Air moving device with stator blade structure
11333172 · 2022-05-17
Assignee
Inventors
Cpc classification
F04D29/329
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2240/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/384
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/582
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2240/301
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D19/028
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/544
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D19/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The air moving device includes a rotor and a stator. The quantity of the rotor blades is not less than 5 and not greater than 12. The average blade angle of rotor blades is not less than 45 degrees and is not greater than 64 degrees. The ratio of the hub diameter to the rotor diameter is not less than 0.4 and not greater than 0.79. The quantity of the stator blades is not less than 6 and not greater than 23. The average blade angle of stator blades is not less than 45 degrees and not greater than 70 degrees. The ratio of the total thickness of the air moving device to the rotor diameter is not less than 0.76 and not greater than 1.7. The ratio of the stator axial thickness to the rotor axial thickness is not less than 0.28 and not greater than 0.65.
Claims
1. An air moving device with a stator blade structure, the air moving device comprising: a rotor, comprising a rotor hub and a plurality of rotor blades arranged annularly on a periphery of the rotor hub spacedly; wherein a quantity of the plurality of rotor blades is equal to or greater than 5 and equal to or less than 12, and an average blade angle of the plurality of rotor blades is equal to or greater than 45 degrees and equal to or less than 64 degrees, and a ratio of a hub diameter of the rotor hub to a rotor diameter of the plurality of rotor blades is equal to or greater than 0.4 and equal to or less than 0.79; and a stator, disposed on a downstream side of the rotor, the stator comprising a plurality of stator blades arranged annularly and spacedly; wherein a quantity of the plurality of stator blades is equal to or greater than 6 and equal to or less than 23, and an average blade angle of the plurality of stator blades is equal to or greater than 45 degrees and equal to or less than 70 degrees; and wherein a ratio of a total thickness of the air moving device to the rotor diameter is equal to or greater than 0.76 and equal to or less than 1.7, and a ratio of a stator axial thickness of the plurality of stator blades to a rotor axial thickness of the plurality of rotor blades is equal to or greater than 0.28 and equal to or less than about 0.65.
2. The air moving device in claim 1, further comprising a housing, wherein the rotor is combined in the housing, and the stator is fixed on the housing.
3. The air moving device in claim 1, wherein the stator further comprises a stator hub, and the plurality of stator blades are arranged annularly on a periphery of the stator hub spacedly.
4. The air moving device in claim 1, wherein the respective blade angles of the plurality of rotor blades and the plurality of stator blades are set in opposite circumferential directions.
5. The air moving device in claim 1, wherein the ratio of the total thickness of the air moving device to the rotor diameter is 1.52; the ratio of the hub diameter to the rotor diameter is 0.679; the ratio of the stator axial thickness to the rotor axial thickness is 0.39; the quantity of the plurality of rotor blades is 6, and the quantity of the plurality of stator blades is 11; and the average blade angle of the plurality of rotor blades is 53.2, and the average blade angle of the plurality of stator blades is 59.7.
6. The air moving device in claim 1, wherein the ratio of the total thickness of the air moving device to the rotor diameter is 0.923; the ratio of the hub diameter to the rotor diameter is 0.628; the ratio of the stator axial thickness to the rotor axial thickness is 0.469; the quantity of the plurality of rotor blades is 5, and the quantity of the plurality of stator blades is 14; and the average blade angle of each of the plurality of rotor blades is 47.5, and the average blade angle of each of the plurality of stator blades is 60.2.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The features of the disclosure believed to be novel are set forth with particularity in the appended claims. The disclosure itself, however, may be best understood by reference to the following detailed description of the disclosure, which describes a number of exemplary embodiments of the disclosure, taken in conjunction with the accompanying drawings, in which:
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DETAILED DESCRIPTION
(15) The technical contents of this disclosure will become apparent with the detailed description of embodiments accompanied with the illustration of related drawings as follows. It is intended that the embodiments and drawings disclosed herein are to be considered illustrative rather than restrictive.
