Wind turbine generator cooling system capable of reducing water pump fault rate and control method thereof

A technology for cooling systems and wind turbines, applied in wind power generation, wind turbines, engines, etc., can solve problems such as unexpected shutdown of wind turbines, rising cooling medium temperature, large air accumulation in heat exchangers, etc., to reduce failure rate and simple structure , clear logical effect

Pending Publication Date: 2017-11-21
GUODIAN UNITED POWER TECH
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Problems solved by technology

However, in the low temperature environment, when the cooling system of the wind turbine is debugged on site, since the heating components are not activated, the temperature rise of the cooling medium is limited, so that the cooling medium bypasses the heat exchanger and returns directly to the water pump, resulting in a large amount of air accumulated in the heat exchanger, which cannot pass through in time. Exhaust valve discharges to the external envi

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  • Wind turbine generator cooling system capable of reducing water pump fault rate and control method thereof

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Embodiment Construction

[0024] The present invention provides an embodiment of the wind turbine cooling system that can reduce the failure rate of the water pump used on the wind turbine, such as figure 1 As shown, it includes a pipeline and a water pump 2 for transmitting cooling medium, and the pipeline includes a first pipeline 1 and a second pipeline 1.1; the water pump 2 is connected to the closed first pipeline 1, along the direction in which the water pump 2 outputs the cooling medium : the first pipeline 1 is sequentially connected with a temperature sensor 10 and a temperature control valve 12, the first pipeline 1 is used to take away heat after the temperature sensor 10 passes through the heating component 8, and is connected with the first input of the temperature control valve 12 after the temperature sensor 10 One end of the second pipeline 1.1 is connected to the first pipeline 1 between the first input end of the temperature control valve 12 and the temperature sensor 10; the other end...

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Abstract

The invention discloses a wind turbine generator cooling system capable of reducing the water pump fault rate and a control method thereof, and belongs to the technical field of auxiliary equipment of a wind power generator set. The system comprises pipelines and a water pump, wherein the pipelines are used for conveying a cooling medium, the pipelines comprise a first pipeline and a second pipeline, and the water pump is connected to the closed first pipeline. In the direction of outputting the cooling medium by the water pump, a temperature sensor and a temperature control valve are sequentially connected to the first pipeline; one end of the second pipeline is connected to the first pipeline, the other end of the second pipeline is connected with the temperature control valve, and the second pipeline is further connected with a heat exchanger; and the cooling system further comprises a third pipeline and a debugging valve connected to the third pipeline, one end of the third pipeline is connected to the second pipeline between the temperature control valve and the heat exchanger, and the other end of the second pipeline is connected to the first pipeline at the output end of the temperature control valve. According to the cooling system, the first pipeline and the heat exchanger can be conducted through opening the debugging valve, so that air in the heat exchanger is discharged, and the fault rate of the water pump is reduced.

Description

technical field [0001] The invention relates to the field of auxiliary equipment of a wind power generating set, in particular to a cooling system of a wind generating set capable of reducing the failure rate of a water pump and a control method thereof. Background technique [0002] The role of the cooling system of the wind turbine: use the water pump to pump the low-temperature cooling medium to the main heat-generating components of the wind turbine. The heat exchanger is forced to exchange heat with the ambient air through the fan, which is converted into a low-temperature cooling medium again, and returns to the inlet of the water pump to complete the circulating heat exchange of the cooling system. [0003] At present, due to the increase in heat dissipation requirements of heat-generating components, in order to improve heat exchange efficiency, models above 3MW (including 3MW) mostly use a heat source-water-air secondary heat exchange cooling system. In order to re...

Claims

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Application Information

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IPC IPC(8): F03D80/60
CPCF03D80/60Y02E10/72
Inventor 褚景春袁凌康涛张建福
Owner GUODIAN UNITED POWER TECH
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