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Rhyolite Magma Drilled in Iceland Could Power the World's Hottest Enhanced Geothermal System

机译:在冰岛钻的流狼岩浆可以为世界上最热门的加强地热系统供电

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When molten rhyolite unexpectedly flowed into an exploratory geothermal borehole at approx2100 m depth in the Krafla central basaltic volcano, in Iceland, it created the prospect of producing geothermal energy of extremely high-enthalpy. The temperature of the intrusion most likely exceeded 900 deg C and had a pressure of 40 MPa, a pressure greater than hydrostatic for its depth. The low hydrogen and oxygen isotopic ratios of the glass indicate that this rhyolite magma formed by partial melting of hydrothermally altered basalts rather than by differentiation of mantle-derived basaltic magma. In August 2010, after being cooled for many months by injection of cold water, the borehole was completed as a production well and allowed to heat. By January 2010, the rate of heating indicated that the deepest part of the well would thermally equilibrate at approx500 deg C by October. The results of long-term flow tests, that began in mid-May and will continue for some months, will be reported at the GRC annual meeting. Today many EGS projects under development contemplate drilling production and injection wells as deep as 5 km to reach 200 deg C. At Krafla we are discussing creating the world's hottest enhanced geothermal system producing from geothermal system at 500 deg C at only 2 km depth. If successful, power outputs from the Krafla well would be orders of magnitude greater than those currently envisaged for EGS wells elsewhere.
机译:当熔尔尔氏龙龙矿就意外流入冰岛克拉夫拉中央玄武岩火山大约2100米深度的探索性地热钻孔时,它创造了生产极高焓的地热能的前景。入侵的温度最可能超过900℃并且具有40MPa的压力,压力大于其深度的静液压。玻璃的低氢和氧同位素比例表明,通过偏离水热改变的基础熔化而不是通过披露的玄武岩岩浆的分化来形成这种细流石岩浆。 2010年8月通过注射冷水冷却几个月后,钻孔作为生产良好完成并允许加热。到2010年1月,加热速度表明,井的最深部分将在10月份在大约500℃下热平衡。在GRC年度会议上会报告可在5月中旬开始并将持续几个月的长期流量试验结果。今天,许多EGS在开发项目下考虑钻井生产和注射井,深夜5公里达到200℃,我们正在讨论以200米的地热系统创造世界上最热门的加强地热系统,以500米深度。如果成功,krafla井的电源输出将比目前在其他地方设想的数量级。

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