City important energy consumption form optimization analysis system
A technology for analyzing systems and using energy, applied in the field of energy systems, can solve problems such as lack of integrated thinking and strong theoretical
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Embodiment 1
[0116] like figure 1 As shown, the optimization analysis system of the important urban energy consumption form of the present invention includes an analysis model establishment module, a model invocation module, and a data acquisition and processing module;
[0117] Analysis model establishment module 100: used to construct an analysis model for building energy efficiency improvement, an analysis model for planning and analysis of electric vehicle charging facilities, an analysis model for evaluating the potential of rail energy saving, and an analysis model for optimizing the configuration of energy systems in the park;
[0118] It also includes building energy efficiency improvement analysis model building sub-module, electric vehicle charging facility planning analysis model building sub-module, track energy saving potential evaluation analysis model building sub-module, park energy system configuration optimization analysis model building sub-module;
[0119] Model calling...
Embodiment 2
[0123] Based on the building energy efficiency improvement analysis model described in the above embodiment 1, the sub-modules are constructed as follows: figure 2As shown in the figure, it includes a building energy data acquisition unit, a building energy data processing unit, a building energy data verification unit, a building energy key indicator measurement unit, and a building energy equipment configuration scheme screening unit;
[0124] The building energy data collection unit 110 is used for collecting basic information related to building energy and parameters of building energy equipment, and collecting the configuration scheme of building energy equipment proposed by users;
[0125] The building energy data processing unit 111 is configured to calculate the building load threshold and the load value of the building energy equipment configuration scheme proposed by the user according to the basic information related to the building energy;
[0126] The building en...
Embodiment 3
[0146] Embodiment 3: The building energy data verification unit based on the above embodiment 2 is further explained in this embodiment, taking the power load as an example:
[0147] S300: Calculate the total power load of the building energy equipment configuration scheme proposed by the user:
[0148] Q E,ac =(Q e,ac +Q e )*s
[0149] Among them, Q E,ac is the total power load under the maximum air conditioning load operating condition, Q e,ac is the air-conditioning power load under the maximum air-conditioning load operating condition, Q e is the non-air-conditioning electricity load under the maximum air-conditioning load operating condition, and s is the load simultaneity rate;
[0150] S301: Calculate the capacity margin of the power supply equipment configuration:
[0151] δQ=Q p -Q E,ac
[0152] Among them, δQ is the capacity of the power supply equipment, Q p Power supply capability for the system;
[0153] S302: If the capacity margin δQ of the configura...
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