CN208950601U - Comprehensive energy utilization's utility tunnel structure - Google Patents
Comprehensive energy utilization's utility tunnel structure Download PDFInfo
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- CN208950601U CN208950601U CN201821731970.9U CN201821731970U CN208950601U CN 208950601 U CN208950601 U CN 208950601U CN 201821731970 U CN201821731970 U CN 201821731970U CN 208950601 U CN208950601 U CN 208950601U
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- 238000009423 ventilation Methods 0.000 claims abstract description 46
- 230000009970 fire resistant effect Effects 0.000 claims description 29
- 238000005192 partition Methods 0.000 claims description 25
- VEMKTZHHVJILDY-UHFFFAOYSA-N resmethrin Chemical compound CC1(C)C(C=C(C)C)C1C(=O)OCC1=COC(CC=2C=CC=CC=2)=C1 VEMKTZHHVJILDY-UHFFFAOYSA-N 0.000 claims description 2
- 239000010410 layer Substances 0.000 description 185
- 108010066278 cabin-4 Proteins 0.000 description 27
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 5
- 235000019504 cigarettes Nutrition 0.000 description 4
- 238000001816 cooling Methods 0.000 description 4
- 239000008399 tap water Substances 0.000 description 3
- 235000020679 tap water Nutrition 0.000 description 3
- 239000011229 interlayer Substances 0.000 description 2
- 238000012423 maintenance Methods 0.000 description 2
- 230000000712 assembly Effects 0.000 description 1
- 238000000429 assembly Methods 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 238000004891 communication Methods 0.000 description 1
- 238000009833 condensation Methods 0.000 description 1
- 230000005494 condensation Effects 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 230000007423 decrease Effects 0.000 description 1
- 238000013461 design Methods 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000006073 displacement reaction Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000017525 heat dissipation Effects 0.000 description 1
- 238000007689 inspection Methods 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012544 monitoring process Methods 0.000 description 1
- 230000000979 retarding effect Effects 0.000 description 1
- 238000003786 synthesis reaction Methods 0.000 description 1
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Abstract
The utility model discloses an energy comprehensive utilization's utility tunnel structure, including lower floor's left cabin (4), lower floor's right cabin (3), upper left cabin (24) and upper right cabin (25), the middle horizontal is equipped with left side longitudinal ventilation mouth (16) in dull and stereotyped (7) left, and the middle horizontal is equipped with right side longitudinal ventilation mouth (15) in dull and stereotyped (8) right. This utility tunnel structure of energy comprehensive utilization can be abundant reasonable utilize the lower air of other cabin temperature in the utility tunnel as the ventilation wind regime in cable compartment, effectively reduce cable compartment operating temperature, guarantee cable operation safety.
Description
Technical field
The utility model relates to a kind of comprehensive pipe gallery structures of comprehensive utilization of energy.
Background technique
Pipe gallery technology has obtained extensive concern as municipal pipeline laying form, there is very mature case in each state
Example, special China's pipe gallery construction development in recent years is swift and violent, and forceful electric power cable occupies little space because its turning radius is small and waits spies
Point is included in pipe gallery when pipe gallery enters the selection of corridor pipeline in various regions.And when a large amount of high pressure, extra-high-tension cable be included in it is comprehensive
When closing laying in piping lane, a large amount of heat come out, this proposes huge challenge to cable running safety, security against fire etc..
And its air inlet is typically directly derived from outdoor for cable tank, heat dissipation, cooling effect are influenced by ambient temperature greatly.
Utility model content
High temperature is easy to produce in cable tank room in order to solve the problems, such as existing pipe gallery.The utility model provides one
The comprehensive pipe gallery structure of the comprehensive pipe gallery structure of kind comprehensive utilization of energy, the comprehensive utilization of energy can be adequately and reasonably using comprehensive
Ventilation wind regime of the lower air of other cabin temperatures as cable tank in piping lane is closed, cable tank running temperature is effectively reduced, is protected
Demonstrate,prove cable operational safety.
