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The Concept of the Japan Beyond-Brittle Project (JBBP) to Develop EGS Reservoirs in Ductile Zones

机译:日本超越脆性项目(JBBP)的概念,用于在延性地区开发EGS油藏

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New conventional geothermal energy projects have not been actively promoted in Japan for the last decade because of perceptions of high relative cost, limited electricity generating potential and the high degrees of uncertainties and associated risks of subsurface development. More recently however, EGS (Enhanced Geothermal System) geothermal has been identified as a most promising method of geothermal development because of its potential applicability to a much wider range of sites, many of which have previously been considered to be unsuitable for geothermal development. Meanwhile, some critical problems with EGS technologies have been experimentally identified, such as low recovery of injected water, difficulties in establishing universal design/development methodologies, and the occurrence of induced seismicity, suggesting that there may be limitations in realizing EGS in earthquake-prone compression tectonic zones.We propose a new concept of engineered geothermal development where reservoirs are created in ductile basement. This potentially has a number of advantages including: (a) simpler design and control of the reservoir, (b) nearly full recovery of injected water, (c) sustainable production, (d) lower cost when developed in relatively shallower ductile zones in compression tectonic settings, (e) large potential quantities of energy extraction from widely distributed ductile zones, (f) the establishment of a universal design/development methodology, and (g) suppression of felt earthquakes from/around the reservoirs.To further assess the potential of EGS reservoir development in ductile zones we have initiated the "Japan Beyond-Brittle Project (JBBP)". It is intended that the first few years of the JBBP will be spent in basic scientific investigation and necessary technology development, including studies on rock mechanics in the brittle/ductile regime, characterization of ductile rock masses,development of modeling methodologies/technologies, and investigations of induced/triggered earthquakes. We expect to drill a deep experimental borehole that will penetrate the ductile zone in northeast Japan after basic studies are completed. The feasibility of EGS reservoir development in the ductile zone will then be assessed through observations and experimental results in the borehole.
机译:在过去的十年中,由于人们认识到相对成本高,发电潜力有限,不确定性高以及地下发展带来的相关风险,日本尚未积极推动新的常规地热能项目。然而,最近,由于EGS(增强型地热系统)地热技术潜在地适用于更广泛的地点,因此以前被认为是最有前途的地热开发方法,其中许多地点以前被认为不适用于地热开发。同时,已经通过实验确定了EGS技术的一些关键问题,例如注入水的回收率低,难以建立通用的设计/开发方法以及诱发地震的发生,这表明在地震多发地区实现EGS可能会受到限制。我们提出了一种工程地热开发的新概念,即在韧性地下室中建立储层。这可能具有许多优点,包括:(a)储层的设计和控制更简单;(b)注入水的几乎全部回收;(c)可持续生产;(d)在相对较浅的延性带中受压开发时,成本较低。构造环境,(e)从广泛分布的延性带中提取大量潜在能量,(f)建立通用设计/开发方法,以及(g)抑制储层内/周围的毡状地震。进一步评估潜力在延性地区开发EGS储层的过程中,我们启动了“日本超越脆弱项目(JBBP)”。计划将JBBP的前几年用于基础科学研究和必要的技术开发,包括对脆性/延性条件下的岩石力学进行研究,对延性岩体进行表征,开发建模方法/技术以及进行调查。诱发/触发地震。我们希望在基础研究完成后钻一个深的实验钻孔,该钻孔将穿透日本东北部的延性带。然后,将通过在钻孔中的观察和实验结果来评估在延性带中开发EGS储层的可行性。

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