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1)  suspension-water interface
清浑水界面
1.
Research and manufacture of photoelectric detector for suspension-water interface;
光电式清浑水界面探测器研制
2)  muddy water settlement
浑水澄清
3)  Foul water as soon as fair will quench hot fire.
灭火不论水清浑。
4)  turbid water hydraulic power separation device
浑水水力分离清水装置
1.
This paper carried on experimental a research of the factor which influences the same column diameter of the turbid water hydraulic power separation device.
对影响同一柱体直径浑水水力分离清水装置分离性能的因素进行了试验研究。
5)  turbid water hydraulic power separation equipment
浑水水力分离清水装置
1.
Investigation of clear water field of a turbid water hydraulic power separation equipment by PIV;
应用PIV技术测试浑水水力分离清水装置的清水流场流动特性
2.
The clear water field of a turbid water hydraulic power separation equipment is measured with Particle Image Velocity(PIV) technique,which provides us with the inner velocity field and vorticity field of the separation equipment.
利用PIV技术,对浑水水力分离清水装置的清水流场进行了测试,得到了浑水水力分离清水装置内部流场的水流流速场、涡流场、涡流结构。
3.
In this paper effect of structure on a clear water flow field in new water purification device -- Turbid water hydraulic power separation equipment was researched by numerical simulation.
本文研究了新型净水装置——浑水水力分离清水装置结构对清水流场影响的数值模拟。
6)  turbid water hydraulic power separation equipment
浑水分离清水装置
1.
The uniform orthogonal experiment was conducted on turbid water hydraulic power separation equipment by selecting four factors such as height,bottom outlet,concentration,incoming discharge.
通过选用高度、底孔、浓度、进流量4个主要影响因素对浑水分离清水装置进行了均匀正交试验,并且利用投影寻踪回归分析方法对试验结果进行了数据分析及计算机仿真优化,明确了耗水率的主要影响因素是底孔和高度,溢流含沙量的主要影响因素是浓度,表面负荷率的主要影响因素是进流量。
2.
This paper uses the three-dimensional numerical simulation to compute the field of clear water of turbid water hydraulic power separation equipment.
对浑水分离清水装置内部清水流场的分布规律进行了三维数值模拟。
补充资料:踹浑水
1.比喻利用混乱的局面,趁机捞取便宜。
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