1) high-deposition-rate sediment drift
高速堆积体
1.
A high-deposition-rate sediment drift was found on the down slope of Dongsha islands.
研究分析指出,如果珠江和韩江所携带的沉积物全部沉积到南海北部陆坡区,则可获得的沉积速率为12 cm/ka,这一数值远低于该高速堆积体上的沉积速率值。
2) talus with high-slope
高仰坡堆积体
1.
In the light of the stoppage of the construction of Fuxi Multi-arch Tunnel caused by the cracks on the partition walls in the tunnel,this paper puts forward some protective measures for the talus with high-slope of the entrance of Fuxi Multi-arch Tunnel.
针对富溪连拱隧道中隔墙开裂造成施工停止的事例,提出了富溪连拱隧道进口高仰坡堆积体的防护对策。
4) Gaoliangping accumulation body
高粱坪堆积体
1.
The Gaoliangping accumulation body located in the left bank of Liusha River,middle section of the Yongding Bridge reservoir in Han Yuan County,Sichuan Province,about 1 km apart from the dam site.
高粱坪堆积体位于流沙河左岸,四川省汉源县永定桥水库中段,距坝址约1 km。
5) critical pileup velocity
堆积速度
1.
Meanwhile,based on the condition of solid particle action and the concept of critical pileup velocity,the measurement of critical pileup velocity in a horizontal pipeline is studied.
根据非均质浆体流态随着浆体平均流速增加的变化规律,从清水与固体颗粒之间的动量传递分析入手,分析水平管道内沉降性浆体流动时清水与固体颗粒之间的相互作用机制,分别得到搬运流体、固体颗粒和浆体的速度分布模型,同时根据固体颗粒的起动条件和堆积速度的概念研究水平管道堆积速度的确定方法。
6) accumulation rate
堆积速率
1.
The accumulation rate has been evaluated based on the dating data of 136 sediment cores taken from areas deeper than 100 m in the South China Sea since the last glaciation.
通过统计南海100 m以下深水区的136个沉积柱状样的分析数据,对南海末次冰期以来的堆积速率进行了统计。
2.
The vertical accumulation rate can be calculated from the diff.
潮流携带细颗粒泥沙塑造潮滩 ,通过上、下滩水体含沙量之差可计算潮滩的堆积速率 ,从滩坡平衡原理可计算潮滩水平扩展趋势。
3.
The accumulation rates of the past 30 ka were calculated for core 17962(112°5′E,7°11′N,core length 8 m,water depth 1968 m).
南海南部 1796 2柱状样 (7°11′N、112°5′E,柱长 8m,水深 196 8m)中近 30 ka来的沉积物堆积速率计算结果显示 ,该孔冰期平均堆积速率为全新世的 3倍多。
补充资料:高速
高速度;~发展│~公路。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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