A wind tunnel test device for radiator performance that can simulate multiphase flow into the wind environment

A technology of wind tunnel test and radiator, which is applied in the direction of measuring device, aerodynamic test, machine/structural component test, etc., can solve the problem of radiator performance in rainy environment. Heat, resistance performance test, radiator heat transfer performance and other issues are rarely heard, to achieve the effect of broadening the test function, compact structure, and less sand content

Active Publication Date: 2022-02-01
BEIJING INSTITUTE OF TECHNOLOGYGY
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  • Application Information

AI Technical Summary

Problems solved by technology

However, the experimental testing techniques and devices for the heat transfer performance and resistance performance of radiators in sandy and dusty environments, rainy environments, sandy dusty and rainy composite environments, etc. are rarely heard.
[0004] At present, the existing wind tunnel test device for radiators in dusty environment is mainly used for the assessment of the strength of radiators, and does not involve heat transfer and resistance performance tests of radiators, and the air ducts are generally horizontal open structures, and the sand particles in the test channels are very small. Difficult to distribute evenly, and the sand particles are easy to accumulate at the bottom of the air duct, resulting in changes in the flow field, and the exhaust air with high sand content also makes this type of device inconvenient for indoor application; wind tunnels for sand and dust environments for other purposes are basically arranged horizontally Air duct, long-term use will also lead to the accumulation of sand particles in the air duct. Even if sand recovery is considered, the effect is not good and it is not easy to realize, and the open structure is not convenient for indoor application
[0005] At present, the existing rain-drenched environment wind tunnel test device is mainly used to realize the rain-drenched working condition in a large space environment, but there is no relevant technology to realize the wind tunnel test device for the performance of the radiator in the rain-drenched environment.
[0006] As for the wind tunnel test device for the performance of radiators in sandy, dusty and rainy composite environments, there is currently a lack of relevant technologies to realize

Method used

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  • A wind tunnel test device for radiator performance that can simulate multiphase flow into the wind environment
  • A wind tunnel test device for radiator performance that can simulate multiphase flow into the wind environment
  • A wind tunnel test device for radiator performance that can simulate multiphase flow into the wind environment

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Embodiment Construction

[0094] The specific embodiments of the present invention will be further described below in conjunction with the accompanying drawings. Wherein, the same components use the same symbols, such as air, rainwater, sand grains, recycled sand grains, water flow direction and other symbols, in order to enable those skilled in the art to better understand the drawings and understand the present invention. It should be clear here that the specific implementations given are only for explaining and helping understanding of the present invention, and are not intended to limit the present invention.

[0095] like figure 1As shown, a radiator performance wind tunnel test device that can simulate multi-phase flow into the wind environment, including sand dust generator 1, rain generator 2, upstream section 3, radiator 4, hot side circulation system 5, downstream Section 6, separation and recovery section 7, induced draft fan 8, measurement controller 9. Both the dust generator 1 and the r...

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Abstract

The invention discloses a radiator performance wind tunnel test device capable of simulating a multiphase flow inlet wind environment, and belongs to the technical field of radiator performance test devices. The test device proposed by the present invention includes a sand dust generating device, a rain generating device, an upstream section, a radiator, a hot side circulation system, a downstream section, a separation and recovery section, an induced draft fan, and a measurement controller. The invention can carry out wind tunnel tests on the performance of radiators in sand-dust environments with different sand-dust concentrations and different sand grain temperatures, wind tunnel tests on the performance of radiators in rain-drenched environments with different amounts of rain and different raindrop temperatures, and the performance of radiators in sand-dust-rain composite environments The wind tunnel test can also be used for conventional natural environment radiator performance wind tunnel tests, with wide applicability; the parameter range of the test conditions is large, which broadens the test function; sand and water can be recycled, and the economy is high; the exhaust is clean , high feasibility; compact structure, saving floor space.

Description

technical field [0001] The invention belongs to the technical field of radiator performance test devices, in particular to a radiator performance wind tunnel test device capable of simulating multiphase flow into the wind environment. Background technique [0002] For mobile military equipment and special equipment, its cooling system works efficiently, reliably and stably under extreme environmental conditions, which can ensure the high mobility and high reliability of the whole machine, which is of great significance. Based on the design research and component selection of the cooling system of related equipment, the extreme environment generally includes: high temperature environment such as 45°C to 50°C ambient temperature, plateau environment at an altitude of 4000m to 4500m, 3g / m 3 ~6g / m 3 Single limit environments such as sand dust environment with sand and dust concentration, rain environment with 17.5mm / 24h~20mm / 24h rain intensity; and composite limit environment f...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01M9/04
CPCG01M9/04
Inventor 苗龙王义春李森丁扬
Owner BEIJING INSTITUTE OF TECHNOLOGYGY
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