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1)  connected component
连通体
1.
The improvement is made on the existed algorithms for detecting of connected components so that the current algorithm has few complex data structure,and is easy for caculating.
其识别过程主要是在击中击不中变换后,使用基于二值图像像素的快速标记算法识别晶圆,因此在原有的连通体检测算法的基础上,作了相应的改进,使其没有复杂的数据结构,减少计算量,简单易行。
2.
In the first stage,a modified Hough transform is used to obtain the accumulative space of the original image;in the second stage,connected components in the horizontal cross section image of th.
首先采用一种改进Hough变换获取参数空间并生成其横切面图像;然后对该横切面图像进行连通体分析,检测出圆形体的尺寸和中心位置。
3.
In a skew Mongolian document image,every character connected component′s centroid is extracted and taken as an eigen point.
它提取文档图像中文字连通体的质心作为特征点,使用最小二乘法对特征点进行直线拟合,从而可以得到文字质心所在直线方程,该直线方程的斜率能够反映文档图像的倾斜情况。
2)  semi-connected body
半连通体
3)  connected sandbody
连通砂体
1.
The combination of fault transport system and connected sandbody, surface of unconformity transport systems form the compound transport systems of fault - connected sand body, fault -surface of unconformity and fault - connected sandb.
它是由裂缝或裂缝-孔隙网络构成的,具有穿层、长距离垂向运移和周期性二个特点,断裂输导系统还可以与连通砂体、不整合面组合形成断裂-连通砂体、断裂-不整合面和断裂-连通砂体-不整合面复合输导系统,它们不仅控制油气成藏模式,而且其沿伸层位控制着油气的空间分布层位。
4)  primitive connection volume
连通体元
1.
Then the merges of connected regions corresponding to the tree crotches are checked for rationality, for which we introduce the concept of primitive connection volume, whose volume and lifetime are also defined, which are used to define the merging rules between connected regions, together with the traditional g.
然后判断树叉对应的连通域合并是否合理 ,为此提出了连通体元、体元生命期、体元体积等概念 ,结合灰度均匀性定义出通用合并准则 。
5)  fluid continuity
流体连通性
1.
A new method for quantitative identification of fluid continuity in reservoir;
一种定量判别油藏流体连通性的新方法
6)  connected component detection
连通体检测
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”)。

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