CN104654825A - Flow guide device for air-cooled unit with Delta-shaped passage spaces - Google Patents
Flow guide device for air-cooled unit with Delta-shaped passage spaces Download PDFInfo
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- CN104654825A CN104654825A CN201510027998.9A CN201510027998A CN104654825A CN 104654825 A CN104654825 A CN 104654825A CN 201510027998 A CN201510027998 A CN 201510027998A CN 104654825 A CN104654825 A CN 104654825A
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Abstract
The invention discloses a flow guide device for an air-cooled unit with a Delta-shaped passage spaces. The air-cooled unit comprises a steam distribution pipe, downwards-inclined air-cooled finned tube bundles connected with the two sides of the steam distribution pipe respectively, condensate water pipes connected with the lower ends of the air-cooled finned tube bundles and an air-cooled fan arranged below the air-cooled finned tube bundles, wherein the air-cooled fan is fixedly arranged below the air-cooled finned tube bundles through an air-cooled fan frame; the steam distribution pipe, the air-cooled finned tube bundles, the condensate water pipes and the air-cooled fan enclose the Delta-shaped passage space. The flow guide device comprises a top flow guide mechanism arranged on the middle part of the Delta-shaped passage space and a bottom flow guide mechanism arranged at the bottom of the Delta-shaped passage space, wherein e top end of the top flow guide mechanism is at a certain distance far away from the bottom end of the steam distribution pipe; the bottom end of the top flow guide mechanism is connected with the air-cooled fan frame; the top flow guide mechanism and the bottom flow guide mechanism are integrated or independent. According to the scheme, cooling effects of the air-cooled unit are improved, and the cooling performance of a direct air-cooled system is improved.
Description
The divisional application that the application is the applying date is on June 25th, 2013, application number is 201310256002.2, denomination of invention is the patent application of " guiding device of air cooling unit ".
Technical field
The invention belongs to power station air cooling technical field, particularly a kind of guiding device with the air cooling unit of △ shape channel space.
Background technology
In the area of rich coal lack of water, in order to increase economic efficiency, thermal power generation unit mainly adopts Direct Air-Cooling Technology.The direct air cooling system of this technology is adopted to comprise multiple air cooling unit, any one air cooling unit is " A " type frame structure, it comprises: the air cooled fin tube bundle of the downward-sloping layout be connected respectively with steam-distributing pipe both sides, condensate pipe is connected with in the lower end of air cooled fin tube bundle, the below of air cooled fin tube bundle is provided with air cooling blower fan, and air cooling blower fan is fixed on the below of air cooled fin tube bundle by air cooling blower fan framework.In this air cooling unit, the steam coming from steam turbine enters air cooled fin tube bundle by steam-distributing pipe, makes steam be cooled to condensate water when being flowed through air cooled fin tube bundle by the air that air cooling blower fan sucks, and condensate water flows into condensate pipe.
Because air cooling unit is " A " type frame structure, in three angles of the triangle △ channel space that it surrounds, the resistance that cooling-air flows through tuberculated pipe (being again air cooled fin tube bundle) must be greater than other place, thus make cooling-air form eddy current at this place, the heat-transfer effect of this place's tuberculated pipe is caused to worsen, also will increase fan outlet resistance simultaneously, and cause power consumption to increase.Therefore, existing " A " type frame structure non-optimal, air flow resistance is along the skewness in tuberculated pipe direction, and cause tuberculated pipe part utilization rate not high, thus cooling effect is poor, the performance of direct air cooling system is low.
Summary of the invention
In order to solve the problem of prior art, embodiments provide a kind of guiding device with the air cooling unit of △ shape channel space.Described air cooling unit comprises: steam-distributing pipe, the air cooled fin tube bundle of downward-sloping layout is connected respectively with the both sides of described steam-distributing pipe, the condensate pipe be connected with the lower end of described air cooled fin tube bundle, the air cooling blower fan arranged in the below of described air cooled fin tube bundle, described air cooling blower fan is fixed on the below of described air cooled fin tube bundle by air cooling blower fan framework, described steam-distributing pipe, described air cooled fin tube bundle, described condensate pipe and described air cooling blower fan surround △ shape channel space, described guiding device comprises: be arranged at the top deflector in the middle part of described △ shape channel space, described steam-distributing pipe bottom is left on the top of described top deflector certain distance, the bottom of described top deflector is connected with described air cooling blower fan framework, and the bottom deflector be arranged at bottom described △ shape channel space, described bottom deflector is provided with the through hole corresponding with described air cooling blower fan, described bottom deflector towards described air cooled fin tube bundle lower end two guide end aspect ratios described in air cooled fin tube bundle lower end height low, described bottom deflector is connected with described air cooling blower fan framework, wherein, described top deflector and described bottom deflector are integrated or independently.
