Urban underground pipe gallery emergency rescue management system
A technology for emergency rescue and underground pipe gallery, applied in underwater structures, data processing applications, climate change adaptation, etc., can solve the problems of low fire rescue and evacuation efficiency, and achieve the effect of improving emergency rescue efficiency and evacuation efficiency
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Embodiment 1
[0032] The example is basically as attached figure 1 shown, including:
[0033] The monitoring module is used to monitor whether there is fire in the pipe gallery in real time;
[0034] The acquisition module is used to acquire fire accident information, rescue resource information and pipe gallery design parameters in real time, and update fire accident information and rescue resource information in real time;
[0035] The determination module is used to construct a three-dimensional model of the pipe gallery according to the design parameters of the pipe gallery, and determine the fire accident information and rescue resource information in the three-dimensional model of the pipe gallery;
[0036] The planning module is used to plan the best rescue route and the best evacuation route in the 3D model of the pipe gallery according to the fire accident information and rescue resource information.
[0037] The specific implementation process is as follows:
[0038] S1. The mo...
Embodiment 2
[0044] The only difference from Embodiment 1 is that the planning module plans a rescue route with at least one exit and an evacuation route with at least one exit in the three-dimensional model of the pipe gallery according to the fire accident information and rescue resource information, and assigns the rescue route with the most intersections. Determine the best rescue route, determine the evacuation route with the most intersections as the best evacuation route, and ensure that the best rescue route and the best evacuation route have the most intersections, which can increase the probability of successful rescue; in other words, the planning module is still in control. In the 3D model of the corridor, the exit detection of the planned best rescue route and the best evacuation route is carried out to ensure that there is at least one exit in the best rescue route and the best evacuation route, and the best rescue route and the best evacuation route are guaranteed not to exist...
Embodiment 3
[0046] The only difference from Example 2 is that the optimal rescue route and the optimal evacuation route are provided with multiple monitoring points, and intelligent spraying devices filled with solid adsorbent powder, such as silica gel, are installed near each monitoring point. For powder, the spray flow of the intelligent spray device can be adjusted and controlled in advance manually / intelligently. After monitoring a fire in the pipe gallery, the risk level of the fire is evaluated according to the temperature. The higher the temperature, the higher the risk level, that is, the risk level is proportional to the temperature; the spray amount of solid adsorbent powder is determined according to the risk level. The higher the level, the more solid adsorbent powder is sprayed, that is, the amount of solid adsorbent powder sprayed is proportional to the fire risk level. The intelligent spraying device uniformly sprays solid adsorbent powder downwards from the monitoring poi...
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