Computational, theoretical and experimental study of cavitation characteristics of the gate wellhead devices with the internal bypass

V. Z. Muftakhov
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Abstract

Hydraulic systems include control devices that create local resistance. Decreasing and increasing the working medium pressure and flow rate in the control devices cause cavitation, vibration, noise, material destruction, increase in the energy losses and decrease in the efficiency, which adverse effects could be reduced by using a bypass. One of the important tasks in designing the control devices is establishment of the cavitation characteristics. Introduction of an internal bypass in such devices makes it possible to reduce forces on the control elements displacement and the specific pressures in opening and closing, as well as to locate the cavitation bubbles collapse point in the flow behind the control gates. The paper presents results of a computational theoretical study using a modern complex of engineering analysis and experimental determination of the cavitation characteristics of the gate wellhead device with an internal bypass.
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内旁通闸口装置空化特性的计算、理论和实验研究
液压系统包括产生局部阻力的控制装置。控制装置中工作介质压力和流量的降低和增加会引起空化、振动、噪声、材料破坏、能量损失增加和效率降低,采用旁路可以减小这些不利影响。空化特性的确定是控制装置设计的重要内容之一。在这种装置中引入内部旁路,可以减少控制元件位移的力和打开和关闭时的比压力,并可以确定控制门后流动中的空化气泡崩溃点。本文介绍了采用现代工程分析和实验测定相结合的方法,对带内旁路的闸门井口装置的空化特性进行计算理论研究的结果。
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