The utility model solves that technical application used by its technical problem is novel to be: a kind of synthesis of comprehensive utilization of energy
Pipe rack, including the left cabin of lower layer, the right cabin of lower layer, the right cabin in the left cabin in upper layer and upper layer, the left cabin of lower layer and lower layer are right
Cabin is between left and right every setting, and for the right cabin in the left cabin in upper layer and upper layer between left and right every setting, the left cabin in upper layer is located at the left cabin of lower layer
Top, the right cabin in upper layer is located at the top in the right cabin of lower layer, and the right cabin in the left cabin in upper layer and upper layer shares upper layer longitudinal direction vertical plate,
The right cabin in the left cabin of lower layer and lower layer shares lower layer longitudinal direction vertical plate, and it is flat that the left cabin in the left cabin in upper layer and lower layer shares an intermediate lateral left side
Plate, the right cabin in the right cabin in upper layer and lower layer share the right plate of intermediate lateral, are equipped with left side longitudinal ventilation in intermediate lateral left plate
Mouthful, longitudinal ventilation mouth in right side is equipped in the right plate of intermediate lateral, the top in the left cabin in upper layer is equipped with left side top ventilation opening, upper layer
The top in right cabin is equipped with right hand top ventilation opening.
Left side two-way blower fan is equipped in the left cabin in upper layer, left side two-way blower fan is connected by pipeline and left side longitudinal ventilation mouth
It connects, right side two-way blower fan is equipped in the right cabin in upper layer, right side two-way blower fan is connect by pipeline with right side longitudinal ventilation mouth.
Interior compartment fire partition and normally closed fire resistant doorsets are equipped in the left cabin of lower layer, lower layer also is provided with interior compartment in right cabin
Room fire partition and normally closed fire resistant doorsets.
It is equipped with left side longitudinal direction manhole in intermediate lateral left plate, is equipped with right side longitudinal direction manhole in the right plate of intermediate lateral, on
It is equipped with the first fire resistant doorsets in the longitudinal vertical plate of layer, is equipped with upper layer partition wall in the right cabin in the left cabin in upper layer and upper layer, in the partition wall of upper layer
Equipped with the second fire resistant doorsets.
The top in the left cabin in upper layer is equipped with ventilation hole, is equipped with left side ladder in the left cabin in upper layer, the upper end of left side ladder and
Left side longitudinal direction manhole connects, and right side ladder is equipped in the right cabin in upper layer, the upper end of right side ladder is connect with right side longitudinal direction manhole.
A kind of comprehensive pipe gallery structure of comprehensive utilization of energy, including the left cabin of lower layer, the right cabin of lower layer, the left cabin in upper layer and
The right cabin in upper layer, the right cabin in the left cabin of lower layer and lower layer between left and right every setting, the right cabin in the left cabin in upper layer and upper layer between left and right every
Setting, the left cabin in upper layer are located at the top in the left cabin of lower layer, and the right cabin in upper layer is located at the top in the right cabin of lower layer, the left cabin in upper layer
Upper layer longitudinal direction vertical plate is shared with the right cabin in upper layer, the right cabin in the left cabin of lower layer and lower layer shares lower layer longitudinal direction vertical plate, the left cabin in upper layer
The left cabin in room and lower layer shares intermediate lateral left plate, and the right cabin in the right cabin in upper layer and lower layer shares the right plate of intermediate lateral, in
Between be equipped with left side longitudinal ventilation mouth in lateral left plate, be equipped with right side longitudinal ventilation mouth in the right plate of intermediate lateral.
Fire resisting damper is equipped in the vertical plate of upper layer longitudinal direction, when opening fire resisting damper, the right cabin in the left cabin in upper layer and upper layer can lead to
Cross fire resisting damper connection.
Interior compartment fire partition and normally closed fire resistant doorsets are equipped in the left cabin of lower layer, lower layer also is provided with interior compartment in right cabin
Room fire partition and normally closed fire resistant doorsets.
It is equipped with left side longitudinal direction manhole in intermediate lateral left plate, is equipped with right side longitudinal direction manhole in the right plate of intermediate lateral, on
It is equipped with the first fire resistant doorsets in the longitudinal vertical plate of layer, is equipped with upper layer partition wall in the right cabin in the left cabin in upper layer and upper layer, in the partition wall of upper layer
Equipped with the second fire resistant doorsets.
