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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Pressure and temperature dependence of V-P and V-S in rocks from the superdeep well and from surface analogues at Kola and the nature of velocity anisotropy
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Pressure and temperature dependence of V-P and V-S in rocks from the superdeep well and from surface analogues at Kola and the nature of velocity anisotropy

机译:超深井和科拉地表类似物岩石中V-P和V-S的压力和温度依赖性以及速度各向异性的性质

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P-wave velocities (V-p) and S-wave velocities (VS) and their directional dependence (velocity anisotropy, shear wave splitting) were measured on eight cores samples from the Kola superdeep well and on eight samples collected from surface outcrops over a range of pressures up to 600 MPa at room temperature and from room temperature up to 600 degreesC at 600 MPa. The core samples were recovered at depths of about 4670 to 11,720 m, and the outcrop samples represent lithologies similar to those of the core samples. Measurements were carried out on sample cubes of dry rocks (43 mm edge length) in a multianvil apparatus, allowing simultaneous measurements of Vp and Vs in the three structural directions X, Y, Z of the sample cubes and direct determination of length changes (volume change) of the sample with increasing pressure and temperature. Pronounced pressure (crack) sensitivity of P- and S-wave velocities indicates strong decompaction in the cores, due to drilling-induced damage and rapid pressure and temperature release during core retrieval. Marked velocity anisotropy and shear wave splitting is present in the foliated Proterozoic and Archean gneisses and amphibolites, due to oriented microcracks and lattice (crystallographic) preferred orientation (LPO) of the constituent mica and hornblende minerals. The experimentally determined intrinsic velocities and anisotropies compare fairly well with corresponding calculated data, based on the LPO and the single crystal properties of the major minerals. Measurements and calculations confirm strong relations of velocity anisotropy, shear wave splitting and shear wave polarisation to the structural frame of the rocks (foliation, lineation). The experimentally derived in situ velocities representing the averages of the velocities measured in the three structural directions (three P-wave and six S-wave velocities) compare fairly well with VSP data. The fit is even better when anisotropy (related to foliation and foliation dip) is included in the determination of the in situ velocities. From the relationship between experimental and calculated shear wave splitting data and the structural frame (foliation and lineation) of the Proterozoic and Archean rocks we interpret the VSP-derived shear wave polarisation at Kola (Digranes et al., 1996) as resulting from the strong alignment of mica and hornblende, defining the foliation. (C) 2001 Elsevier Science BN. All rights reserved. [References: 34]
机译:在Kola超深井的8个岩心样本和从地表露头收集的8个岩心样本上测量了P波速度(Vp)和S波速度(VS)及其方向依赖性(速度各向异性,剪切波分裂)。室温下的最高压力为600 MPa,室温下最高的压力在600 MPa时达到600℃。在约4670至11,720 m的深度处采出了岩心样品,露头样品的岩性与岩心样品相似。在多砧设备中对干燥岩石的样品立方体(边缘长度为43 mm)进行测量,从而可以同时测量样品立方体的三个结构方向X,Y,Z上的Vp和Vs并直接确定长度变化(体积)随压力和温度的升高而变化)。 P波和S波速度的明显压力(裂缝)敏感性表明,由于钻井引起的破坏以及取回岩心过程中压力和温度的快速释放,岩心中的强烈分解作用。叶状元古代和太古代的片麻岩和角闪石中存在明显的速度各向异性和剪切波分裂,这是由于组成云母和角闪石矿物的微裂纹和晶格(晶体学)优选取向(LPO)所致。根据LPO和主要矿物的单晶性质,实验确定的固有速度和各向异性与相应的计算数据相当好。测量和计算证实了速度各向异性,剪切波分裂和剪切波极化与岩石的结构框架(页岩,衬线)之间的密切关系。实验得出的原位速度代表了在三个结构方向(三个P波和六个S波速度)上测得的速度平均值与VSP数据的比较。当确定原位速度时包括各向异性(与叶面和叶面倾角有关)时,拟合效果更好。根据实验和计算得到的剪切波分裂数据与元古代和太古代岩石的结构框架(叶面和线形)之间的关系,我们解释了在科拉地区,由VSP产生的剪切波极化(Digranes等,1996)是由于强地震的结果。云母和角闪石的排列,定义了叶片。 (C)2001 Elsevier Science BN。版权所有。 [参考:34]

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