Real wind regime and wind power generation simulation device and method with wind shear and tower shadow effect

A technology of wind power generation simulation and wind shearing, applied in wind turbines, monitoring of wind turbines, engines, etc., can solve difficult wind power gearbox operation condition reproduction, limited full-power wind power gearbox test environment and test cost , wind power gearbox on-site harsh environment and other problems, to achieve the effect of improving utilization efficiency, improving wind power generation test simulation, and reducing costs

Inactive Publication Date: 2020-05-08
ZHEJIANG UNIV
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The traditional wind power gearbox test bench is only used for product research and development, delivery, and finalization of the test device, and often can only conduct some basic tests on wind power gearboxes; while natural wind has strong uncertainties, and the on-site wind power gearbox The harsh environment makes it difficul...

Method used

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  • Real wind regime and wind power generation simulation device and method with wind shear and tower shadow effect
  • Real wind regime and wind power generation simulation device and method with wind shear and tower shadow effect
  • Real wind regime and wind power generation simulation device and method with wind shear and tower shadow effect

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Embodiment Construction

[0048] The present invention will be further described below in conjunction with the accompanying drawings.

[0049] refer to figure 1 and figure 2 , a wind power generation simulation device, the device includes a simulator control system 1 and an electromechanical servo system 2, the simulator control system 1 includes a software system 1-1 and a hardware system 1-2. The simulator control hardware system includes an industrial computer 1-2-1 and a data acquisition card 1-2-2. The simulator control software system includes a wind speed generation model 1-1-1, a fan tip speed ratio estimation model 1-1-2, a fan pitch angle control model 1-1-3, and a wind energy utilization coefficient model 1-1-4 , wind shear and tower shadow effect compensation model 1-1-5, wind turbine drive chain model 1-1-6, induction generator model 1-1-7;

[0050] The electromechanical servo system 2 includes a programmable controller 2-1, a DC bus power module 2-2, a frequency conversion drive unit ...

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Abstract

The invention discloses a real wind regime and wind power generation simulation device with a wind shear and tower shadow effect. The real wind regime and wind power generation simulation device comprises a simulator control system and an electromechanical servo system, the simulator control system comprises a software system and a hardware system, the simulator control hardware system comprises an industrial personal computer and a data collecting card; the simulator control soft system comprises a wind speed generation model, a draught fan tip speed ratio estimation model, a draught fan pitch angle control model, a wind energy utilization coefficient model, a wind shear and tower shadow effect compensation model, a wind driven generator drive chain model and an induction generator model,the electromechanical servo system comprises a programmable controller, a direct current bus power module, a frequency conversion driving unit, a frequency conversion power generation unit, a drivingmotor, a loading motor, a rotating speed torque meter and a test bed. The real wind regime and wind power generation simulation device is used for the simulation of wind power generation process andresearch and application of wind power generation control strategy under laboratory environment.

Description

technical field [0001] The invention relates to a wind power generation simulation device, in particular to a test device and method which has wind shear and tower shadow effects and is used for simulating the wind power generation process under real working conditions. Background technique [0002] Wind turbines are generally installed in remote areas with good wind energy resources such as Gobi, wilderness, and high mountains, and the operating environment is relatively harsh. As the core component of wind turbines, wind power gearboxes operate under severe alternating load conditions for a long time. In addition, the temperature difference between day and night in remote areas, the impact of wind and sand, the manufacturing and assembly errors of wind power gearboxes, as well as their own wear and poor lubrication will all cause damage to wind power gearbox components. Once the equipment is shut down due to failure, not only the maintenance is difficult and the maintenan...

Claims

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Application Information

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IPC IPC(8): F03D17/00
CPCF03D17/00
Inventor 魏燕定胡逸波李镇耀方升
Owner ZHEJIANG UNIV
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