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Evaluation of Solar Dryer/Air Heater Performance and the Accuracy of the Result

机译:评估太阳能干燥机/空气加热器性能和结果的准确性

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This paper investigates the feasibility of using Laurie acid as a phase change material (PCM) to store excess solar energy and release it when the energy availability is inadequate or not available for solar drying process. With the increased emphasis on the efficiency of solar heating and drying facilities, the performance of ancillary equipment is becoming increasingly important. The air heater is a source of lost thermal efficiency in two ways — air leakage into , dryer side and poor heat recovery. Moreover, air in leak makes it difficult to determine the exiting hot air temperature and the performance of the air heater. In the present study, attention was given on the heat transfer characteristics of the PCM during the charge and discharge periods. The effects of inlet hot air temperature and inlet air velocities on the charge time were determined, while during the discharge period only the effect of inlet ambient air velocity was considered. This study also addresses the issue of properly evaluating the air heater performance and the accuracy of the final result. The appendix discusses the procedures used to determine the individual measurements and the uncertainty of these measurements.
机译:本文研究了使用Laurie酸作为相变材料(PCM)的可行性,以存储过量的太阳能,并在能量可用性不足或不适用于太阳能干燥过程时释放它。随着对太阳能加热和干燥设施的效率的重视,辅助设备的性能变得越来越重要。空气加热器是两种方式的热效率损失的源 - 空气泄漏,干燥器侧和差的热回收。此外,泄漏中的空气使得难以确定离开的热空气温度和空气加热器的性能。在本研究中,在充电和放电期间给出了PCM的传热特性。测定入口热空气温度和入口空气速度的影响,而在放电时段期间考虑了入口环境空气速度的效果。本研究还解决了正确评估空气加热器性能和最终结果的准确性的问题。附录讨论了用于确定各个测量和这些测量的不确定性的程序。

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