Augmentation of Vortex Cavitator Performance by the Use of Co-Directional Swirl of the Flux after Vortex Chamber

Q3 Agricultural and Biological Sciences Progress in Agricultural Engineering Sciences Pub Date : 2019-12-01 DOI:10.1556/446.15.2019.1.1
E. Ivanov, B. Gorbunov, A. Pasin, Boris Alexandrovich Aryutov, A. I. Novozhilov
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Abstract

Background: Acoustic cavitation is the creation and collapse of cavitation caverns in liquid in an acoustic field with a frequency of f = 1–3 kHz. The acoustic-cavitation processes manifest themselves during the collapse phase, with high pressure gradient continuum deformation, with a multiple transformation of energy forms. Liquid whistles are widely used to create an acoustic field of high power, but their efficiency only reaches 6–12%. We propose a liquid whistle in the form of a vortex cavitator (analogue of the Ranque vortex tube) with a rotating body in which a reduction in the input power is predicted. Objective: Verification of feasibility of using a rotating body in a vortex cavitator with a rotation co-directional to the operational pump impeller. Method: The method for identifying the feasibility of using a rotating body is to exclude body from the prototype and directly connect vortex chamber outlet with the pump inlet, which ensures the most complete preservation of co-directional vortex component of the flux entering the pump impeller. Results: The results of experimental studies confirmed the validity of the hypothesis to a greater extent, since we achieved an increase in pressure at the outlet of the pump and a decrease in power at the drive relative to the original design. Conclusions: The feasibility of designing the vortex cavitator body with rotation capability has been established, which will provide a reduction in input power of at least 30% by a rotation of the body, co-directional with the impeller.
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利用涡室后通量的共向旋流增强旋涡空化器的性能
背景:声空化是指在频率为f=1–3 kHz的声场中,液体中空化洞穴的产生和坍塌。声空化过程在坍塌阶段表现出来,具有高压梯度连续变形,具有能量形式的多重转换。液体哨子被广泛用于产生高功率的声场,但其效率仅达到6-12%。我们提出了一种具有旋转体的涡流空化器(类似于兰克涡流管)形式的液体哨子,其中预测输入功率会降低。目的:验证在涡流空化器中使用旋转体的可行性,涡流空化器的旋转方向与运行中的泵叶轮相同。方法:确定使用旋转体可行性的方法是将旋转体从原型中排除,并将涡流室出口与泵入口直接连接,这确保了进入泵叶轮的通量的同向涡流分量得到最完整的保留。结果:实验研究的结果在更大程度上证实了该假设的有效性,因为相对于原始设计,我们实现了泵出口处的压力增加和驱动器处的功率降低。结论:已经确定了设计具有旋转能力的涡流空化器本体的可行性,该本体与叶轮同向旋转将使输入功率减少至少30%。
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来源期刊
Progress in Agricultural Engineering Sciences
Progress in Agricultural Engineering Sciences Engineering-Industrial and Manufacturing Engineering
CiteScore
1.80
自引率
0.00%
发文量
6
期刊介绍: The Journal publishes original papers, review papers and preliminary communications in the field of agricultural, environmental and process engineering. The main purpose is to show new scientific results, new developments and procedures with special respect to the engineering of crop production and animal husbandry, soil and water management, precision agriculture, information technology in agriculture, advancements in instrumentation and automation, technical and safety aspects of environmental and food engineering.
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