Rectangular section cross type shunting rectification cross joint

A rectangular cross-section, cross-shaped technology, applied in the direction of fluid flow, mechanical equipment, etc., can solve problems such as uneven fluid flow velocity, affecting indoor comfort, and indoor airflow organization and design.

Inactive Publication Date: 2012-02-01
XI'AN UNIVERSITY OF ARCHITECTURE AND TECHNOLOGY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This means that the flow rate of the fluid is not uniform. In the field of HVAC, on the one hand, it will vibrate inside the pipe and generate noise; affect indoor comfort

Method used

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  • Rectangular section cross type shunting rectification cross joint
  • Rectangular section cross type shunting rectification cross joint
  • Rectangular section cross type shunting rectification cross joint

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specific Embodiment

[0039] Specific embodiments of the present invention are provided below, and it should be noted that the present invention is not limited to the following specific embodiments, and all equivalent transformations done on the basis of the technical solutions of the present application all fall within the scope of protection of the present invention.

[0040] Following the above technical scheme, taking the optimization process of the cross-shaped shunting and rectifying four-way pipe for central air-conditioning duct connection as an example, first confirm the dimensions of each part of the cross-shaped shunting and rectifying four-way pipe, in which the size of the rectification inlet section is 300mm×300mm, the first The size of the outlet section is 600mm×300mm, the size of the second and third outlet sections is 300mm×300mm, the curvature is 1.5, the length of the rectification section is 300mm, the length of the rectifier in the rectification section is 100mm, and the length ...

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PUM

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Abstract

The invention discloses a cross type shunting rectification cross joint, which comprises an inlet section, a first outlet section, a second outlet section and a third outlet section, wherein the first outlet section is positioned on one side of the inlet section and on the same horizontal plane as the inlet section; the second outlet section and the third outlet section are symmetrically positioned on upper side and lower side of the inlet section, and the plane on which the connection of extension lines of the second outlet section and the third outlet section is and the plane on which the inlet section is are vertical to each other to form a cross type structure; the inlet section is connected with the first outlet section through a horizontal connection end of a four-way shunting section; two longitudinal connection ends of the four-way shunting section are symmetrically connected with a buffer section; the other end of the buffer section is symmetrically provided with a rectification section which is connected with the second outlet section and the third outlet section; and the upper end in the rectification section is provided with rectification vanes, and each rectification vane is provided with guide vanes which divide the interior of the rectification section into five equal-flow fluid passages. The unique design of the cross type shunting rectification cross joint eliminates velocity stratification formed after fluid passing through the cross type cross joint, thereby finally fulfilling the aim of rectifying the fluid passing through the cross type cross joint.

Description

technical field [0001] The invention relates to a partial component in a ventilation and air-conditioning system, in particular to a rectangular cross-section cross-shaped shunting and rectifying four-way. Background technique [0002] The cross-type cross pipe is a very common pipe fitting that changes the flow direction of fluid and divides it in HVAC power fluid machinery. In fluid dynamics, due to the turning of the fluid, there is a centrifugal force from the center of curvature to the outer arc of the pipe, which makes the pressure on the outer arc The pressure on the inner arc surface decreases as the height increases. Therefore, the flow velocity of the fluid at the outer dome will decrease, while the flow velocity of the fluid at the inner dome will correspondingly increase. Therefore, a diffusion effect occurs near the outer arc and a contraction effect occurs near the inner arc. When the fluid transitions from the curved pipe section to the straight pipe sectio...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F15D1/04
Inventor 李安桂高然邱国志雷文君郝鑫鹏
Owner XI'AN UNIVERSITY OF ARCHITECTURE AND TECHNOLOGY
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