色美女视频 I 国产无人区卡一卡二卡三乱码99 I 打屁股sp惩罚调教91 I 亚洲欧美va天堂人熟伦 I 国产成人专区 I 日韩国产人妻一区二区三区 I 日韩精品综合在线 I 亚洲国产视频一区二区 I 操比网 I 日韩www在线观看 I wwww亚洲熟妇久久久久 I 亚洲日韩一区精品射精 I 国内精品久久久久影院蜜芽 I 伊人国 I 自拍亚洲国产 I 在线观看91精品国产网站 I 国产日韩精品欧美一区喷水 I 99偷拍视频精品一区二区 I av综合网站 I 香蕉久久夜色 I 久草在线资源网站 I 黄色精品一区二区 I 一本一本久久a久久综合精品蜜桃 I 伊人久久天堂 I 97日日碰人人模人人澡 I 1313午夜精品美女爱做视频 I 男人的天堂色 I 日本成人免费视频 I 成人手机视频在线 I 国产精品对白刺激在线观看 I 天堂av一区二区 I 91九色蝌蚪popny I 玉足软肉夹住摩擦出白浆视频 I 男人和女人在一起污污的app I 又色又爽又黄视频网站

Flow coefficient and cavitation coefficient of valves

  • 4684 Views
  • 2014-07-08
1、 Flow coefficient of the valve
The flow coefficient of a valve is an indicator of its flow capacity, and the larger the value of the flow coefficient, the smaller the pressure loss when the fluid flows through the valve.

Calculation formula based on KV value

In the formula: KV - Flow coefficient Q - Volume flow rate m3/h Δ P - Pressure loss of valve barP - Fluid density kg/m3

2、 The cavitation coefficient of the valve
Using cavitation coefficient δ The value is used to select the valve structure type to be used for controlling flow.

Where: H1- downstream (outlet) pressure of valve mH2- difference of saturated steam pressure corresponding to atmospheric pressure and its temperature m Δ P - Pressure difference before and after the valve, m

Due to different constructions of various valves, the allowable cavitation coefficient δ It's also different. As shown in the figure. If the calculated cavitation coefficient is greater than the allowable cavitation coefficient, it indicates availability and cavitation will not occur. If the allowable cavitation coefficient of the butterfly valve is 2.5, then:

as δ> 2.5, then cavitation will not occur.

When 2.5> δ> At 1.5 hours, slight cavitation will occur.

δ< At 1.5 hours, vibration occurs.

δ< Continuing to use at 0.5 will damage the valve and downstream piping.

The basic characteristic curve and operating characteristic curve of a valve cannot be seen when cavitation occurs, let alone at which point it reaches the operating limit. Through the above calculation, it is clear at a glance. So cavitation occurs because during the accelerated flow of liquid, when the rotor pump passes through a gradually shrinking section, some of the liquid vaporizes, and the resulting bubbles then burst in the open section behind the valve, which has three manifestations:

(1) Noise occurs

(2) Vibration (in severe cases, it can cause damage to the foundation and related structures, resulting in fatigue fracture)

(3) Damage to materials (erosion of valve bodies and pipelines)

From the above calculations, it is not difficult to see that there is a great relationship between cavitation and the pressure behind the valve H1. Increasing H1 will obviously change the situation. Improvement methods:

a. Install the valve at the lower point of the pipeline.

b. Install an orifice plate on the pipeline behind the valve to increase resistance.

c. The valve outlet is open, directly storing water in the reservoir, increasing the space for bubbles to burst and reducing cavitation.

Based on the analysis and discussion of the above four aspects, the main characteristics and parameter lists of gate valves and butterfly valves can be summarized for easy selection. Two important parameters play a crucial role in valve operation.

Transferred from Global Valve Network