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Laboratory measurements of the elastic and anelastic parameters of limestone at seismic frequencies

机译:地震频率下石灰石弹性和圆形参数的实验室测量

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A study of pore fluid effects on the elastic and anelastic properties of sedimentary rocks is important for seismic data interpretation and for monitoring the fluid movement during hydrocarbon extraction in producing fields. A significant portion of the world's hydrocarbon reserves are found in limestone reservoirs. An understanding of fluid effects on limestone properties is essential to characterize these reservoirs accurately. We present the results of low-frequency (0.1 - 120 Hz) laboratory measurements of the elastic and anelastic properties of dry and water-saturated Savonnieres oolitic limestone (permeability - 3.2 mD, porosity - 29%) carried out at an effective pressure of 15 MPa which were complemented with indentation tests conducted under ambient conditions. Our measurements displayed reduction of the Young and shear moduli when changing from dry to water saturation conditions. The reduction of the Young modulus of the rock was also confirmed by the results of the indentation testing. The applicability of Gassmann's fluid substitution theory for the interpretation of obtained results was also tested during these experiments.
机译:对沉积岩的弹性和骨骼性能的孔隙流体效应研究对于地震数据解释是重要的,并且用于监测生产领域的烃萃取过程中的流体运动。在石灰石水库中发现了世界上碳氢化合物储备的一部分。对石灰石性质的流体效应的理解对于精确地表征这些储层是必不可少的。我们介绍了低频率(0.1-120Hz)实验室测量的低频和饱和型SPVonnieres鲕状石灰石(渗透率 - 3.2MD,孔隙率 - 29%)的弹性和插管性能的结果,其有效压力为15与环境条件下进行的压痕试验补充的MPA。当从干燥到水饱和条件时,我们的测量显示了年轻和剪切模量。通过压痕测试的结果,还证实了岩石的幼年模量的减少。在这些实验期间还测试了Gassmann的流体替换理论对解释得到的结果的应用。

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