CN201916254U - Centrifugal fan and air conditioner comprising same - Google Patents

Centrifugal fan and air conditioner comprising same Download PDF

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Publication number
CN201916254U
CN201916254U CN2011200074401U CN201120007440U CN201916254U CN 201916254 U CN201916254 U CN 201916254U CN 2011200074401 U CN2011200074401 U CN 2011200074401U CN 201120007440 U CN201120007440 U CN 201120007440U CN 201916254 U CN201916254 U CN 201916254U
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China
Prior art keywords
water conservancy
conservancy diversion
centrifugal blower
baffle liner
grid
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Expired - Lifetime
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CN2011200074401U
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Chinese (zh)
Inventor
张辉
肖彪
肖忠弟
赵伟东
艾大云
叶务占
林金煌
刘北泉
肖芳斌
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Gree Electric Appliances Inc of Zhuhai
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Gree Electric Appliances Inc of Zhuhai
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Priority to CN2011200074401U priority Critical patent/CN201916254U/en
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Abstract

The utility model provides a centrifugal fan and an air conditioner comprising the same. The centrifugal fan comprises a volute (2), a fan impeller (1) and a flow guide ring (3) and also comprises a flow guide grating (4), wherein the volute (2) is provided with an air inlet (21); the fan impeller (1) is arranged in the volute (2); the flow guide ring (3) is arranged on the air inlet (21) of the volute (2) and is used for flow guide of the air inlet; and the flow guide grating (4) is arranged at the outer side of the flow guide ring (3) and has a structure of uniform circumferential inlet airflow. According to the centrifugal fan, a centrifugal fan blade and a deflector can be effectively prevented from rotating stall, and the circumferential uniformity of the outlet airflow of the flow guide ring is improved, so that the inlet air and the outlet air of the centrifugal fan are uniform and stable, the noise of the fan is reduced, the tone quality is improved, the performance and the reliability are improved, the cost is reduced, and simultaneously, the centrifugal fan is also ensured to be efficient and reliable within a wider flow range. The air conditioner according to the utility model comprises the centrifugal fan.

Description

Centrifugal blower and comprise the air conditioner of this centrifugal blower
Technical field
The utility model relates to the gas conveying machinery field, in particular to a kind of centrifugal blower and comprise the air conditioner of this centrifugal blower.
Background technique
Centrifugal fan is a kind of widely used gas conveying machinery, is widely used in fields such as industrial ventilation, dedusting, chemical industry, HVAC.Multi-wing centrifugal fan because of compact structure, pressure coefficient height, noise is low is widely used in the air conditioner.The high speed rotating of multi-blade fan particular structure characteristics, impeller and the geometrical shape runner complexity, asymmetry are added real fluid and are had viscosity, all make the blower fan internal flow present very complicated three-dimensional character.The pulsation of multi-wing centrifugal fan pressure inside, wake flow, boundary layer separation and vortex shedding have a significant impact the aerodynamic characteristic and the noise properties of centrifugal blower.
The internal flow situation of centrifugal blower is very complicated in actual motion, and present rationalistic method also is difficult to accurately calculate the mobility status and the flow losses of its each circulation part.Particularly when centrifugal blower moves, unsteady state flow can occur in the runner under flow passage resistance force of waterproof increase or sub load, be accompanied by the generating process of unsteady state flow, fan performance significantly reduces, stream pressure pulse amplitude in the runner obviously increases, and frequency reduces, and ripple frequency is a low frequency.And the natural frequency of the fixing device of blade, blower fan has the multiple relation, unsteady state fails to be convened for lack of a quorum draught fan impeller, blade, blower fan fixing device and system pipeline is produced unsteady state aerodynamic force exciting, the performance of blade mechanism and life-span caused very seriously influence, cause that complete machine oscillation is big, causes extraordinary noise.Usually there are inlet vortex, rotating stall, surge in the unsteady state flow source of centrifugal blower, and the vibration that rotating stall produces is littler than surge, but wants strong more than the unsteady state inlet vortex, and the inner flowing characteristic of rotating stall and blower fan is closely related.
