CENTRIFUGAL FAN
20170023001 ยท 2017-01-26
Inventors
Cpc classification
F04D29/281
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/666
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Disclosed herein is a centrifugal fan. The centrifugal fan includes a back plate having a central portion for coupling with a rotation center shaft, a plurality of blades extending from the back plate, and a shroud which is connected to end portions of the blades and has an introduction end portion and a discharge end portion through which fluid passes, and the discharge end portion is rounded with a predetermined curvature in a direction away from the back plate.
Claims
1. A centrifugal fan comprising: a back plate having a central portion for coupling with a rotation center shaft; a plurality of blades extending from the back plate; and a shroud having a circular ring shape and connected to end portions of the blades, wherein the shroud comprises: an introduction end portion through which fluid is introduced; a connection portion curved to have a diameter that gradually increases from the introduction end portion; and a discharge end portion through which the fluid is discharged via the connection portion, and wherein the discharge end portion is rounded in a direction away from the back plate.
2. The centrifugal fan according to claim 1, wherein the discharge end portion has a larger curvature than the connection portion.
3. The centrifugal fan according to claim 2, wherein the curvature of the discharge end portion is equal to or more than a single arc (1arc).
4. The centrifugal fan according to claim 1, wherein the back plate comprises a connection portion which extends in a radial direction of the back plate from the central portion and connects the central portion to a circumferential portion, and the circumferential portion is rounded in a direction away from the discharge end portion of the shroud.
5. The centrifugal fan according to claim 4, wherein a distance between the discharge end portion of the shroud and the circumferential portion of the back plate is gradually increased in a discharge direction of the fluid.
6. The centrifugal fan according to claim 4, wherein the discharge end portion of the shroud and the circumferential portion of the back plate form a diffuser.
7. The centrifugal fan according to claim 1, wherein the central portion protrudes toward the introduction end portion.
8. The centrifugal fan according to claim 7, wherein the back plate is continuously rounded from the central portion to the circumferential portion of the back plate.
9. A centrifugal fan comprising: a back plate having a central portion for coupling with a rotation center shaft; a plurality of blades extending from the back plate; and a shroud having a circular ring shape and connected to end portions of the blades, wherein the shroud comprises: an introduction end portion through which fluid is introduced; a connection portion curved to have a diameter that gradually increases from the introduction end portion; and a discharge end portion through which the fluid is discharged via the connection portion, and wherein the discharge end portion of the shroud and a circumferential portion of the back plate are rounded in opposite directions to each other.
10. The centrifugal fan according to claim 9, wherein the discharge end portion of the shroud and the circumferential portion of the back plate are rounded in directions away from each other.
11. The centrifugal fan according to claim 9, wherein the central portion protrudes toward the introduction end portion.
12. The centrifugal fan according to claim 9, wherein the back plate is continuously rounded from the central portion to the circumferential portion of the back plate.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0029] The accompanying drawings, which are included to provide a further understanding of the invention, illustrate embodiments of the invention and together with the description serve to explain the principle of the invention.
[0030] In the drawings:
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
MODE FOR THE INVENTION
[0039] General terms which are currently and widely used are selected as the terminologies used in the present invention in consideration of functionality of the present invention, and may be changed depending on the user s intention or practice in the art, the appearance of new technologies, or the like. In addition, some terms have been arbitrarily selected by the applicant for special cases, for which detailed meanings are explained in detail in the description of the preferred embodiments of the present invention. Hence, the terminologies used in the present invention should be defined not as the names of the terminologies but as the meanings of the terminologies based on the entire content disclosed herein.
[0040] In the following embodiments, the components and features of the present invention are combined in a predetermined manner. Unless otherwise specified, each component or feature may be selectively considered. Each component or feature may be embodied in a form which is not combined with another component or feature. In addition, the embodiments of the present invention may also be configured by combination of partial components and/or features. A partial configuration or feature of any embodiment may be incorporated in other embodiments, or may be replaced with the corresponding configuration or feature of the other embodiments.
