Large-size efficient regenerative cooling spray pipe

A high-efficiency regeneration, large-scale technology, used in civil, combustion, aerospace fields, can solve the problems of installation and disassembly, and achieve the effect of improving work reliability, improving connection strength, and improving regenerative cooling capacity.

Active Publication Date: 2019-02-05
BEIJING AEROSPACE PROPULSION INST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The purpose of the present invention is to overcome the above-mentioned deficiencies of the prior art, to provide a large-scale high-efficiency regenerative cooling nozzle, to improve the regenerative cooling capacity adapted to its area ratio, to improve the processability of the process, to solve the difficulty of process production, and the upstream structure Difficulty in installation and disassembly

Method used

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  • Large-size efficient regenerative cooling spray pipe
  • Large-size efficient regenerative cooling spray pipe
  • Large-size efficient regenerative cooling spray pipe

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Embodiment Construction

[0024] The present invention will be further described in detail below in conjunction with the drawings and specific embodiments:

[0025] The invention provides a large-size high-efficiency regenerative cooling nozzle, which improves the regenerative cooling capacity that is compatible with its area ratio, improves the processability, and solves the problems of greater difficulty in process production and difficulty in installation and disassembly with upstream structures

[0026] Such as figure 1 Shown is a schematic diagram of the overall structure of the nozzle. It can be seen from the figure that the large-size and high-efficiency regenerative cooling nozzle includes inlet collector 1, nozzle upper section 2, connecting ring 3, nozzle lower section 4 and outlet collector 5; among them, the nozzle The upper section 2 is a hollow arc cone structure; the inlet collector 1 is fixedly installed on the narrow end of the upper section 2 of the nozzle; the lower section 4 of the nozzle...

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Abstract

The invention discloses a large-size efficient regenerative cooling spray pipe and relates to the technical fields of aerospace, civil use and combustion. The large-size efficient regenerative coolingspray pipe comprises an inlet collector, a spray pipe upper segment, a connecting ring, a spray pipe lower segment and an outlet collector. The spray pipe upper segment is of a hollow arc-shaped conical structure. The inlet collector is fixedly mounted at the narrow-opening end of the spray pipe upper segment. The spray pipe lower segment is of a hollow arc-shaped conical structure. The narrow-opening end of the spray pipe lower segment is in butt joint with the wide-opening end of the spray pipe upper segment in the axial direction. The outlet collector is fixedly mounted at the wide-openingend of the spray pipe lower segment. The connecting ring is fixedly mounted between the spray pipe upper segment and the spray pipe lower segment. An external medium sequentially flows through a medium inlet, a first inner chamber, radial flow equalizing holes, a second inner chamber, secondary flow equalizing holes and a gap formed between a spray pipe upper segment outer wall and a spray pipe upper segment inner wall and finally flows out of the outlet collector. By means of the large-size efficient regenerative cooling spray pipe, the regenerative cooling capacity matched with the area ofthe spray pipe is increased; technological processability is improved; and the problems that the technological production difficult is high, and a pipe cannot be mounted onto or dismounted from an upstream structure easily are solved.

Description

Technical field [0001] The invention relates to aerospace, civil and combustion technology fields, in particular to a large-size high-efficiency regenerative cooling nozzle. Background technique [0002] Regenerative cooling nozzle devices are widely used in aerospace, civil and combustion technology fields. The existing regenerative cooling nozzle device has a relatively small area ratio and low cooling working pressure, so the structure is relatively simple, the inner wall and the outer wall are mostly integral structures, and the inner and outer walls are mostly the same metal. In addition, the nozzle extension section and the upstream device are mostly welded structures. Once welded to the upstream device, they cannot be disassembled. For the large area ratio nozzle extension section, if the same connection method is used, later inspection and related work will be more difficult. Summary of the invention [0003] The purpose of the present invention is to overcome the above-m...

Claims

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Application Information

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Patent Type & AuthorityApplications(China)
IPC IPC(8): F02K1/78F02K1/80
CPCF02K1/78F02K1/80F02K1/822F02K9/97F02K9/972
Inventor王仙丁兆波杨继东刘鑫鹏杨岩田原许晓勇孙纪国郑孟伟潘刚刘倩张晋博姬威信赵世红
OwnerBEIJING AEROSPACE PROPULSION INST