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A multi-segmented human bioheat model for transient and asymmetric radiative environments

机译:瞬态和非对称辐射环境的多段人体生物热模型

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This paper aims to improve the Salloum et al. multi-node multi-segmented model [M. Salloum, N. Chaddar, K. Ghali, A new transient bio-heat model of the human body and its integration to clothing models, Int. J. Therm. Sci. 46 (4) (2007) 371-384] to accurately predict the circumferential skin temperature variation of nude and clothed human body segments when subject to complex transient and spatially non-uniform radiative environments. The passive bioheat model segments the body into the 15 cylindrical segments. Each body segment is divided into one core node, six angular skin nodes, one artery blood node, and one vein blood node. The model calculates the blood circulation using the Avolio model [A.P. Avolio, Multi-branched model of the human arterial system, Med. Biol. Eng. Comp. 18 (1980) 709-718] for arteries and arterioles up to 2 mm in diameter and the Olufsen et al., semi-analytical model [M.S. Olufsen, C.S. Peskin, W.Y. Kim, E.M. Pedersen, A. Nadim, J. Larsen, Numerical simulation and experimental validation of blood flow in arteries with structured tree outflow conditions, Ann. Biomed. Eng. 28 (11) (2000) 1281-1299] for small arteries and arterioles up to a minimum diameter of 0.3 mm; thus improving prediction of blood perfusion rates in the skin. Unsteady bioheat equations are simultaneously solved for the nodes of each body segment to predict the skin, tympanic, and core temperatures, sweat rates, and the dry and latent heat losses. The nude body thermal model is integrated to a clothing model that takes into consideration the moisture adsorption by the fibers to predict heat and mass diffusion through the clothing layers. The clothing layer is divided into six parts that are aligned to the skin sub-nodes for each clothed segment. The local and mean skin temperature can then be estimated in response to non-uniform environments.rnThe nude body and the clothed model predictions were compared with published experimental data at a variety of ambient conditions, non-uniform conditions and activity levels. The current model agreed well with experimental data during transitions from hot to cold, dry to humid environments, and in asymmetric radiative environments. Both the nude and clothed human models have an accuracy of less than 6% for the whole-body heat gains or losses; the nude human model has an accuracy of ±0.35 ℃ for skin temperature values.
机译:本文旨在改进Salloum等。多节点多细分模型[M. Salloum,N. Chaddar,K. Ghali,一种新的人体瞬态生物热模型及其与服装模型的集成,国际。 J.Therm。科学46(4)(2007)371-384]可以准确预测裸露和衣服覆盖的人体分段在周围复杂的瞬态和空间上不均匀的辐射环境下的周向皮肤温度变化。被动生物热模型将人体分为15个圆柱体。每个身体节段被分为一个核心节点,六个角形皮肤节点,一个动脉血液节点和一个静脉血液节点。该模型使用Avolio模型计算血液循环。 Avolio,人类动脉系统的多分支模型,医学。生物学。比较18(1980)709-718]用于直径最大2 mm的动脉和小动脉,以及Olufsen等人的半分析模型[M.S. Olufsen,C.S. Peskin,W.Y. Kim,E.M。Pedersen,A。Nadim,J。Larsen,《具有结构树流出条件的动脉血流的数值模拟和实验验证》,Ann。生物医学。 。 28(11)(2000)1281-1299],适用于最大直径不超过0.3毫米的小动脉和小动脉;因此改善了对皮肤血液灌注率的预测。同时针对每个身体部分的节点求解不稳定的生物热方程,以预测皮肤,鼓膜和核心温度,出汗率以及干热和潜热损失。裸体热模型集成到衣服模型中,该模型考虑了纤维对水分的吸附,以预测热量和质量在衣服层中的扩散。衣服层分为六个部分,每个部分与皮肤子节点对齐。然后,可以响应于不均匀的环境来估计局部皮肤温度和平均皮肤温度。将裸露的身体和衣着的模型预测值与已发布的在各种环境条件,不均匀条件和活动水平下的实验数据进行比较。当前模型在从热到冷,从干燥到潮湿的环境以及不对称辐射环境中的转换过程中与实验数据吻合得很好。裸露的人体模型和穿衣服的人体模型对全身热量获得或损失的准确度均低于6%;裸人体模型的皮肤温度值精度为±0.35℃。

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