这一破坏过程与沉积物强度及其它性质在波浪荷载作用下的变化是密切相关的。
The disruptive phenomenon is related to the change of sediment strength under the wave loading tightly.
在此基础上探讨了生物活动与滩面 凹坑,沉积物强度非均匀 性以及研究区浮泥之间的关系。
The relationships among biological effects, the formation of depression, strength heterogeneity of sediment and distribution of mud are also discussed.
重力不断的向下托拽山坡,当重力作用超过岩石、沙子和沉积物的强度,就形成滑坡,并使得地面开始沿着山坡滑落。
Gravity constantly tugs downward on a slope, but only when gravity's force exceeds the strength of the rocks, soils, and sediments composing the slope does land begin to slide down hill.
相同污染浓度条件下,粗颗粒沉积物中重金属具有较高的初期释放量和释放强度;平衡释放浓度随粒度减小略有增大。
Under the condition of same polluted concentration, heavy metals in coarse sediment are released with greater amount and higher intensity dUring initial stage.
根据海南岛博鳌港枯水期观测资料,对反映海底活动性两个主要指标(沉积物活动时间和输运强度)进行了分析。
Based upon an analysis of the data sets obtained from field observations and literature review, the mobile time and transport rate in the low river-flow seasons are calculated for the Boao Harbour.
将测量沉积物贯入阻力强度转变为测量封闭油缸中油液压力的变化量。
The principle is to transform the measurement of marine sediment's penetrating resistance strength into the change of the oil pressure in the sealed vat.
表层沉积物总磷的释放作用易受到扰动强度的影响。
The phosphorus release in the surface layer is affected by the disturbing condition.
煤灰的烧结和熔融是电站锅炉灰沉积的重要过程,熔体的结构特性是沉积物生长和强度形成的决定性因素。
Sintering and melting of coal ash is a key process of ash deposition in furnace of utility boilers. Melt structure characteristics is a determining factor in deposit growth and strength development.
结果表明:水体沉积物中石油类的释放主要取决于间隙水中石油类向上覆水体扩散的速度与强度。
The results show that the releasing intensity mainly depends on the oil diffusion rate and also on the intensity from pore water into overlap water.
通过现场原位观测试验,研究波浪、潮流水动力作用对快速堆积的黄河口沉积物固结强度的影响。
Based on in-situ tests, the impact of Marine hydrodynamics, such as waves and tides, on the consolidation process of rapidly deposited sediments is studied.
通过现场原位观测试验,研究波浪、潮流水动力作用对快速堆积的黄河口沉积物固结强度的影响。
Based on in-situ tests, the impact of Marine hydrodynamics, such as waves and tides, on the consolidation process of rapidly deposited sediments is studied.
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