论文标题

撤离管太阳能收集器中用于辐射传热的灰色体近似:信封红外透明度的影响

The gray body approximation for radiative heat transfer in evacuated tube solar collectors: Effects of envelope infrared transparency

论文作者

George, Mark A., Takamure, Noboru, McKenzie, David R.

论文摘要

理论和实验分析是由撤离管太阳能收集器的同轴几何形状中的辐射热传递进行的。由于选择性吸收涂层和在热红外的部分传播外玻璃,尤其是在硼硅酸盐中构造时,灰色体近似隐含在使用有效发射率中并不严格适用于疏散的管太阳能收集器。我们通过外膜开发了传热的分析表达式,并显示方程不再遵循一个简单的形式,在该形式中可以定义有效的系统发射率。为了测试所有实践中的所有近似值,使用日本Nitto Kohki Company在1980年代制造的撤离太阳能收集器进行了实验,使用有效的发射率近似,以确定两个方向上使用净辐射热流的典型热传递特性。该方法使温度时间数据具有良好的拟合度,用于在10到85°C之间冷却和加热内管。结果证实,有效的发射率方法可用于典型的玻璃壁厚和温度的情况。在高度100°C的温度下,发射辐射的光谱分布显着落在外部玻璃的传输区域内,不能再忽略了。由于管子在存储条件下大约40年后,这项工作已经验证了这种类型的收集器中真空的稳定性,因此保持了低发射率和良好的真空。

A theoretical and experimental analysis is carried out of radiative heat transfer in the coaxial geometry of evacuated tube solar collectors. The gray body approximation implicit in the use of an effective emissivity does not strictly apply to evacuated tube solar collectors due to selective absorber coating and partially transmitting outer glass in the thermal infrared, especially when constructed from borosilicate. We develop analytic expressions for the heat transfer through the outer envelope and show the equations no longer follow a simple form where an effective emissivity for the system can be defined. To test all approximations in practice, an experiment is performed using an evacuated solar collector manufactured in the 1980s by the Nitto Kohki company in Japan using the effective emissivity approximation to determine the typical heat transfer characteristics using net radiative heat flows in both directions. This method enabled a good fit to temperature-time data for cooling and heating of the inner tube for temperatures between 10 and 85°C. The results confirm that the effective emittance method can be used in situations with typical glass wall thickness and temperatures. At temperatures greater 100°C, the spectral distribution of the emitted radiation falls significantly within the transmitting region of the outer glass and can no longer be neglected. The work has verified the stability of the vacuum in this type of collector as the tube still functions well, maintaining a low emissivity and good vacuum after approximately 40 years in storage conditions.

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