Mechanical Engineering Department, University of Isfahan, Isfahan, Iran.
Comput Methods Biomech Biomed Engin. 2024 May;27(6):775-784. doi: 10.1080/10255842.2023.2202791. Epub 2023 May 8.
To prevent frostbite in cold environments, proper dimensions and materials for different parts of shoes along with the optimal design of shoe geometry were investigated. Furthermore, the optimal geometry of shoes was computed using an optimization algorithm to provide maximum thermal protection for the foot while having the lowest weight. The results showed that the length of the shoe sole and the thickness of the sock are the most effective parameters in foot protection against frostbite. Using thicker socks, which only increased the weight by roughly 11%, enhanced the minimum foot temperature by more than 2.3 times. HIGHLIGHTSOptimal design of shoe geometry is used to prevent frostbite in cold environments.A model of a biothermal nonlinear model is developed for the barefoot.Length of the shoe sole and the thickness of the sock are the most effective parameters in protecting the foot against frostbite.For the selected weather conditions, the toes are most likely to have frostbite.The best shoe for the selected weather conditions is the shoe that has the highest amount of thermal insulation in the toe area.
为了防止在寒冷环境中冻伤,研究了不同部位鞋子的适当尺寸和材料以及鞋几何形状的最佳设计。此外,使用优化算法计算了鞋子的最佳几何形状,以在为脚部提供最大热保护的同时将重量降到最低。结果表明,鞋底的长度和袜子的厚度是防止脚部冻伤的最有效参数。使用厚度增加约 11%的厚袜子可使脚部最低温度提高 2.3 倍以上。
亮点:
优化鞋的几何形状,以防止在寒冷环境中冻伤。
建立了一个用于赤脚的生物热非线性模型。
鞋底的长度和袜子的厚度是保护脚部免受冻伤的最有效参数。
在选定的天气条件下,脚趾最有可能冻伤。
对于选定的天气条件,最好的鞋子是在脚趾区域具有最高隔热效果的鞋子。