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1)  continuously reinforced concrete
连续配筋混凝土
1.
Carrying capacity analysis of asphalt concrete and continuously reinforced concrete composite pavement;
沥青混凝土与连续配筋混凝土复合式路面承载力分析
2.
Construction technology of continuously reinforced concrete overlay;
连续配筋混凝土加铺层施工技术探讨
3.
This paper introduces the structural type,end anchor structure and the construction technology of continuously reinforced concrete overlay in detail,which can give some references for the application of continuously reinforced concrete pavement in the old cement concrete pavement overlay.
介绍了旧水泥混凝土路面上连续配筋混凝土加铺层的结构型式、端部锚固结构以及施工技术,以为连续配筋混凝土路面在旧水泥混凝土路面加铺中的应用提供参考。
2)  continuously reinforced concrete pavement(CRCP)
连续配筋混凝土路面
1.
Since Continuously Reinforced Concrete Pavement(CRCP) has got some application in China,probabilistic design based on reliability theory has not been used completely in the design procedure.
连续配筋混凝土路面(CRCP)在我国有了一定的应用,其设计还未完全采用基于可靠性理论的概率设计法。
2.
The facilities of end anchorage of continuously reinforced concrete pavement(CRCP)is introduced,the issues related with the anchorage beam are discussed when the FEM is applied.
介绍了连续配筋混凝土路面的端部锚固设施,探讨了对锚固地梁进行有限元分析时的有关问题。
3)  CRCP
连续配筋混凝土路面
1.
Construction of Continuous Reinforced Concrete Pavement(CRCP);
连续配筋混凝土路面(CRCP)的施工实践
2.
Reliability Analysis of the Crack Spacing for Continuously Reinforted Concrete Pavement(CRCP);
连续配筋混凝土路面裂缝间距的可靠性分析
3.
Calculation method on the anchor force at CRCP terminal;
连续配筋混凝土路面端部锚固力计算方法
4)  continuously reinforced concrete pavement
连续配筋混凝土路面
1.
Early crack of continuously reinforced concrete pavement;
连续配筋混凝土路面早期裂缝
2.
Study on the application of prestressed mandril in continuously reinforced concrete pavement;
预应力芯棒在连续配筋混凝土路面中的应用
3.
The testing method of crack width for continuously reinforced concrete pavement based on image processing technique;
基于图像处理技术的连续配筋混凝土路面裂缝宽度检测方法
5)  continuous tendon concrete road surface
连续式配筋混凝土路面
6)  continuous reinforced concrete pavement
连续配筋混凝土路面
1.
According to the causes of pavement failure, the design scheme of continuous reinforced concrete pavement structure is proposed which is suitable to the heavy-duty traffic.
分析了 110国道的道路破损原因 ,提出针对病害原因并适应重载交通改造的连续配筋混凝土路面结构设计方
补充资料:连续和非连续孔径射电望远镜
      射电望远镜因接收天体射电的天线孔径的构成方式不同,而有连续孔径和非连续孔径之分。连续孔径射电望远镜是射电望远镜的一种最简单的类型,其天线孔径为接收单元所布满,因而天线增益和分辨率全由天线孔径的实际尺寸和形状决定。这类望远镜天线孔径可以有各种形状,如通常的抛物面、球面、抛物柱面、抛物带形反射面等。某些由分立天线(如偶极子天线、裂缝波导等)组成的天线阵,当阵元间距不大于半波长时,由于电场强度方向图和连续面电流分布的场强方向图相似,也被认为是连续孔径射电望远镜。这种情况更常见于线孔径或米波、十米波段的偶极子阵。非连续孔径射电望远镜是天线结构只分布在孔径部分面积内的望远镜,通常由多个天线组成。栅式干涉仪、复合射电干涉仪、栅十字、 T形栅、圆阵、圆环以及综合孔径射电望远镜等都是。这种望远镜的分辨率由天线范围(设想的孔径)的外尺寸决定,而总的天线增益或灵敏度,则取决于全部天线单元面积的总和。图中a所示的连续孔径天线可认为由N个单元面积组成,经天线传至接收机的信号是各单元反射信号的迭加,连续孔径射电望远镜通过焦点处的馈源自动得到这种迭加。由于二单元A、B信号的迭加效果等效于处在A、B的相关干涉仪输出,非连续孔径射电望远镜正是基于这个原理,在省去孔径一部分的情况下,保留连续孔径各单元间的全部间距和取向,如图中b所示的"骨架式"射电望远镜,或者依观测需要对这些间距和取向进行有限的采样(各种干涉阵),甚至用不少于2的有限天线依次采样后进行处理;图中c是综合孔径望远镜。
  

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