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Device for Limiting the Temperature at Chimney-Roof Penetration in Very Critical Chimney Operating Conditions

机译:在非常关键的烟囱工作条件下限制烟囱屋顶渗透温度的装置

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In recent years, numerous roof fires have occurred due to the presence of a chimney, and also certified chimneys were involved. Chimneys installers and chimney producers are disoriented because the chimney certification does not guarantee safe installations, and also the performance of devices for limiting the roof temperature is uncertain. Results reported in this paper will help them to accomplish safe chimney installations. The paper describes the main features of a device to be installed at chimney-roof penetration for limiting flammable materials temperature and, consequently, the roof fires risk. The device is composed of elements made of insulating material to reduce the heat transfer from the chimney towards the roof, and elements made of conductive material to facilitate the heat transfer from the device itself towards the ambient. The features of the device have been investigated by means of 32 numerical simulations performed with a CFD code: in each numerical test a variable has been changed and the conditions that have determined the lowest roof temperature have been considered the most suitable. If compared to the temperature measured when only insulating material is installed at chimney-roof penetration, the conductive elements reduce the roof temperature of more than 100 degrees C. The optimal version of the device, that is, 100 mm thick and made of two conductive elements ensures a roof temperature lower than 85 degrees C when the exhaust gas temperature in the chimney is 1000 degrees C in steady conditions. In addition, the device avoids the formation of thermal bridges between indoor and external ambient, and it engenders heat recovery in indoor ambient.
机译:近年来,由于烟囱的存在,发生了许多屋顶火灾,并且还涉及经过认证的烟囱。烟囱的安装人员和烟囱的生产商无所适从,因为烟囱认证不能保证安全的安装,并且限制屋顶温度的设备的性能也不确定。本文报告的结果将帮助他们完成安全的烟囱安装。本文介绍了要安装在烟囱-屋顶穿透处以限制可燃材料温度并因此限制屋顶着火危险的设备的主要特征。该设备由绝缘材料制成的元件(可减少从烟囱向屋顶的热传递)和导电材料制成的元件(有助于从设备本身向周围环境的热传递)组成。通过使用CFD代码执行的32个数值模拟研究了该设备的功能:在每个数值测试中,已更改了变量,并且确定最低车顶温度的条件被认为是最合适的。如果与仅在烟囱顶上安装绝缘材料时测得的温度进行比较,则导电元件可使车顶温度降低100摄氏度以上。该设备的最佳版本是100毫米厚,由两种导电材料制成当烟囱中的排气温度在稳定条件下为1000摄氏度时,这些元件可确保屋顶温度低于85摄氏度。另外,该设备避免了在室内和外部环境之间形成热桥,并且可以在室内环境中进行热量回收。

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