In guiding device as above, preferably, described top deflector comprises:
Symmetrically arranged first baffle upper plate of blower fan axis along described air cooling blower fan and the second baffle upper plate; Wherein, the top of described first baffle upper plate is connected with the top of described second baffle upper plate; The bottom of described first baffle upper plate is connected with described air cooling blower fan framework respectively with the bottom of described second baffle upper plate; The middle part of described first baffle upper plate is to the air cooled fin tube beam bending corresponding with described first baffle upper plate, and the middle part of described second baffle upper plate is to the air cooled fin tube beam bending corresponding with described second baffle upper plate.
In guiding device as above, preferably, described certain distance is 0.5 ~ 1m.
In guiding device as above, preferably, in described first baffle upper plate and described second baffle upper plate, arbitrary baffle upper plate is dull and stereotyped and at least one in arc.
In guiding device as above, preferably, described baffle upper plate is combination that is dull and stereotyped and arc; Wherein, the baffle upper plate top on described baffle upper plate top is comprised for dull and stereotyped; The baffle upper plate bottom comprising described baffle upper plate bottom is arc.
In guiding device as above, preferably, the angle of the flat board of described first baffle upper plate and the flat board of described second baffle upper plate and described blower fan axis is 20 ~ 30 degree.
In guiding device as above, preferably, described bottom deflector comprises: symmetrically arranged first chin spoiler of the blower fan axis along described air cooling blower fan and the second chin spoiler; Wherein, the stiff end of described first chin spoiler is connected with described air cooling blower fan framework; The stiff end of described second chin spoiler is connected with described air cooling blower fan framework.
In guiding device as above, preferably, described first chin spoiler and described second chin spoiler are flat board.
In guiding device as above, preferably, the angle that described first chin spoiler and described second chin spoiler relative level direction tilt is 10 ~ 15 degree.
Technical scheme provided by the invention arranges above-mentioned guiding device by the channel space that surrounds at air cooling unit, water conservancy diversion is carried out to the cooling-air in space, avoid angle in space and occur eddy current, improve the cooling effect of air cooling unit, improve the cooling performance of direct air cooling system.
Accompanying drawing explanation
Fig. 1 is a kind of front view with the guiding device of the air cooling unit of △ shape channel space that the embodiment of the present invention provides;
Fig. 2 is a kind of perspective view with the guiding device of the air cooling unit of △ shape channel space that the embodiment of the present invention provides;
Fig. 3 is the structural representation of air cooled fin tube bundle of the present invention;
Wherein, in figure, symbol description is as follows:
2 steam-distributing pipes; 3 air cooled fin tube bundles; 31 pipes; 32 fins;
4 condensate pipes; 5 air cooling blower fans; 51 motors; 52 air cooling blower fan frameworks;
53 through holes; 531 first sub-through holes; 532 second sub-through holes;
11 top deflectors; 110 first baffle upper plates; 111 second baffle upper plates;
Deflector bottom 12; 120 first chin spoilers; 121 second chin spoilers;
1200,1210 guide ends; 1201,1211 stiff ends;
1202, chin spoiler before 1212; 1203,1213 rear chin spoilers;
H distance height; α slanted angle; β drift angle angle.
Detailed description of the invention
For making the object, technical solutions and advantages of the present invention clearly, below in conjunction with accompanying drawing, embodiment of the present invention is described further in detail.
In many coals water-deficient area, thermal power generation unit mainly adopts Direct Air-Cooling Technology.The direct air cooling system of this technology is adopted to comprise multiple air cooling unit, any one air cooling unit is " A " type frame structure, it comprises: (each tube bank 3 is made up of the many pipes 31 with fin 32 on it the air cooled fin tube bundle 3 of the downward-sloping layout be connected respectively with steam-distributing pipe 2 both sides, the configuration relation of fin 32 and pipe 31 as shown in Figure 3), condensate pipe 4 is connected with in the lower end of air cooled fin tube bundle 3, the below of air cooled fin tube bundle 3 is provided with air cooling blower fan 5, air cooling blower fan 5 is fixed on the below (being provided with the opening installing air cooling blower fan 5 on the bottom surface of air cooling blower fan framework 52) of air cooled fin tube bundle 3 by air cooling blower fan framework 52, driven by motor 51.Steam-distributing pipe 2, air cooled fin tube bundle 3, condensate pipe 4 and air cooling blower fan 5 surround △ shape channel space.