The working state of ventilator is by inlet pressure, intake temperature, rotating speed and flow decision, and under the design conditions, the ventilator internal gas flows to rationally, flow speed stability.In machine run,, will cause actual flow less than design discharge if centrifugal blower import guide plate aperture is regulated improper or obstructions such as impeller channel, airflow path, filter screen.At this moment the airflow direction that enters impeller can change, near the non-working surface of blade, form air-flow whirlpool and lift-off group, the existence of air-flow whirlpool and to the extruding of runner inlet stream, make the air-flow angle of attack of adjacent channels blade alternately increase and reduce, air-flow lift-off group circulation successively takes place, this moment, impeller was in stall conditions fully, and its moving direction is opposite with the impeller sense of rotation.Research and experiment show, because the intrinsic inlet velocity flow profile uneven phenomenon of centrifugal blower, rotating stall can preferentially appear near in the blade passage that exports.Rotating stall causes the main cause of runner and blower fan body vibration, is that the blade passage outlet pressure does not reach the pressure requirement because impeller rotating stall internal flow state causes impeller to do negative work, produces pressure pulsation at impeller outlet and pipeline place.By vibration signal processing technology such as wavelet packet demodulation decomposition, can discern the frequency that rotating stall produces to the centrifugal blower oscillating signal.Studies show that, the fundamental frequency that rotating stall produces, impeller stall is in 0.5~0.8 speed scope, and fluid director stall is changeed in the frequency scope 0.1~0.25.On vibration frequency, be different from the low frequency surge, also be different from the astable inlet vortex of high frequency band.Rotating stall is that a kind of unsteady state in turbo fluid machine impeller fluid director zone is flowed, and therefore can avoid impeller to enter rotating stall by the optimal design to fluid director.
Usually the regulated quantity of fluid director can not make the frequency of rotating stall produce significant change, and under certain aperture, stall frequencies becomes the minimum linear relationship of slope with flow; Under the situation of small flow, stall frequencies can frequency of occurrences step phenomenon.As depicted in figs. 1 and 2, centrifugal blower comprises impeller blade 1 ', and spiral case 2 ' can also comprise fluid director 3 '.In the centrifugal blower that adopts inducer 3 ' to regulate, along with the increase of fluid director 3 ' regulated quantity, the inlet vortex frequency obviously increases, and the retarding action of rotating stall is obviously strengthened.Therefore, how to design the inducer structure of centrifugal blower, the performance and the noise of centrifugal blower had very big influence.The suction port of centrifugal blower generally has several structural types such as cylindrical shape, taper shape, arc, awl arc, arc tubular and awl arc at present, the shape of entry guide vane is generally axially or the radial blade shape, mainly in compressor, use, in the single-stage ventilator, almost without stator.In engineering reality, many single-stage centrifugal fans because special flow passage structure and resistance also can rotate stall, for industrial ventilation that special vibration and noise requirements are arranged or air-conditioning heating and ventilating equipment, will reduce the performance of blower fan.
Outlet at forward multiple wing centrifugal blower fan import baffle liner can produce eddy current; also there is a large amount of backflow eddy current at its back side; simultaneously because the circumferential static pressure distribution inequality of impeller inside; cause the inlet air flow skewness; air-flow can produce the large scale eddy current usually and pour in the impeller blade leading edge through behind the baffle liner.Under the comprehensive function of above-mentioned factor, there is greatest differences in impeller along circumferential blade inlet air flow angle of attack size, and particularly near the spiral case exit region, the disorder of the air-flow angle of attack has caused blade to change the disturbance of stall gradually that causes because of the angle of attack.When inlet blade angle design inadequately rationally or inlets and putlets of ventilation resistance when excessive, impeller produces serious rotating stall phenomenon, produces unsteady state flow impeller outlet and air channel in, noise, vibration increase, sound quality deterioration.
The model utility content
The utility model aims to provide a kind of centrifugal blower, can effectively avoid centrifugal blower blade and fluid director zone rotating stall, improve the circumferential uniformity of baffle liner exit flow, make that centrifugal blower turnover wind is uniform and stable, reduce fan noise, improve tonequality, improve Performance And Reliability, reduce cost, also guarantee high efficient and reliable in the broad range of flow simultaneously.
To achieve these goals, according to an aspect of the present utility model, provide a kind of centrifugal blower, comprising: spiral case has suction port; Draught fan impeller is arranged in the spiral case; And baffle liner, be arranged on the suction port of spiral case, be used for the suction port water conservancy diversion, also comprise: the water conservancy diversion grid, be arranged on the baffle liner outside, have evenly the circumferentially structure of charge air flow.
Further, the water conservancy diversion grid comprises water conservancy diversion leaf and the skeleton that connects each water conservancy diversion leaf.