The top in the left cabin in upper layer is equipped with ventilation hole, is equipped with left side ladder in the left cabin in upper layer, the upper end of left side ladder and
Left side longitudinal direction manhole connects, and right side ladder is equipped in the right cabin in upper layer, the upper end of right side ladder is connect with right side longitudinal direction manhole.
The beneficial effects of the utility model are:
It 1, is that the high-order cabin such as electric cabin proposes Cryogenic air for cooling using lower temperature in low temperature chamber room when summer,
Realize the comprehensive utilization of the energy.
2, direct blower reversion when winter is introduced directly into outdoor cold air as the cooling of high temperature cabin, adds through high temperature cabin
The problems such as air of heat is blown into the low temperature such as water tank cabin, avoids cabin icing, frosting, condensation.
Although 3, there is two kinds of ventilation Pipe racks of A, B, the only A type Pipe rack surface structures that have exposing, for city
The influence of political affairs landscape is smaller.
It 4, is series model for heat chamber and its ventilating system of low temperature chamber, once a certain fan trouble can be logical using series connection
Another Fans of wind system are aerated, and are unlikely to ventilating system missing occur, high temperature cabin can not cool down and operation maintenance personnel
The case where cannot be introduced into.
Detailed description of the invention
The accompanying drawings constituting a part of this application is used to provide a further understanding of the present invention, this is practical
Novel illustrative embodiments and their description are not constituteed improper limits to the present invention for explaining the utility model.
Fig. 1 is the main view of the comprehensive pipe gallery structure of the first comprehensive utilization of energy described in the utility model.
Fig. 2 is the top view of the comprehensive pipe gallery structure of the first comprehensive utilization of energy described in the utility model.
Fig. 3 is in Fig. 1 along the cross-sectional view in the direction A-A.
Fig. 4 is in Fig. 1 along the cross-sectional view in the direction B-B.
Fig. 5 is in Fig. 4 along the cross-sectional view in the direction C-C.
Fig. 6 is in Fig. 4 along the cross-sectional view in the direction D-D.
Fig. 7 is the main view of the comprehensive pipe gallery structure of second of comprehensive utilization of energy described in the utility model.
Fig. 8 is the top view of the comprehensive pipe gallery structure of second of comprehensive utilization of energy described in the utility model.
Fig. 9 is in Fig. 7 along the cross-sectional view in the direction A-A.
Figure 10 is in Fig. 7 along the cross-sectional view in the direction B-B.
Figure 11 is in Figure 10 along the cross-sectional view in the direction C-C.
Figure 12 is in Figure 10 along the cross-sectional view in the direction D-D.
Figure 13 is A type Pipe rack and Type B Pipe rack connection schematic diagram.
1, interior compartment fire partition;2, normally closed fire resistant doorsets;3, the right cabin of lower layer;4, the left cabin of lower layer;5, right side is longitudinal
Manhole;6, left side longitudinal direction manhole;7, intermediate lateral left plate;8, the right plate of intermediate lateral;9, right side two-way blower fan;10, left side
Two-way blower fan;11, the first fire resistant doorsets;12, the second fire resistant doorsets;13, right hand top ventilation opening;14, left side ladder;15, right side is vertical
To ventilation opening;16, left side longitudinal ventilation mouth;
20, left side top ventilation opening;21, ventilation hole;22, right side ladder;23, fire resisting damper;24, the left cabin in upper layer;25, on
The right cabin of layer;26, upper layer partition wall;27, upper layer longitudinal direction vertical plate;28, lower layer longitudinal direction vertical plate;
31, A type Pipe rack;32, Type B Pipe rack.
Specific embodiment
It should be noted that in the absence of conflict, the features in the embodiments and the embodiments of the present application can phase
Mutually combination.The utility model will be described in detail below with reference to the accompanying drawings and embodiments.
