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3D web-splines solution to human eye heat distribution using bioheat equation

机译:利用生物热方程式解决人眼热量分布的3D网络样条曲线

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摘要

A bioheat transfer model of the human eye is constructed using weighted extended b-splines as shape functions for the finite element method. This newly developed computational approach is employed to calculate the steady-state temperature distribution in a normal human eye. Firstly, the human eye is evaluated in two dimensions. The simulation results which are verified using the values reported in the literature, point out to better efficiency in terms of the accuracy level. Consequently, to give a more precise representation of the actual human eye, three dimensional modeling is simulated using these new finite elements in conjunction with linear, quadratic and cubic b-splines. Grid convergence number estimates are derived for both sets of simulations. It is shown in this paper that 3D cubic web-spline model is 0.03 °C closer to the mean value of the previous studies including the experimental studies as compared with 0.17 C improvement obtained with the standard finite element method. Our findings indicate that weighted extended b-spline solutions improve the computational methods for health care.
机译:使用加权的扩展b样条作为有限元方法的形状函数,构造人眼的生物热传递模型。这种新开发的计算方法用于计算正常人眼中的稳态温度分布。首先,从两个方面评估人眼。使用文献中报道的值验证的仿真结果指出,就准确度而言,效率更高。因此,为了更准确地表示实际的人眼,使用这些新的有限元以及线性,二次和三次b样条曲线对三维建模进行了模拟。两组仿真均得出了网格收敛数估计。本文显示3D立方网状样条曲线模型比包括实验研究在内的先前研究的平均值接近0.03°C,而标准有限元方法的改进值为0.17C。我们的发现表明,加权扩展b样条解可改善医疗保健的计算方法。

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