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Performance evaluation of an indirect air cooling system combined with evaporative cooling

机译:间接空冷系统与蒸发冷却相结合的性能评估

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摘要

This study developed an indirect air-cooling combined with evaporative cooling (IAC + EC) system for temporary storage of fruit and vegetables (FV) to improve the shelf life of fresh produce under hot and humid climatic conditions. The aim of the study was to investigate the effect of IAC + EC in providing optimum storage environment of temperature and relative humidity (RH) for the tomato fruit compared to storage under ambient conditions. The IAC + EC system had a 53-m storage chamber able to store 3.8 tons of tomatoes. Solar energy during the day and a battery bank facility at night powered the cooling system. The structure was constructed and assembled at Ukulinga research center in Pietermaritzburg. The performance of the IAC + EC was evaluated based on the temperature and the RH measured hourly from 05h00–22h00 daily during a period of 28 days. Temperature and RH were measured in the psychometric unit, various positions in the storage chamber and at ambient conditions. There were significant variations (P < 0.001) in temperature and RH between storage and ambient conditions. The temperature inside the storage chamber was on average 7°C–16°C lower while the average RH was 13%–41% higher than ambient conditions. Temperature and RH at the exhaust end of the IAC + EC storage chamber were 16.40 °C and 88.9% compared to 30.9°C and 47.6% under ambient conditions. Such conditions can enhance the shelf life of FV of moderate respiration rates. Inside the storage chamber, temperature was 15.7°C–16.4°C while the RH was 89.6%–93.8% depending on location. The cooler efficiency varied from 88.04% to 95.6%. The IAC + EC system performed at the same level as evaporative cooling under dry and arid conditions. The results in this study are evidence that IAC + EC system can provide optimum storage conditions for FV as well as being a low-cost technology utilizable in hot and sub-humid to humid areas in sub-Saharan Africa.
机译:这项研究开发了一种间接空冷结合蒸发冷却(IAC + EC)的系统,用于水果和蔬菜(FV)的临时存储,以提高在湿热气候条件下新鲜农产品的保质期。这项研究的目的是研究IAC + EC在为番茄果实提供最佳的温度和相对湿度(RH)储存环境(与在环境条件下储存相比)中的作用。 IAC + EC系统具有一个53米的储藏室,能够储藏3.8吨西红柿。白天的太阳能和晚上的电池组设施为冷却系统提供动力。该结构是在Pietermaritzburg的Ukulinga研究中心建造和组装的。 IAC + EC的性能是根据在28天内每天从05h00-22h00每小时测量的温度和相对湿度评估的。在心理计量单位,储藏室中的各种位置以及环境条件下测量温度和相对湿度。在储存和环境条件之间,温度和相对湿度存在显着差异(P <0.001)。储藏室内的温度平均降低7°C至16°C,而平均相对湿度则比环境温度高13%至41%。 IAC + EC储存室排气端的温度和相对湿度分别为16.40°C和88.9%,而环境条件下为30.9°C和47.6%。这样的条件可以延长中等呼吸频率的FV的保质期。在储藏室内,温度根据位置而定为15.7°C–16.4°C,相对湿度为89.6%–93.8%。冷却器效率从88.04%到95.6%不等。 IAC + EC系统在干燥和干旱条件下的性能与蒸发冷却的性能相同。这项研究的结果证明,IAC + EC系统可以为FV提供最佳的存储条件,并且是一种低成本技术,可在撒哈拉以南非洲的炎热和半湿润至湿润地区使用。

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