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Experimental study on defrosting mechanism of intermittent ultrasonic resonance for a finned-tube evaporator

机译:翅片管蒸发器间歇性超声波除霜机理的实验研究

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This paper proposed a new defrosting method based on ultrasonic resonance mechanism, to solve the problem of theunknown mechanism of ultrasonic defrosting for a finned-tube evaporator. Dynamic microscopic process of frost crystals formation and growth under the natural frost condition was first investigated. According to the growth characteristics of the frost crystals, the natural frequencies of frost crystals with different height were calculated in COMSOL software. An ultrasonic transducer of 28 kHz/60W was adopted as an executor to excite the evaporator, then ultrasonic defrosting experiments and laser vibrometer experiments were carried out under the excitation of the ultrasonic transducer. Finally, experiment of ultrasonic resonance based on intermittent operational was studied to optimize ultrasonic loading method. It was found that the height of the frost crystals were about 0.5 mm after growing for 4 min, the average natural frequency of the frost crystals were about 27.95 kHz, the evaporator and frost crystals on the fin surface were forced vibration at the frequency of 28.2 kHz, which was the actual working frequency of the ultrasonic transducer detected in laser vibrometer experiment, and most frost crystals with certain shape and sizewere immediately broken up when the ultrasonic vibration applied. The main mechanism of ultrasonic defrosting was the resonance effect of natural frequency of frost crystals and excitation frequency, and the optimal working mode of ultrasonic resonance defrosting was intermittent 4 min, vibration 1 min. The experiment's results also showed that ultrasonic shear stress and acceleration effect of ultrasonic also had defrosting performance, but they were not the main mechanism for ultrasonic defrosting.
机译:提出了一种基于超声共振机理的除霜方法,以解决翅片管蒸发器超声除霜机理未知的问题。首先研究了在自然霜冻条件下霜晶形成和生长的动态微观过程。根据霜晶的生长特性,在COMSOL软件中计算了不同高度的霜晶的固有频率。采用28 kHz / 60W的超声换能器作为激励器来激励蒸发器,然后在超声换能器的激励下进行超声除霜实验和激光振动计实验。最后,研究了基于间歇操作的超声共振实验,以优化超声加载方法。发现霜晶生长4分钟后的高度约为0.5 mm,霜晶的平均固有频率约为27.95 kHz,翅片表面的蒸发器和霜晶以28.2的频率被强迫振动。激光振动计实验中检测到的超声换能器的实际工作频率为kHz,当施加超声振动时,大多数具有一定形状和大小的霜状晶体会立即破碎。超声除霜的主要机理是霜晶的固有频率与激发频率的共振效应,超声共振除霜的最佳工作模式是间歇4 min,振动1 min。实验结果还表明,超声切应力和超声的加速作用也具有除霜性能,但并不是超声除霜的主要机理。

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