Further, the water conservancy diversion grid is arranged on the baffle liner by skeleton, and has the gap between the opposing end surface of water conservancy diversion grid and baffle liner.
Further, the water conservancy diversion leaf is a plurality of ring shape water conservancy diversion leaves that concentric circle is arranged that are.
Further, the maximum diameter of ring shape water conservancy diversion leaf has the gap less than the internal diameter of baffle liner between the maximum diameter of ring shape water conservancy diversion leaf and the internal diameter of baffle liner.
Further, the cross section of each ring shape water conservancy diversion leaf is rectangle or wing shapes.
Further, the spacing between each ring shape water conservancy diversion leaf is identical.
Further, the depth of section of each ring shape water conservancy diversion leaf is identical.
Further, water conservancy diversion leaf part or integrally along impeller axial projection or depression.
Further, the mounting plane of the relative baffle liner of mounting plane of water conservancy diversion grid is obliquely installed.
Further, the opening of the mounting plane of the mounting plane of water conservancy diversion grid and baffle liner formation is towards the Way out of spiral case.
Further, the water conservancy diversion grid is the fenestral fabric of a plurality of rectangles or a plurality of rhombus water conservancy diversion leaf and skeleton formation.
According on the other hand of the present utility model, a kind of air conditioner is provided, comprise above-mentioned centrifugal blower.
According to the technical solution of the utility model, centrifugal blower comprises the water conservancy diversion grid, can effectively improve the circumferential uniformity of baffle liner exit flow, makes that centrifugal blower turnover wind is uniform and stable, reduces fan noise, improves tonequality, improves Performance And Reliability.The distance of water conservancy diversion grid and blade tip and baffle liner inletpiston is through appropriate design, avoided the sound interference phenomenon of the tail of water conservancy diversion grid stator to the impeller movable vane, broken inlet large scale eddy current is to the yardstick less than impeller leaf road, reduce grid and baffle liner and gone out opening vortex causes airflow breakaway at the blade backpressure face degree, when air-flow process water conservancy diversion grid, be forced to obtain the small angle effect of prewhirling simultaneously, circumferentially air inlet is even, effectively avoided the rotating stall of impeller and baffle liner, make air-out uniform and stable, reduce at noise, in the time of tone quality improving, raising by a small margin air quantity, promote fan performance and reliability.
Description of drawings
The accompanying drawing that constitutes a part of the present utility model is used to provide further understanding of the present utility model, and illustrative examples of the present utility model and explanation thereof are used to explain the utility model, does not constitute improper qualification of the present utility model.In the accompanying drawings:
Fig. 1 is the plan view of prior art;
Fig. 2 is the sectional view of prior art;
Fig. 3 is the plan view according to first embodiment of centrifugal blower of the present utility model;
Fig. 4 is the sectional view according to first embodiment of centrifugal blower of the present utility model;
Fig. 5 is one of stereogram according to centrifugal blower of the present utility model;
Fig. 6 is the decomposing schematic representation according to centrifugal blower of the present utility model;
Fig. 7 is according to the water conservancy diversion grid of centrifugal blower of the present utility model and the plan view of baffle liner;
Fig. 8 is for to look the sectional structure schematic representation according to the water conservancy diversion grid of centrifugal blower of the present utility model and the left side of baffle liner;
Fig. 9 is according to the water conservancy diversion grid of centrifugal blower of the present utility model and the plan view of baffle liner;
Figure 10 is the sectional view size schematic representation according to centrifugal blower of the present utility model;
Figure 11 is the size schematic representation under the assembly condition of water conservancy diversion grid, baffle liner and wind wheel, spiral case according to centrifugal blower of the present utility model;
Figure 12 is the plan view according to second embodiment of centrifugal blower of the present utility model;
Figure 13 looks the sectional structure schematic representation according to second embodiment's of a centrifugal blower of the present utility model left side;
Figure 14 is the plan view according to second embodiment of centrifugal blower of the present utility model;
Figure 15 is the plan view according to the 3rd embodiment of centrifugal blower of the present utility model;
Figure 16 looks the sectional structure schematic representation according to the 3rd embodiment's of a centrifugal blower of the present utility model left side;
Figure 17 is the plan view according to the 3rd embodiment of centrifugal blower of the present utility model;
Figure 18 is the A sound level comparison diagram according to the centrifugal blower of centrifugal blower of the present utility model and prior art;
Figure 19 is the air quantity comparison diagram according to the centrifugal blower of centrifugal blower of the present utility model and prior art;
Figure 20 is the air quantity correlation data form according to the centrifugal blower of centrifugal blower of the present utility model and prior art; And
Figure 21 is the noise correlation data form according to the centrifugal blower of centrifugal blower of the present utility model and prior art.
