利用纳米流体提高使用 R32 制冷剂的热泵干燥器的效率

Prapanphong Somsila, Eakpoom Boonthum, Aphainun Namkhet, U. Teeboonma
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摘要

干燥过程在农业和食品行业的许多领域都很重要,包括延长保质期、通过减轻产品重量改善运输性能或增加产品价值。然而,干燥过程中的主要问题是能耗相对较高。因此,有必要开发节能型干燥机。基于上述原因,本研究旨在通过使用热回收和纳米流体,研究使用 R32 制冷剂的热泵干燥机的性能提升。通过热交换器从制冷剂中排出的热量。本研究选择了纳米二氧化钛(Ti2O3)。在干燥温度分别为 45、50 和 55 °C,干燥室前端热交换器中的水流量分别为 2、3 和 4 L/min 的条件下干燥猪肉。与不使用纳米流体的热泵烘干机相比,评价热泵烘干机性能的标准包括烘干率、特定水分提取率、特定能耗、热泵烘干机性能系数。结果表明,提高热交换器中的干燥温度和水流量可提高使用纳米流体的热泵干燥器的干燥速率、功率和特定水分提取率。而具体能耗则低于不使用纳米流体的情况。提高热交换器中的干燥温度和水流量对热泵干燥器的性能系数(COP)影响相对较小。此外,研究还发现,使用纳米流体的热泵干燥器的性能系数在 4.33 - 4.42 之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving Efficiency of Heat Pump Dryer Using R32 Refrigerant by Nanofluid
Drying process are important in many areas in the agriculture and food sectors, including increasing shelf life, improving transportability by reducing product weight or adding value to products. However, the main problem in the drying process is the relatively high energy consumption. Therefore, the development of energy-saving dryers is necessary. Based on the above reasons, this research aims to study the performance enhancement of heat pump dryers using R32 refrigerant by using heat recovery and nanofluid. The heat that is exhausted from the refrigerant by a heat exchanger. In this work, a Nano titanium dioxide (Ti2O3) was selected. Pork was dried under the conditions of drying temperature of 45, 50 and 55 °C and water flow rate in the heat exchanger at the front of the drying chamber of 2, 3 and 4 L/min. Criteria for evaluating heat pump dryer performance include drying rate, specific moisture extraction rate, specific energy consumption, heat pump dryer performance coefficient compared to heat pump dryers without nanofluid. The results showed that increasing the drying temperature and water flow rate in heat exchanger increased the drying rate, power and specific moisture extraction rate in the heat pump dryer using nanofluid. Whereas, the specific energy consumption was lower than the case without nanofluid. Increasing the drying temperature and the water flow rate in the heat exchanger had relatively little effect on the coefficient of performance (COP) of the heat pump dryer. Moreover, the study found that the coefficient of performance of heat pump dryer with nanofluid was in the range of 4.33 - 4.42.
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