中国珠江口盆地白云沙格地热田特征及构造热演化过程

Xudong Wang , Nansheng Qiu , Guangrong Peng , Xiangtao Zhang , Kongsen Li , Jian Chang , Yinglin Zhang , Qingsong He
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摘要

白云沙格已成为珠江口盆地深水勘探的主要重点。然而,其复杂多变的地热特征严重制约了进一步的油气勘探和资源评价。本研究基于岩石热导率和发热量实测数据、钻孔温度、低温测温仪分析和地球动力学方法,系统研究了白云沙格的地热田现状和构造热演化历史。251 个岩心样品的导热系数范围为 1.131 至 4.478 W/(m-K),平均为 2.258 W/(m-K);106 个样品的发热率范围为 0.868 至 1.735 μW/m³,平均为 1.499 μW/m³。白云相的导热系数从文昌层到汉江层呈逐渐下降趋势,而发热率则随深度的增加而降低。白云嵯峨现热流范围为 66.6 至 139.1 mW/m2,平均为 89.7 ± 14.7 mW/m2,呈自西北向东南逐渐增大的趋势。1-5 千米深处的地层温度随深度成比例上升。根据六个基底样本的低温热年代学数据推断,热反演揭示了白云嵯峨每个构造单元的不同温度路径。这些路径主要与区域构造抬升-下沉和基底热流变化有关。地球动力学模拟进一步表明,白云嵯峨在始新世和中新世发生了两次扩展事件,导致基底热流迅速增加。该研究系统地阐明了白云嵯峨现今的地热田特征和构造热演化历史,对区域构造演化和未来深水油气勘探具有重要意义。
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Characteristics of geothermal field and tectono-thermal evolution in Baiyun Sag, Pearl River Mouth Basin, China

Baiyun Sag has become the primary focus of deepwater exploration in the Pearl River Mouth Basin. However, its complex and high-variate geothermal characteristics have severely constrained further oil and gas exploration and resource evaluation. In this study, the present-day geothermal field and tectono-thermal evolution histories of Baiyun Sag were systematically studied based on measured rock thermal conductivity and heat generation data, borehole temperatures, low-temperature thermochronometer analyses, and geodynamic methodologies. The thermal conductivity of 251 core samples ranges from 1.131 to 4.478 W/(m·K), with an average of 2.258 W/(m·K), while the heat generation rate of 106 samples ranges from 0.868 to 1.735 μW/m³, averaging 1.499 μW/m³. The thermal conductivity in Baiyun Sag exhibits a gradual decrease from the Wenchang Formation to the Hanjiang Formation, whereas the heat generation rate decreases with depth. The present-day heat flow in Baiyun Sag ranges from 66.6 to 139.1 mW/m2, with an average of 89.7 ± 14.7 mW/m2, showing a gradual increasing trend from northwest to southeast. Formation temperature at depths of 1–5 km increases proportionally with depth. Thermal inversion, as inferred from low-temperature thermochronological data of six basement samples, reveals distinct temperature paths for each tectonic unit in Baiyun Sag. These paths are primarily linked to regional tectonic uplift-subsidence and basement heat flow variation. Geodynamic simulations further indicate two extensional events in Baiyun Sag during the Eocene and Middle Miocene, leading to a rapid increase in basement heat flow. This study systematically elucidates the present-day geothermal field characteristics and tectono-thermal evolution history of Baiyun Sag, bearing significant implications for regional tectonic evolution and future deepwater oil and gas explorations.

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