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首页> 外文期刊>Hydrogeology Journal >Hydrogeological model of a high-energy geothermal field (Bouillante area, Guadeloupe, French West Indies)
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Hydrogeological model of a high-energy geothermal field (Bouillante area, Guadeloupe, French West Indies)

机译:高能地热场的水文地质模型(法属西印度群岛瓜德罗普岛的布伊兰特地区)

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摘要

The Bouillante geothermal field provides about 8% of the annual electricity needs of the French West Indies island of Guadeloupe. It has been the subject of several studies covering various disciplines. A hydrogeological conceptual model of the field is proposed. The reservoir consists of two perpendicular sets of fractures and faults, related to major regional tectonic structures, which have been clogged near surface by self sealing. The heat exchanges of the reservoir with the outside are reduced, through thermal and hydraulic blanketing, to conductive transfers. Convection cells are active within the reservoir, ensuring its thermal and geochemical homogeneity. Heat exchange with the magmatic chamber is only conductive. The Na–Cl geothermal fluid in the reservoir is composed of 60% seawater and 40% freshwater and has reached a chemical equilibrium with a mineralogical assemblage at 250–260°C. Many arguments (equilibrium state, absence of tritium, low in/out fluxes, large reservoir volume) suggest a long residence time (>100 years) of the geothermal fluid. Three factors explain the existence and location of the geothermal field: a heat source (cooling hypovolcanic intrusion), a network of permeable fractures at the origin of the geothermal aquifer, and an impermeable surface cover, limiting the loss of energy and ensuring the durability of the field.
机译:Bouillante地热田提供了瓜德罗普岛法国西印度群岛每年约8%的电力需求。它已成为涵盖各个学科的几项研究的主题。提出了该领域的水文地质概念模型。该油藏由与主要的区域构造结构有关的两组垂直的裂缝和断层组成,这些裂缝和断层已通过自密封在地表附近被堵塞。通过热和液压覆盖,储层与外界的热交换减少为传导性传递。对流单元在储层内活跃,确保其热和地球化学均匀性。与岩浆室的热交换仅是传导性的。水库中的Na–Cl地热流体由60%的海水和40%的淡水组成,在250–260°C时已达到化学平衡并具有矿物组成。许多论点(平衡态,不存在,、低通/低通量,大油藏体积)表明地热流体的停留时间较长(> 100年)。三个因素解释了地热场的存在和位置:一个热源(冷却性火山爆发侵入),地热含水层起点处的渗透性裂缝网络以及不渗透的表面覆盖层,这限制了能量的损失并确保了地热的持久性。场。

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