Embodiment 1
A kind of comprehensive pipe gallery structure of comprehensive utilization of energy, including the left cabin 4 of lower layer, the right cabin 3 of lower layer, the left cabin in upper layer
24 and the right cabin 25 in upper layer, the right cabin 3 in the left cabin 4 of lower layer and lower layer is between left and right every setting, the left cabin 24 in upper layer and the right cabin in upper layer
Between left and right every setting, the left cabin 24 in upper layer is located at the top in the left cabin 4 of lower layer for room 25, and the right cabin 25 in upper layer is located at the right cabin of lower layer
3 top, the right cabin 25 in the left cabin 24 in upper layer and upper layer share upper layer longitudinal direction vertical plate 27, the right cabin 3 in the left cabin 4 of lower layer and lower layer
Lower layer longitudinal direction vertical plate 28 is shared, the left cabin 4 in the left cabin 24 in upper layer and lower layer shares intermediate lateral left plate 7, the right cabin 25 in upper layer
The right plate 8 of intermediate lateral is shared with lower layer right cabin 3, left side longitudinal ventilation mouth 16 is equipped in intermediate lateral left plate 7, it is intermediate horizontal
Right side longitudinal ventilation mouth 15 is equipped in plate 8 to the right, the top in the left cabin 24 in upper layer is equipped with left side top ventilation opening 20, and upper layer is right
The top in cabin 25 is equipped with right hand top ventilation opening 13, as shown in Figures 1 to 6.
In the present embodiment, it is equipped with left side two-way blower fan 10 in the left cabin 24 in upper layer, left side two-way blower fan 10 passes through pipeline
It is connect with left side longitudinal ventilation mouth 16, upper layer is equipped with right side two-way blower fan 9 in right cabin 25, and right side two-way blower fan 9 passes through pipeline
It is connect with right side longitudinal ventilation mouth 15.Lower layer is equipped with interior compartment fire partition 1 and normally closed fire resistant doorsets 2 in left cabin 4, and lower layer is right
Interior compartment fire partition 1 and normally closed fire resistant doorsets 2 also are provided in cabin 3, as shown in Figure 3.
In the present embodiment, it is equipped with left side longitudinal direction manhole 6 in intermediate lateral left plate 7, is equipped in the right plate 8 of intermediate lateral
Right side longitudinal direction manhole 5, is equipped with the first fire resistant doorsets 11 in upper layer longitudinal direction vertical plate 27, in the right cabin 25 in the left cabin 24 in upper layer and upper layer
Equipped with upper layer partition wall 26, the second fire resistant doorsets 12 are equipped in upper layer partition wall 26.
In the present embodiment, the top in the left cabin 24 in upper layer is equipped with ventilation hole 21, and upper layer is climbed in left cabin 24 equipped with left side
Ladder 14, the upper end of left side ladder 14 is connect with left side longitudinal direction manhole 6, and upper layer is equipped with right side ladder 22 in right cabin 25, and right side is climbed
The upper end of ladder 22 is connect with right side longitudinal direction manhole 5.
Embodiment 2
A kind of comprehensive pipe gallery structure of comprehensive utilization of energy, including the left cabin 4 of lower layer, the right cabin 3 of lower layer, the left cabin in upper layer
24 and the right cabin 25 in upper layer, the right cabin 3 in the left cabin 4 of lower layer and lower layer is between left and right every setting, the left cabin 24 in upper layer and the right cabin in upper layer
Between left and right every setting, the left cabin 24 in upper layer is located at the top in the left cabin 4 of lower layer for room 25, and the right cabin 25 in upper layer is located at the right cabin of lower layer
3 top, the right cabin 25 in the left cabin 24 in upper layer and upper layer share upper layer longitudinal direction vertical plate 27, the right cabin 3 in the left cabin 4 of lower layer and lower layer
Lower layer longitudinal direction vertical plate 28 is shared, the left cabin 4 in the left cabin 24 in upper layer and lower layer shares intermediate lateral left plate 7, the right cabin 25 in upper layer
The right plate 8 of intermediate lateral is shared with lower layer right cabin 3, left side longitudinal ventilation mouth 16 is equipped in intermediate lateral left plate 7, it is intermediate horizontal
Right side longitudinal ventilation mouth 15 is equipped in plate 8 to the right, as shown in Fig. 7 to Figure 12.
