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Geothermal Resource Definition at Mt. Spurr, Alaska

机译:山的地热资源定义。阿拉斯加斯珀尔

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The active, Aleutian-arc stratovolcano Mt. Spun and its flank-cone, Crater Peak, are the target of current geothermal exploration in the western Cook Inlet. Lying just 80 miles west of Anchorage, AK, the Mt. Spurr complex serves as both a source of hazard and of potential energy. Recent eruptive episodes ('53 and '92) make development here challenging - but the young nature of the volcanic system (all less than ~255ka), extensive, active faulting, advanced surface alteration suites and fluid chemistries consistent with a geothermal reservoir, also make Mt. Spurr very prospective. Field reconnaissance during the summer of 2009 (including mapping and surface geochemical sampling) set the stage for a full-scale exploration program in the summer of 2010. High resolution satellite imagery coupled with LiDAR kicked-off the exploration program, providing base maps (especially structure) of this poorly known edifice. Heli-bourne aeromagnetics and an aggressive ground-based geophysical suite of gravity and MT were completed over several months. The synthesis of these datasets with additional geologic mapping, geochemical sampling and two ~1000' core holes have produced a working geothermal exploration model and served to elucidate large scale structural controls on this young volcanic edifice. Both deep and shallow features were identified in the geophysics and airborne LiDAR, including large scale conductors coincident with surface hydro-thermal fluid flow, de-magnetized regions coincident with LiDAR-delineated surface volcanic features and major and minor fault structures coincident with known regional structural trends. We plan to target these major structures (where coincident with geophysical anomalies) with additional intermediate depth core holes in the summer of 2011, the goal of which is to define a viable geothermal reservoir (temperature, fluid and permeability).
机译:活跃的阿留申弧形平流火山。 Spun及其侧面的圆锥形火山口峰是目前在库克湾西部的地热勘探的目标。位于阿拉斯加州安克雷奇以西仅80英里处。 Spurr复合体既是危险源,又是潜在能量。最近的爆发事件('53和'92)使这里的发展具有挑战性-但是火山系统的年轻性质(都小于255ka),广泛的,活跃的断层,先进的地表蚀变套件以及与地热储层相符的流体化学性质,使山。刺激性很强。 2009年夏季的野外侦察(包括测绘和地表地球化学采样)为2010年夏季的全面勘探计划奠定了基础。高分辨率卫星图像与LiDAR一起启动了勘探计划,提供了基础地图(尤其是底图)。结构)这个鲜为人知的大厦。 Heli-bourne航空磁学和一个具有侵略性的地面重力和MT地球物理套件在几个月内完成。这些数据集加上额外的地质图,地球化学采样和两个〜1000'的岩心孔,形成了一个有效的地热勘探模型,并阐明了这个年轻火山岩构造体的大规模结构控制。在地球物理和机载LiDAR中都识别出深浅特征,包括与地面水热流体流动相吻合的大型导体,与LiDAR所描述的表面火山特征相吻合的去磁区域以及与已知区域结构相吻合的主要和次要断层结构趋势。我们计划在2011年夏季将这些主要结构(与地球物理异常相一致)作为目标,并增加中间深度的岩心孔,其目标是定义一个可行的地热储层(温度,流体和渗透率)。

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