2022
DOI: 10.1155/2022/8430179
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Constraints on Diagenetic Fluid Source and Genesis in Tight Dolostone Reservoir of Submember Ma55 of Ordovician Majiagou Formation in Northwestern Ordos Basin, China: Evidence from Petrology and Geochemistry

Abstract: Diagenetic fluids is one of the most important reservoir modifiers, their differences can result in various petrography, storage capacity, and geochemical characteristics, so clarifying the diagenetic fluids is vital for understanding dolostone origin. Dolomitization is an important genetic type of dolostone reservoir, the fluid properties differ in different dolomitization, which may lead to reservoir storage capacity changes. Therefore, the identification of dolomitization fluid properties is critical for de… Show more

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“…After this, the magnesium-rich dolomitizing fluid formed by evaporation in the overlying strata refluxed into the permeable grain limestone, resulting in the dolomitization of the limestone particles and the formation of dolomite (Figure 7(c)). Meanwhile, some calcite components were still left in the intergranular pores between dolomite particles, and these calcite components will be dissolved by acidic formation fluids in the later stage to form dolomite intercrystalline pores [18,46,47]. With the continuous strengthening of the dissolution, the number of dolomite intercrystalline pores gradually increased (Figure 7(d)) and finally formed an intercrystalline pore dolostone reservoir.…”
Section: Reservoir Formation Mechanismmentioning
confidence: 99%
“…After this, the magnesium-rich dolomitizing fluid formed by evaporation in the overlying strata refluxed into the permeable grain limestone, resulting in the dolomitization of the limestone particles and the formation of dolomite (Figure 7(c)). Meanwhile, some calcite components were still left in the intergranular pores between dolomite particles, and these calcite components will be dissolved by acidic formation fluids in the later stage to form dolomite intercrystalline pores [18,46,47]. With the continuous strengthening of the dissolution, the number of dolomite intercrystalline pores gradually increased (Figure 7(d)) and finally formed an intercrystalline pore dolostone reservoir.…”
Section: Reservoir Formation Mechanismmentioning
confidence: 99%