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Non-imaging optics in a thermophotovoltaic generator

机译:蒸发器发生器中的非成像光学器件

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In order to achieve high efficiency in a TPV generator, it is important that a high fraction of emitted photons with energies below the TPV cell bandgap are reflected back to the emitter. This can be accomplished in several ways. We present the idea of an internally reflecting egg-shaped double cone with the emitter at one end, an edge filter at the wide center, and the TPV array at the other end. So far, we have studied this geometry by means of both ray tracing analysis in a computer program and by means of measurements with an emulated emitter. A sharp switchover from transmission to reflection in a multiple layer edge filter can be achieved only if the angles of incident rays are confined to a fairly narrow angular interval. The two used methods both show that the studied optics can lower the angular spread of rays incident onto the filter and that some 96% of the emitted rays (in the ideal case) reach their goal without passing the filter or being reflected by the filter more than once. A suggestion of a whole wood powder fuelled TPV system with this egg-shaped double cone and edge filter implemented is also given, as well a an animation tool for modelling the optical part of the TPV system.
机译:为了在TPV发生器中实现高效率,重要的是,TPV电池带隙下方具有能量的高分子的发射光子被反射回发射极。这可以通过几种方式完成。我们在一端,宽中心的边缘过滤器呈现内部反射蛋形双锥体的思想,另一端的TPV阵列。到目前为止,我们通过计算机程序中的光线跟踪分析以及通过模拟发射器进行测量来研究这种几何。只有在入射射线的角度限制在相当窄的角度间隔中,才能实现从多层边缘滤波器中的传输到反射的急剧切换。两种使用的方法都表明,研究的光学器件可以降低入射到过滤器上的光线的角度扩展,并且约96%的发射光线(在理想情况下)达到其目标而不使过滤器更多地通过过滤器反射更多超过一次。还给出了具有这种蛋形双锥体和边缘过滤器的全木粉末的建议,也可以提供用于建模TPV系统的光学部分的动画工具。

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