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首页> 外文期刊>IEEE Transactions on Industry Applications >High-Efficiency Portable Electrostatic Air Cleaner With Insulated Electrodes (January 2007)
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High-Efficiency Portable Electrostatic Air Cleaner With Insulated Electrodes (January 2007)

机译:带绝缘电极的高效便携式静电空气净化器(2007年1月)

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摘要

Portable air cleaners are becoming increasingly popular in household applications. Many different designs and technologies are currently available, and most cleaners are striving for Energy Star certification that requires certain performance and electrical efficiency levels. One of the most important criteria is electrical efficiency. The appliance has to be at least two CADR/W, where CADR is Clean Air Delivery Rate as measured per ANSI/AHAM AC-1-2002 standard and W is input power of the air cleaner. However, there are only a few serious attempts to significantly improve the efficiency of such devices beyond that required by Energy Star standards. This paper investigates relationships between intensity of the electric field inside the collector assembly of an electrostatic precipitator (ESP) and the effectiveness of the ESP operation. Single-pass collection efficiency and other parameters of the ESP were measured under various conditions and optimized for performance and energy efficiency. This paper describes a new collector assembly design. It allows an increase of the electric field in the collection area of the ESP of more than two times when compared to the electric field in conventional ESP designs. This results in an increase in single pass collection efficiency. Other improvements lead to an extremely efficient design that achieves electrical efficiencies as high as 15 to 20 CADR/W compared to the five CADR/W that only a few of the best models can demonstrate. Testing of the new design confirmed the expected bactericidal effect of the technology. The combination of a strong electric field, plasma of the corona discharge and ozone generated during ESP operation effectively kill the microorganisms. All three components (electric field, plasma and ozone) are created as byproducts of ESP operation and do not require additional energy input. Unique catalytic filters optimized for the design remove the ozone without excessive energy consumption. As a resul-t, this new technology does a better job of removing particles from the air, using less than 30% of the energy of the best rated portable air cleaners and kills bacteria in the air at the same time. The significance of this paper is particularly important for possible industrial and commercial applications where energy savings could be considerably more beneficial than in consumer applications.
机译:便携式空气净化器在家庭应用中变得越来越受欢迎。当前有许多不同的设计和技术可供使用,大多数清洁工都在争取获得能源之星认证,该认证要求一定的性能和电效率等级。最重要的标准之一是电效率。设备必须至少为两个CADR / W,其中CADR是根据ANSI / AHAM AC-1-2002标准测量的清洁空气输送速率,W是空气滤清器的输入功率。但是,只有少数认真的尝试来大大提高此类设备的效率,使其超过能源之星标准所要求的效率。本文研究静电除尘器(ESP)的集电器组件内部的电场强度与ESP操作的有效性之间的关系。在各种条件下测量ESP的单次通过效率和其他参数,并针对性能和能源效率进行优化。本文介绍了一种新的收集器组件设计。与传统ESP设计中的电场相比,它可使ESP收集区域中的电场增加两倍以上。这导致单程收集效率的提高。其他改进导致了极其高效的设计,与只有少数几个最佳模型的5 CADR / W相比,其电气效率高达15至20 CADR / W。新设计的测试证实了该技术的预期杀菌效果。在ESP操作过程中,强电场,电晕放电等离子体和产生的臭氧的结合有效地杀死了微生物。所有这三个成分(电场,等离子体和臭氧)都是ESP操作的副产品,不需要额外的能量输入。经过优化的独特催化过滤器可消除臭氧,而不会消耗过多的能量。作为一项成果,这项新技术在清除空气中的颗粒方面做得更好,它使用的是额定值最高的便携式空气净化器的能量不到30%,并且可以同时杀死空气中的细菌。本文的意义对于可能的工业和商业应用特别重要,在这些应用中,节能可能比在消费者应用中更为有益。

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