Embodiment
Hereinafter will describe the utility model with reference to the accompanying drawings and in conjunction with the embodiments in detail.Need to prove that under the situation of not conflicting, embodiment and the feature among the embodiment among the application can make up mutually.
As shown in Figure 3 and Figure 4, the centrifugal blower according to first embodiment of the present utility model comprises: spiral case 2 has suction port 21; Draught fan impeller 1 is arranged in the spiral case 2, utilizes centrifugal force that air is done work; And baffle liner 3, be arranged on the suction port 21 of spiral case 2, be used for the suction port water conservancy diversion, this centrifugal blower also comprises water conservancy diversion grid 4, is arranged on baffle liner 3 outsides, has evenly the circumferentially effect of charge air flow.Particularly, this centrifugal blower is a kind of forward multiple wing centrifugal blower fan, and draught fan impeller 1 is the forward multiple wing impeller, and the gas of impeller will be concentrated, water conservancy diversion and spiral case 2 will leave, and changes the part kinetic energy diffusion of gas into static pressure.Baffle liner 3 can be regulated the air-flow at spiral case 2 suction ports 21 places, and the inlet vortex frequency is increased, thereby strengthens the retarding action to the rotation speed per hour.And the water conservancy diversion grid 4 with evenly circumferential charge air flow effect is arranged on the baffle liner 3, and the use that matches with baffle liner 3 can effectively improve the circumferential uniformity of baffle liner exit flow, make that centrifugal blower turnover wind is uniform and stable, reduce fan noise, improve tonequality, improve Performance And Reliability.
In a unshowned embodiment, water conservancy diversion grid 4 is a monolithic construction, has a plurality of equally distributed reticular structures, and feasible air-flow by it can be divided into a plurality of uniform circumferential flow air-flows before entering spiral case 2, baffle liner 3 is formed optimization, avoid impeller to enter rotating stall.
In the present embodiment, water conservancy diversion grid 4 is a fabricated structure, the skeleton 42 that comprises water conservancy diversion leaf 41 and connect each water conservancy diversion leaf 41.A plurality of water conservancy diversion leaves 41 and skeleton 42 combinations form various water conservancy diversion grids 4 with different-effect.Because the water conservancy diversion leaf can process separately, connect by skeleton 42 at last, so more alternative have on the structure, make water conservancy diversion grid 4 also have stronger adaptability.
As shown in Figure 3 and Figure 4, water conservancy diversion grid 4 is arranged on the baffle liner 3 by skeleton 42, has the gap between the opposing end surface of water conservancy diversion grid 4 and baffle liner 3.The reasonable setting in the gap between the inletpiston of water conservancy diversion grid 4 and baffle liner 3, the tail of water conservancy diversion leaf 41 that can effectively avoid water conservancy diversion grid 4 is to the sound interference phenomenon of impeller movable vane, broken inlet large scale eddy current reduces grid and baffle liner and goes out opening vortex causes airflow breakaway at the blade backpressure face degree to the yardstick less than impeller leaf road.
Fig. 5 is the perspective view of the centrifugal blower of present embodiment, Fig. 6 is the exploded view of the centrifugal blower of present embodiment, as can be seen from Figure, water conservancy diversion grid 4 is arranged on the baffle liner 3 by skeleton 42 earlier, and form one with baffle liner 3, be arranged on intake grill 21 places of spiral case 2 then by baffle liner 3, when centrifugal blower is worked, water conservancy diversion grid 4 cooperates with baffle liner 3, baffle liner 3 is formed optimize, and can adjust the flow condition that enters the air-flow in the spiral case 2, reduce the generation of air-flow lift-off group, reduce the phenomenon of air flow inlet place velocity flow profile inequality, thereby reduce the generation that unsteady state is flowed, avoid draught fan impeller 1 to enter the rotating stall state.