Shown in seeing figures.1.and.2, embodiment of the present invention provides a kind of guiding device of air cooling unit, and this guiding device comprises: top deflector.It is arranged in the middle part of △ shape channel space, the tip height of top deflector is corresponding with steam-distributing pipe bottom height, in practice, the top of top deflector is not connected with steam-distributing pipe with air cooled fin tube Shu Shangduan, the tip height of top deflector is lower than steam-distributing pipe bottom height, to make space, drift angle place narrowless, cooling-air smoothness flows through drift angle place.The bottom of top deflector is connected with air cooling blower fan framework, to fix this top deflector.Cooling-air is sucked by air cooling blower fan thus enters in this space, rises, can arrive space, drift angle place, thus make this drift angle angle not occur eddy current, effectively can play cooling effect along top deflector.
In guiding device as above, top deflector 11 comprises: the first baffle upper plate 110 and the second baffle upper plate 111.First baffle upper plate 110 and the second baffle upper plate 111 are symmetrical arranged along the blower fan axis of air cooling blower fan 5, wherein, the top of the first baffle upper plate 110 is connected with the top of the second baffle upper plate 111, the bottom of the first baffle upper plate 110 is connected with air cooling blower fan framework 52 respectively with the bottom of the second baffle upper plate 111, bend to the air cooled fin tube bundle 3 corresponding with the first baffle upper plate 110 in the middle part of first baffle upper plate 110, air cooled fin tube bundle 3 to corresponding with the second baffle upper plate 111 in the middle part of second baffle upper plate 111 is bending (in other words, with the blower fan axis of air cooling blower fan (being also the axis of motor 51 in Fig. 1) for benchmark, the first baffle upper plate and left air cooled fin tube bundle is provided with in the left side of blower fan axis, the second baffle upper plate and right air cooled fin tube bundle is provided with on the right side of blower fan axis, the air cooled fin tube bundle corresponding with the first baffle upper plate is left air cooled fin tube bundle, the air cooled fin tube bundle corresponding with the second baffle upper plate is right air cooled fin tube bundle).
In guiding device as above, eddy current is there is not in order to make space angle place, and drift angle place, space is narrowless, the distance height H of the first baffle upper plate 110 top and distance steam-distributing pipe 3 bottom, the second junction, baffle upper plate 111 top is preferably 0.5 ~ 1m, can be such as the arbitrary heights such as 0.6m, 0.7m, 0.8m, 0.9m.
In guiding device as above, in the first baffle upper plate 110 and the second baffle upper plate 111, arbitrary baffle upper plate is dull and stereotyped and at least one in arc, in practice, first baffle upper plate 110 and the second baffle upper plate 111 can be dull and stereotyped, such as connect to form baffle upper plate by two pieces of dull and stereotyped head and the tail, its junction is to the air cooled fin tube beam bending corresponding with this baffle upper plate, it can also be arc, the middle part of arc is to the air cooled fin tube beam bending corresponding with this baffle upper plate, be preferably combination (i.e. structure shown in Fig. 1) that is dull and stereotyped and arc, such as dull and stereotyped and arc head and the tail connect to form baffle upper plate, the top of baffle upper plate is dull and stereotyped, the bottom of baffle upper plate is arc, the middle part of baffle upper plate is respective regions that is dull and stereotyped and arc junction, this region bends to the air cooled fin tube bundle 3 corresponding with this baffle upper plate.
In order to the drift angle place making cooling-air flow through space smoothly, the drift angle angle β of the baffle upper plate top of the first baffle upper plate 110 and the baffle upper plate top of the second baffle upper plate 111 and blower fan axis (being also the axis of motor 51 in Fig. 1) is preferably 20 ~ 30 °, such as, can be any one angle in 22 °, 24 °, 26 °, 28 °.
