Outdoor unit of air conditioner
US-2024200814-A1 · Jun 20, 2024 · US
US9513021B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9513021-B2 |
| Application number | US-200913123174-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 29, 2009 |
| Priority date | Nov 4, 2008 |
| Publication date | Dec 6, 2016 |
| Grant date | Dec 6, 2016 |
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Official abstract text for this publication.
The rear side outer peripheral edge of a propeller fan rotated and driven by a motor, of a propeller fan drive unit, is surrounded by a bell mouth. An upper plate, a lower plate, a side plate, and a machine room plate constitute an air duct at the suction side, outside the radial direction of the propeller fan. The cross-section of the bell mouth, at a first position in the vicinity where a blade of the propeller fan is closest, and where the distance between the propeller fan and the plate constituting the air duct outside the radial direction is relatively narrow, is made to be such that an expansion angle θ 1 of the bell mouth suction side is made small. The overlapped height Hb of the propeller fan and the bell mouth is made large against a cross-section at a second position where the distance between the propeller fan and a plate is relatively large. The shape of the cross-section of the bell mouth is made to change gradually between the first position and the second position.
Opening claim text (preview).
The invention claimed is: 1. A blower, comprising: a propeller fan; a propeller fan drive unit that rotates and drives the propeller fan; a bell mouth that surrounds a rear end of a rear edge side outer peripheral edge of the propeller fan; and a first flat plate and a second flat plate each disposed in parallel with a rotation axis of the propeller fan at an outside of the propeller fan in a radial direction of the propeller fan, and configuring an air duct from a suction side of the propeller fan to a blow-out side of the propeller fan, the flat plates neighboring each other, wherein the first flat plate and the second flat plate are directly next to each other, a distance between the first flat plate and the propeller fan is shorter than a distance between the second flat plate and the propeller fan, the bell mouth includes a first position having a distance between said first position and the first flat plate that is less than a distance between the first position and the second flat plate and that opposes the first flat plate in a radial direction of the propeller fan and a second position having a distance between said second position and the second flat plate that is less than a distance between the second position and the first flat plate and that opposes the second flat plate in a radial direction of the propeller fan, a first cross-section of the bell mouth at the first position has a first spreading angle smaller than a second spreading angle of a second cross-section of the bell mouth at the second position, the first and the second spreading angle each being an angle measured from the rotation axis to a suction side of the bell mouth, the first cross-section of the bell-mouth has a first overlapped height taller than a second overlapped height of the second cross-section of the bell mouth, the first and second overlapped height being an overlapped height of the propeller fan and the bell mouth in a direction of the rotation axis, and a shape of a cross-section of the bell mouth is made to change between the first position and the second position along a circumferential direction of the bell mouth, a spreading angle of the suction side of the bell mouth gradually increases as a position of the bell mouth approaches from the first position to the second position, and the overlapped height of the propeller fan and the bell mouth gradually decreases as a position of the bell mouth approaches from the first position to the second position. 2. The blower of claim 1 , wherein the overlapped height at the first cross-section is equal to or larger than half of an outer-periphery height of the propeller fan. 3. The blower of claim 1 , wherein the bell mouth includes a cylindrical section having a minimal inside diameter and an expansion section connecting to the cylindrical section at an upper stream side of the cylindrical section, the expansion section expanding an inside diameter from the blow-out side of the propeller fan toward the suction side of the propeller fan, and a radius of curvature of a first portion of the expansion section next to the cylindrical section is the same for a whole circumference. 4. The blower of claim 3 , wherein the radius of curvature of the first portion of the expansion section next to the cylindrical section is smaller than a radius of curvature of a second portion of the expansion section extending from the first portion toward the suction side of the propeller fan. 5. The blower of claim 1 , wherein a blade shape of the propeller fan is an advancing blade; and an arc length of the blade at a peripheral edge is longer than at a boss side. 6. The blower of claim 1 , wherein a negative pressure face of a blade of the propeller fan is convex to an opposite side of a rotation direction in a cylindrical cross-section with the rotation axis being a center. 7. A heat pump apparatus, comprising; the blower of claim 1 , a heat exchanger provided at a suction side of the air duct, wherein a distance between the first flat plate and the rotation axis of the propeller fan is smaller than a distance between the second flat plate and the rotation axis of the propeller fan. 8. The heat pump apparatus of claim 7 , wherein the first flat plate is the heat exchanger. 9. The heat pump apparatus of claim 7 , wherein the first flat plate and the second flat plate are plates without ventilation property. 10. The heat pump apparatus of claim 7 , wherein the first spreading angle is 45° and the second spreading angle is 70°. 11. The blower of claim 1 , wherein the first flat plate and the second flat plate are plates without ventilation property. 12. The blower of claim 1 , wherein the first spreading angle is 45° and the second spreading angle is 70°.
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