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Thermal performance of a packed bed double pass solar air heater with a latent heat storage system: an experimental investigation

机译:填充床的热性能双通太阳能空气加热器,具有潜热储存系统:实验调查

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Purpose - Solar energy applications are limited because of its intermittent and discontinuous availability with respect to time. Hence, solar energy thermal conversion systems need integration with thermal storage units (TSUs) to use solar energy in off sunshine hours. This paper aims to perform thermal analysis of a solar air heater (SAH) integrated with a phase change material (PCM)-based TSU to supply hot air during night period. Design/methodology/approach - An experimental setup with TSU as main component was prepared with SAH at its upward side, food chamber at its downward side as subcomponents. In TSU, paraffin wax was used as thermal energy storage material. Mass flow rate of air considered as an input parameter in the experiment. Two different absorber plates, namely, plane and ribbed absorber plates were used for the experimentation. Each day for a fixed mass flow of air, observations were made during charging and discharging of PCM. Findings - Nusselt number and convection heat transfer coefficients were analytically calculated by considering flow through TSU as external flow over bank of tubes in a rectangular duct. A temperature drop of around 7-8°C during charging of PCM and temperature rise of around 4-5°C during discharging of PCM was observed from the experimental results. The average practical efficiency of TSU with ribbed absorber plate SAH during charging and discharging of PCM was 22 and 6 per cent, respectively, higher than that of TSU with plane absorber plate SAH. Research limitations/implications - There are no limitations for research on SAH integrated with TSU. Different PCM including paraffin wax, Glauber's salt, salt hydrates and water are used for thermal storage. Only limitation is lower efficiency of SAH integrated with TSU because of lower heat transfer coefficients with air as working medium. If it can improve heat transfer coefficients of air then heat transfer rates with these units will be higher. Practical implications - There are no practical limitations for research on SAH integrated with TSU. Sophisticated instrumentation is needed to measure flow rates, temperatures and pressure variations of air. Social implications - In poultry farms during night, chicks cannot survive at cold climatic conditions. Hence, hot air should be supplied to poultry farms whenever the atmospheric temperature drops. It is proposed that, in combination with TSUs, heat produced by SAH is stored in day time in the form of either sensible or latent heat and is retrieved to provide hot air in the night times. This will reduce total operating costs in poultry farms. Originality/value - Conventionally, people are producing hot air by combusting coal in poultry forms. This cost around Rs. 75,000 per month for a batch of 225 to 250 chicks in a poultry form. Hot air could be produced economically during off sunshine hours from SAH integrated with TSU compared to the conventional method of coal burning. Present experimental investigations conducted to fill the literature gap in this area of research and to design a SAH integrated with TSU to produce hot air for poultry forms.
机译:目的 - 由于其相对于时间间歇性和不连续的可用性,太阳能应用受到限制。因此,太阳能热转换系统需要与热存储单元(TSU)集成,以在阳光下使用太阳能。本文旨在对集成的太阳能空气加热器(SAH)进行热分析,其与相变材料(PCM)为基础的TSU在夜间供应热空气。设计/方法/方法 - 用TSU作为主要成分的实验设置用SAH在其向上侧,其向下侧的食物室作为子组件制备。在TSU,石蜡用作热能储存材料。在实验中被认为是作为输入参数的空气的质量流速。两种不同的吸收板,即平面,平面和罗纹吸收板用于实验。每天用于固定的空气流量,在充电和放电期间进行观察到PCM。发现 - 通过考虑通过TSU作为矩形管道的管道上的外部流动来分析营养数和对流传热系数。从实验结果中观察到在PCM充电期间,在PCM充电期间的温度下降约为4-5℃,在PCM放电期间约4-5℃。 TSU与罗纹吸收板SAH的平均实用效率分别为22%至6%,高于具有平面吸收板SAH的TSU。研究限制/含义 - 与TSU整合的SAH研究没有局限性。不同的PCM包括石蜡,Glauber盐,盐水合物和水用于热储存。由于具有空气作为工作介质的空气较低,但仅限于与TSU集成的SAH效率较低。如果可以改善空气的传热系数,则与这些单元的传热速率将更高。实际意义 - 与津类集团的SAH研究没有实际限制。需要复杂的仪器来测量空气的流量,温度和压力变化。社会影响 - 在夜间家禽养殖场,小鸡无法在寒冷的气候条件下存活。因此,每当大气温度下降时,应提供给家禽养殖场的热空气。提出,与TSU的组合,SAH的热量在白天时间储存,以可比度或潜热的形式,并检索在夜间提供热空气。这将减少家禽养殖场的总运营成本。原创性/价值 - 传统上,人们通过燃烧煤形式产生热空气。这一费用左右。每月75,000批75,000批次为家禽形式225至250只小鸡。与传统的煤炭燃烧方法相比,热空气可以在从SAH与TSU集成的SAH中的阳光小时内经济地生产。目前对该研究领域的文学差距进行了目前的实验研究,并设计与TSU集成的SAH,以产生家禽形式的热空气。

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