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Thermal performance analysis of semicircular and triangular cross-sectioned duct solar air heaters under external recycle

机译:半圆形和三角形截面风道式太阳能空气加热器在外部循环下的热性能分析

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摘要

The present work is focused on the analytical and numerical investigations related to thermal and thermohydraulic efficiencies of a solar air heater (SAH) with semicircular (Model-I) and triangular (Model-II) cross-sectioned ducts. V-down rib roughness is considered on the bottom side of the absorber plate under the external recycle operation and effect on the thermal performance is analyzed using the analytical investigation. It is observed that the employment of recycle operation substantially improves the thermal performance of these two SAH models as compared to the single-pass operation (without recycle). The external recycle of the air exiting from the SAH outlet increases the heat extraction rate and strengthen the heat transfer coefficient for the air flowing through the roughened SAH duct and further increases the thermal performance. Moreover, SAH models are operated for different hydraulic diameters. Whereas, the best results of thermal performance are obtained at the least value of the hydraulic diameter. It is predicted from the analytical investigation that the Model-I of the semicircular duct with recycle is 3% and 17% efficient in thermal efficiency as compared to Model-II of the triangular duct with and without recycle, respectively, at a hydraulic diameter of 0.06 m. While, the maximum value of the thermal and thermohydraulic efficiencies obtained for Model-I with recycle operation is found to be 75% and 72%, respectively. Although, the numerical investigation is carried out using Ansys-Fluent software to clearly present the associated air heating and pressure drop reduction abilities of both the solar air heater ducts.
机译:当前的工作集中在与半圆形(I型)和三角形(II型)横截面管道的太阳能空气加热器(SAH)的热和热工效率相关的分析和数值研究。在外部循环操作下,在吸收板的底部考虑了V型肋的粗糙度,并通过分析研究分析了其对热性能的影响。可以看出,与单次运行(不带循环)相比,采用循环操作可以大大改善这两个SAH模型的热性能。从SAH出口流出的空气的外部循环可提高排热速率,并增强流经粗糙SAH管道的空气的传热系数,并进一步提高热性能。此外,SAH模型适用于不同的液压直径。而在水力直径的最小值处可获得最佳的热性能结果。从分析研究中可以预测,在水力直径为1的情况下,带循环的半圆形管道的模型I的热效率分别为有和没有循环的三角管道的模型II的3%和17%。 0.06 m。同时,发现对于具有再循环操作的模型I,获得的热和热工液压效率的最大值分别为75%和72%。尽管使用Ansys-Fluent软件进行了数值研究,以清楚地显示两个太阳能空气加热器管道的相关空气加热和降压能力。

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