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岩石孔隙度的英文

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"岩石孔隙度"怎么读用"岩石孔隙度"造句

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  • porosity of rock-mass
  • rock porosity

例句与用法

  • The porosity and permeability measurement of core in net confining stress
    覆压下岩石孔隙度和渗透率测定方法
  • Based on the mechanism of deformation of rocks , porosity - depth curves of rocks can be divided into tow periods as compaction and compression
    摘要根据岩石的变形机制,把岩石孔隙度的变化过程划分为压实和压缩两个阶段,岩石压实阶段的孔隙度呈指数规律变化,岩石压缩阶段的孔隙度保持为常数。
  • Study shows that these petrophysical parameters will change with pressures , of which rock porosity will affect other parameters ' variations , and permeability has lag - effect during cycling , rising and declining of the pressure
    研究表明,岩石物性参数随压力的变化而变化;岩石孔隙度不同,其他参数变化规律不同;渗透率随压力循环升降存在滞后效应。
  • Main content in simulation is the spatio - temporal evolution of the set of descriptive variables characterizing tectonic mineralization state under coupling of various processes as following : ( 1 ) variables related to forming and property of ore - forming fluid , such as dissolution rate of minerals ( include metal minerals ) in rock , concentration and saturation of aqueous species in fluid , temperature , pressure , and ionic strength etc . ; ( 2 ) variables related to structural deformation and fluid flow , such as stress , deformation rate , fracture network , porosity , fracture permeability ; ( 3 ) variables related to precipitation and mineralization , such as nucleation rate of gangue and metal minerals , accumulation precipitation of various minerals , etc . ; ( 4 ) spatio - temporal coupling relation of various variables above , such as the coupling relationship between spatio - temporal evolution of fracture permeability and flow and focus of fluid and ore - forming
    模拟的主要内容是在各种过程耦合作用下,以下描述构造成矿体系的主要变量的时空演化:与成矿流体的形成和性质有关的变量,如地层中矿物(包括成矿物质)的溶解速率、流体中各组分的浓度与饱和度、流体温度、压力、离子强度等;与构造变形和流体运移有关的各变量,如应力与变形速率、岩石孔隙度、构造(断裂)渗透率等;与沉淀成矿有关的变量,如矿物(金属矿物和脉石矿物)的成核速率、各矿物的沉淀量等;上述各有关变量间的时空耦合关系,如断裂渗透率时空演化与流体流动、汇聚和成矿的耦合关系等。
  • Can influence directly the velocities of compressive wave and shear wave of rock . commonly , the higher the content of carbonate in rock , the higher the velocity of compressive wave and shear wave ; the higher the mud content , the lower the velocity of compressive wave and shear wave ; the higher the porosity of rock , the lower the velocity of compressive wave and shear wave ; the more compacted the rocks , the higher the velocity of compressive wave and shear wav
    6 )岩石组成和孔隙度等岩石内部因素均可直接影响岩石的纵横波速度,一般说来,岩石中碳酸盐含量越高,其纵横波速度越高;而泥质含量越高,其纵横波速度越低;岩石孔隙度越高,其纵横波速度越低,岩石密度越大,其纵横波速度越高。
  • By the analysis of mercury injection data and physical property data of 650 sandstone and carbonate samples collected from tuha , liaohe , shengli , eerduosi , sichuan oil gas field of china and canadian oilfield , it is found that for porosity rocks , no matter they are sandstone or carbonate , their porosity and permeability ( especially for permeability ) are closely related to pore volume distribution with different throat size
    本文通过对来自我国吐哈、辽河、胜利、鄂尔多斯、四川和加拿大等地区油气田的650个砂岩和碳酸盐岩样品压汞测试资料及物性数据的分析研究,成功发现了对于孔隙性岩石(无论是砂岩还是碳酸盐岩) ,岩石孔隙度和渗透率(特别是渗透率)与岩样不同孔喉大小的体积分布有密切的相关性,并首次建立了储层孔喉体积分布反演预测模型。
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