sandstone reservoirs, including the following steps:
[0051] Step 1. Core preparation: drill a core from the full-diameter core, with a diameter of 2.5 cm and a length of 3.8 cm, wash with oil and dry, and the gas permeability of the core is 1.323×10 -3 μm 2 ; Prepare the working fluid, in order to remove the influence of ion precipitation on the pore throat structure, use distilled water without ions to simulate formation water;
[0052] Step 2, vacuumize and saturate with distilled water, calculate the core porosity to be 11.21%, and the pore volume to be 2.14ml;
[0053] Step 3: Measure the NMR T of the core before and after centrifugation 2 Spectrum;
[0054] Step 4. Since the core has been centrifuged, it is necessary to re-saturate distilled water;
[0055] Step 5. Place the core sample in the core holder and connect the C...
Embodiment 2
[0065] A quantitative evaluation method for the impact of supercritical carbon dioxide injection on the pore throat structure of low-permeability sandstone reservoirs, including the following steps:
[0066] Step 1. Core preparation: drill a core from a full-diameter core, with a diameter of 2.5 cm and a length of 3.8 cm, wash with oil and dry, and the gas permeability of the core is 0.137×10 -3 μm 2 ;Prepare the working solution, according to the water type analysis results in the research area, use 20000mg / L CaCl 2 The solution simulates formation water;
[0067] Step 2: Vacuumize and saturate CaCl 2 solution, the calculated core porosity is 7.27%, and the pore volume is 1.36ml;
[0068] Step 3: Measure the NMR T of the core before and after centrifugation 2 Spectrum;
[0069] Step 4. Since the core has been centrifuged, it needs to be resaturated with CaCl 2 solution;
[0070] Step 5. Place the core sample in the core holder and connect the CO 2 Flooding process, se...
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