In order to avoid the space bottom (junction of condensate pipe 4 and air cooling blower fan framework 52, especially air cooled fin tube bundle 3 lower end) there is eddy current, also comprise at guiding device as above: be arranged at the bottom deflector 12 bottom △ shape channel space, it is provided with the through hole 53 corresponding with air cooling blower fan 5 (or installing the opening of air cooling blower fan 5), this through hole 53 makes the cooling-air by air cooling blower fan 5 sucks pass from it, enters in △ shape channel space that air cooling unit surrounds.Bottom deflector 12 is corresponding with air cooled fin tube bundle lower end height towards two guide end 1200,1210 height of air cooled fin tube bundle 3 lower end, in practice, two guide ends 1200,1210 height lower than air cooled fin tube bundle 3 lower end height, with the lower end making cooling-air can flow through air cooled fin tube bundle 3.Bottom deflector 12 is connected with air cooling blower fan framework 52.Because two guide ends 1200,1210 are towards air cooled fin tube bundle 3 lower end, bottom deflector 12 is by being connected with air cooling blower fan framework 52 in the middle part of the deflector of bottom, thus solid bottom deflector 12.
In guiding device as above, bottom deflector 12 comprises: the first chin spoiler 120 and the second chin spoiler 121, and its blower fan axis along air cooling blower fan 5 (being also the axis of motor 51 or the axis of air cooling blower fan in Fig. 1) is symmetrical arranged; Wherein, the stiff end 1201 of the first chin spoiler 120 is connected with air cooling blower fan framework 52; The stiff end 1211 of the second chin spoiler 121 is connected with air cooling blower fan framework 52.On the left of blower fan axis, first chin spoiler is provided with the first sub-through hole 531 corresponding with opening, on the right side of blower fan axis, second chin spoiler 121 is provided with the second sub-through hole 532 corresponding with opening, and (in other words, with blower fan axis for benchmark, the first chin spoiler is arranged on the left of blower fan axis, second chin spoiler is arranged on the right side of blower fan axis, through hole is divided into left through hole and right through hole, the first sub-through hole and left through hole, the second sub-through hole and right through hole).
In practice, in first chin spoiler and the second chin spoiler, arbitrary chin spoiler is as a whole, convenient in order to install, arbitrary chin spoiler can be divided into two parts along the center line of guide direction, namely the first chin spoiler is divided into front chin spoiler 1202 and rear chin spoiler 1203, second chin spoiler to be divided into front chin spoiler 1212 and rear chin spoiler 1213.
Simple in order to manufacture, in the first chin spoiler and the second chin spoiler, arbitrary chin spoiler be dull and stereotyped or arc, is preferably flat board.
In order to guarantee that the base angle place (junction of condensate pipe 4 and air cooling blower fan framework 52) in space angle does not occur eddy current further, the angle of the first chin spoiler and the second chin spoiler relative level direction slanted angle α is preferably 10 ~ 15 degree.
It should be noted that, top deflector and bottom deflector can be independently parts, arrange installation respectively, and can also be the parts of one, whole installation be installed.
In sum, beneficial effect of the present invention is as follows:
Above-mentioned guiding device is set by the channel space that surrounds at air cooling unit, water conservancy diversion is carried out to the cooling-air in space, avoids angle in space and occur eddy current, improve the cooling effect of air cooling unit, improve the cooling performance of direct air cooling system.
These are only preferred embodiment of the present invention, not in order to limit the present invention, within the spirit and principles in the present invention all, any amendment done, equivalent replacement, improvement etc., all should be included within protection scope of the present invention.
Claims (9)
1. one kind has the guiding device of the air cooling unit of △ shape channel space, described air cooling unit comprises: steam-distributing pipe, the air cooled fin tube bundle of downward-sloping layout is connected respectively with the both sides of described steam-distributing pipe, the condensate pipe be connected with the lower end of described air cooled fin tube bundle, the air cooling blower fan arranged in the below of described air cooled fin tube bundle, described air cooling blower fan is fixed on the below of described air cooled fin tube bundle by air cooling blower fan framework, described steam-distributing pipe, described air cooled fin tube bundle, described condensate pipe and described air cooling blower fan surround △ shape channel space, it is characterized in that, described guiding device comprises:
Be arranged at the top deflector in the middle part of described △ shape channel space, there is certain distance the bottom that described steam-distributing pipe is left on the top of described top deflector, and the bottom of described top deflector is connected with described air cooling blower fan framework; And
Be arranged at the bottom deflector bottom described △ shape channel space, described bottom deflector is provided with the through hole corresponding with described air cooling blower fan, described bottom deflector towards described air cooled fin tube bundle lower end two guide end aspect ratios described in air cooled fin tube bundle lower end height low, described bottom deflector is connected with described air cooling blower fan framework;
Wherein, described top deflector and described bottom deflector are integrated or independently.
