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1)  tube experiment
试槽试验
2)  flume test
水槽试验
1.
The velocity distribution characteristics, variation of the boundary shear stress and influences of the hydraulic parameters on the discharge capacity in a compound cross section channel are studied by using flume test.
采用水槽试验研究复式断面水流流速的横向分布特征、边界剪切应力变化规律以及水力参数对断面过流能力的影响,并得出了滩槽流量分配计算式。
2.
The results of flume tests show that a suitable sucking spouting discharge (1 5%-2% of the whole .
水槽试验表明 ,吸、喷水量为水槽中总流量的 1 5 %~ 2 %时 ,回流长度将减小 70 %~ 80 % 。
3.
A flume test is carried out on the threshold velocity for the coherent silt sampled in the sea area near the Cangnan power plant in Zhejiang Province.
结合浙江苍南电厂工程要求,在拟建航道处的试挖槽附近取样,对粘性淤泥的起动进行了室内水槽试验。
3)  flume experiment
水槽试验
1.
Based on the flume experiment of bank protection engineering on small particle stones and the experimental project of pebble bank protection in the Xiongjiazhou reach of lower Jingjiang River,the feasibility of using small particle stones in the bank protection works in the middle and lower Yangtze River were studied.
根据散粒体颗粒的起动流速公式,计算分析小颗粒石料在不同水流与边界条件下的起动流速,并根据小颗粒石料护岸工程的水槽试验,结合下荆江熊家洲河段的卵石护岸试验工程,研究了小颗粒石料在长江中下游护岸工程中的可行性。
2.
The threshold phenomenon of fine sediment under wave action is described based on a flume experiment.
通过室内水槽试验,描述了波浪作用下细颗粒泥沙的起动现象。
3.
Good results are obtained through the comparison of stochastic simulation and flume experiment.
利用Monte Carlo法对抛石机理进行了初步研究 ,并与水槽试验进行对比 ,结果较为满意 ,对条件相近河道护岸船抛块石具有借鉴作
4)  notching experiment
开槽试验
5)  Channel experiment
渠槽试验
6)  flume experiments
水槽试验
1.
Through theoretic analysis and flume experiments,the characteristic of water resistance through permeable frame groups under lower submerged flow is researched.
通过理论分析、水槽试验研究了低淹没流动下穿越框架群水流的阻力特性,为四面六边透水框架群护岸技术的推广应用提供依据。
2.
Through theoretic analysis and flume experiments, the characteristic of water resistance through Frames is researched, which provides gist for spreading and application of the bank protection technology.
本文通过理论分析、水槽试验研究了低淹没流动下穿越框架群水流的阻力特性,为四面六边透水框架群护岸技术的推广应用提供依据。
补充资料:哈林-布留姆槽试验
分子式:
CAS号:

性质:用于测定电镀液分散能力的试验。测定时所用的阳极为网状或多孔金属,阴极为两个尺寸相同的金属板。此二阴极离开同一阳极的距离分别为x1和x2(x1为远阴极,x2为近阴极)。在规定的电流密度下电镀一定时间,然后称出远、近阴极的增重w1和w2,则可按下式计算:分散能力(以百分数表示)=(K-B)/(K+B-2)×100%。其中K=x1/x2,B=w2/w1。根据上式,分散能力最佳的溶液其值为+100%,分散能力最差的溶液其值为-100%。溶液的分散能力好坏与电解质的导电能力、电沉积反应的塔菲尔斜率以及析氢状况有关。

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