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1)  configuration of overflow surface
护面体型
1.
Furthermore,rationalconfiguration of overflow surface,joint form of sectionalized side walls along chute and experiment results for the overflow stability are presented in the paper.
根据保尔德面板坝坝面溢流的模型试验,阐述了钢筋砼衬砌护面的设计特点及稳定条件,为该工程提出了较合理的护面体型布置、陡槽边墙分段的连接形式及其稳定性试验成果。
2)  protective style
护面型式
3)  armor block
护面块体
1.
To make the marine structures of the Qingdao Olympic Games sailing base reliable,the physical modeling of two kinds of breakwaters and the stability ofarmor blocks are perrowed Under the wave conditions of different water levels,directions and return periods,the wave pressures and stable weights of the armor blocks are investigated.
为确保2008北京奥运会青岛帆船比赛基地内工程的水工建筑物安全可靠,对给定的2种防波堤断面结构型式及护面块体稳定性进行物理模型试验。
2.
Based on the analysis of the instability causes of breakwater armor block of a power plant, this paper expounds that to ensure the security of breakwater, we shall pay enough attention to both reasonable design and construction quality.
分析了导致某电厂防波堤护面块体失稳的几点原因,论述为保证防波堤的安全,除了合理的设计外,工程的施工质量应引起足够重视,并应对施工过程予以有效控制。
4)  armour unit
护面块体
1.
Stability of armour units on rubble-mound breakwater under multi-directional waves;
多向不规则波作用下斜坡式建筑物护面块体的稳定性
2.
This paper describes the simulation of the strength of concrete armour unit in modelling tests, based on the machanical properties of various scales.
本文主要研究了混凝土人工护面块体在模型试验中的强度模拟问题,根据不同比尺要求的强度指标,确定新型材料组成成份及其配比,并针对已有防波堤护面块体的破坏情况,进行了水槽模型验证试验。
5)  new vibrating resistant paints for protection of cement surfaces
防震新型砼体表面结构防护涂料
1.
A serious of new vibrating resistant paints for protection of cement surfaces is developed with latex of nano-scale fluoro-silicone interpenetrating terpolymer networks as binder,compound titanium powder,nano-scale calcium carbonate and et al as pigments and fillers,and special additives.
以三元聚合纳米氟硅互穿网络聚合物乳液为基料,超细复合钛白粉、纳米碳酸钙等为颜填料,配以特种助剂,开发出了一系列功能型防震新型砼体表面结构防护涂料,介绍了其抗震性能、施工性能和涂膜防震机理。
6)  armor stone
护面块石;护面块体
补充资料:胶体分散体型调剖剂
分子式:
CAS号:

性质: 以胶体分散体作为封堵物质的调剖剂。泡沫和乳状液都属于胶体分散体系。当用泡沫作调剖剂时,可向油层先后注入起泡剂水溶液和气体,在油层相遇后便产生泡沫。通过泡沫中气泡气阻效应的叠加,使高渗透层产生封堵。

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