2. guiding device according to claim 1, is characterized in that, described top deflector comprises:
Symmetrically arranged first baffle upper plate of blower fan axis along described air cooling blower fan and the second baffle upper plate;
Wherein, the top of described first baffle upper plate is connected with the top of described second baffle upper plate;
The bottom of described first baffle upper plate is connected with described air cooling blower fan framework respectively with the bottom of described second baffle upper plate;
The middle part of described first baffle upper plate is to the air cooled fin tube beam bending corresponding with described first baffle upper plate, and the middle part of described second baffle upper plate is to the air cooled fin tube beam bending corresponding with described second baffle upper plate.
3. guiding device according to claim 2, is characterized in that,
Described certain distance is 0.5 ~ 1m.
4. guiding device according to claim 2, is characterized in that,
In described first baffle upper plate and described second baffle upper plate, arbitrary baffle upper plate is dull and stereotyped and at least one in arc.
5. guiding device according to claim 4, is characterized in that,
Described baffle upper plate is combination that is dull and stereotyped and arc;
Wherein, the baffle upper plate top on described baffle upper plate top is comprised for dull and stereotyped;
The baffle upper plate bottom comprising described baffle upper plate bottom is arc.
6. guiding device according to claim 5, is characterized in that,
The angle of the flat board of described first baffle upper plate and the flat board of described second baffle upper plate and described blower fan axis is 20 ~ 30 degree.
7. guiding device according to claim 1, is characterized in that, described bottom deflector comprises:
Symmetrically arranged first chin spoiler of blower fan axis along described air cooling blower fan and the second chin spoiler;
Wherein, the stiff end of described first chin spoiler is connected with described air cooling blower fan framework;
The stiff end of described second chin spoiler is connected with described air cooling blower fan framework.
8. guiding device according to claim 7, is characterized in that, described first chin spoiler and described second chin spoiler are flat board.
9. guiding device according to claim 8, is characterized in that, the angle that described first chin spoiler and described second chin spoiler relative level direction tilt is 10 ~ 15 degree.
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CN201510027998.9A CN104654825B (en) | 2013-06-25 | 2013-06-25 | The guiding device of the air cooling unit with △ shape channel spaces |
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CN201310256002.2A CN103335535B (en) | 2013-06-25 | 2013-06-25 | Flow guide device for air-cooling unit |
CN201510027998.9A CN104654825B (en) | 2013-06-25 | 2013-06-25 | The guiding device of the air cooling unit with △ shape channel spaces |
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CN201310256002.2A Division CN103335535B (en) | 2013-06-25 | 2013-06-25 | Flow guide device for air-cooling unit |
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CN104654825B CN104654825B (en) | 2017-06-23 |
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Cited By (3)
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CN105758249A (en) * | 2016-04-18 | 2016-07-13 | 河北工程技术高等专科学校 | Cascade-type cooling air diversion device of direct air cooling unit |
EP3786559A1 (en) * | 2019-08-30 | 2021-03-03 | Ovh | Heat exchanger assembly |
EP3786560A1 (en) * | 2019-08-30 | 2021-03-03 | Ovh | Heat exchanger assembly |
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CN102012186B (en) * | 2010-11-18 | 2012-07-04 | 华北电力大学 | Crown-shaped cooling air deflector of direct air cooling unit |
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DD241537A3 (en) * | 1983-02-04 | 1986-12-17 | Wolfgang Hahnl | AIR-COOLED WAERMEBERBER RAGER |
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CN201885595U (en) * | 2010-10-28 | 2011-06-29 | 华电重工装备有限公司 | Air-cooled condenser with centrally arranged counterflow heat exchange tube bundle |
CN102012186B (en) * | 2010-11-18 | 2012-07-04 | 华北电力大学 | Crown-shaped cooling air deflector of direct air cooling unit |
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CN105758249A (en) * | 2016-04-18 | 2016-07-13 | 河北工程技术高等专科学校 | Cascade-type cooling air diversion device of direct air cooling unit |
EP3786559A1 (en) * | 2019-08-30 | 2021-03-03 | Ovh | Heat exchanger assembly |
EP3786560A1 (en) * | 2019-08-30 | 2021-03-03 | Ovh | Heat exchanger assembly |
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US11415338B2 (en) | 2019-08-30 | 2022-08-16 | Ovh | Heat exchanger assembly |
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