Characteristics and Genetic Mechanism of Granite Weathering Crust of Songnan Low Uplift, Qiongdongnan Basin, South China Sea
Author:
Li Zhiyu123, Guo Jianhua123, Wu Shiqing123
Affiliation:
1. Key Laboratory of Metallogenic Prediction of Nonferrous Metals and Geological Environment Monitoring (Central South University), Ministry of Education, Central South University, Changsha 410083, China 2. Hunan Key Laboratory of Nonferrous Resources and Geological Hazards Exploration, Changsha 410083, China 3. School of Geoscience and Info-Physics, Central South University, Changsha 410083, China
Abstract
Recently, a large-scale gas reservoir was discovered in granitic buried hills of the Songnan Low Uplift in the Qiongdongnan Basin. However, the strong heterogeneity of granite reservoirs limits further exploration and evaluation. Based on observations of sixty core samples and sixty thin sections, mineral composition, zircon dating, apatite fission tracks, physical properties, image logs, outcrop surveys and seismic interpretations, the characteristics of granite weathering crust of the Songnan Low Uplift are analyzed, and its controlling factors and evolution process are evaluated. The results show that weathered granite in the study area can be divided into several zones, from top to bottom: eluvium–slope zone, sandy zone, weathered fracture zone and horizontal undercurrent vuggy zone. The reservoirs in the eluvium–slope zone are dominated by microfissures and intergranular dissolution pores and have an average porosity of 4.68% and permeability of 2.34 md; the reservoirs in the sandy zone are composed of intergranular and intragranular dissolution pores and have an average porosity of 11.46% and permeability of 4.99 md; the reservoirs in the weathered fracture zone consist of various fractures and have an average porosity of 3.91% and permeability of 2.5 md; the reservoirs in the horizontal undercurrent vuggy zone are subhorizontal fractures and vugs and have an average porosity of 2.7% and permeability of 0.23 md. The development of granite reservoirs is jointly influenced by petrology and minerals, long-term exposure in a warm humid paleoclimate, faults, diverse topographies and shallow buried depth. Based on the above, our study establishes a development model of weathering crust and suggests that only the gentle slope and platform remain strongly weathered zones. After undergoing a complex evolution process of formation–destruction/denudation–regeneration–preservation, the current weathering crust of the Songnan Low Uplift is finally established. The results of this study have important theoretical and application value for the hydrocarbon exploration of buried hills in the Qiongdongnan Basin and provide a reference example for other granite reservoirs worldwide.
Funder
Structural evolution of the Lingnan-songnan Low Uplift and its control of buried-hill reservoir
Reference75 articles.
1. Jiao, X., Niu, H., Xie, Q., Zattin, M., Zhang, Y., Wu, Z., Chen, Y., Zhao, X., Liu, S., and Wei, X. (2023). Insights into the Weathering Crust Reservoirs of Granitoids: A Case Study from Qinghai Oilfield of Qaidam Basin, Northwest China. Minerals, 13. 2. Reservoir characteristics and hydrocarbon accumulation models of the Bach Ho oilfield in Cuu Long Basin, Vietnam;Zhang;Geol. Explor.,2023 3. Tectonism and fracture-related dissolution induced the formation of the large-scale metamorphic granite reservoir: Implications from Bozhong 26-6 Precambrian bedrock trap, offshore Bohai Bay basin, Northern China;Ye;Mar. Pet. Geol.,2023 4. Formation of granitic and volcanic rock reservoirs and their exploration potential;Pan;Nat. Gas Geosci.,2007 5. Bach Ho Field, A Fractured Granitic Basement Reservoir, Cuu Long Basin, Offshore SE Vietnam: A “Buried-Hill” Play;Cuong;J. Pet. Geol.,2009
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