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Seismic Signatures of Temperature-dependent Geothermal Rocks at In-situ Reservoir Conditions

机译:在原位储层条件下温度依赖地热岩的地震签名

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摘要

An analysis of two rock samples, hyaloclastites and basalts, at in-situ reservoir conditions has been done to identify the role of temperature on the seismic velocity and attenuation. The goal is to present the result of using Gassmann equation within the framework of Biot s poroelasticity for a fluid substitution analysis of geothermal rocks. The analysis of temperature-dependent wave attenuation is shown for hyaloclastites. The results show that P wave velocities decrease with the temperature rise in a systematic way. The general decreasing trend of seismic velocity towards temperature may be related to the fluid characteristics with the temperature. Using Gassmann equation it has been shown that the presence of steam bubbles can reduce the effective elastic property of rocks. The Q factor behaves surprisingly almost in the same way as the seismic velocity with temperature, except in the lower temperature range. The Q factor increase with the temperature is supposed to be a quick viscosity decrease. The later decrease of Q factor may indicate the presence of steam bubbles due to the further temperature increase. This finding demonstrates that the application of Gassmann fluid substitution modelling may be used for the characterization of geothermal reservoir systems.
机译:已经进行了对原位储层条件的两种岩石样品,透明质性和玄武岩的分析,以确定温度对地震速度和衰减的作用。目的是介绍使用Gassmann方程在地热岩石的流体替代分析的Biot S Poro弹性框架内的结果。透明化物示出了温度依赖波衰减的分析。结果表明,P波速度随着温度升高的系统方式而降低。抗震速度朝向温度的一般趋势可能与温度的流体特性有关。使用Gassmann方程已经表明,蒸汽气泡的存在可以减少岩石的有效弹性特性。除了较低的温度范围内,Q因子几乎与温度的震动速度相同的方式表现得很令人惊讶。 Q因子随温度的增加应该是快速粘度降低。 Q因子的后来减少可以表明由于进一步的温度升高,蒸汽气泡存在。该发现表明,Gassmann流体替代建模的应用可用于地热储层系统的表征。

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