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Enhanced Geothermal System Potential for Sites on the Eastern Snake River Plain, Idaho

机译:爱达荷州蛇河平原东部站点的增强地热系统潜力

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The Snake River volcanic province overlies a thermal anomaly that extends deep into the mantle and represents one of the highest heat flow provinces in North America (Blackwell and Richards, 2004). This makes the Snake River Plain (SRP) one of the most under-developed and potentially highest producing geothermal districts in the United States. Elevated heat flow is typically highest along the margins of the topographic SRP and lowest along the axis of the plain, where thermal gradients are suppressed by the Snake River aquifer. Beneath this aquifer, however, thermal gradients rise again and may tap even higher heat flows associated with the intrusion of mafic magmas into the mid-crustal sill complex (e.g., Blackwell, 1989).
机译:斯内克河火山省位于一个热异常上,该异常一直延伸到地幔深处,代表了北美最高的热流量省份之一(布莱克韦尔和理查兹,2004年)。这使得斯内克河平原(SRP)成为美国最不发达和可能产量最高的地热地区之一。沿着地形SRP的边缘,升高的热流通常最高,而沿着平原的轴线则低,而斯纳克河含水层抑制了热梯度。然而,在该含水层之下,热梯度再次上升,并且可能吸收与铁镁质岩浆侵入到中地壳基岩复合体相关的更高的热流(例如,Blackwell,1989)。

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