Micro combustor with built-in cross partition plate

A micro-combustion and cross-baffle technology, applied in the direction of burners, gas fuel burners, combustion types, etc., can solve the problems of complex burner structure and insufficient convective heat transfer, and achieve uniform temperature distribution on the wall surface and the degree of turbulence Enhanced, high thermal conductivity effect

Inactive Publication Date: 2015-11-18
JIANGSU UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, there are also some defects, that is, the convective heat transfer between the wall surfa

Method used

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  • Micro combustor with built-in cross partition plate

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Embodiment Construction

[0029] Such as figure 1 The built-in cross-baffle micro-burner shown includes 1. the outer wall of the burner, 2. a cross heat-conducting partition, 3. an air inlet, 4. an air outlet, and 5. a rectangular groove.

[0030] The built-in cross partition type miniature burner of the present invention includes a burner outer wall 1, a cross heat conducting partition 2, an air inlet 3 and an air outlet 4, and the burner outer wall 1 is divided into upper and lower walls and left and right walls ;

[0031] Both ends of the burner are respectively provided with an air inlet 3 and an air outlet 4;

[0032] The inside of the burner is provided with a cross heat conduction partition 2, and the cross heat conduction partition 2 is perpendicular to the longitudinal partition;

[0033] The cross heat conduction partition 2 is arranged at one end of the air outlet 4, and the transverse partition and the longitudinal partition of the cross heat conduction partition 2 are detachably connecte...

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Abstract

The invention relates to a micro combustor with a built-in cross partition plate and belongs to the field of energy combustion and utilization. The combustor comprises a combustor outer wall, the cross heat-conduction partition plate, a gas inlet and a gas outlet. The combustor outer wall comprises an upper wall, a lower wall, a left wall and a right wall. According to the combustor, by the adoption of the mode that the cross heat-conduction partition plate is arranged, turbulence of incoming flow gas is enhanced, and detention time is prolonged to a certain degree. Meanwhile, due to the fact that a channel becomes narrow in the partition plate area, the convective heat exchange strength of the inner wall surface and the mixed gas is improved, and rapid transfer of heat is achieved. The high-temperature gas flow is divided into four streams along the cross partition plate, so that temperature distribution of the wall surface is more uniform. Due to the design mode of the built-in cross heat-conduction partition plate, the micro-scale combustion process in the channel is more sufficient and stable, the radiation temperature of the wall surface can be increased, temperature distribution of the wall surface is more uniform, and thus a positive effect is achieved on improvement to the output performance of a miniature thermo photovoltaic system.

Description

technical field [0001] The invention relates to a built-in cross partition type micro burner, which belongs to the field of energy combustion and utilization. Background technique [0002] In recent years, with the rapid development of MEMS technology, its energy supply has become a research hotspot. The micro power system has the advantages of high energy density, small size, light weight and long working life, so it can provide portable energy for a variety of personal electronic devices including computers. Micro-thermophotovoltaic System (MTPVSystem for short) is one of them. This system directly converts the radiation energy on the surface of the high-temperature burner into electrical energy through photovoltaic cells. Its structure is relatively simple and there are no moving parts. It is a typical micro power unit. [0003] As one of the important components of the micro thermoelectric system, the design of the micro burner determines whether a stable internal comb...

Claims

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Application Information

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IPC IPC(8): F23D14/02
CPCF23D14/02F23D14/70
Inventor 唐爱坤许艺鸣邓江潘剑锋潘振华
Owner JIANGSU UNIV
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