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Design, modeling and analysis of efficient multi-rack tray solar cabinet dryer coupled with north wall reflector

机译:高效多机架托盘太阳能柜烘干机的设计,建模与分析与北壁反射器相连

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An innovative design of front loaded multi-rack tray (MRT) solar cabinet dryer is presented having optimally inclined reflective north wall (RNW) which utilizes reflected component of the solar radiation in addition to the beam radiation for efficient drying particularly in winter when conventional dryer does not perform well at higher latitudes (30 degrees N). A modified global solar radiation capture model coupled with RNW is presented to determine the effect of RNW on its performance. A thermal model is also developed for chamber air temperature (T-ch) and crop surface temperature (T-c) with experimental validation and solved using Modified Euler's method using FREEMAT software with experimental validation at Ludhiana climate (30.56 degrees N) India. Use of RNW enhances the radiation capture by 37.58%, 31.57% and 23.24% at 30 degrees, 40 degrees and 50 degrees N latitude respectively in winter. Daily average efficiency q(avg) with RNW was 5% and 4.35% higher under natural and forced convection modes respectively as compared to without using RNW. By using RNW, 4-7 degrees C and 2-5 degrees C higher T-ch was observed as compared to when RNW was not used under natural and forced convection modes respectively. Total reduction in drying time for carrot drying was observed to be 20% and 15% under natural and forced convection modes respectively. Predicted and experimental values for T-ch were successfully validated with root mean square error (RMSE) ranging between 2.6 and 4.9. Uncertainty was found to be 20.5 out of which 19.3 was internal and 1.2 external which indicates the accuracy of observed data to determine the performance of solar dryer.
机译:提出了一种具有最佳倾斜的反射北壁(RNW)的前负载多架子托盘(MRT)太阳能柜烘干机的创新设计,该北壁(RNW)除了常规干燥机时特别是在冬季的梁辐射外,还利用太阳辐射的反射部件。在更高的纬度(> 30度N)上不表现良好。提出了一种与RNW耦合的改进的全局太阳辐射捕获模型,以确定RNW对其性能的影响。热模型也用于腔室空气温度(T-CH)和作物表面温度(T-C),使用经验性验证,并在Ludhiana Climate(30.56度N)印度的实验验证,使用经修饰的欧拉的方法解决。使用RNW在冬季分别在30度,40度和50度纬度下捕获辐射37.58%,31.57%和23.24%。与不使用RNW的情况相比,每日平均效率Q(AVG)分别在自然和强制对流模式下比天然和强制对流模式更高。通过使用RNW,与在天然和强制对流模式下未使用RNW时,观察到4-7摄氏度和2-5摄氏度。在天然和强制对流模式下观察到胡萝卜干燥干燥时间的总减少为20%和15%。 T-CH的预测和实验值以2.6和4.9之间的根均线误差(RMSE)成功验证。不确定性被发现是20.5其中19.3内部和1.2外部,表示观察到的数据的准确性,以确定太阳能干燥器的性能。

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