[0041] Reference will now be made in detail to the preferred embodiments of the present invention, examples of which are illustrated in the accompanying drawings.
[0042]
[0043] The centrifugal fan 100 may include a back plate 130 having a central portion 131 for coupling with a rotation center shaft, and a plurality of blades 120 extending from the back plate 130. Each blade may extend such that an outer contour thereof is curved.
[0044] The blades 120 form rotary vanes of the centrifugal fan 100 and function to transfer kinetic energy of the centrifugal fan 100 to fluid. The plurality of blades 120 may be provided at predetermined intervals and radially arranged on the back plate 130.
[0045] In addition, the centrifugal fan 100 may include a shroud 110 coupled to end portions of the blades 120. The shroud 110 may be formed at a position facing the back plate 130, and have a circular ring shape.
[0046] The shroud 110 has an introduction end portion 111 through which the fluid is introduced, and a discharge end portion 113 through which the fluid is discharged. The shroud may be curved so as to have a diameter decreased toward the introduction end portion 111 from the discharge end portion 113.
[0047] That is, the shroud 110 may include a connection portion 112 which connects the introduction end portion 111 to the discharge end portion 113 in a curved form. The connection portion may have a curvature and be rounded such that an inside cross-sectional area of the shroud is enlarged.
[0048] The shroud 110 may define a movement passage of the fluid together with the back plate 130 and the blades 120.
[0049] With regard to a movement direction of the fluid, the fluid introduced in a direction of the center shaft may flow in a circumferential direction of the centrifugal fan 100 by rotation of the blades 120.
[0050] That is, the centrifugal fan 100 may discharge the fluid in a radial direction of the centrifugal fan 100 by increasing flow speed with centrifugal force.
[0051] In addition, the centrifugal fan 100 may include a diffuser 140 for converting kinetic energy of the fluid into pressure energy. The speed of the fluid is decreased while the fluid accelerated in the circumferential direction by rotation of the centrifugal fan 100 is diffused, and the kinetic energy of the fluid may be converted into an effective pressure.
[0052] In accordance with the embodiment of the present invention, the diffuser for increasing the pressure of the fluid may be formed by the shroud 110 and the back plate 130.
[0053] The shroud 110 coupled to the end portions of the blades 120 may be spaced apart from the back plate 130 by a predetermined distance. The shroud 110 has a surface which is parallel with and faces the back plate 130.
[0054] In this case, the diffuser 140 is formed between both tip ends of the shroud 110 and back plate 130. That is, the discharge end portion 113 of the shroud 110 through which the fluid is discharged and a circumferential portion 132 of the back plate may serve as a diffuser.
[0055] The efficiency of the diffuser may be measured by dividing the product of a pressure
[0056] P and a quantity of flow Q of fluid by the product of torque and revolutions per minute (RPM). When the efficiency of the diffuser 140 is decreased, a temperature of the fluid is abnormally increased by compression during change of the pressure.
[0057] In order to prevent the above problem and increase compressor performance, it is important to determine a structure and shape of the diffuser 140.
[0058]
[0059] In accordance with the exemplary embodiment of the present invention provided to increase the efficiency of the diffuser, the discharge end portion 113 of the shroud 110 forming the diffuser may be rounded to have a predetermined curvature. In this case, the discharge end portion 113 of the shroud 110 is preferably rounded in a direction away from the back plate 130.
[0060] The tip end of the shroud or back plate according to the embodiment of the present invention will be described in more detail with reference to
[0061] The curvature through which the discharge end portion of the shroud or the circumferential portion of the back plate is rounded may be provided such that a length L defined from a starting point of the rounded portion of the shroud 110 to the tip end of the shroud 100 and a height H of the shroud 110 are a single arc (1arc) or a double arc (2arc).
