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首页> 外文期刊>Journal of Aircraft >Aircraft Decompression with Installed Cockpit Security Door
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Aircraft Decompression with Installed Cockpit Security Door

机译:安装了座舱安全门的飞机减压

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摘要

A zero-dimensional model of cockpit and cabin decompression with cockpit security door is presented. The hinged panels in the security door were modeled to account for the pressure-equalization dynamics in the case of cockpit decompression. A comprehensive isentropic and isothermal theoretical analysis is presented with many closed-form and asymptotic solutions. New analytical estimates for the total decompression time and the pressure half-time were derived. The simulations for typical corporate and large-transport-category airplanes with different cabin geometries, discharge coefficients, rupture cross-sectional areas, pressure altitudes, and cabin altitudes have been obtained. The case in which the cockpit depressurizes first and its effect on the cabin decompression and on the security door integrity has been extensively studied. The recently required cockpit doors may be hazardous for flight crew in the case cockpit depressurizes first and other venting and blowout panels malfunction or are too slow to respond. The resulting pressure differential between the cockpit and the cabin can create instantaneous forces in excess of 80 kN on the cockpit security door. In addition, this puts the crew in danger due to explosive decompression on the time scale of 100 ms and increases the possibility of the security door being blown out of the frame.
机译:提出了带有驾驶舱安全门的驾驶舱和客舱减压的零维模型。对安全门中的铰链面板进行建模,以解决驾驶舱减压情况下的压力平衡动力学问题。给出了许多封闭形式和渐近解的综合等熵和等温理论分析。得出了总减压时间和压力半衰期的新分析估计。已经获得了具有不同机舱几何形状,排放系数,破裂截面积,压力高度和机舱高度的典型公司飞机和大型运输机飞机的仿真结果。座舱首先减压的情况及其对机舱减压和安全门完整性的影响已得到广泛研究。如果驾驶舱首先降压,其他通风和防喷板发生故障,或者反应太慢,则最近需要的驾驶舱门可能会对机组人员造成危害。在驾驶舱和机舱之间产生的压差会在驾驶舱安全门上产生超过80 kN的瞬时力。另外,由于爆炸性的减压,在100毫秒的时间范围内,这使机组人员处于危险之中,并增加了安全门被吹出框架的可能性。

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