Transformer substation waterlogging early-warning method and early-warning system
A substation, relational function technology, applied in forecasting, alarms, climate change adaptation, etc., can solve the problems of conservative, lack of forecasting links, and heavy workload of operation and maintenance personnel, and achieve the effect of reducing workload and reducing impact
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Embodiment 1
[0043] Combine below figure 1 , a detailed statement of a specific implementation method that can be adopted in the implementation of the substation waterlogging early warning method of the present invention, and other specific implementation methods can also be used in other embodiments. Some specific practices, but not limiting that the method of the present invention can only be applied to this specific implementation.
[0044] The substation waterlogging early warning method of the present invention comprises the following specific steps:
[0045] Step 1. Obtain 3D modeling data that meets the needs of waterlogging warning in substations. Specifically, it refers to the 3D data of substations, buildings in stations, and electrical equipment. Parameters and documentation as well as substation photogrammetry data.
[0046] Use modeling tools such as CAD software to establish a 3D model of a substation, and other modeling tools include professional software such as 3D MAX an...
Embodiment 2
[0069] A substation waterlogging early warning system of the present invention comprises
[0070] Modeling module: Calculate the vacant area not occupied by fixed objects at different space heights from the ground in the internal space of the substation, and establish a functional model of the relationship between the water volume of the substation and the vacant area and space height;
[0071] Pipe network drainage evaluation module: evaluate the maximum drainage capacity of the substation sewage pipe network according to the physical parameters of the drainage pipes in the substation;
[0072] Water volume and water level prediction module: According to the maximum drainage capacity of the substation sewer network and the drainage capacity of emergency drainage facilities evaluated by the forecasted rainfall and pipe network drainage evaluation module, the accumulated water accumulated in the substation per unit time is calculated through the relationship function model of th...
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