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High back pressure heat supply unit safety control method

A heat supply unit and safety control technology, applied in heating methods, control systems, household heating, etc., can solve problems such as limited steam extraction and inability to solve steam turbine tripping, achieve reasonable safety control methods, avoid overheating damage, and ensure The effect of device security

Active Publication Date: 2019-10-25
SHAANXI WEIHE POWER GENERATION CO LTD
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, this solution is limited by steam users and heating temperature, the amount of steam that can be increased is limited, and it cannot solve the problem of steam turbine tripping

Method used

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  • High back pressure heat supply unit safety control method
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  • High back pressure heat supply unit safety control method

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Embodiment Construction

[0051] Below in conjunction with accompanying drawing and specific embodiment, the content of the present invention is described in further detail:

[0052] The safety control method of the high back pressure heating unit is based on the data analysis system in the distributed control system DCS of the power plant, the RB function module for auxiliary failure load reduction, the data acquisition system DAS, the machine-furnace coordinated control system CCS, and the steam turbine digital electro-hydraulic control system. Control systems or hardware such as DEH, boiler control system and other control systems or hardware are configured with logic settings, and the hardware system is operated through specific program instructions to reduce the amount of main steam entering the steam turbine, and then control the electrical load and the heat load of the steam inlet condenser to reduce the The exhaust back pressure of the steam turbine increases the vacuum of the condenser, so that...

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Abstract

The invention relates to a high back pressure heat supply unit safety control method which solves the problem that a steam turbine is forced to be split due to the high exhaust back pressure of the steam turbine. The high back pressure heat supply unit safety control method comprises the following steps that when any condition of high-pressure heater splitting or steam extraction user splitting ismet and the condition that the current steam turbine electric load value is greater than the preset steam turbine electric load value or the current steam turbine main steam flow value is greater than the preset steam turbine main steam flow value is met, an auxiliary machine failure load reduction RB function module is started, and action instructions are issued to a steam turbine digital electro-hydraulic control system and a boiler control system; the opening degree of a steam turbine steam inlet regulating valve is closed by calculating an integrated valve position command, the boiler control system is put into operation of oil gun putting, powder withdrawal, powder feeder stopping and powder discharge machine stopping; and when the current steam turbine electric load or the steam turbine main steam flow restores to the target range, the exhaust gas back pressure of the steam turbine can be reduced, and the problem of overrun tripping caused by the high electrical load of a steamturbine is solved.

Description

technical field [0001] The invention belongs to the field of safe operation of a steam turbine unit, and in particular relates to a safety control method for a high-back pressure heating unit. Background technique [0002] With the increasing demand for heating in northern cities and the country's promotion of clean heating to protect the blue sky, energy conservation and emission reduction, and efficient use of energy, cogeneration has become the main direction for the development of large and medium-sized cities. [0003] Compared with separate power generation and heating, cogeneration has strong energy saving and environmental protection advantages, whether from an energy perspective or an economic perspective. Foreign residents are relatively scattered, and cogeneration mostly adopts small cogeneration (power generation not exceeding 100kW), micro cogeneration (power generation not exceeding 15kW), and trigeneration of heat, power and cooling. However, my country's hea...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F01D17/10F01D21/14F22B35/00F24D19/10
CPCF01D17/10F01D21/14F22B35/00F24D19/1003
Inventor 第五维华王江王瑜
Owner SHAANXI WEIHE POWER GENERATION CO LTD
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