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Numerical approximations of the mean absorption cross-section of a variety of randomly oriented microalgal shapes

机译:各种随机取向的微藻形状的平均吸收截面的数值近似

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The size, shape, and absorption coefficient of a microalgal cell determines, to a first order approximation, the rate at which light is absorbed by the cell. The rate of absorption determines the maximum amount of energy available for photosynthesis, and can be used to calculate the attenuation of light through the water column, including the effect of packaging pigments within discrete particles. In this paper, numerical approximations are made of the mean absorption cross-section of randomly oriented cells, (aA) over bar. The shapes investigated are spheroids, rectangular prisms with a square base, cylinders, cones and double cones with aspect ratios of 0.25, 0.5, 1, 2, and 4. The results of the numerical simulations are fitted to a modified sigmoid curve, and take advantage of three analytical solutions. The results are presented in a non-dimensionalised format and are independent of size. A simple approximation using a rectangular hyperbolic curve is also given, and an approach for obtaining the upper and lower bounds of (aA) over bar for more complex shapes is outlined. [References: 8]
机译:微藻细胞的大小,形状和吸收系数以一阶近似值确定光被细胞吸收的速率。吸收率决定了可用于光合作用的最大能量,可用于计算通过水柱的光衰减,包括将颜料包装在离散颗粒中的影响。在本文中,数值近似是基于随机取向的细胞的平均吸收截面(aA)超过条形。研究的形状是球体,具有正方形底的矩形棱柱,圆柱体,圆锥体和长宽比为0.25、0.5、1、2和4的双圆锥体。将数值模拟的结果拟合到修正的S型曲线上,并采用三种分析解决方案的优势。结果以无尺寸格式显示,并且与大小无关。还给出了使用矩形双曲曲线的简单近似方法,并概述了一种用于获得杆(aA)的上限和下限以获取更复杂形状的方法。 [参考:8]

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