人体温度调节的电气模拟模拟。

R. Crosbie, J. Hardy, E. Fessenden
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引用次数: 65

摘要

利用考虑辐射、对流和蒸发造成的热损失而建立的热平衡基本方程,构建了一个电模拟来模拟裸人对热和冷的生理反应。如前所述,生理温度调节涉及三种基本类型的控制模式,即比例控制、速率控制和一些开关控制的特征。速率常数和比例常数是在假设调节温度为平均体温的情况下通过实验确定的。各种热变化的时间常数可以由组织的热常数和出汗、血管舒缩活性、代谢率变化等生理变量的反应时间确定。该模拟器可预测静息状态和运动状态下的直肠温度、皮肤温度、代谢率、血管舒缩状态和蒸发热损失的稳态情况。对环境温度、空气速度、相对湿度和代谢率突然变化的动态响应可以使用基于上述控制的方程在相当程度上进行模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrical analog simulation of temperature regulation in man.
Using the basic equations for heat balance which have been developed to take into account heat losses by radiation, convection and evaporation, an electrical analog has been constructed to simulate the physiological responses to heat and cold in the nude man. As has been previously shown, physiologic temperature regulation involves three of the basic types of control modes, namely, proportional control, rate control, and some of the characteristics of on-off control. The rate and proportionality constants have been determined experimentally on the assumption that the regulated temperature is the average body temperature. Time constants for the various thermal changes can be determined from the thermal constants of tissue and the response times of the physiological variables of sweating, vasomotor activity and change in metabolic rate. The simulator predicts steady-state situations of rectal temperature, skin temperature, metabolic rate, vasomotor state and evaporative heat loss under both resting conditions and exercise. Dynamic responses to sudden shifts in environmental temperature, air velocity, relative humidity and metabolic rate can be simulated to a considerable extent using equations based on the controls outlined above.
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