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An experimental study on frosting and hybrid defrosting of a cold flat plate under natural convection

机译:自然对流下冷平板冻结和杂交除霜的实验研究

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The purpose of this study is to investigate the frosting characteristics and defrosting performance via a hybrid defrosting technique under free convection. This technique includes both surface treatment and ultrasonic vibration methods. The testing results for slippery surfaces are compared with those of plain stainless-steel SS ANSI 316 surfaces. These surfaces are tested under similar testing conditions with 24°C dry bulb temperature and around 60% relative humidity. The surface is treated by implementing a super-hydrophobic coating material. The ultrasonic vibrational source has a high resonance frequency of 28±0.5 kHz. It is used in direct contact with the cold surface for continuous, intermittent, and mixed vibrations. In the present experiment, the ultrasonic defrosting has been studied extensively using horizontal and vertical plates. The results revealed the following: (Ⅰ) The nucleation process has delayed around 8 minutes on the superhydrophobic horizontal coated surface and about 10 minutes on the superhydrophobic vertical coated surface due to the reduction in the adhesive surface strength; (Ⅱ) For plain horizontal surfaces, intensive intermittent vibration is more favorable than continuous vibration when it is applied as a 1-minute intermittent contact vibration followed by 10 minutes cooling; (Ⅲ) For coated horizontal surfaces, continuous vibration is the most effective way to suppress frost layers; (Ⅳ) For vertical surfaces, coating is effective enough for defrosting and there is no need for additional vibration; (Ⅴ) Using two ultrasonic transducers covers more areas for defrosting, but it increases the circularity of the droplets with comparatively sparse formation for coated surfaces; (Ⅵ) Coated superhydrophobic surfaces should be adopted rather the plain surface since it has a proper self-drainage capability which improves defrosting efficiency.
机译:本研究的目的是通过自由对流的混合除霜技术来研究糖粉特性和除霜性能。该技术包括表面处理和超声波振动方法。与普通不锈钢SS ANSI 316表面的表面进行比较了滑动表面的测试结果。这些表面在类似的测试条件下进行测试,具有24°C干泡温度和约60%的相对湿度。通过实施超疏水涂层材料处理表面。超声波振动源的高共振频率为28±0.5 kHz。它用于与冷表面直接接触,以连续,间歇和混合振动。在本实验中,已经使用水平和垂直板广泛地研究了超声波除霜。结果表明以下结果:(Ⅰ)在超疏水水平涂覆表面上延迟成核过程约为8分钟,并且由于粘合剂表面强度的降低,超疏水垂直涂层表面上约10分钟; (Ⅱ)对于普通水平表面,密集间歇性振动比连续振动更有利,当其作为1分钟间歇接触振动时,随后10分钟冷却; (Ⅲ)对于涂层水平表面,连续振动是抑制霜层最有效的方法; (ⅳ)对于垂直表面,涂层足以进行除霜,不需要额外的振动; (ⅴ)使用两个超声换能器覆盖更多的除霜区域,但它增加了涂层表面相对稀疏的液滴的圆形度; (ⅵ)应采用涂覆的超疏水表面,而是普通表面,因为它具有适当的自排水能力,从而提高了除霜效率。

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