Acid sensitivity evaluation of ultra-low permeability reservoir in structure-B of Bohai Bay
- Issue 5, Pages: 703-708(2021)
Published:2021
DOI: 10.13809/j.cnki.cn32-1825/te.2021.05.006
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Published:2021
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针对渤海B构造特低渗—低渗储层
开展酸敏性实验评价。结合铸体薄片、扫描电镜、核磁共振
X-衍射等分析化验资料
对酸岩反应前后岩石样品孔隙结构变化及其原因进行了分析
并探讨了土酸酸化储层的适用性。结果表明:研究区砂砾岩和片麻岩储层与土酸(7.2%HCl+3%HF)反应后
储层基本无伤害。酸岩后应后
研究区储层样品微孔隙发育
长石颗粒溶蚀孔发育
未见碳酸盐等易溶矿物
有效面孔率均增大
大、小孔隙数据增多
T2截止值和束缚水饱和度均变小
孔隙结构变好;砂砾岩碎屑颗粒间仍呈线状—凹凸状接触
片麻岩储层矿物变晶仍呈粒状紧密接触
储层骨架稳定性仍较好。易溶型碳酸盐胶结物酸化溶蚀后
是造成储层孔隙结构变好的关键因素
因酸敏矿物绿泥石而产生的二次沉淀和不溶微粒堵塞孔喉对储层损害程度也较小。土酸与研究区储层反应后
孔隙结构得到改善
对改善储层渗透率具有一定的作用。
The acid sensitivity test has been carried out to evaluate the ultra-low permeability reservoir in structure-B of Bohai Bay. Combined with the analysis and test data such as casting thin sections
scanning electron microscope
nuclear magnetic resonance and X-ray diffraction
the reason of rock pore structure changes before and after the acid-rock reaction has been analyzed
and the applicability of the mud acid acidizing reservoir has been discussed. The results showed that the reservoirs of the glutenite and gneiss in the study area are basically unharmed after reacting with the soil acid(7.2 %HCl+3 %HF). After the acidrock reaction of the samples in the study area
the micropores and the dissolution pores of feldspar particles develop
no carbonate or other soluble minerals are found
the effective face rate and data of large and small pores increase
the cut-off value of T2 spectrum and irreducible water saturation decrease
and the pore structure become better. Meanwhile
the clastic grains of the glutenite are still in linear-convexity contact
the mineral metamorphic grains of gneisses reservoir are still in granular close contact
and the reservoir framework is still stable. The acidification and dissolution of soluble carbonate cement is the key factor to change the pore structure of reservoir in the study area. Secondary precipitation caused by acid-sensitive mineral chlorite and blockage of pore throat by insoluble particles have little damage to the reservoir. After the reaction of soil acid with the reservoir in the study area
the pore structure is improved
showing a constructive role
which has a certain applicability to improve the reservoir permeability.
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