1) connecting fracture network
连通裂隙网络
2) discrete fracture network(DFN)
非连续裂隙网络
1.
It was aimed to enhance core methodologies required in establishing a hydrogeological site descriptive model using discrete fracture network(DFN).
研究目的在于强调利用非连续裂隙网络建立水文地质模型所需的核心方法,在特定场地,建立可行的水文地质模型在隧道的排水系统设计和建设中是非常必要的。
3) connected fissures
连通裂隙
4) fracture network
裂隙网络
1.
Numerical simulation of grouting in space fracture network of rock mass;
空间岩体裂隙网络灌浆数值模拟研究
2.
3-D seepage flow model for discrete fracture network and verification experiment;
三维离散裂隙网络渗流模型与实验模拟
3.
Analysis of nonlinear seepage through fracture network in rock mass;
岩体裂隙网络非线性渗流分析
5) Fissure network
裂隙网络
1.
Based on the discrete numerical model of seepage flow of initial fissure network, a new numerical analysis method, rigid-body element method, is used to carry out the coupling analysis of seepage flow field of fissure network and the stress field in fissured rock masses.
基于裂隙岩体初始裂隙网络渗流的离散数值模型,首次采用新的数值方法——刚体元方法进行裂隙岩体裂隙网络渗流场─—应力场耦合分析,既避免了经典渗流理论不考虑介质应力的不足,又克服了工程岩体稳定性分析中简单考虑水渗流作用的缺陷。
2.
Based on the principle of isotope tracer in single well, and combing with well-theory of seepage flow, a mathematic model of two-dimension fissure network is proposed in the paper.
在应用单孔同位素示踪原理的基础上 ,结合地下水渗流井流理论 ,建立了二维裂隙网络的渗流计算模型。
6) joint network
裂隙网络
1.
Analysis of joint network simulation method and REV scale;
裂隙网络模拟与REV尺度研究
2.
Using experimental results of little scale,associated with joint networks,then u- tilizing sophisticated static equivalence of anisotropic deformation parameters in a large scale become an effective met.
在进行动力计算时,如何获取节理岩体的动力变形参数是一个比较困难的问题,利用小尺度试件的试验成果,结合岩体裂隙网络,利用静力等效原理确定大尺度下岩体的各向异性变形参数,不仅适用于静力工况,对于动力参数也有较好的效果。
补充资料:单连通和多(复)连通超导体(simplyandmultiplyconnectedsuperconductors)
单连通和多(复)连通超导体(simplyandmultiplyconnectedsuperconductors)
单连通超导体一般指的是不包含有非超导绝缘物质或空腔贯通的整块同质超导体,若有非超导绝缘物质或空腔贯通的超导体则称为多(复)连通超导体。从几何学上讲,在超导体外表面所包围的体积内任取一曲线回路,这回路在超导物质内可收缩到零(或点),且所取的任意回路均可收缩到零而无例外,则称单连通超导体。若有例外,即不能收缩到零,则称多连通超导体。例如空心超导圆柱体,则在围绕柱空腔周围取一回路就不能收缩为零。多连通超导体可有磁通量子化现象(见“磁通量子化”)。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条