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Smart safety design for fire stairways in underground space based on the ascending evacuation speed and BMI

机译:基于上升的疏散速度和BMI的地下空间中的防火楼梯智能安全设计

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摘要

The evacuation problem in underground space restricts the large-scale development of underground space, wherein ascending evacuation is its main feature. Current evacuation regulations approaches for underground space generally suggest increasing dimension and number of evacuation paths and exits in architecture design plan, and no better way to improve the evacuation efficiency in underground space that has been built. This study aims to create a smart safety design for fire stairways to improve the evacuation efficiency without altering their architectural characteristics. The smart safety design is made up of two parts, one is the mathematical basis for predictable ascending evacuation speed of evacuees, and the other is the system logical architecture integrating intelligent devices. Therefore, firstly this study proved the relationship between the ascending evacuation speed in underground space and the body mass index (BMI) of a human. The experiment was completed by recruiting volunteers in a teaching building of a university in China. Ascending speed and BMI data were acquired through an observational experiment on individual ascending evacuation using stairways and by simulating an emergency in a 60 m underground environment. The relationship between ascending speed and BMI was analyzed via statistical method. A mathematical model of ascending speed change in different BMI groups was proposed for the ascending evacuation process in 0-60 m underground space. Then, the smart safety design for fire stairways in underground space was proposed based on the mathematical model.
机译:地下空间中的疏散问题限制了地下空间的大规模开发,其中提升疏散是其主要特征。地下空间的当前疏散规范方法普遍建议增加维度和疏散路径数量的尺寸和架构设计计划中的退出,并没有更好的方法来提高建立的地下空间中的疏散效率。本研究旨在为消防楼梯创造智能安全设计,以提高疏散效率而不改变其建筑特征。智能安全设计由两部分组成,一个是可预测的撤离速度的数学依据,另一个是整合智能设备的系统逻辑架构。因此,首先,该研究证明了人类地下空间和体重指数(BMI)中的上行抽空速度与人体的关系。该实验是通过在中国大学教学建设中招募志愿者完成的。通过使用楼梯的个体上升疏散的观察试验来获取上升速度和BMI数据,并通过模拟60米地下环境中的紧急情况。通过统计方法分析上升速度和BMI之间的关系。提出了不同BMI组上升速度变化的数学模型,以在0-60米地下空间中提升疏散过程。然后,基于数学模型提出了地下空间中的防火楼梯的智能安全设计。

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