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Optical and Thermal Properties of Selective Absorber Coatings Under CSP Conditions

机译:CSP条件下选择性吸收体涂层的光学和热性能

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Concentrating solar power (CSP) systems use solar absorbers to convert sunlight into thermal electric power. In CSP systems, a high reflective surface focuses sunlight onto a receiver that captures the solar energy and converts it into heat. The operation of high efficiency CSP systems involves improvements in the performance of the coatings of the solar absorption materials. To accomplish this, novel, more efficient selective coatings are being developed with high solar absorptance and low thermal losses at their operation temperature. Heat losses in a CSP system occur by three mechanisms: conduction, convection and radiation. It has been widely documented that energy losses increase with increasing operating temperature of CSP systems, and the precise knowledge of the thermophysical properties of the materials involved in CSP systems may allow us to increase the efficiency of systems. In this work, we applied the pulsed photoradiometry technique (PPTR) to evaluate the changes in the thermophysical properties of selective coatings on a variety of substrates as a function of temperature. Three types of coatings deposited with two different techniques on three types of substrate were examined: commercial coatings based on titanium oxynitride deposited by sputtering on substrates of copper and aluminum, coatings based on black nickel deposited by electrochemical methods on substrates of steel, and coatings based on black cobalt deposited by electrochemical methods on substrates of steel and copper. Values of the thermal diffusivity and thermal conductivity were obtained in the temperature range of 25 to 550 °C. Optical reflectance measurements have been performed in order to provide an estimate of the dependence of the thermal emittance on temperature using the black body radiation theory.
机译:集中太阳能(CSP)系统使用太阳能吸收器将阳光转化为热电电源。在CSP系统中,高反射表面将阳光聚焦到捕获太阳能的接收器上并将其转换为热量。高效CSP系统的操作涉及太阳能吸收材料涂层性能的改进。为了实现这一点,新颖的更有效的选择性涂层正在具有高太阳能吸收率和其操作温度的低热损失。 CSP系统中的热量损失由三种机制发生:传导,对流和辐射。已经普遍记录了随着CSP系统的不断增加的工作温度而增加的能量损失,并且CSP系统中涉及的材料的热物理性能的精确知识可以让我们提高系统的效率。在这项工作中,我们施加了脉冲光学测量法(PPTR)以评估作为温度的各种基材上选择性涂层的热理性质的变化。研究了三种不同技术的三种类型的三种不同技术的涂层:基于铜和铝底物上溅射沉积的氮氧化物的商业涂层,基于钢基板上的电化学方法沉积的黑色镍涂层。在钢和铜基板上沉积的黑色钴。在25至550℃的温度范围内获得热扩散率和导热率的值。已经进行了光学反射率测量,以便提供使用黑体辐射理论对温度的依赖性的估计。

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