Global distribution of the hydrocarbon Golden Zone

被引:5
作者
Angulo, Alejandra [1 ]
Vargas, Carlos A. [1 ]
机构
[1] Univ Nacl Colombia, Dept Geosci, Bogota, Colombia
关键词
Geothermal gradient; Curie point depth; Golden zone; Sedimentary basins; Hydrocarbon pattern distribution; CURIE-POINT DEPTHS; MAGNETIC-ANOMALIES; HEAT-FLOW; PETROLEUM SYSTEMS; SPECTRAL-ANALYSIS; EAST; EVOLUTION; GRAVITY; VERSION; URALS;
D O I
10.1016/j.marpetgeo.2022.105832
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The presence of sedimentary sequences located at temperatures ranging between 60 and 120 ? has permitted the identification of hydrocarbon accumulation patterns of economic importance. This thermal range is identi-fied as the "Golden Zone ", where there is a potential co-existence of the petroleum system elements that supports a minimal degree of degradation or transformation of hydrocarbons generated from source rocks, mainly in the hydrocarbon expulsion zone from approximately 120 & DEG;C-200 & DEG;C. The Golden Zone distribution can be repre-sented on maps to help distinguish regions of relevant hydrocarbon potential.This work presents global Golden Zone distribution maps, estimated using a global geothermal gradient model obtained using the Curie Point Depth (CPD) distribution constrained with geothermal gradients from direct wells temperature measurements and a global model of sedimentary thicknesses obtained from data reported by a diverse array of institutions. The Golden Zone maps show the variations in different geotectonic environments. The depth interval for the Golden Zone varies between 500 m and 3000 m for the top and from 1000 m to 5000 m for the base, with thicknesses ranging between 5 and 3000 m. The Golden Zone distribution estimated shows that along active tectonic margins, the sedimentary sequences tend to be thin, located with abrupt contrasts of the basement, and where one or both isotherms that define the Golden Zone are below the basins, preventing its proper development. Exceptions to this trend are in the fore-lands and some intermountain basins. In contrast, the passive margins are characterized by Golden Zone regions in which the sedimentary sequences present a wide range of thicknesses within basins of diverse ages and extensions.
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页数:19
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共 91 条
[31]   Depth to the bottom of magnetic layer in South America and its relationship to Curie isotherm, Moho depth and seismicity behavior [J].
Idarraga-Garcia, Javier ;
Vargas, Carlos A. .
GEODESY AND GEODYNAMICS, 2018, 9 (01) :93-107
[32]  
International Heat Flow Commission, 2019, GLOBAL HEAT FLOW DAT
[33]  
Jaupart C., 2007, Treatise on Geophysics, P217
[34]   Low geothermal heat flow of the Urals fold belt - Implication of low heat production, fluid circulation or palaeoclimate? [J].
Kukkonen, IT ;
Golovanova, IV ;
Khachay, YV ;
Druzhinin, VS ;
Kosarev, AM ;
Schapov, VA .
TECTONOPHYSICS, 1997, 276 (1-4) :63-85
[35]  
Laske G, 2013, Update on CRUST1.0-A 1-degree Global Model of Earth's Crust
[36]   Origin and diagenetic evolution of gypsum and microbialitic carbonates in the Late Sag of the Namibe Basin (SW Angola) [J].
Laurent, Gindre-Chanu ;
Edoardo, Perri ;
Ian, Sharp R. ;
Peacock, D. C. P. ;
Roger, Swart ;
Ragnar, Poulsen ;
Hercinda, Ferreira ;
Vladimir, Machado .
SEDIMENTARY GEOLOGY, 2016, 342 :133-153
[37]   Risk and uncertainty in petroleum exploration [J].
Lerche, I .
ENERGY EXPLORATION & EXPLOITATION, 1996, 14 (06) :503-505
[38]   A global reference model of Curie-point depths based on EMAG2 [J].
Li, Chun-Feng ;
Lu, Yu ;
Wang, Jian .
SCIENTIFIC REPORTS, 2017, 7
[39]  
Loegering MJ, 2017, GEOSCIENCES, V7, DOI 10.3390/geosciences7020033
[40]   Fighting over oil: Introducing a new dataset [J].
Lujala, Paivi ;
Rod, Jan Ketil ;
Thieme, Nadja .
CONFLICT MANAGEMENT AND PEACE SCIENCE, 2007, 24 (03) :239-256