As Fig. 7, Fig. 8 and shown in Figure 9, for according to the water conservancy diversion grid 4 of centrifugal blower of the present utility model and first embodiment's of baffle liner 3 structural representation, as can be seen from the figure, the water conservancy diversion leaf 41 of present embodiment is a plurality of ring shape water conservancy diversion leaves that are the concentric circle arrangement, and these ring shape water conservancy diversion leaves link together by the skeleton 42 that is arranged between them.In the present embodiment, skeleton 42 links together a plurality of ring shape water conservancy diversion leaves, and is fixedly installed on the baffle liner 3 for two straight plate shape skeletons that square crossing is provided with.Preferably, between the internal diameter of the maximum diameter of ring shape water conservancy diversion leaf and baffle liner 3, has the gap.In the present embodiment, each water conservancy diversion leaf 41 all is positioned on the same plane, and the mounting plane of water conservancy diversion leaf 41 is parallel to the inletpiston of baffle liner 3, water conservancy diversion leaf 41 and baffle liner 3 concentric settings.
Following mask body is illustrated first embodiment's the water conservancy diversion grid 4 and the structure and the setting of baffle liner 3.
From Figure 10 and Figure 11 as can be seen, water conservancy diversion grid 4 has feature height H apart from suction port baffle liner 3, make that entering air-flow can enter from the edge of water conservancy diversion grid 4 in the baffle liner 3, the air-flow that enters is formed appropriateness impact, change the flowing angle of the air-flow in the spiral case 2; Water conservancy diversion grid 4, makes the air-flow that enters by water conservancy diversion grid 4 can not form sound to the moving plate of draught fan impeller 1 and interferes apart from T apart from draught fan impeller 1 blade tip; Water conservancy diversion leaf 41 cross sections have the feature height D of impeller shaft to direction, have spacing L between the water conservancy diversion leaf 41 of arrangement, can adjust the size of the air mass that enters air-flow, avoid forming big vortex; Baffle liner 3 and water conservancy diversion grid 4 play the evenly circumferentially effect of charge air flow jointly, air-flow are entered produce small angle before the impeller 1 to prewhirl, and reduce the air-flow angle of attack and eddy current yardstick, avoid impeller 1 to be in the rotating stall state.
As shown in figure 11, ring shape water conservancy diversion leaf cross section can be rectangle, wing shapes or other shape that is made of various camber lines, straight line and curve, in order to avoid the sound interference effect of guide vane tail as far as possible to rotary blade, water conservancy diversion grid 4 apart from impeller 1 blade tip apart from 2D≤T≤10D, gap A scope is ± L between water conservancy diversion grid 4 maximum diameters and baffle liner 3 internal diameters.
Water conservancy diversion grid 4 each concentric circle cast water conservancy diversion leaf depth of section D on the baffle liner 3 highly can be similar and different, and the spacing L between the water conservancy diversion leaf that concentric circle is arranged can be equidistantly or not equidistant; Water conservancy diversion blade gap distance L and D have following relation: L=(0.5~1.5) D.
In the present embodiment, as preferably, the cross section of ring shape water conservancy diversion leaf is wing shapes that are small at both ends and big in the middle, and the depth of section of each water conservancy diversion leaf is identical, and the spacing between each water conservancy diversion leaf is also identical.For example, the spacing L=12mm between every adjacent two water conservancy diversion leaves of forward multiple wing centrifugal impeller, water conservancy diversion leaf depth of section D=12mm, gap A=2mm between maximum outside diameter and the baffle liner outlet internal diameter, water conservancy diversion leaf distance from bottom baffle liner inlet end face H=2mm.
First embodiment according to centrifugal blower of the present utility model, water conservancy diversion grid 4 cooperatively interacts with baffle liner 3, appropriate design, effectively increased the gas flow modulation amount of baffle liner 3, reduce the generation of large scale eddy current, made that the circumferential static pressure distribution of draught fan impeller 1 inside is even, avoided the angle of attack disorder of inlet air flow, reduced the influence of stall disturbance gradually, thereby avoided the sound interference phenomenon of the tail of water conservancy diversion grid stator the impeller movable vane; Inlet large scale eddy current is crushed to yardstick less than impeller leaf road, has reduced grid and baffle liner and gone out opening vortex causes airflow breakaway at the blade backpressure face degree; Be forced to obtain the small angle effect of prewhirling simultaneously when air-flow process water conservancy diversion grid, circumferentially air inlet is even, has effectively avoided the rotating stall of impeller and baffle liner, make air-out uniform and stable, reduce at noise, in the tone quality improving, raising by a small margin air quantity, promote fan performance and reliability.
