单裂隙水流立方定律是岩体水力学中最基本的。
Cubic law of flow in single fracture is a basic and important law in the rock mass hydraulics.
裂隙岩体的渗流应力耦合机理是岩体水力学的研究重点。
Hydromechanical coupling of jointed rock mass was the key point for problems of hydraulics of rock mass.
不规则裂隙的渗流问题是岩体水力学中一个比较复杂的问题。
The seepage of irregular fracture is a very important problem in rock hydraulics.
裂隙岩体的渗透系数张量是一个非常重要的岩体水力学参数。
The hydraulic conductivity tensor in obtained through connecting fractures in the fracture network model.
煤层底板突水是涉及地质学、煤矿开采学、岩体水力学和岩石断裂力学等学科的一个复杂问题。
It is a complicated problem involving several of subjects such as geology, coal mining, rock hydraulics and rock crack mechanics.
研究结果表明,这两个耦合关系式是研究和预测岩体水力特性以及进行岩体水力学分析的基础。
The research results show that they lare the basis to study and predict the hydraulic characteristics of rock mass, and to carry out rock mass hydraulics analysis.
涉及工程地质、水文地质、岩体力学、矿山压力、流体力学、岩体水力学等多门学科的理论和实践。
Involves the project geology, the hydrology geology, Rock mechanics, mine pressure, hydromechanics, crag body water subject and so on multi-gates discipline theory and practice.
岩体各向异性是岩石工程所面临的重要问题,是一切岩体力学及岩体水力学行为特性的主要控制因子。
Anisotropy is one of the important problems in rock project, which controls generally all mechanical and hydraulic behaviors in rock mass.
依据裂隙水流理论,提出了利用压水试验资料分析裂隙岩体水流几何特征和水力学参数的理论和方法。
According to the theory of fracture flow, the theory and methods to analyze the hydraulic and geometric properties of fractured rock using constant-pressure well test data are given.
黄河大柳树水利枢纽坝区岩体大范围发生了松动,确定其水力学特性指标并进行渗流分析具有重要的现实意义。
It is of practical value to determine the hydraulic conductivity tensors of large-scale dynamo-relaxed rock masses at site of Daliushu dam on the Yellow River and to analyze the seepage field.
在岩体的力学和水力学分析中,岩体结构面产状的分析是极为重要的基础工作。
The analysis of joints occurrence in rock mass is an important basic work for mechanical and hydrodynamical behaviors analysis of rock mass.
在岩体的力学和水力学分析中,岩体结构面产状的分析是极为重要的基础工作。
The analysis of joints occurrence in rock mass is an important basic work for mechanical and hydrodynamical behaviors analysis of rock mass.
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