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Cold-air-resistant haze removal door hopper system based on check valve principle

A technology for anti-cold wind and haze removal door buckets and check valves, which is applied in air conditioning systems, windows/doors, anti-riot doors, etc. Indoor air quality, the effect of reducing the effect of cold wind resistance, and the effect of low investment cost

Pending Publication Date: 2022-05-24
TIANJIN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It effectively solves the problem that the windproof potential of the door bucket cannot be fully tapped at present, and can effectively improve the role of the door bucket as a buffer space to weaken the wind speed and purify the air

Method used

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  • Cold-air-resistant haze removal door hopper system based on check valve principle
  • Cold-air-resistant haze removal door hopper system based on check valve principle
  • Cold-air-resistant haze removal door hopper system based on check valve principle

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Embodiment Construction

[0031] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention, but not to limit the present invention.

[0032] like Figure 1 to Figure 6 As shown, the present invention provides an anti-cold air haze removal door system based on the check valve principle, including a space parameter selection module, a wind protection component selection module, a video identification control module and a door bucket haze removal module.

[0033] The space parameter selection module is used to determine the length, width, height, number of layers, and optimized area size of the door bucket (that is, in order to achieve better anti-cold wind effect, the new door bucket increases the drop-shaped space compared with the prototype door bucket), plane The form, outdoor wind speed, outdoor wind directio...

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Abstract

The invention discloses a cold-air-resistant haze removal door hopper system based on the check valve principle. The cold-air-resistant haze removal door hopper system comprises a space parameter type selection module, a windproof component type selection module and a video recognition control module. The space parameter type selection module is used for averaging drawing and actually-measured door bucket space parameters in a range of average value + / -standard deviation of respective dimensions, and selecting data serving as a space parameter adjustment step length and a threshold value; performing simulation of a plurality of wind environment working conditions on a gate bucket sample generated by an exhaustion method through CFD simulation software to obtain a preferred database; the windproof component type selection module comprises an air guide plate component and check valve components, the air guide plate component is arranged on the side wall face of the door bucket, the check valve components of multiple stages are fixed to the top of the door bucket through mounting grooves, and openings of the check valve components are arranged in the windward direction; and the video identification control module controls the opening and closing size and the opening and closing speed of the automatic door in real time by exciting a preset program.

Description

technical field [0001] The invention relates to the field of door bucket systems, in particular to a door bucket system for anti-cold air and haze removal based on the principle of a check valve. Background technique [0002] Tall space building is a type of building space with high space height and large single-storey area. For example, due to the high flow of people, the entrances and exits of high-speed railway station buildings are frequently opened during operation, resulting in cold air intrusion and indoor air pollution problems at the entrances in winter, which are more serious than other tall buildings. Existing research shows that the impact of infiltration wind on building load accounts for 66% to 85% of the building load in tall spaces, which is significantly higher than that in ordinary office and residential buildings. [0003] The existing patents and papers closest to the present application are as follows: [0004] 1) A passive solar house with a vertical ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E06B5/00E06B7/28F24F8/30F24F8/99
CPCE06B5/003E06B7/28F24F8/30F24F8/99Y02B30/90
Inventor 刘刚孟弘融曲冠华高皓然任蕾曾婧
Owner TIANJIN UNIV
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