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ADVANCING THERM0AC0UST1CS THROUGH CFD SIMULATION USING FLUENT

机译:通过使用FFD的CFD模拟来推进THERM0AC0UST1CS

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From the time mechanical refrigeration was first introduced, its use has significantly increased. In general, cooling is achieved with vapor compression machines that use specific refrigerants (blends of hydrogen, carbon, fluorine and chlorine in various mixing ratios) that can be tailored to create cooling at any required temperature level. Each refrigerant exhibits a specific global warming potential and ozone depletion potential in the atmosphere by absorbing infrared radiation and breaking down of ozone molecules. Since the adverse effects of those substances have been discovered, the field of refrigeration has been moving away from conventional refrigerants, and searching for better alternatives. Thermoacoustic refrigeration is such an alternative that can provide cooling to essentially any required temperature level without using any environmentally harmful substances. It is presently a niche technology that can be expanded into a broader market, primarily if the sizing problem can be solved. Currentlx, the most efficient thermoacoustic refrigerators are used in industrial settings. This work explores the possibility of decreasing the footprint of these refrigerators by utilizing a coiled resonator. A CFD analysis lias been developed and first results in regard to coiled resonators are shown and discussed.
机译:从首次引入机械制冷开始,它的使用就大大增加了。通常,冷却是通过使用特定制冷剂(各种混合比例的氢,碳,氟和氯的混合物)的蒸汽压缩机实现的,这些制冷剂可以量身定制以在任何所需的温度水平下产生冷却。每种制冷剂通过吸收红外辐射并分解臭氧分子,在大气中表现出特定的全球变暖潜能和臭氧消耗潜能。由于已经发现了这些物质的不利影响,制冷领域已从传统制冷剂中移开,并寻求更好的替代方法。热声制冷是这样一种替代方案,它可以在不使用任何对环境有害的物质的情况下,将其冷却到基本上任何所需的温度水平。目前,它是一种利基技术,主要可以解决尺寸问题,可以将其扩展到更广阔的市场。 Currentlx是最有效的热声制冷机,用于工业环境。这项工作探索了通过利用线圈谐振器来减少这些冰箱的占地面积的可能性。开展了CFD分析联络人,并显示和讨论了有关线圈谐振器的第一个结果。

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