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170篇 您的检索式:作者名="Batzle"
    题名 作者 年代 出处 被引量
1Gassmann's equation and fluid-saturation effects on seismic velocities显示文摘Han D Batzle M 2004Geophysics2004,69,2:1
2Relationships between compressional-wave and shear-wave velocities in elastic silicate rocks显示文摘CASTAGNA J P BATZLE M L EASTWOOD R L 1985Geophysics1985,50,4:1
3Seismic properties of pore fluids显示文摘Batzle M Wang Z 1992Geophysics1992,57,11:1
4Integration of rock physics,reservoir simulation,and time-lapse seismic data for reservoir characterization at Weyburn Field, Saskatchewan 显示文摘 Davis T L Batzle Michael 2002Expanded Abstracts of 72nd Annual Internat SEG Mtg2002,,:1
5Microcrack closure in rocks under stress:direct observation显示文摘Batzle M L 1980J Geophys Res1980,85,12:1
6Gassmann' s Equation and Fluid-saturation Effects on Seismic Velocities显示文摘De-hua Han Michael L Batzle 2004Geophysics2004,69,2:1
7Fluid mobility and frequency-dependent seismic velocity:direct measurements显示文摘Batzle M L Han D H Hofmann R 2006Geophysics2006,71,1:1
8Relationships between compressional- wave and shear - wave velocities in clastic silicate rocks, Geophysics 显示文摘Castagna J P Batzle M L 198550: 571-5811985,50,:1
9孔隙流体的地震特性显示文摘孔隙流体明显地影响岩石的地震特性。在地球物理学中,普通孔隙流体的密度、体积模量、速度和粘度常常过于简化。我们利用热力学关系式和经验趋势与已发表的和新的数据相结合的办法来考查压力、温度和组分对烃气、油和盐水的这些重要地震特性的影响。通过对地下条件和孔隙流体组分的估计,可以得到比这些流体特性的经典假设值更精确的结果。本文研究出了一套简化表达式以便在岩石模型中使用更符合实际的流体性质。孔隙流体的性质实际上是随组分、压力和温度而变化的,但却有规律。油和气的密度和弹性模量以及石油的粘度随分子量和压力的增大而增加,随温度增加而降低。除了高温与低压时气体粘度随温度增高而稍有增加外,气体粘度也具有相似的特性。轻油可以溶解大量的气,从而明显地降低体积模量与粘度,盐水的体积模量、密度和粘度随盐含量和压力的增高而增加。盐水是很独特的,因为其模量在温度为40~80℃时达到最大。盐水比轻油吸收的气少得多,所以溶解在油中的气比溶解在盐水中的气降低模量的幅度要大得多,以致于在油饱和与盐水饱和的岩石分界面上可能产生地震反射亮点。Michael Batzle 甘利灯 1994国外油气勘探1994,6,1:1
10Relationships between compress ional - wave and shear -wave velocities in elastic silicate rocks显示文摘CASTAGNA J P BATZLE M L EASTWOOD R L 1985Geophysics1985,50,:1
11Relationships between compressional wave and shear wave velocities in clastic silicate rocks显示文摘Castagna J P Batzle M L Eastwood R L 1985Geophysics1985,50,3:1
12Relationships between compressional-wave and shear-wave velocities in clastic silicate rocks显示文摘Castagna J P Batzle M L Eastwood R L 1985Geophysics1985,50,4:1
13Seismic properties of pore fluids 显示文摘Batzle M Wang Z 1992Geophysics1992,57,11:1
14Fluid mobility and frequency-dependent seismic velocity:Direct measurements显示文摘Batzle M L Han Dehua Hofmann R 2006Geophysics2006,71,1:1
15Rock physics of the unconventional显示文摘Prasad M Pal-Bathija A Johnston M Rydzy M Batzle M 2009The Leading Edge2009,28,1:1
16Seismic properties of pore fluids显示文摘Batzle M Wang Z 1992Geophysics1992,57,11:1
17Seismic properties of fluids显示文摘BATZLE M WANG Z 0,,57:1
18Relationships between compressional-wave and shear-wave velocities in clastic silicate rocks显示文摘CASTAGNA J P BATZLE M L EASTWOOD R L 0,,04:1
19Seismic properties of pore fluids 显示文摘Batzle M Wang Z 1992Geophysics1992,57,11:1
20The role of estrogen in the feedback regulation of folliclestim ulating hormone 显示文摘Bhatnagar AS Batzl C Hansler A 1993J Steroid Bioe- hem Mol Biol1993,47,16:1
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