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Radiative heat flux control over spherical surfaces

机译:球形表面的辐射热通量控制

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Tremendous efforts have been and are being devoted to control the radiative heat flux over complex spherical surfaces such as solar energy collectors. Classical energy balance methods and network analysis have been used by previous investigators to evaluate the relevant exchange-factors of any spherical collector. The complex characteristics of the radiative flux in automatic control systems of such surfaces, the simplifying assumptions, and the complexity and the size of the equation matrices used, limit the application of such methods even to very simple cases, and also does not often supply the desired accuracy because of the very high temperatures at the solar collectors focal point. As a realistic engineering solution, in the current work, a fast and accurate measurement system in conjunction with the relevant online closed loop control system is suggested. In the suggested method, measurement of the radiative heat flux of the complex surfaces is conducted using the Monte-Carlo statistical technique. The technique avoids many of the difficulties inherent in the averaging processes of the usual integral equation formulations. It also does not require the simultaneous solution of the complex equation matrix for the entire energy involved. The difference between either maximum or desired heat and the measured value of the radiative heat flux of the surface is reduced to an acceptable value by the closed loop control actuating signal. The system may also be used to control other types of radiation rather than "heat fluxes", over spherical and complex surfaces.
机译:已经并且正在作出巨大的努力来控制诸如太阳能收集器之类的复杂球形表面上的辐射热通量。以前的研究人员已经使用经典的能量平衡方法和网络分析来评估任何球形集热器的相关交换因子。这种表面的自动控制系统中辐射通量的复杂特性,简化的假设以及所用方程矩阵的复杂性和大小,甚至将这种方法的应用限制在非常简单的情况下,而且也不经常提供由于太阳能收集器焦点处的温度非常高,因此需要较高的精度。作为现实的工程解决方案,在当前工作中,提出了一种快速准确的测量系统以及相关的在线闭环控制系统。在建议的方法中,使用蒙特卡洛统计技术对复杂表面的辐射热通量进行测量。该技术避免了通常积分方程公式求平均值过程中固有的许多困难。对于所涉及的全部能量,它也不需要同时求解复数方程矩阵。通过闭环控制致动信号将最大或期望热量与表面辐射热通量的测量值之差减小到可接受的值。该系统还可用于控制球形和复杂表面上的其他类型的辐射,而不是“热通量”。

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