首页> 外文会议>ASME summer heat transfer conference;HT2009 >HEAT TRANSFER ANALYSIS OF A NOVEL PRESSURIZED AIR RECEIVER FOR CONCENTRATED SOLAR POWER VIA COMBINED CYCLES
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HEAT TRANSFER ANALYSIS OF A NOVEL PRESSURIZED AIR RECEIVER FOR CONCENTRATED SOLAR POWER VIA COMBINED CYCLES

机译:通过组合循环对新型集中式太阳能增压空气接收器的传热分析

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A novel design of a high-temperature pressurized solar air receiver for power generation via combined Brayton-Rankine cycles is proposed. It consists of an annular reticulate porous ceramic (RPC) bounded by two concentric cylinders. The inner cylinder, which serves as the solar absorber, has a cavity-type configuration and a small aperture for the access of concentrated solar radiation. Absorbed heat is transferred by conduction, radiation, and convection to the pressurized air flowing across the RPC. A 2D steady-state energy conservation equation coupling the three modes of heat transfer is formulated and solved by the finite volume technique and by applying the Rosseland diffusion, P_1, and Monte Carlo radiation methods. Key results include the temperature distribution and the thermal efficiency as a function of the geometrical and operational parameters. For a solar concentration ratio of 3000 suns, the outlet air temperature reaches 1000°C at 10 bars, yielding a thermal efficiency of 78%.
机译:提出了一种新颖的高温加压太阳能空气接收器的设计,用于通过组合的布雷顿-朗肯循环发电。它由一个环形的网状多孔陶瓷(RPC)组成,该陶瓷以两个同心圆柱为边界。用作太阳能吸收器的内圆柱体具有空腔类型的构造和小孔,用于进入集中的太阳辐射。吸收的热量通过传导,辐射和对流传递到流经RPC的压缩空气中。通过有限体积技术并应用Rosseland扩散,P_1和蒙特卡洛辐射方法,建立并求解了耦合三种传热模式的二维稳态能量守恒方程。关键结果包括温度分布和热效率随几何参数和操作参数的变化。对于3000太阳的太阳能集中度,出口空气温度在10巴下达到1000°C,产生的热效率为78%。

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