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Thermal test procedure for mixed mode solar dryer

机译:混合模式太阳能干燥机的热测试程序

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In present study, the simple test procedure is proposed for thermal performance evaluation of solar dryers in general and mixed mode dryer in particular. Steady state heat balance concept has been applied to the absorber surface of collector-dryer assembly for identification of a dimensionless parameter called Dryer Performance Ratio (DPR) representing the effectiveness of a dryer. No-load experiments on mixed mode dryer have been performed for natural and forced air circulation under indoor controlled conditions. The dryer is tested for a wide range of operating conditions of absorbed thermal energy (300–800W/m2) and air mass flow rate (0.009–0.026 kg/s). Comparison of DPR values obtained for natural and forced air circulations indicates a significant performance improvement of 94% at the minimum air flow rate of 0.009 kg/s. It is also found that there is sharp rise in DPR by 31% is observed when airflow is increased from 0.009 to 0.017 kg/s and thereafter a marginal increase of 4% can be noticed for air flow enhancement of ∼ 53%. Another important finding of present study relates to invariable DPR values obtained for a wide range of absorbed energy and ambient air temperature data irrespective of air circulation mode adopted for a dryer.
机译:在本研究中,提出了一种简单的测试程序,用于评估普通太阳能干燥机和特别是混合模式干燥机的热性能。稳态热平衡概念已应用于集热干燥器组件的吸收器表面,用于识别称为干燥器性能比(DPR)的无因次参数,该参数代表干燥器的有效性。在室内受控条件下,已经对自然和强制空气循环进行了混合模式干燥机的空载实验。该干燥机在广泛的吸收热能(300–800W / m 2 )和空气质量流量(0.009–0.026 kg / s)的运行条件下进行了测试。比较自然和强制空气循环获得的DPR值表明,在最小空气流量为0.009 kg / s时,性能显着提高了94%。还发现,当气流从0.009增至0.017 kg / s时,DPR急剧增加了31%,此后边际增加了4%,气流增加了约53%。本研究的另一个重要发现与获得的恒定DPR值有关,该DPR值适用于广泛的吸收能量和周围空气温度数据,而与干燥机采用的空气循环模式无关。

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