Adjacent grid temperature stratification detail forecast method and system

A prediction method and temperature stratification technology, applied in design optimization/simulation, instrumentation, calculation, etc., can solve problems such as broken lines, calculation result errors, and difficult numerical models, and achieve improved vertical temperature resolution, fast calculation speed, high precision effect

Active Publication Date: 2017-11-07
STATE GRID HUNAN ELECTRIC POWER +2
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In recent years, the scale of the power grid has expanded rapidly, and transmission lines inevitably pass through ice-covered and galloping areas. Ice-coated galloping will cause damage to hardware, disconnection and other problems, and in severe cases, it will also cause tower collapse, which seriously threatens the safe operation of the vast power grid.
[0003] With global climate change and frequent occurrence of various disasters, the problem of grid icing galloping has become more prominent, which has promoted the rapid development of icing galloping prediction technology, and grid icing galloping forecast has been transformed from traditional small-scale empirical forecasting to larger-scale numerical values Forecasting, however, studies have found that ice-covered galloping of

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  • Adjacent grid temperature stratification detail forecast method and system
  • Adjacent grid temperature stratification detail forecast method and system
  • Adjacent grid temperature stratification detail forecast method and system

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Embodiment 1

[0020] This embodiment discloses a layered and refined prediction method for adjacent grid temperatures, including:

[0021] Determine the calculation grid of the three-dimensional temperature field, calculate the temperature data of each grid point in the three-dimensional temperature field based on the meteorological WRF numerical model, and calculate the vertical temperature lapse rate between adjacent grids in the vertical direction; wherein, the grid The horizontal plane represents latitude and longitude, and the vertical direction represents altitude;

[0022] According to the longitude and latitude of the dancing points to be analyzed, determine the associated series of grids in the vertical direction, and perform uniform layering on the series of grids. The grid height in the vertical direction is Δz, the layer height in the vertical direction is Δ1, and Δz / Δl is an integer greater than or equal to 2;

[0023] Calculate the temperature of the ground altitude correspo...

Embodiment 2

[0075] Corresponding to the above method embodiments, this embodiment discloses a layered and refined prediction system for adjacent grid temperatures, including:

[0076] The first calculation unit: the calculation grid used to determine the three-dimensional temperature field, calculate the temperature data of each grid point in the three-dimensional temperature field based on the meteorological WRF numerical model, and calculate the vertical temperature drop rate between adjacent grids in the vertical direction ; Wherein, the horizontal plane of the grid represents latitude and longitude, and the vertical direction represents altitude.

[0077] The second calculation unit: used to determine the associated series of grids in the vertical direction according to the latitude and longitude of the dancing point to be analyzed, and perform uniform layering on the series of grids. The height of the grid in the vertical direction is Δz, and the layer in the vertical direction The h...

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Abstract

The invention relates to the field of power line equipment maintenance, and discloses an adjacent grid temperature stratification detail forecast method and system. The method and the system aim to increase the vertical temperature resolution of a point where swinging occurs easily and are high in precision, high in computation speed and wide in range. The method includes the steps that firstly, according to the ground temperature lapse rate and related temperature data, the temperatures at the elevations of ground above mean sea-level, corresponding to a to-be-analyzed swinging point in the vertical direction, of adjacent grid points in a corresponding series of grids are calculated; then, according to the calculated values of the temperatures, the temperature at the elevation of ground above mean sea-level of the to-be-analyzed swinging point is calculated with a bilinear interpolation method; meanwhile, according to the vertical temperature lapse rate between every two adjacent grids of related grid points, the corresponding vertical temperature lapse rate, between the adjacent grids, of the to-be-analyzed swinging point is calculated with a weighted average method; finally, according to the temperature at the elevation of ground above mean sea-level of the to-be-analyzed swinging point and the vertical temperature lapse rate between every two adjacent grids, the temperature data of corresponding detailed layers is calculated.

Description

technical field [0001] The invention relates to the field of maintenance of transmission line equipment, in particular to a method and system for stratified and refined prediction of adjacent grid temperature. Background technique [0002] In recent years, the scale of the power grid has expanded rapidly, and transmission lines inevitably pass through ice-covered and galloping areas. Ice-coated galloping will cause damage to hardware, disconnection and other problems, and in severe cases, it will also cause tower collapse, which seriously threatens the safe operation of the vast power grid. . [0003] With global climate change and frequent occurrence of various disasters, the problem of grid icing galloping has become more prominent, which has promoted the rapid development of icing galloping prediction technology, and grid icing galloping forecast has been transformed from traditional small-scale empirical forecasting to larger-scale numerical values Forecasting, however,...

Claims

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Application Information

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IPC IPC(8): G06F17/50
CPCG06F30/20G06F2119/08
Inventor 陆佳政冯涛李波方针徐勋建杨莉郭俊李丽邸悦伦
Owner STATE GRID HUNAN ELECTRIC POWER
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