(16) Please refer to
(17) The rotor 10 includes a rotor hub 11 and a plurality of rotor blades 12 arranged annularly on a periphery of the rotor hub 11 spacedly. Additionally, the stator 20 includes a stator hub 21 and a plurality of stator blades 22 arranged annularly on the periphery of the stator hub 21 spacedly.
(18) Please further refer to
(19) Moreover, in the structure of the stator 20, the stator blades 22 is with a stator axial thickness TS, and the quantity of the stator blades 22 is equal to or greater than 6 and equal to or less than 23.
(20) Furthermore, the air moving device 1 is with a total thickness TT (the thickness of the rotor 10 combined with the stator 20). The ratio of the total thickness TT to the rotor diameter DR is equal to or greater than about 0.76 and equal to or less than about 1.7. In addition, the ratio of the stator axial thickness TS to the rotor axial thickness TR is equal to or greater than about 0.28 and equal to or less than about 0.65.
(21) Please further refer to
(22) Furthermore, in
(23) In this embodiment, the ratio of the total thickness TT to the rotor diameter DR is about 1.52. The ratio of the hub diameter DT to the rotor diameter DR is about 0.679. The ratio of the stator axial thickness TS to the rotor axial thickness TR is about 0.39. The quantity of the rotor blades is 6, and the quantity of the stator blades is 11. Additionally, the averaged blade angle θ.sub.R of each rotor blade 12 is about 53.2, and the averaged blade angle θ.sub.S of each stator blade 22 is about 59.7
(24) It should be noted the blade angles of the rotor blades 12 and the stator blades 22 are set in opposite circumferential direction as depicted in the drawings.
(25) Please refer to
(26) Moreover, the design parameters of this embodiment are as follows. The ratio of the total thickness to the rotor diameter is about 0.923. The ratio of the hub diameter to the rotor diameter is about 0.628. The ratio of the stator axial thickness to the rotor axial thickness is about 0.469. The quantity of the rotor blades is 5, and the quantity of the stator blades is 14. The averaged blade angle of each rotor blade is about 47.5, and the averaged blade angle of each stator blade is about 60.2.
(27) Please further refer to
(28) Furthermore, when comparing the characteristic curve of the air moving device with stator blade structure of this disclosure with the characteristic curve of the counter-rotating air moving device of the related art (related counter-rotating air moving device), the performance of this disclosure in the area of common operation (the right section of the curve) is similar to the counter-rotating air moving device of the related art, or even better.
(29) It should be noted that the air moving device with stator blade structure of this disclosure only uses a single motor to drive the rotor blades. However, the counter-rotating moving device of the related art needs two motors to drive the front rotor and rear rotor. Therefore, the cost of the air moving device with stator blade structure of this disclosure is significantly reduced comparing to the counter-rotating moving device of the related art.
(30) Please further refer to
(31) Furthermore, please refer to
(32) It should be noted that in order to enhance the operation performance of the air moving, the air moving device of the related art may adopt a rotor-stator moving device to improve the characteristic of static pressure versus air flowrate of the air moving device. However, the total thickness of the rotor-stator moving device of the related art is usually thinner under the conventional design concept of the related art (refer to the above comparison of
(33) Therefore, it should be noted that although the total thickness of the air moving device with the stator blade structure of this disclosure is thick, it can overcome the limitation of total thickness of the rotor-stator air moving device of the related art under the specific design parameters disclosed in this disclosure to achieve the characteristic curve close to that of the counter-rotating air moving device.
(34) In summary, the air moving device with the stator blade structure of this disclosure achieves a better performance by specific design parameters and larger total thickness when comparing with the air moving device with stator blade structure of the related art. On the other hand, when comparing with the counter-rotating air moving device of the related art, the air moving device of this disclosure may achieve the performance close to that of the counter-rotating air moving device (dual motors driving double rotors) by a single motor. Thus, the air moving of this disclosure has advantages of reducing costs and simplifying manufacturing.
(35) While this disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of this disclosure set forth in the claims.