首页> 外文会议>Workshop on Geothermal Reservoir Engineering >A Conceptual Geologic Model for the Newberry Volcano EGS Site in Central Oregon: Constraining Heat Capacity and Permeability through Interpretation of Multicomponent Geosystems Data
【24h】

A Conceptual Geologic Model for the Newberry Volcano EGS Site in Central Oregon: Constraining Heat Capacity and Permeability through Interpretation of Multicomponent Geosystems Data

机译:俄勒冈州中部的纽棕榈火山egs网站的概念性地质模型:通过解释多组分地质系统数据来限制热容和渗透率

获取原文

摘要

Newberry Volcano, a voluminous (500 km~3) basaltic/andesitic/rhyolitic shield volcano located near the intersection of the Cascade volcanic arc, the Oregon High Lava Plains and Brothers Fault Zone, and the northern Basin and Range Province, has been the site of geothermal exploration for more than 40 years. This has resulted in a unique resource: an extensive set of surficial and subsurface information appropriate to constrain the baseline structure of, and conditions within a high heat capacity magmatically hosted geothermal system. In 2012 and 2014 AltaRock Energy conducted repeated stimulation of an enhanced geothermal systems (EGS) prospect along the western flank of the Newberry Volcano. A surface based monitoring effort was conducted independent of these stimulation attempts in both 2012 and 2014 through a collaboration between NETL, Oregon State University and Zonge International. This program included utilization of 3-D and 4-D magnetotelluric, InSAR, ground-based interferometric radar, and microgravity observations within and surrounding the planned EGS stimulation zone. These observations as well as borehole and microseismic stress field and location solutions provided by AltaRock and its collaborators, in combination with well logs, petrologic and geochemical data sets, LIDAR mapping of fault traces and extrusive volcanics, surficial geologic mapping and seismic tomography, have resulted in development of a framework, subsurface geologic model for Newberry Volcano. The Newberry subsurface geologic model is a three-dimensional digital model constructed in EarthVision that enables lithology, directly and remotely measured material properties, and derived properties such as permeability, porosity and temperature, to be co-registered. This provides a powerful tool for characterizing and evaluating the sustainability of the site for EGS production and testing, particularly within the data-dense western portion of the volcano. The model has implications for understanding the previous EGS stimulations at Newberry as well as supporting future research and resource characterization opportunities. A portion of the Newberry area has been selected as a candidate site for the DOE FORGE (Frontier Observatory for Research in Geothermal Energy) Program through a collaboration between Pacific Northwest National Laboratory, Oregon State University, AltaRock Energy and additional partners. Thus, the conceptual geologic model presented here will support and benefit from future enhancements associated with that effort.
机译:纽棕榈火山,一大堆(500公里〜3)玄武岩/钻石/菱形盾火山位于梯级火山弧线附近,俄勒冈州高熔岩平原和兄弟断层区,以及北部流域省,一直是该网站地热勘探超过40年。这导致了一个独特的资源:一种广泛的结构和地下信息,适用于限制高热容量Magicicization地热系统内的基线结构和条件。在2012年和2014年,Altarock Energy沿着Newberry Volcano的西部侧面进行了一再刺激了增强的地热系统(EGS)前景。通过基于2012年和2014年的这些刺激尝试,通过Netl,俄勒冈州立大学和Zonge International之间的合作,与2012年和2014年的这些刺激尝试无关。该程序包括利用3-D和4-D磁函数,INSAR,基于地基干涉雷达,以及在计划的EGS刺激区内和周围的微匍匐观察。这些观察结果以及由Altarock及其合作者提供的钻孔和微震应力场和位置解决方案,以及井日志,岩石学和地球化学数据集,故障痕迹的激光雷达映射和喷射火山,表地地质映射和地震层析成像在开发框架中,新果火山地下地质模型。 Newberry地下地质模型是在抗体中构造的三维数字模型,其使岩性,直接和远程测量的材料特性,以及衍生性能,例如渗透性,孔隙率和温度,以共同登记。这提供了一种强大的工具,用于表征和评估站点的可持续性,以便在Volcano的数据密集的西部部分内进行生产和测试。该模型对纽尔和支持未来的研究和资源特征机会来了解以前的egsegegs刺激的影响。通过太平洋西北国家实验室,俄勒冈州立大学,矿井能源和额外合作伙伴的合作,已经选择了一部分DOE Forge(地热能源能源)计划的候选站点。因此,这里呈现的概念地质模型将支持和受益于与该努力相关的未来增强功能。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号