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Numerical study on cavitation in a globe control valve with different numbers of anti-cavitation trims 被引量:7
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作者 Hamidreza YAGHOUBI Seyed Amir Hossein MADANI Mansour ALIZADEH 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第11期2677-2687,共11页
Cavitation is a destructive phenomenon in control valves.In order to delay cavitation,a multi-series of perforated cylindrical plates,called trims,are used.Previously,the effects of orifice diameter and different type... Cavitation is a destructive phenomenon in control valves.In order to delay cavitation,a multi-series of perforated cylindrical plates,called trims,are used.Previously,the effects of orifice diameter and different types of trims have been investigated.In this study,by numerical analysis,a globe control valve was investigated by employing four different cases(without trim,with one trim,with two and three trims)and the impact of the number of these trims on the intensity,formation region and the initiation point of cavitation was analyzed.It was found that the addition of one stage or two stages of trims reduces the intensity and delays the onset of cavitation,relative to the valve without trim.However,no significant differences in terms of intensity and initiation point of cavitation were observed in the cases where two or three trims were used.Therefore,due to the high cost of producing the trims,and the severe drop in flow coefficient,it is not economically and technically justified to increase the number of trims to more than three. 展开更多
关键词 numerical analysis anti-cavitation trim globe control valve
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Effect of Cone Angle on the Hydraulic Characteristics of Globe Control Valve 被引量:1
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作者 LIN Zhe WANG Huijie +3 位作者 SHANG Zhaohui CUI Baoling ZHU Chongxi ZHU Zuchao 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第3期641-648,共8页
Globe control valve is widely used in chemical, petroleum and hydraulic industries, and its throttling feature is achieved by the adopting of valve plug. However, very limited information is available in literature re... Globe control valve is widely used in chemical, petroleum and hydraulic industries, and its throttling feature is achieved by the adopting of valve plug. However, very limited information is available in literature regarding the influence of valve plug on the internal and external features in globe control valves. Thus the effect of valve plug is studied by CFD and experiment in this paper. It is obtained from external features that the pressure drop between upstream and downstream pressure-sampling position increases exponentially with flow rate. And for small valve opening, the increment of pressure drop decreases with the increase of cone angle(β). However, with the increase of valve opening, the effect of cone angle diminishes significantly. It is also found that the cone angle has little effect on flow coefficient(Cv) when the valve opening is larger than 70%. But for the cases less than 70%, Cv curve varies from an arc to a straight line. The variation of valve performance is caused by the change of internal flow. The results of internal flow show that cone angle has negligible effect on flow properties for the cases of valve opening larger than 70%. However, when valve opening is smaller than 70%, the pressure drop of orifice decreases with the increase of β, making the reduction in value and scope of the high speed zone around the conical surface of valve plug, and then results in a decreasing intensity of adjacent downstream vortex. Meanwhile, it is concluded from the results that the increase of cone angle will be beneficial for the anti-cavitation and anti-erosion of globe control valve. This paper focuses on the internal and external features of globe control valve that caused by the variation of cone angle, arriving at some results beneficial for the design and usage of globe control valve. 展开更多
关键词 globe control valve cone angle numerical simulation EXPERIMENT internal and external features
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滑板式控制阀的应用
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作者 孙鲁 邱宣振 《石油化工自动化》 CAS 2013年第1期19-21,共3页
滑板式控制阀利用多孔固定滑板与多孔动滑板的相对运动来控制流量,开创了控制阀板式直行程的结构特色,具有压差比大、线性特性控制阀在小开度下流量稳定、阀体体积变小等优势。但滑板式控制阀也存在是否可以通过定位器来改变流量特性等... 滑板式控制阀利用多孔固定滑板与多孔动滑板的相对运动来控制流量,开创了控制阀板式直行程的结构特色,具有压差比大、线性特性控制阀在小开度下流量稳定、阀体体积变小等优势。但滑板式控制阀也存在是否可以通过定位器来改变流量特性等问题,在工程上选用时有待商榷。 展开更多
关键词 滑板式控制阀 柱塞式控制阀 压力恢复系数 流量特性
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