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Wind tunnel measurements of forced convective heat loss from multi- megawatt cavities of solar central receiver systems

机译:由太阳能中央接收器系统的数兆瓦腔引起的强制对流热损失的风洞测量

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We investigated the forced convective heat loss from a model of a multi-megawatt cavity receiver of a concentrated solar power (CSP) tower system in a high-pressure wind tunnel. Measurements of 5 geometrical configurations of this model as well as measurement uncertainties are reported in this contribution. The experiment covered a Reynolds number range of between 2.106 and 8.106, based on the external dimensions and flow field. In general, the measured values are highly sensitive to the geometrical configuration, the wind velocity, and the wind direction. The results show that the maximum forced convective heat loss for all configurations occurs when the wind blows from frontal directions of between 60 and 80 relative to the tower symmetry plane. We found that the peak location does not vary for different inclinations, but does vary for different aperture openings. Also, the results show that the direction of the wind causes the forced convective heat loss to vary with a factor of up to 6.1, but at least with a factor of 2.6. Last but not least, our power-law correlation of the dependency of the forced convective heat loss on the Reynolds number matches literature values.
机译:我们从高压风洞中的集中太阳能(CSP)塔系统的多兆瓦腔接收器的模型研究了强迫对流热损失。该贡献报告了该模型的5种几何构型的测量以及测量的不确定性。根据外部尺寸和流场,实验覆盖了2.106至8.106的雷诺数范围。通常,测量值对几何形状,风速和风向高度敏感。结果表明,当风从相对于塔对称平面的正面方向吹往60到80之间时,会发生所有配置的最大强制对流热损失。我们发现峰值位置不会因不同的倾斜度而变化,但会因不同的孔径开口而变化。而且,结果表明,风的方向导致强制对流热损失的变化系数最大为6.1,但至少为2.6。最后但并非最不重要的一点是,我们关于强制对流热损失对雷诺数的依赖性的幂律相关性与文献值相符。

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