Shown in Figure 12,13 and 14, be second embodiment according to centrifugal blower of the present utility model, in this embodiment, being provided with between baffle liner 3 and the water conservancy diversion grid 4 concerns different with first embodiment, water conservancy diversion grid 4 also can part or the mounting plane of the whole relative baffle liner 3 of water conservancy diversion leaf 41 mounting planes be obliquely installed water conservancy diversion grid and baffle liner plane relation in a certain angle.Preferably, the opening that the mounting plane of the mounting plane of water conservancy diversion grid 4 and baffle liner 3 forms can reduce the air intake resistance towards the Way out of spiral case 2, improves the inlet air conditions in impeller outlet zone.Water conservancy diversion grid 4 mounting planes and baffle liner 3 inletpistons in the present embodiment are an angle theta, and the scope of θ is 0 °~30 °.
As Figure 15, Figure 16 and shown in Figure 17, be the 3rd embodiment according to centrifugal blower of the present utility model, in this embodiment, being provided with between baffle liner 3 and the water conservancy diversion grid 4 concerns different with first, second embodiment, and the part of water conservancy diversion grid 4 or whole water conservancy diversion leaf 41 are along impeller axial projection or depression.As can be seen from the figure, the water conservancy diversion grid 4 in the present embodiment from the outer ring to the inner ring along the impeller axial direction gradually to outer lug, form with the impeller shaft be the center in the middle of high around low structure.
In a unshowned embodiment, each water conservancy diversion leaf 41 of water conservancy diversion grid 4 also can carry out decentraction to be arranged, and its structure arranged and pattern are unrestricted, are advisable can realize the axial uniformity of baffle liner exit flow.
The water conservancy diversion leaf 41 of water conservancy diversion grid 4 also can be made of some straight lines or curve shape, and each water conservancy diversion leaf 41 is shapes such as rectangle or rhombus, and a plurality of rectangles or a plurality of rhombus water conservancy diversion leaf and skeleton 42 form fenestral fabric.The water conservancy diversion leaf also can become an assembly separately, and linking together by certain structure with baffle liner 3 or spiral case 2 constitutes the air intake rectifier structure.
As Figure 18 and shown in Figure 20, as can be seen from Figure, use first embodiment's of the present utility model centrifugal blower, compared with prior art, aspect air quantity entered, when being in superelevation shelves state, the air quantity of circle grid increased 20m 3/ h, the air quantity of lined grid increases 25m 3/ h.Every data among comprehensive Figure 20 as can be known, the effect of lined grid is better, arbitrary grade of rotating speed all has increase, is significantly improved for air output.
Figure 19, Figure 20 and Figure 21 show air quantity comparison diagram, air quantity correlation data table and the noise correlation data table according to the centrifugal blower of first embodiment's of the present utility model centrifugal blower and prior art.Compared with prior art, aspect noise control, by can obviously finding out among the figure, used the centrifugal blower of round grid, the noise under each grade rotating speed has all reduced 1dB (A), therefore, according to water conservancy diversion grid of the present utility model, good result is arranged at noise controlling party mask.
According to air conditioner of the present utility model, comprise above-mentioned centrifugal blower.
From above description, as can be seen, the utility model the above embodiments have realized following technique effect: centrifugal blower comprises the water conservancy diversion grid, can effectively improve the circumferential uniformity of baffle liner exit flow, make that centrifugal blower turnover wind is uniform and stable, reduce fan noise, improve tonequality, improve Performance And Reliability.The distance of water conservancy diversion grid and blade tip and baffle liner inletpiston is through appropriate design, avoided the sound interference phenomenon of the tail of water conservancy diversion grid stator to the impeller movable vane, broken inlet large scale eddy current is to the yardstick less than impeller leaf road, reduce grid and baffle liner and gone out opening vortex causes airflow breakaway at the blade backpressure face degree, when air-flow process water conservancy diversion grid, be forced to obtain the small angle effect of prewhirling simultaneously, circumferentially air inlet is even, effectively avoided the rotating stall of impeller and baffle liner, make air-out uniform and stable, reduce at noise, in the time of tone quality improving, raising by a small margin air quantity, promote fan performance and reliability.
The above is a preferred embodiment of the present utility model only, is not limited to the utility model, and for a person skilled in the art, the utility model can have various changes and variation.All within spirit of the present utility model and principle, any modification of being done, be equal to replacement, improvement etc., all should be included within the protection domain of the present utility model.

