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Dehumidification of sewage sludge using quonset solar tunnel dryer: An experimental and numerical approach

机译:Quonset Solar隧道烘干机除湿污水污泥:实验性和数值方法

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In this study, it is aimed to design an efficient and sustainable solar tunnel dryer to be used in drying process of sewage sludge. In the first step of this study, heat and flow structure of three tunnel dryers including rectangular tunnel (RSTD), quonset tunnel (QSTD) and quonset tunnel with fins (QSTD/F) have been numerically surveyed to determine the effective design. Based on CFD results, quonset-type tunnel designs have been fabricated, experimentally analyzed and compared with numerical findings. In this work, different from previous studies on quonset-type solar-thermal systems, top surface of quonset geometry was made from sheet metal as an absorber to enhance heat transfer area. The drying tests have been performed in different months of the year (June and January) by applying two different air velocities to evaluate the performance of tunnel dryers at various climatic conditions. Integrating fins to the quonset tunnel had considerable positive effects on both thermal and drying performances. According to the experimental findings, specific moisture extraction rate (SMER) value was attained on June and January in the range of 0.50-0.89 and 0.39-0.65 kg/kWh, respectively. The results indicated the successfulness of quonset solar tunnel dryer design in the dehumidification process of sewage sludge.(c) 2021 Elsevier Ltd. All rights reserved.
机译:在本研究中,旨在设计一种高效和可持续的太阳能隧道干燥器,用于污水污泥的干燥过程中。在本研究的第一步中,在数值调查了包括矩形隧道(RSTD),Quomset隧道(QSTD)和Quomset隧道(QSTD / F)的三个隧道干燥器的热和流动结构,以确定有效的设计。根据CFD结果,已经制造了Quonset型隧道设计,并与数值发现进行了实验分析。在这项工作中,与以往的Quonset型太阳能热系统的研究不同,Quonset几何的顶表面由金属板作为吸收器制成,以增强传热面积。通过应用两种不同的空气速度来评估隧道干燥器在各种气候条件下的性能,在一年(6月和1月)的不同月份进行了干燥试验。将鳍片整合到Quonset隧道对热和干燥性能具有相当大的积极影响。根据实验结果,6月和1月达到了特定的水分提取率(SMER)值,分别为0.50-0.89和0.39-0.65千克/千瓦时。结果表明,污水污泥除湿过程中Quonset Solar隧道干燥机设计的成功。(c)2021 Elsevier Ltd.保留所有权利。

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