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A NEW TRANSIENT BIO-HEAT MODEL OF THE HUMAN BODY

机译:一种新的人体瞬态生物热模型

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摘要

A new mathematical multi-segmented model based on an improved Stolwijk model is developed for predicting nude human thermal and regulatory responses within body segments and the environment. The passive model segments the body into the 15 cylindrical parts. Each body part is divided into four nodes of core, skin, artery blood, and vein blood. The body nodes interact with each other through convection, perfusion and conduction. In any body element, the blood exiting the arteries and flowing into the capillaries is divided into blood flowing in the core (exchanges heat by perfusion in the core) and blood flowing into the skin layer (exchanges heat by perfusion in the skin). The model calculates the blood circulation flow rates based on exact physiological data of Avolio, real dimensions, and anatomic positions of the arteries in the body. The circulatory system model takes into consideration the pulsatile blood flow in the macro arteries with its effect on the convective heat transport. The inclusion of calculated blood perfusion in both the tissue and the skin, based on the arterial system model and the heart rate is unique for the current model. The bio-heat human model is capable of predicting accurately nude human transient physiological responses such as the body's skin, tympanic, and core temperatures, sweat rates, and the dry and latent heat losses from each body segment. The nude body model predictions are compared with published theoretical and experimental data at a variety of ambient conditions and activity. The current model agrees well with experimental data during transient hot exposures. The nude human model has an accuracy of less than 8% for the whole-body heat gains or losses and ± 0.48℃ for skin temperature values.
机译:开发了一种基于改进的Stolwijk模型的新的多段数学模型,用于预测人体在身体各个部分和环境中的热响应和调节响应。被动模型将身体分为15个圆柱部分。每个身体部位被分为核心,皮肤,动脉血和静脉血四个节点。身体节点通过对流,灌注和传导彼此相互作用。在任何人体元素中,从动脉流出并流入毛细血管的血液分为在核心中流动的血液(通过在核心中的灌注来交换热量)和流入皮肤层的血液(通过在皮肤中的灌注来交换热量)。该模型基于Avolio的准确生理数据,实际尺寸以及人体动脉的解剖位置来计算血液循环流速。循环系统模型考虑了大动脉中的脉动血流及其对流传热的影响。根据动脉系统模型和心率,将计算出的血液灌注包括在组织和皮肤中对于当前模型而言是唯一的。生物热人体模型能够准确预测人体的短暂裸体生理反应,例如人体的皮肤,鼓膜和核心温度,汗水速率以及每个人体部位的干热和潜热损失。在各种环境条件和活动下,将裸身模型的预测与已发布的理论和实验数据进行比较。当前模型与瞬态热暴露期间的实验数据非常吻合。裸人体模型的全身热损准确度低于8%,皮肤温度值的准确度为±0.48℃。

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