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PREDICTION OF NON-UNIFORM FROST DISTRIBUTION ON A FIN TUBE HEAT EXCHANGER

机译:翅片管换热器上非均匀结冰分布的预测

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Heat exchanger experiences frost on its surface when it operates below 0°C under heating condition of the heat pump. Since frost blocks air flow through the fin tube heat exchanger, it increases air-side pressure drop and deteriorates heat transfer rate of the heat exchanger. Prediction of the frost profiles on the heat exchanger is needed to minimize the unfavorable effect on the heat exchanger by frost. The present study predicts non-uniform frost distribution on the surface of fin-tube heat exchanger and shows its accuracy by comparing with measured profiles. Fin and tube heat exchanger for heat pump was considered for the frost prediction under practical refrigerant and air conditions. Non-uniform frost pattern was predicted by using segment by segment method of the heat exchanger. Heat transfer rate and exit temperature of air and refrigerant for each segment were calculated by applying s-NTU method. Air volume flow rate in the front of the heat exchanger was decreased as frost goes on. It was utilized for the prediction of the frost formation. Numerically predicted results were compared with measured local data. They agreed within ±10.4% under the ISO 5151 condition.
机译:当热交换器在热泵的加热条件下低于0°C运转时,其表面会结霜。由于霜会阻止空气流过翅片管热交换器,因此会增加空气侧的压降并降低热交换器的传热率。需要预测热交换器上的霜分布,以使霜对热交换器的不利影响最小化。本研究预测了翅片管式换热器表面的霜冻分布不均匀,并通过与实测曲线比较显示了其准确性。考虑了在实际制冷剂和空气条件下用于霜冻预测的热泵翅片管式热交换器。采用换热器逐段法预测了霜冻的不均匀性。应用s-NTU方法计算每个段的空气和制冷剂的传热速率和出口温度。随着霜冻的继续,热交换器前部的风量减小。它被用来预测霜的形成。将数值预测的结果与测得的本地数据进行比较。他们在ISO 5151条件下同意在±10.4%以内。

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