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High-capacity compressed air energy storage and high-efficiency power generation system

A technology of compressed air energy storage and compressed air, which is applied in the field of large-capacity compressed air energy storage and high-efficiency power generation systems, can solve problems such as small capacity, insufficient peak-shaving capacity, and large total power demand, so as to increase power generation capacity, Effect of High Secondary FM Capability

Inactive Publication Date: 2015-10-21
NORTH CHINA ELECTRIC POWER UNIV (BAODING)
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  • Summary
  • Abstract
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  • Application Information

AI Technical Summary

Problems solved by technology

Although my country's electric power industry has made considerable progress, there are still many problems: the peak-to-valley difference in power grid load increases year by year, and the peak-shaving capacity is insufficient; the total power demand is large, the energy structure is unreasonable, and the proportion of clean energy power generation is not high; because There are various obstacles, and the power generation of many renewable energy power plants cannot be connected to the grid, resulting in the emergence of large-scale "abandoned wind" and "abandoned solar energy", resulting in a great waste of renewable energy and renewable energy investment; The proportion of power generation capacity of power plants is small; large-capacity thermal power units participate in grid peak regulation, which is neither economical nor environmentally friendly, and has potential safety hazards; large-capacity nuclear power has poor peak regulation capabilities, and the development of nuclear power will bring greater pressure to grid peak regulation
At present, there is no practical compressed air energy storage power station in China. Some of the patented technologies proposed either have a small capacity and cannot undertake the task of power grid peak regulation; or the power generation load of the system is poorly adjustable; Full recycling, low efficiency of the system

Method used

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  • High-capacity compressed air energy storage and high-efficiency power generation system

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Embodiment Construction

[0020] The present invention provides a large-capacity compressed air energy storage and high-efficiency power generation system. The present invention will be further described below in conjunction with the accompanying drawings and specific implementation methods.

[0021] The structure of the high-capacity compressed air energy storage and high-efficiency power generation system is as follows: figure 1 As shown, it consists of a compressed air energy storage subsystem and a compressed air energy release and power generation subsystem.

[0022] The generator motor 1 is coaxially connected with the multi-stage compressor 3 through the clutch 2, the intercooler 4 is connected between the compressors 3 of each stage, the last stage compressor is connected with the cooler 5, and the air pipe of the cooler 5 is connected with the air storage chamber 7 connections, the heat flow pipes of the intercooler 4 and cooler 5 are connected to the heat flow side of the heat accumulator 6 t...

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Abstract

The invention belongs to the field of high-capacity industrial energy storage, and particularly relates to a high-capacity compressed air energy storage efficient power generating system. A power generating electromotor is respectively connected with a plurality of air compressors as well as a high-pressure turbine and a low-medium-pressure turbine coaxially through clutches; intercoolers are connected among the air compressors; the last air compressor is connected with a cooler; an air pipeline of the cooler is connected with an air storage chamber; the intercoolers and a hot flow pipeline of the cooler are connected with the hot flow side of a heat storage device; the air storage chamber is respectively connected with the inlets of the air sides of the heat storage device and a heat regenerator; the air sides of the heat storage device and the heat regenerator are sequentially connected with a combustor and the high-pressure turbine; a regenerator is connected between the high-pressure turbine and the low-medium-pressure turbine; the outlet of the low-medium-pressure turbine is connected with the smoke side of the heat regenerator. The system can absorb unstable power load generated by renewable energy sources on a large scale, also can absorb the residual electric power when the power grid load is at a low ebb, and releases the stored energy at the electricity consumption peak so as to meet the requirement of the power grid pitch peak.

Description

technical field [0001] The invention belongs to the field of large-capacity industrial energy storage, in particular to a large-capacity compressed air energy storage and high-efficiency power generation system for energy cascade utilization. Background technique [0002] With the continuous growth of my country's economy, China's energy industry has developed rapidly, and has initially formed an energy supply pattern with coal as the main body, electricity as the center, and oil, natural gas and renewable energy in an all-round way. It is expected that my country's energy demand will maintain a strong growth trend for a long time in the future. Although my country's electric power industry has made considerable progress, there are still many problems: the peak-to-valley difference in power grid load increases year by year, and the peak-shaving capacity is insufficient; the total power demand is large, the energy structure is unreasonable, and the proportion of clean energy ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F02C6/16F02C7/08F04D25/08F04D25/16F04D29/58F01D15/10
CPCY02E50/12Y02E60/15Y02E70/30Y02E50/10Y02E60/16
Inventor 付忠广卢可
Owner NORTH CHINA ELECTRIC POWER UNIV (BAODING)
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