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Nozzle for enhancing atomization by plasma

A technology of atomizing nozzles and plasma, which is applied in the direction of combustion methods, burners, combustion chambers, etc., to achieve the effects of increasing flame propagation speed, easy combustion, and ensuring stability and completeness

Inactive Publication Date: 2012-10-10
三亚哈尔滨工程大学南海创新发展基地
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] In recent years, there are still relatively few studies on the application of dielectric barrier discharge technology to plasma catalytic atomization, especially for liquid fuel catalysis and auxiliary atomization.

Method used

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  • Nozzle for enhancing atomization by plasma

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Embodiment Construction

[0015] The present invention is described in more detail below in conjunction with accompanying drawing example:

[0016] combine figure 1 , the present invention mainly includes a low-temperature plasma discharge assembly, an oil filter assembly 12, a swirler assembly, and a fuel atomizing nozzle. The low-temperature plasma discharge assembly mainly includes: an outer electrode 5, a ceramic barrier medium 3, an inner electrode 2, a power connection frame 1, and a graphite sealing ring. The ceramic barrier medium 3 is designed in a top-closed mode, and the graphite sealing ring 4 is used to achieve sealing with the outer electrode 5, and the inner electrode 2 is in it, which can effectively avoid arc discharge at the end and ensure the discharge uniformity and stability of the discharge area; ceramics are used as the barrier The medium can effectively prevent discharge breakdown and improve the service life of the plasma-enhanced atomizing nozzle. A discharge area is formed b...

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Abstract

The invention aims at providing a nozzle for enhancing the atomization by plasma. The nozzle comprises a low-temperature plasma discharging assembly, an oil filter and a swirler assembly, wherein the low-temperature plasma discharging assembly comprises an outer electrode, an inner electrode, a ceramic piece and a power supply connecting frame, the power supply connecting frame is sheathed on the outer electrode, one part of the ceramic piece is installed in the outer electrode, the other part of the ceramic piece is installed in the power supply connecting frame, the inner electrode is installed in the ceramic piece, and a discharging area is formed between the ceramic piece and the outer electrode; the swirler assembly comprises a bracket, a support spring, a nozzle shell, a swirler and a swirler shell, the swirler is installed in the swirler shell, the support spring is connected with the bracket and the swirler, the swirler shell is installed in the nozzle shell, and a spray nozzle of the swirler shell is communicated with a spray nozzle of the nozzle shell; and the low-temperature plasma discharging assembly is connected with the swirler assembly, and the oil filter is installed on the outer electrode and is communicated with the discharging area. According to the nozzle for enhancing the atomization by plasma provided by the invention, the atomization effect is improved, and the flame transmission speed is quickened.

Description

technical field [0001] The invention relates to a gas turbine, in particular to a nozzle of the gas turbine. Background technique [0002] Dielectric barrier discharge technology is a kind of low-temperature plasma catalysis, which is currently mainly used in technical fields such as ozone production, waste gas treatment, material surface modification, and gaseous pollutant treatment. Low-temperature plasma catalysis is an extremely effective way to achieve low energy consumption, high yield, and high selectivity in plasma chemical reactions. [0003] Dielectric barrier discharge technology is mostly used in the research and treatment of gaseous objects, but less research is done on the catalysis of liquid objects. Ye Qizheng, Li Jin and others used the dielectric barrier discharge device to study the gas discharge water treatment technology on the surface of the liquid film. Yin Yongxiang used the dielectric barrier discharge device to act on the bubbles in the water. When...

Claims

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Application Information

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IPC IPC(8): F23R3/28F23D11/38
Inventor 李雅军郑洪涛蔡林刘倩杨家龙杨仁杨洪磊
Owner 三亚哈尔滨工程大学南海创新发展基地
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