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1)  rise of water level
水位上升速度
2)  rate of rise
水位上升速率
1.
Based on three important parameters such as weight of hydrological zones (HZ), depth to water (DTW) and rate of rise(RR), a hydrological response units (HRU) map 2001 was created in the Tao’er River basin, Songnen plain, which can response sensitively to the spatial change of groundwater environment, and it is produced by the algebraic multiplication of the three classified grids: HRU = DTW*RR*HZ.
运用水文响应单元(HRUs)法评价洮儿河流域地下水环境空间变化对盐渍化风险等级的影响过程,利用反映地下水环境空间变化的3 个重要参数:水文区权重(HZ)、水位埋深(DTW)和水位上升速率(RR),由其3个等级网格值算术相乘HRU = DTW*RR*HZ在GIS 平台上生成2001 年水文响应单元图。
3)  speed of water cut increase
含水上升速度
1.
The comprehensive treatment is conducted based on close reservoir study and movement principle of oil and water, which is effective in decreasing the speed of water cut increase and production decrease, and also it provides experiences for developing the reservoirs of the same kind.
通过储层精细研究,结合油水运动规律,进行综合治理,有效地减缓了区块含水上升速度和产量递减速度,为同类油藏的开发提供了一定的借鉴。
4)  water moving speed
水面上升速度
5)  Velocity of water rising
水流上升速度
6)  rising velocity
上升速度
1.
Nitrogen bubble rising velocity in bottom of circular pipe has been studied by virtual experiment with high-speed camera.
本文对垂直低温两相流弹状汽泡的上升速度运用高速摄像机进行了可视化实验研究,对所采集的实时图像进行处理。
2.
To predict the rising velocity of hydrogen gas and the influencing factors, a suitable working fluid was determined for experimental simulation on the vold fraction of hydrogen in a neutron moderator.
为了推断中子慢化剂液氢中气化氢气泡的上升速度及影响因素,选取合适的工质进行了含气率的模拟实验。
3.
The hysteresis of rising velocity decrease during the period of volume changing in lower.
结果表明,外围流体黏性及气泡间距对气泡的融合及上升速度都具有不同程度的影响,气泡水平放置时,泡间距较小时,气泡上升速度比单个要大。
补充资料:火焰气体上升速度
分子式:
CAS号:

性质:在原子吸收分析时,火焰原子化器的火焰气体从燃烧器细缝流出,其单位时间内所通过的距离。单位为cm·s-1。为了获得稳定的火焰,可选用火焰气体上升速度为燃烧速度的3~10倍。

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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