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Air curtain performance: Introducing the adapted separation efficiency

机译:空气窗帘性能:介绍适应的分离效率

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摘要

Air curtains (ACs) are plane turbulent impinging jets that are used to separate two environments in terms of heat and mass transfer while still allowing traffic between these environments. The many applications of ACs across a wide variety of industries makes the evaluation of their performance an important but difficult task. The aim of this paper is to introduce a performance indicator, called the adapted separation efficiency, that is suitable for different types of systems that may involve different AC configurations (downward blowing, upward blowing, lateral blowing, multiple jets, etc.) at multiple scales, different transported quantities (heat, water vapor, particles, gases, etc.) subjected to various transport mechanisms (advection, molecular and turbulent diffusion) and varying environmental conditions (gradients in environmental pressure and/or density). It is defined using a conventional efficiency formula. The principle of this performance indicator is illustrated with a generic case study where the performance is evaluated for two basic AC configurations involving cross-jet pressure and density gradients, as well as different jet momentum fluxes. The case study is conducted based on computational fluid dynamics employing validated large eddy simulations.
机译:空气窗帘(ACS)是平面湍流冲击喷射器,用于在热量和质量转移方面分离两个环境,同时仍然允许这些环境之间的流量。 ACS跨各种行业的许多应用都使其表现评估重要但艰巨的任务。本文的目的是引入一个称为适应性分离效率的性能指示器,适用于不同类型的系统,这些系统可能涉及不同的AC配置(向下吹吹,向上吹,横向吹,多喷射等)尺度,不同的运输量(热,水蒸气,颗粒,气体等)经受各种运输机制(平流,分子和湍流扩散)和不同的环境条件(环境压力和/或密度的梯度)。它是使用传统效率公式定义的。这种性能指标的原理用一般案例研究说明,其中评估了涉及交叉喷射压力和密度梯度的两个基本AC配置的性能,以及不同的喷射动量势率。案例研究是基于采用验证的大型涡模拟的计算流体动力学进行的。

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