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Opportunities and constraints of presently used thermal manikins for thermo-physiological simulation of the human body

机译:目前使用的热人体模型用于人体热生理模拟的机会和限制

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摘要

Combining the strengths of an advanced mathematical model of human physiology and a thermal manikin is a new paradigm for simulating thermal behaviour of humans. However, the forerunners of such adaptive manikins showed some substantial limitations. This project aimed to determine the opportunities and constraints of the existing thermal manikins when dynamically controlled by a mathematical model of human thermal physiology. Four thermal manikins were selected and evaluated for their heat flux measurement uncertainty including lateral heat flows between manikin body parts and the response of each sector to the frequent change of the set-point temperature typical when using a physiological model for control. In general, all evaluated manikins are suitable for coupling with a physiological model with some recommendations for further improvement of manikin dynamic performance. The proposed methodology is useful to improve the performance of the adaptive manikins and help to provide a reliable and versatile tool for the broad research and development domain of clothing, automotive and building engineering.
机译:结合人类生理学高级数学模型和人体模型的优势,是模拟人类热行为的新范例。但是,这种自适应人体模型的先驱者显示出一些实质性的局限性。该项目旨在确定由人体热生理学数学模型动态控制时现有人体模型的机会和局限性。选择了四个热人体模型,并评估了它们的热通量测量不确定性,包括人体模型各部分之间的横向热流以及每个扇区对使用生理模型进行控制时典型的设定温度频繁变化的响应。通常,所有评估的人体模型都适合与生理模型耦合,并建议进一步改善人体模型的动态性能。所提出的方法学对于改善自适应人体模型的性能是有用的,并且有助于为服装,汽车和建筑工程的广泛研究和开发领域提供可靠且通用的工具。

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