Empirical relations of rock properties of outcrop and core samples from the Northwest German Basin for geothermal drilling

D. Reyer, S. L. Philipp
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引用次数: 22

Abstract

Abstract. Information about geomechanical and physical rock properties, particularly uniaxial compressive strength (UCS), are needed for geomechanical model development and updating with logging-while-drilling methods to minimise costs and risks of the drilling process. The following parameters with importance at different stages of geothermal exploitation and drilling are presented for typical sedimentary and volcanic rocks of the Northwest German Basin (NWGB): physical (P wave velocities, porosity, and bulk and grain density) and geomechanical parameters (UCS, static Young's modulus, destruction work and indirect tensile strength both perpendicular and parallel to bedding) for 35 rock samples from quarries and 14 core samples of sandstones and carbonate rocks. With regression analyses (linear- and non-linear) empirical relations are developed to predict UCS values from all other parameters. Analyses focus on sedimentary rocks and were repeated separately for clastic rock samples or carbonate rock samples as well as for outcrop samples or core samples. Empirical relations have high statistical significance for Young's modulus, tensile strength and destruction work; for physical properties, there is a wider scatter of data and prediction of UCS is less precise. For most relations, properties of core samples plot within the scatter of outcrop samples and lie within the 90% prediction bands of developed regression functions. The results indicate the applicability of empirical relations that are based on outcrop data on questions related to drilling operations when the database contains a sufficient number of samples with varying rock properties. The presented equations may help to predict UCS values for sedimentary rocks at depth, and thus develop suitable geomechanical models for the adaptation of the drilling strategy on rock mechanical conditions in the NWGB.
德国西北部盆地地热钻探露头与岩心岩石性质的经验关系
摘要地质力学和岩石物理性质的信息,特别是单轴抗压强度(UCS),是地质力学模型开发和随钻测井方法更新所必需的,以最大限度地降低钻井过程的成本和风险。本文给出了德国西北盆地(NWGB)典型沉积岩和火山岩在地热开发和钻探不同阶段的重要参数:物理(P波速度、孔隙度、体积和颗粒密度)和地质力学参数(UCS、静态杨氏模量、破坏功和垂直和平行于层理的间接抗拉强度),来自采石场的35个岩石样品和14个砂岩和碳酸盐岩岩心样品。通过回归分析(线性和非线性),开发了经验关系来预测所有其他参数的UCS值。分析主要集中在沉积岩上,并分别对碎屑岩样品或碳酸盐岩样品以及露头样品或岩心样品进行重复分析。杨氏模量、抗拉强度与破坏功的经验关系具有较高的统计意义;对于物理性质,数据的分散程度更大,对UCS的预测不太精确。对于大多数关系,岩心样品的性质在露头样品的散点内绘制,并且位于已开发的回归函数的90%预测带内。结果表明,当数据库包含足够数量的具有不同岩石性质的样品时,基于露头数据的经验关系适用于与钻井作业相关的问题。提出的方程有助于预测沉积岩的深度UCS值,从而建立适合NWGB岩石力学条件的钻井策略的地质力学模型。
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来源期刊
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审稿时长
39 weeks
期刊介绍: Geothermal Energy is a peer-reviewed fully open access journal published under the SpringerOpen brand. It focuses on fundamental and applied research needed to deploy technologies for developing and integrating geothermal energy as one key element in the future energy portfolio. Contributions include geological, geophysical, and geochemical studies; exploration of geothermal fields; reservoir characterization and modeling; development of productivity-enhancing methods; and approaches to achieve robust and economic plant operation. Geothermal Energy serves to examine the interaction of individual system components while taking the whole process into account, from the development of the reservoir to the economic provision of geothermal energy.
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