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Numerical Simulation and Experimental Scheme for Monitoring Hoof Wall Structure and Health in Sport Horses

机译:监测蹄墙体结构与体育马健康的数值模拟与实验方案

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This study provides a computational model developed to demonstrate the possibility of monitoring hoof structure and health in equestrian sport. This is achieved by employing finite element simulation of three-dimensional heat flow from a surface heat source into a hoof structure while simultaneously sensing the surface temperature. The time evolution of the recorded surface temperature, transient curve, is used to investigate hoof structure and predict its intactness by comparing these curves for three different models. We have observed differences between the transient curves obtained from a normal hoof structure, a hoof structure containing a foreign material and hoof capsule subjected to wall separation. An experimental method for probing hoof profile was briefly discussed. It uses temperature sensor/heat source. The method can determine the thermal conductivity of the hoof along the hoof structure from the recorded transient curve. Thus, it displays the hoof structure by utilizing the thermal conductivity variation between the hoof parts.
机译:本研究提供了一种开发的计算模型,以展示在马术运动中监测蹄结构和健康的可能性。这是通过采用从表面热源的三维热流的有限元模拟来实现,同时感测表面温度。记录的表面温度,瞬态曲线的时间演变用于研究蹄结构并通过比较三种不同模型的这些曲线来预测其完整性。我们观察到从正常的蹄结构获得的瞬态曲线之间的差异,含有外来材料和蹄胶囊的蹄结构进行壁分离。简要讨论了探测蹄形谱的实验方法。它使用温度传感器/热源。该方法可以从记录的瞬态曲线确定沿着蹄结构的蹄的导热率。因此,它通过利用蹄部件之间的导热率变化来显示蹄结构。

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