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Geomechanical Facies Concept in Exploration Techniques of EGS Sites, Soultz-sous-Forets and Spa Urach

机译:勘探技术的地质力学相概念,EGS网站,Soultz-Sous-Forets和Spa Urach

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Using the holisitic geomechanical facies concept as a framework,this paper compares techniques for major exploration, evaluation and field development at two European geothermal projects: Soultz-sous-Forets, in the central part of the Upper Rhine Graben; and Urach Spa, in the South German crystalline complex. Since 1971 the Hot Dry Rock/Hot Wet Rock (HDR/HWR) concept has been developed from the conceptual stage to the point where the feasibility of the technology has been demonstrated. The HDR concept has been adapted to fit the natural in-situ conditions of the rock and exemplifies one type of Enhanced Geothermal Systems (EGS) development. Significant developments have been made in drilling, borehole measurements and understanding the processes involved in the creation and operation of stimulated reservoirs, but little is yet known about how to influence joint opening so as to maximize productivity. Soultz, situated in granite rock and an active tectonic graben system, shows different conditions of lithology, temperature field, stress field, hydraulics and geochemistry than the Urach site. In contrast to Soultz, the Urach site is located in a very dense gneiss formation which shows comparatively more elastic behaviour and lies in a tectonically almost inactive strike slip stress field. The design and creation of HDR/HWR enhanced geothermal systems requires the development of simulation models predicting the extension behaviour of hydraulically induced fractures. This paper investigates key parameters for heat and fluid transport properties, coupled hydro-mechancial processes, the success of HDR heat exchanger development, and exploration techniques applicable to the different geomechanical facies, and suggests which technologies may be more or less successful for the development and use of the HDR technology.
机译:本文将全能地质力学相概念作为框架,比较了两个欧洲地热项目的主要勘探,评估和现场开发技术:Soultz-Sous-Forets,位于莱茵河上部的中央部分;和Urach spa,在南德德语结晶络合物中。自1971年以来,热干岩/热湿岩(HDR / HWR)概念已经从概念阶段开发到技术的可行性已经证明。 HDR概念适用于拟合岩石的天然原位状况,并举例说明了一种增强的地热系统(EGS)开发。钻孔,钻孔测量和了解刺激储存器的创建和运作中所涉及的过程的显着发展,但迄今为止如何影响关节开口,以最大限度地提高生产率。 Soultz位于花岗岩岩石和活跃的构造Graben系统,显示出不同的岩性,温度场,应力场,液压和地球化学条件,而不是URACH网站。与Soultz相比,URACH网站位于一个非常致密的长片形成,这表明了更具有更大的弹性行为,并且位于一个根本上几乎无活性的罢工滑动应力场。 HDR / HWR增强地热系统的设计和创建需要开发仿真模型,其预测液压诱导骨折的延伸行为。本文研究了热量和流体运输性能,耦合水电机械过程,HDR热交换器开发成功的关键参数,以及适用于不同地质力学相的勘探技术,并提出了哪些技术对于开发和发展使用HDR技术。

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