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Nonstationarity of the Efficiency Coefficient and Heating Temperatures of Water in Flat-Plate Solar Collectors

机译:平板太阳能集热器中水的效率系数和加热温度的不平稳性

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摘要

A one-dimensional nonstationary three-element distributed thermal model of a flat-plate collector with allowance for time variation of the temperatures through the “thickness” of the elements and along the length of the solar collector (SC) has been developed and software-implemented. The main data in this model consist of the thermophysical and overall parameters of the collector elements, heat carrier inlet velocity, solar radiation density, and ambient and sky temperature. To decrease the calculation variants, the variation ranges of mass flow of the heat carrier and its flow velocity were estimated for the characteristic parameters of the heat-removal channels of flat-plate SCs. It has been found that the specific mass flows of water in flat-plate SCs are 2.5–10 g/(s m_(2)), and the water flow velocity is 0.0005–0.002 m/s. It is shown that the instantaneous efficiency coefficient and temperature of the heat carrier can fall outside stationary values within 1–3 h. However, the daily efficiency coefficients of the SC do not fall outside the stationary values even within a day. The developed flat-plate SC model can be used to estimate the influence of the thermophysical and overall parameters of the elements, as well as the parameters of the environment, on its thermophysical characteristics when developing flat-plate SCs and methods for experimentally determining their characteristics.
机译:平板集热器的一维非平稳三元分布式热模型,已开发了通过元素的“厚度”和沿太阳能集热器(SC)的长度随时间变化的温度的软件,已实施。该模型的主要数据包括收集器元件的热物理参数和总体参数,热载体入口速度,太阳辐射密度以及环境和天空温度。为了减少计算量,针对平板SC的排热通道的特征参数,估算了热载体的质量流量及其流速的变化范围。已经发现,平板SC中水的比质量流量为2.5-10 g /(s m_(2)),水的流速为0.0005-0.002 m / s。结果表明,载热体的瞬时效率系数和温度在1-3小时内可能会超出固定值。但是,即使在一天之内,SC的日效率系数也不会超出固定值。开发的平板SC模型可用于评估开发平板SC时元素的热物理参数和整体参数以及环境参数对其热物理特性的影响,以及通过实验确定其特性的方法。

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