1) move-motional and depositional characteristic
输运沉积特性
1.
And an electrostatic pressure atomized nozzle s move-motional and depositional characteristic has been studied by experiments.
本文对静电喷雾雾滴的输运沉积过程进行了初步的理论研究,并主要通过实验研究了一种静电压力喷嘴的雾滴输运沉积特性。
2) sediment transport
沉积物输运
1.
Grain-size trend analysis on the south branch of the Changjiang Estuary in China and its implication to sediment transportation;
粒径趋势分析对长江南支口外沉积物输运的指示意义
2.
Based on the characteristics of the Yellow River subaqueous delta, a two-dimensional mathematical model for vertically averged sediment transport was formulated, and the sediment transport mechanism and the sedbed scour and deposition evolution process were simulated and analyzed in combination with the tidal current and sediment data.
根据黄河水下三角洲的特点,建立了一个垂直平均二维沉积物输运数学模型,结合潮流和沉积物资料,模拟研究了沉积物输运机制和海底冲淤演变过程。
3.
Sediment transport in marine environments is associated with complex process.
海洋环境沉积物输运理论的进一步发展需要着重进行各种过程和机制的研究,而这项工作依赖于高精度、高分辨率现场观测仪器的发展和更先进的颗粒态物质运动理论的建立。
3) deposition characteristic
沉积特性
1.
The deposition characteristic of electroless plating Ni-P on Gr/Al composite surface and coatings corrosion resistance are investigated for the particularity of Gr/Al composite surface in this paper.
用化学镀镍法在Gr/Al复合材料表面沉积了Ni-P合金,研究其沉积特性及耐蚀性。
4) transportation characteristic
输运特性
1.
The mechanism of dust particles charging and transportation characteristics are discussed in order to solve the problems such as low of fractional active volume in electric filed and transportation rate of charged particles.
论述了烟尘荷电凝聚机制及其输运特性等,以便解决除尘电场中的电离占空比、输运项甚低等问题;又着重研究了烟尘的荷电、凝聚的物理过程,将有助于解决电除尘器存在的捕集微细烟尘效率低的问题。
2.
The compound and transportation characteristics of charged partic.
为此,论述烟尘荷电凝聚机制并研究电离放电通道中的带电粒子复合问题及其输运特性等,以便解决除尘电场中的电离占空比、输运项甚低等问题;研究了烟尘荷电、凝聚的物理过程,以便进一步提高电除尘器的性能。
5) transportation characterization
运输特性
补充资料:半导体的导电与电荷输运
半导体的导电与电荷输运
conductance and charge transport in semiconductor
“一斋<:>厂rE嚼。:丈“E4fod二于声学声子散射,r一3厂/8一1.18;而对于电离杂质散射,r二315厂/512=1 .93。在:与能量无关的情况下,r一1。如果n》P,有R一r(二皿)2一3 一 一一 、/ r /、式中E为电子能量。对P之0,有 e
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条