In the present embodiment, fire resisting damper 23, when opening fire resisting damper 23, the left cabin in upper layer are equipped in upper layer longitudinal direction vertical plate 27
24 can be connected to the right cabin 25 in upper layer by fire resisting damper 23.The left cabin 4 of lower layer is interior equipped with interior compartment fire partition 1 and normally closed
Fire resistant doorsets 2, lower layer also are provided with interior compartment fire partition 1 and normally closed fire resistant doorsets 2 in right cabin 3, as shown in Figure 9.
In the present embodiment, it is equipped with left side longitudinal direction manhole 6 in intermediate lateral left plate 7, is equipped in the right plate 8 of intermediate lateral
Right side longitudinal direction manhole 5, is equipped with the first fire resistant doorsets 11 in upper layer longitudinal direction vertical plate 27, in the right cabin 25 in the left cabin 24 in upper layer and upper layer
Equipped with upper layer partition wall 26, the second fire resistant doorsets 12 are equipped in upper layer partition wall 26.
In the present embodiment, the top in the left cabin 24 in upper layer is equipped with ventilation hole 21, and upper layer is climbed in left cabin 24 equipped with left side
Ladder 14, the upper end of left side ladder 14 is connect with left side longitudinal direction manhole 6, and upper layer is equipped with right side ladder 22 in right cabin 25, and right side is climbed
The upper end of ladder 22 is connect with right side longitudinal direction manhole 5.
In the present invention, the comprehensive pipe gallery structure of the comprehensive utilization of energy includes that embodiment 1 (is properly termed as A type
Pipe rack 31) and embodiment 2 (being properly termed as Type B Pipe rack 32).Two kinds of structures when in use can be as shown in figure 13,
The position and quantity of A type Pipe rack and Type B Pipe rack, which can according to need, to be selected.Such as use the design side of ABABA
Formula, it is possible to reduce go out surface structures quantity.
In the present invention, each cabin is separated with wall in A type Pipe rack, is formed independent ventiduct, is set up defences between cabin
Vent is current convenient for personnel.Electric fire-damper is arranged between the left cabin 4 in the right cabin 3 of lower layer and lower layer in Type B Pipe rack, normally
Make two ventilation for cabin room system communications when work.
In the present invention, it is separately provided in the right cabin 25 in the left cabin 24 in the upper layer of A type Pipe rack and upper layer double
To blower one, machinery air intake, the ventilating system of mechanical exhaust are formed between two cabins.Blower, fire resisting damper and fire are reported automatically
Alert system and monitoring system linkage, according to Operating condition adjustment blower wind direction and fire resisting damper open and-shut mode.It is set between cabin and two interlayers
Manhole and ladder are set, facilitates personnel to enter two interlayers and carries out the work such as inspection, maintenance.Light fire-proof cover board is set on manhole.
In the present invention, it is little can be divided into length by interior compartment fire partition 1 and normally closed fire resistant doorsets 2 for cabin
In 200 meters of fire retarding division, the right cabin 3 of lower layer is to need cooling cabin, and it is a large amount of to can be laying for the right cabin 3 of lower layer when use
The electric compartment of power cable;The left cabin 4 of lower layer is cold cabin, and the inside in the left cabin of lower layer do not have heat source or heat source less, because its
Underground can be always maintained at the temperature lower than 10 DEG C of outdoor environment temperature or so, when in the left cabin of lower layer by conveying tap water,
When middle water line, since the lower temperature in it of the temperature of tap water, middle water is usually lower, the left cabin 4 of lower layer be can be when use
Lay the water tank of tap water, intermediate water pipeline.
