A study on the effectiveness of microwave heating for disinfection of humidifier elements

Yoonkyung Kang, S. Kato
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引用次数: 7

Abstract

In this study, microwave irradiation was tested as a possible means to disinfect evaporative humidifiers in air-conditioning systems. A mock-up of a humidifier was prepared to identify the applicability of the microwave irradiation system. To characterize the heating properties of this system under optimum operating conditions, the temperature distribution of the humidifier element was measured as a function of various parameters. Variables included the use of ventilation and water spraying during microwave irradiation, the level of radiation output power and whether the element was dry or wet. The results showed that microwave irradiation can heat the evaporative humidifier element about 60°C at 1200 W for exposure times greater than 3 min under nonoperating conditions (without air blower and water spraying). However, the temperature distribution of the element was nonuniform, regardless of whether the conditions were dry or wet. The effectiveness of microwave heating is limited due to nonuniform distribution of temperature. To achieve a uniform surface temperature on the element, further studies are necessary.
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微波加热对加湿器元件消毒效果的研究
在这项研究中,微波辐射作为一种可能的手段消毒蒸发加湿器在空调系统中。为了验证微波辐照系统的适用性,制作了一个加湿器的模型。为了表征该系统在最佳运行条件下的加热特性,测量了加湿器元件的温度分布作为各种参数的函数。变量包括微波辐照期间通风和喷水的使用、辐射输出功率的水平以及元件是干的还是湿的。结果表明,在非工作条件下(无风机和喷水),微波照射可使蒸发式加湿器元件在1200 W下加热60℃左右,照射时间大于3 min。然而,无论在干燥还是潮湿条件下,元件的温度分布都是不均匀的。由于温度分布不均匀,限制了微波加热的有效性。为了使元件表面温度均匀,还需要进一步的研究。
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来源期刊
HVAC&R Research
HVAC&R Research 工程技术-工程:机械
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审稿时长
3 months
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EOV Editorial Board The never-ending search Accelerating fast fluid dynamics with a coarse-grid projection scheme Numerical modeling of volatile organic compound emissions from ozone reactions with human-worn clothing in an aircraft cabin Dynamic simulation and analysis of ancillary service demand response strategies for variable air volume HVAC systems
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