diversion system

TWM687470UActive Publication Date: 2026-09-11ASIA VITAL COMPONENTS CO LTD
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Patent Information

Application Number
TW115205039
Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-06-02
Publication Date
2026-09-11
Estimated Expiration
2036-06-01

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    Figure TWG2TB001911221_003
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Abstract

This invention relates to a flow guiding system, mainly comprising a frame with a flow guiding side, a flow resistance adjustment component disposed on the flow guiding side, and at least one drive unit for driving the component. The flow resistance adjustment component has a plurality of flow channels communicating with a fluid mechanism. The drive unit drives the flow resistance adjustment component to cause geometric changes such as changes in cross-sectional area or angular deflection of the flow channels, thereby defining controlled flow resistance characteristics on the flow guiding side. Through dynamic adjustment of the flow resistance, local impedance deviations caused by component maintenance or dust accumulation can be actively compensated, precisely distributing fluid to the actuating parts of the fluid mechanism. This achieves system flow rebalancing without increasing the fluid mechanism's rotational speed and significantly optimizes operating noise and flow field quality.
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Claims

1. A flow guiding system, comprising: A frame with one flow-guiding side; A flow resistance adjustment component is disposed on the flow guide side, and the flow resistance adjustment component has a drive unit and a plurality of flow channels communicating with at least one fluid mechanism; wherein, the drive unit is used to drive the flow channel to produce a geometric change, so that the flow channel generates a flow resistance, thereby adjusting the flow distribution to the fluid mechanism.

2. The flow guiding system as described in claim 1, wherein the fluid mechanism has an actuating part.

3. The flow guiding system as described in claim 2 further includes at least one baffle disposed between the flow resistance regulating component and the fluid mechanism, and a plurality of flow guiding regions are separated between the flow resistance regulating component and the fluid mechanism, the flow guiding regions through which the actuating part flows, so that a fluid, after being distributed by the flow resistance regulating component, passes through each flow guiding region and is guided to the actuating part.

4. The flow guiding system as claimed in claim 3, wherein at least one baffle is provided between the flow resistance regulating component and the at least one fluid mechanism, so that a fluid, after being distributed by the flow resistance regulating component, is guided to the at least one fluid mechanism through each flow guiding region.

5. The flow guiding system as described in claim 1, wherein the geometric change is an angular deflection of the flow channel, and the drive unit generates the flow resistance by adjusting the angular deflection.

6. The flow guiding system as claimed in claim 5, wherein the flow resistance adjustment assembly includes a plurality of blades, each blade being driven by the drive unit to generate the deflection angle to form a 100-blade structure and define the flow channel.

7. The flow guiding system as claimed in claim 1, wherein the geometric change is a change in the cross-sectional area of ​​the flow channel, and the drive unit generates the flow resistance by scaling the cross-sectional area.

8. The flow guiding system as claimed in claim 7, wherein the flow resistance adjustment assembly includes a fixed plate having a plurality of through holes and a movable plate, the drive unit driving the movable plate to displace relative to the fixed plate to form a hole structure and define the flow channel.

9. The flow guiding system as described in claim 3 further includes a sensing module for detecting the flow distribution in each of the flow guiding areas and feeding it back to the drive unit to dynamically adjust the flow resistance of the flow channel.

10. The flow guiding system as claimed in claim 1, wherein the flow channel of the flow resistance regulating component can be defined by an iris-like scaling structure consisting of a plurality of shielding plates arranged in a ring, and the shielding plates are driven by the driving unit to converge toward the center or expand outward.

11. The flow guiding system as claimed in claim 1, wherein the flow channel of the flow resistance adjustment component may be constituted by a flexible, resilient, and adjustable sleeve, and radial pressure is applied by the drive unit to change its flow cross-section.