An external cooling system with cold storage for DC converter valve and its operation method

A DC converter valve and external cooling technology, applied in cooling/ventilation/heating transformation, output power conversion devices, electrical components, etc., can solve problems such as short transition time, short accumulation time, and large climate sensitivity, and achieve Improved reliability, strong water-saving and environmental protection performance, and improved redundancy

Active Publication Date: 2016-09-21
STATE GRID CORP OF CHINA +3
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Due to the periodic change of ambient temperature, when the difference between the inlet water temperature of the air cooler and the ambient temperature is small, the efficiency of the air cooler will be very low and the air cooler will occupy a very large area
Due to the large number of air coolers, the pressure ratio and space layout of pipelines often become a difficult problem for technicians; on the other hand, many converter stations reach the limit temperature and the annual cumulative time within 5°C near the limit is very short , causing the air cooler bank to be idle for much of the year
Finally, the current water-cooling systems all use devices without cold storage, the system has small heat capacity, small thermal inertia, and is highly sensitive to climate
When the temperature of the system rises too fast, the transition time from alarm to trip is very short, and false alarm signals such as tripping will be generated, which will affect the normal operation of the converter valve; design a large number of heaters

Method used

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  • An external cooling system with cold storage for DC converter valve and its operation method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0046] When the ambient temperature is lower than 5°C, 1 / 2 of the flow of cooling water on the hot side of the plate heat exchanger 3 bypasses the valve K2, and 1 / 2 of the flow flows into the plate heat exchanger 3 and exchanges heat with the plate heat exchanger. The chilled water on the cold side of the device 3 performs heat exchange, the first chiller 4 and the second chiller 5 are turned off, and the fixed-frequency cold pump 6 and the variable-frequency cold pump 9 are turned on, so that the heated chilled water goes to the thermocline type cold storage tank 8 Heat storage.

Embodiment 2

[0048] When the ambient temperature is 5° C. to 35° C., the entire flow of cooling water on the hot side of the plate heat exchanger 3 bypasses the valve K2 to reduce the pressure loss of the cooling water pump 10 .

Embodiment 3

[0050] When the ambient temperature is higher than 35°C, 2 / 3 of the flow of cooling water on the hot side of the plate heat exchanger 3 bypasses the valve K2, and 1 / 3 of the flow flows into the plate heat exchanger 3 and exchanges heat with the plate heat exchanger. The chilled water on the cold side of the device 3 performs heat exchange, and the chilled water is used for cooling to cool down the cooling water.

[0051] Divided into the following four operating modes:

[0052] Cooling storage mode at night: valve V1, valve V4, valve V5, valve V7 and variable frequency cold pump 9 are closed, valve V6, first chiller 4, second chiller 5 and fixed frequency cold pump 6 are turned on, when the inclined temperature layer cold storage When the water temperature in the tank 8 reaches 4°C, the cold storage is completed.

[0053] Chiller cooling mode alone; valve V2, valve V3, valve V6 and variable frequency cooling pump 9 are closed, valve V1, valve V4, valve V5, valve V7, first chi...

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PUM

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Abstract

The invention provides an external cooling system with cold storage for DC converter valves and its operation method. The system includes an air cooler, a plate heat exchanger, a water chiller, a fixed-frequency cold pump, a buffer tank, and an inclined temperature layer type cold storage tank. , frequency conversion cold pump and cooling water pump. The plate heat exchanger is divided into hot side and cold side. The improvement is that the hot side of the plate heat exchanger is connected in series with the air cooler, plate heat exchanger and cooling water pump. Circulation circuit; the cold side of the plate heat exchanger, the inclined temperature layer cold storage tank, and the frequency conversion cold pump are connected in series to form the cooling branch of the cold storage tank; The cooling branch of the cold tank and the cooling branch of the chiller are connected in parallel and then connected in series with the plate heat exchanger to form a cold side circulating cooling circuit. Compared with the prior art, the external cooling system with cold storage for DC converter valves provided by the present invention and its operation method have a large temperature range of cold storage, can withstand high temperatures in summer, and have antifreeze ability through heat storage in winter.

Description

technical field [0001] The invention relates to an external cooling system, in particular to an external cooling system with cold storage for a DC converter valve and an operating method thereof. Background technique [0002] As my country's high-voltage direct current transmission technology becomes increasingly mature, the construction of direct current transmission projects is in a golden period of development. In the high-voltage direct current transmission system, the cooling system is an important component of the heat dissipation system of the converter valve, and its operation directly affects the power transmission capacity of the entire direct current system. Therefore, it is particularly important to ensure the stable, reliable and efficient operation of the cooling system. [0003] The closed circulating water cooling system of modern high-power power electronic devices usually uses air coolers as external cooling equipment in high cold and water-scarce areas. T...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H05K7/20H02M1/00
CPCH05K7/20927H05K7/14339
Inventor 查鲲鹏魏晓光周建辉文玉良吴文伟王航栾洪洲王治翔
Owner STATE GRID CORP OF CHINA
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