Claims (13)

1. centrifugal blower comprises:
Spiral case (2) has suction port (21);
Draught fan impeller (1) is arranged in the described spiral case (2); And
Baffle liner (3) is arranged on the suction port (21) of described spiral case (2), is used for the suction port water conservancy diversion, it is characterized in that, also comprises:
Water conservancy diversion grid (4) is arranged on described baffle liner (3) outside, has evenly the circumferentially structure of charge air flow.
2. centrifugal blower according to claim 1 is characterized in that, described water conservancy diversion grid (4) comprising: water conservancy diversion leaf (41) and the skeleton (42) that connects each described water conservancy diversion leaf (41).
3. centrifugal blower according to claim 2 is characterized in that, described water conservancy diversion grid (4) is arranged on the described baffle liner (3) by described skeleton (42), and has the gap between the opposing end surface of described water conservancy diversion grid (4) and described baffle liner (3).
4. centrifugal blower according to claim 3 is characterized in that, described water conservancy diversion leaf (41) is a plurality of ring shape water conservancy diversion leaves that are the concentric circle arrangement.
5. centrifugal blower according to claim 4 is characterized in that, the maximum diameter of described ring shape water conservancy diversion leaf has the gap less than the internal diameter of described baffle liner (3) between the internal diameter of the maximum diameter of described ring shape water conservancy diversion leaf and described baffle liner (3).
6. centrifugal blower according to claim 4 is characterized in that, the cross section of described each ring shape water conservancy diversion leaf is rectangle or wing shapes.
7. centrifugal blower according to claim 4 is characterized in that, the spacing between described each ring shape water conservancy diversion leaf is identical.
8. centrifugal blower according to claim 4 is characterized in that, the depth of section of described each ring shape water conservancy diversion leaf is identical.
9. according to each described centrifugal blower in the claim 2 to 8, it is characterized in that described water conservancy diversion leaf (41) part or integrally along impeller axial projection or depression.
10. according to each described centrifugal blower in the claim 1 to 8, it is characterized in that the mounting plane of the described relatively baffle liner of the mounting plane of described water conservancy diversion grid (4) (3) is obliquely installed.
11. centrifugal blower according to claim 10 is characterized in that, the opening that the mounting plane of the mounting plane of described water conservancy diversion grid (4) and described baffle liner (3) forms is towards the Way out of described spiral case (2).
12. centrifugal blower according to claim 3 is characterized in that, described water conservancy diversion grid (4) is the fenestral fabric of a plurality of rectangles or a plurality of rhombus water conservancy diversion leaf and described skeleton (42) formation.
13. an air conditioner is characterized in that, comprises each described centrifugal blower in the claim 1 to 12.
CN2011200074401U 2011-01-10 2011-01-10 Centrifugal fan and air conditioner comprising same Expired - Lifetime CN201916254U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102588347A (en) * 2011-01-10 2012-07-18 珠海格力电器股份有限公司 Centrifugal fan and air conditioner comprising same
CN103062877A (en) * 2011-10-18 2013-04-24 珠海格力电器股份有限公司 Air-discharge assembly of split-and-floor-standing type air-conditioner and split-and-floor-standing type air-conditioner
CN103900254A (en) * 2012-12-25 2014-07-02 福州斯狄渢电热水器有限公司 Air flue assembly
CN106382259A (en) * 2016-10-20 2017-02-08 宁波方太厨具有限公司 Novel collector and range hood applying collector

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102588347A (en) * 2011-01-10 2012-07-18 珠海格力电器股份有限公司 Centrifugal fan and air conditioner comprising same
CN103062877A (en) * 2011-10-18 2013-04-24 珠海格力电器股份有限公司 Air-discharge assembly of split-and-floor-standing type air-conditioner and split-and-floor-standing type air-conditioner
CN103062877B (en) * 2011-10-18 2015-07-15 珠海格力电器股份有限公司 Air-discharge assembly of split-and-floor-standing type air-conditioner and split-and-floor-standing type air-conditioner
CN103900254A (en) * 2012-12-25 2014-07-02 福州斯狄渢电热水器有限公司 Air flue assembly
CN106382259A (en) * 2016-10-20 2017-02-08 宁波方太厨具有限公司 Novel collector and range hood applying collector
CN106382259B (en) * 2016-10-20 2019-05-24 宁波方太厨具有限公司 A kind of range hood

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