In-situ Fluid Phase Variation along the Thermal Maturation Gradient in Shale Petroleum Systems and Its Impact on Well Production Performance

In-situ fluid phase behavior is important in determining hydrocarbon contents and the multiphase flow through shale reservoirs. The gas-to-oil ratio (GOR) has been recognized as a critical indicator of fluid types. However, little is known about the impact of fluid phase variation across the thermal...

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Veröffentlicht in:Journal of earth science (Wuhan, China) China), 2023-08, Vol.34 (4), p.985-1001
Hauptverfasser: Wang, Qianyou, Yang, Wei, Li, Yaohua, Jiang, Zhenxue, Wen, Ming, Zuo, Rusi, Wang, Xin, Xue, Zixin, Wang, Yaohua
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Sprache:eng
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Zusammenfassung:In-situ fluid phase behavior is important in determining hydrocarbon contents and the multiphase flow through shale reservoirs. The gas-to-oil ratio (GOR) has been recognized as a critical indicator of fluid types. However, little is known about the impact of fluid phase variation across the thermal maturity on shale oil/gas production (e.g., estimated ultimate recovery, EUR). According to the specific gravity ratio of oil/gas, the producing GOR was converted and normalized into a mass fraction of gas in total hydrocarbons ( M GOR ) to compare North American shale oil/gas plays with Chinese shale oil and hybrid gas-condensate plays. A correlation between M GOR , the fluid phases, and production data was established to identify five phase stages of flow. M GOR varies systematically with the different production zones, which shows promise in rapidly indicating the well production performance and high production stages of shale oil/gas plays. The hybrid shale gas condensate index, T max , and total gas contents were integrated to present the fluid types and maturity of shale gas-condensates, which indicates fluid phase and production variation across thermal evolution. The results offer a unique perspective on the shale oil reservoir producibility based on the impact of GOR on fluid phases and EUR from the dominant global oil/gas plays.
ISSN:1674-487X
1867-111X
DOI:10.1007/s12583-022-1693-2