Two-way blower fan one is respectively set in the left cabin 4 in the right cabin 3 of lower layer and lower layer in A type Pipe rack, and (right side is double
To blower 9 and left side two-way blower fan 10), left side two-way blower fan 10 leads to outdoor air via left side top when summer works normally
Air port 20, left side longitudinal ventilation mouth 16 introduce the inside in the left cabin 4 of lower layer, internal circulation of the outside air through the left cabin 4 of lower layer
After temperature further decreases afterwards, via the left side longitudinal ventilation mouth 16, fire resisting damper 23, right side longitudinal ventilation mouth of Type B Pipe rack
Inside after 15 into the right cabin 3 of lower layer is that the right cabin 3 of lower layer cools down.The air being heated is again via in A type Pipe rack
The right hand top ventilation of A type Pipe rack is discharged by the right side two-way blower fan 9 in A type Pipe rack for right side longitudinal ventilation mouth 15
Mouth 13.Blower air supply direction and summer are on the contrary, cool exterior air is directly entered the right cabin 3 of lower layer, under when winter works normally
The right cabin 3 of layer cools down.It is sent into the left cabin 4 of lower layer via the air that the right cabin 3 of lower layer is heated, avoids being directly entered due to cold air
Left 4 frosting of cabin of lower layer is caused in the left cabin 4 of lower layer.
Two-way blower fan stops working when a fire, avoids introducing the air promotion burning increase intensity of a fire;It is right to close lower layer
Fire resisting damper 23 between the left cabin 4 in cabin 3 and lower layer, flees between different cabins to avoid flame.Band fray-out of flame, in cabin
After temperature is reduced to permissible value or less, then starts blower if you need to the cigarette being discharged in the right cabin 3 of lower layer, open right 3 He of cabin of lower layer
Fire resisting damper 23 between the left cabin 4 of lower layer, outdoor air is blowed to the right cabin 3 of lower layer via the left cabin 4 of lower layer by blower, under discharge
Cigarette in the right cabin 3 of layer;Otherwise if you need to the cigarette that is discharged in the left cabin 4 of lower layer then reverse starting blower, open right 3 He of cabin of lower layer
Fire resisting damper 23 between the left cabin 4 of lower layer, outdoor air is blowed to the left cabin 4 of lower layer via the right cabin 3 of lower layer by blower, under discharge
Cigarette in the left cabin 4 of layer.
In the present invention, being respectively provided with fire resistant doorsets in A type Pipe rack and Type B Pipe rack facilitates personnel in each cabin
Between it is current, in addition, setting ladder and escape hole facilitate personnel escape.
The above, only specific embodiment of the utility model cannot limit the range that utility model is implemented, institute with it
With the displacement of its equivalent assemblies, or according to equivalent variations made by the utility model patent protection scope and modification, should all still fall within
The scope that this patent is covered.In addition, between technical characteristic and technical characteristic in the utility model, technical characteristic and technical application
Between novel, technical application it is novel it is novel with technical application between use can be freely combined.
Claims (10)
1. a kind of comprehensive pipe gallery structure of comprehensive utilization of energy, which is characterized in that the pipe gallery knot of the comprehensive utilization of energy
Structure includes lower layer left cabin (4), lower layer right cabin (3), the right cabin in the left cabin in upper layer (24) and upper layer (25), the left cabin of lower layer
(4) and lower layer right cabin (3) is between left and right every setting, the right cabin in the left cabin in upper layer (24) and upper layer (25) between left and right every setting, on
The left cabin (24) of layer is located at the top of lower layer left cabin (4), and the right cabin in upper layer (25) is located at the top of lower layer right cabin (3), on
The left cabin (24) of layer and the right cabin in upper layer (25) share upper layer longitudinal direction vertical plate (27), lower layer left cabin (4) and lower layer right cabin (3)
Lower layer longitudinal direction vertical plate (28) is shared, the left cabin in the left cabin in upper layer (24) and lower layer (4) shares intermediate lateral left plate (7), upper layer
Right cabin (25) and lower layer right cabin (3) share the right plate of intermediate lateral (8), indulge in intermediate lateral left plate (7) equipped with left side
To ventilation opening (16), it is equipped with right side longitudinal ventilation mouth (15) in the right plate of intermediate lateral (8), is set at the top of the left cabin in upper layer (24)
Have left side top ventilation opening (20), the top in the right cabin in upper layer (25) is equipped with right hand top ventilation opening (13).
2. the comprehensive pipe gallery structure of comprehensive utilization of energy according to claim 1, which is characterized in that the left cabin in upper layer (24)
Interior to be equipped with left side two-way blower fan (10), left side two-way blower fan (10) is connect by pipeline with left side longitudinal ventilation mouth (16), upper layer
Right side two-way blower fan (9) are equipped in right cabin (25), right side two-way blower fan (9) is connected by pipeline and right side longitudinal ventilation mouth (15)
It connects.
