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Analysis of changes of air velocity in ventilation ducts as a factor determining the level of safety in buildings

机译:分析通风管道中的风速变化作为决定建筑物安全水平的因素

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The functionality of building security systems focuses on the rapid and reliable identification of threats and the transmission of threat information to the system user. The shorter the time between the occurrence of the threat and the response of the system user to the threat, the greater the chance of limiting or even avoiding the damage caused by the threat. A peripheral protection element is responsible for detecting an intruder's attempt to enter the protected object. Perimeter detectors for use in intrusion and hold-up alarm system (I&HAS) are detection systems located at places where potential intruder attempts to enter an object or protected zone. Especially susceptible to attempting to force architectural barriers in buildings are windows and doors. A new approach, presented in this paper, is to measure and analyse the variation of airflow velocity in the ventilation duct with an anemometer. The paper will analyse the changes in airflow velocity in ventilation ducts as a potential source of information on the condition of the protected object. Based on the computerised measurement system, examples of time variations in the velocity of air flow in the ventilation ducts will show how the measured signals can be interpreted to define normal states and states of intrusion into a protected object by forcing a window or door in a building.
机译:建筑安全系统的功能侧重于快速可靠地识别威胁以及将威胁信息传输到系统用户。威胁发生与系统用户对威胁的响应之间的时间越短,限制甚至避免威胁造成的损害的机会就越大。外围保护元件负责检测入侵者进入受保护对象的企图。用于入侵和保持警报系统(I&HAS)的周边探测器是位于潜在入侵者试图进入物体或保护区的地方的探测系统。窗户和门尤其容易被迫在建筑物中施加建筑障碍。本文提出的一种新方法是使用风速计测量和分析通风管道中的气流速度变化。本文将分析通风管道中气流速度的变化,以此作为受保护物体状况的潜在信息来源。在计算机化的测量系统的基础上,通风管道中气流速度随时间变化的示例将显示如何通过迫使窗户或门进入室内来解释测量信号以定义正常状态和侵入受保护物体的状态。建造。

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