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A new approach to heliodons: a four-axis prototype capable of operating under varying altitude light sources

机译:一种日光仪的新方法:能够在不同高度的光源下工作的四轴原型

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Heliodons have long been regarded as invaluable tools for examining the interplay of solar geometry and the built environment. Typically used in conjunction with physical scale models, heliodons generally comprise a rotating table and a fixed source, or a stationary table and an `orbiting' light system that mimics the sun's apparent movements. Three-axis rotating table heliodions offer the most flexibility and accuracy and enable users to quickly visualize their designs under the full range of solar aspects. Unfortunctely, three-axis heliodons generally have their rotational indicators angularly referenced to a fixed `altitude' light source. Such a setup limits the versatility of the heiodon by fixing its location with respect to the source, making it difficult to use under real sun or with electric light sources of `altitudes' dissimilar to that of the originally intended operation location. This paper describes a simple four-axis heliodon which overcomes these limitations.
机译:长期以来,日光仪一直被认为是检验太阳几何形状与建筑环境之间相互作用的无价工具。通常与物理比例模型结合使用,日光仪通常包括一个旋转工作台和一个固定光源,或者一个固定工作台和一个模仿太阳视在运动的“绕行”照明系统。三轴旋转工作台日光灯提供了最大的灵活性和准确性,使用户能够在各种太阳能方面快速可视化其设计。不幸的是,三轴日文仪的旋转指示器通常以固定的“高度”光源为角度。这样的设置通过固定其相对于光源的位置来限制该heiodon的多功能性,从而使其难以在真实的阳光下或在“高度”与最初预期的操作位置不同的电光源下使用。本文介绍了一种克服了这些限制的简单的四轴日光仪。

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