[0062] Particularly, the discharge end portion 113 may have a larger curvature than the connection portion 112. That is, the discharge end portion is preferably rounded with a larger curvature than the circumferential portion in the direction away from the back plate.
[0063] Another exemplary embodiment of the present invention will be described with reference to
[0064] First, in the embodiment of the present invention shown in
[0065] That is, the circumferential portion 132 of the back plate 130 and the discharge end portion 113 of the shroud 110 may be rounded in opposite directions to each other.
[0066] Accordingly, it is preferable that a distance between the discharge end portion 113 of the shroud 110 and the circumferential portion 132 of the back plate 130 be gradually increased in a discharge direction of fluid.
[0067] In other words, since the circumferential portion 132 of the back plate 130 is rounded in an arc form, the distance between the shroud 110 and the back plate 130 is gradually increased toward both tip ends thereof.
[0068] Similarly to the case of the shroud 110, the curvature may be provided to be a single arc (1arc) or a double arc (2arc), but the present invention is not limited thereto.
[0069] Referring to
[0070] That is, the back plate is continuously rounded from the central portion 131 to the circumferential portion 132 thereof.
[0071] Accordingly, a distance between an imaginary line connecting the lowest points of the discharge end portion 113 of the shroud 110 and the back plate 130 is preferably the closest in the central portion 131 provided in the back plate 130.
[0072] This may mean that the distance between the shroud 110 and the back plate 130 is gradually increased toward the circumferential portion 132 from the central portion 131.
[0073] Hereinafter, variation in efficiency of the diffuser according to the exemplary embodiment of the present invention will be described in more detail with reference to
[0074] The diffuser 140 (hereinafter, referred to as OPT.1) of the embodiment in which the discharge end portion of the shroud 110 is rounded to have a predetermined curvature may improve efficiency by 0.57%, compared to the conventional diffuser 140 shown in
[0075] In addition, the diffuser (hereinafter, referred to as OPT.2) of the embodiment in which the central portion 131 of the back plate 130 protrudes toward the introduction end portion 111 may improve efficiency by 0.93%, compared to the conventional diffuser 140.
[0076] The diffuser (hereinafter, referred to as OPT.3) of the embodiment in which the circumferential portion 132 of the back plate 130 is rounded to have a predetermined curvature, similarly to the discharge end portion 113 of the shroud 110, improves efficiency by 0.99%.
[0077] That is, when both tip ends of the shroud 110 and back plate 130 forming the diffuser 140 are rounded to have the curvature, the diffuser may have the highest efficiency.
[0078] In addition, when the linear distance between the shroud 110 and the back plate 130 is provided so as to be increased at a certain ratio toward the circumferential portion 132 from the central portion 131, the efficiency of the diffuser may be increased.
[0079] The exemplary embodiments of the present invention described above have been designed to minimize a vortex generated by the diffuser 140. When vortex generation is reduced, torque of the fluid is decreased. When the torque is decreased under the same P-Q performance, the efficiency of the diffuser is increased.
[0080] The above-mentioned description will be given in more detail with reference to
[0081] However, the efficiency of the OPT.1 or the OPT.3 may be improved compared to that of the conventional diffuser 140, as shown in
[0082] Particularly, the OPT.3 may have the maximum efficiency. That is, when both of the shroud 110 and the back plate 130 are rounded with a predetermined curvature, the diffuser may have the highest efficiency.
[0083] The configuration and method of the above-mentioned centrifugal fan 100 are not limited to the above embodiments, and the entirety or a portion of each embodiment may be selectively combined such that various modifications may be made in the embodiments.
[0084] Various embodiments have been described in the best mode for carrying out the invention.
[0085] It will be apparent to those skilled in the art that various modifications and variations can be made in the present invention without departing from the spirit or scope of the invention. Thus, it is intended that the present invention cover the modifications and variations of this invention provided they come within the scope of the appended claims and their equivalents.