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The experimental studies on electrical con-ductivities and P-wave velocities of anortho-site at high pressure and high temperature
引用本文:白利平,杜建国,刘巍,周文戈. The experimental studies on electrical con-ductivities and P-wave velocities of anortho-site at high pressure and high temperature[J]. 地震学报(英文版), 2002, 15(6): 667-676. DOI: 10.1007/s11589-002-0091-1
作者姓名:白利平  杜建国  刘巍  周文戈
作者单位:CenterforAnalysisandPrediction,ChinaSeismologicalBureau,CenterforAnalysisandPrediction,ChinaSeismologicalBureau,CenterforAnalysisandPrediction,ChinaSeismologicalBureau,InstituteofGeochemistry,ChineseAcademyofSciences Beijing100036,China,Beijing100036,China,Beijing100036,China,Guiyang550002,China
基金项目:National Science Foundation of China (No. 10032040 and No. 49874013) and Joint Earthquake Science Foundation of China (No. 101119).
摘    要:Introduction The measurements of the compressional wave velocity and electrical conductivity of minerals and rocks are of fundamental importance to look into the earths interior, including composition, geotherm, generation and distribution of fluids and melts. Hydrous minerals formed by metamatu-siom are abundant within the earth. Previous studies have been carried out on the dehydration effect on the electrical conductivity and wave velocity of rocks such as serpentine, amphibole, most of whi…

收稿时间:2001-10-08
修稿时间:2002-11-06

The experimental studies on electrical conductivities and P-wave velocities of anorthosite at high pressure and high temperature
Bai Li-ping , Du Jian-guo , Liu Wei and Zhou Wen-ge. The experimental studies on electrical conductivities and P-wave velocities of anorthosite at high pressure and high temperature[J]. Acta Seismologica Sinica(English Edition), 2002, 15(6): 667-676. DOI: 10.1007/s11589-002-0091-1
Authors:Bai Li-ping    Du Jian-guo    Liu Wei   Zhou Wen-ge
Affiliation:1. Center for Analysis and Prediction, China Seismological Bureau, Beijing 100036,China
2. Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550002, China
Abstract:Results of P-wave velocity (vP) and electrical conductivity measurements on anorthosite are presented from room temperature to 880 C at 1.0 GPa using ultrasonic transmission technique and impedance spectra technique respec-tively. The experiments show that the P-wave velocities in anorthosite decrease markedly above 680 C following the dehydration of hydrous minerals in the rock, and the complex impedances collected from 12 Hz to 105 Hz only indicate the grain interior conduction mechanism at 1.0 GPa, from 410 C to 750 C. Because the fluids in the rock have not formed an interconnected network, the dehydration will not pronouncedly enhance the electrical conduc-tivity and change the electrical conduction mechanism. It is concluded that the formation and evolution of the low-velocity zones and high-conductivity layers in the crust may have no correlations, and the dehydration can result in the formation of the low-velocity zones, but cannot simultaneously result in the high-conductivity layers.
Keywords:anorthosite  P-wave velocity  electrical conductivity  high pressure and high temperature
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