3. the comprehensive pipe gallery structure of comprehensive utilization of energy according to claim 1, which is characterized in that lower layer left cabin (4)
It is interior to be equipped with interior compartment fire partition (1) and normally closed fire resistant doorsets (2), the anti-fire screen of interior compartment also is provided in lower layer right cabin (3)
Wall (1) and normally closed fire resistant doorsets (2).
4. the comprehensive pipe gallery structure of comprehensive utilization of energy according to claim 1, which is characterized in that intermediate lateral left plate
(7) it is equipped with left side longitudinal direction manhole (6) in, is equipped with right side longitudinal direction manhole (5), upper layer longitudinal direction vertical plate in the right plate of intermediate lateral (8)
(27) the first fire resistant doorsets (11) are equipped in, are equipped with upper layer partition wall (26) in the right cabin in the left cabin in upper layer (24) and upper layer (25),
The second fire resistant doorsets (12) are equipped in upper layer partition wall (26).
5. the comprehensive pipe gallery structure of comprehensive utilization of energy according to claim 4, which is characterized in that the left cabin in upper layer (24)
Top be equipped with ventilation hole (21), be equipped with left side ladder (14) in the left cabin in upper layer (24), the upper end of left side ladder (14) and left
Side longitudinal direction manhole (6) connection, the right cabin in upper layer (25) is interior to be equipped with right side ladder (22), and the upper end and right side of right side ladder (22) are vertical
It is connected to manhole (5).
6. a kind of comprehensive pipe gallery structure of comprehensive utilization of energy, which is characterized in that the pipe gallery knot of the comprehensive utilization of energy
Structure includes lower layer left cabin (4), lower layer right cabin (3), the right cabin in the left cabin in upper layer (24) and upper layer (25), the left cabin of lower layer
(4) and lower layer right cabin (3) is between left and right every setting, the right cabin in the left cabin in upper layer (24) and upper layer (25) between left and right every setting, on
The left cabin (24) of layer is located at the top of lower layer left cabin (4), and the right cabin in upper layer (25) is located at the top of lower layer right cabin (3), on
The left cabin (24) of layer and the right cabin in upper layer (25) share upper layer longitudinal direction vertical plate (27), lower layer left cabin (4) and lower layer right cabin (3)
Lower layer longitudinal direction vertical plate (28) is shared, the left cabin in the left cabin in upper layer (24) and lower layer (4) shares intermediate lateral left plate (7), upper layer
Right cabin (25) and lower layer right cabin (3) share the right plate of intermediate lateral (8), indulge in intermediate lateral left plate (7) equipped with left side
To ventilation opening (16), right side longitudinal ventilation mouth (15) is equipped in the right plate of intermediate lateral (8).
7. the comprehensive pipe gallery structure of comprehensive utilization of energy according to claim 6, which is characterized in that upper layer longitudinal direction vertical plate
(27) fire resisting damper (23) are equipped in, when opening fire resisting damper (23), the right cabin in the left cabin in upper layer (24) and upper layer (25) can lead to
Cross fire resisting damper (23) connection.
8. the comprehensive pipe gallery structure of comprehensive utilization of energy according to claim 6, which is characterized in that lower layer left cabin (4)
It is interior to be equipped with interior compartment fire partition (1) and normally closed fire resistant doorsets (2), the anti-fire screen of interior compartment also is provided in lower layer right cabin (3)
Wall (1) and normally closed fire resistant doorsets (2).
9. the comprehensive pipe gallery structure of comprehensive utilization of energy according to claim 6, which is characterized in that intermediate lateral left plate
(7) it is equipped with left side longitudinal direction manhole (6) in, is equipped with right side longitudinal direction manhole (5), upper layer longitudinal direction vertical plate in the right plate of intermediate lateral (8)
(27) the first fire resistant doorsets (11) are equipped in, are equipped with upper layer partition wall (26) in the right cabin in the left cabin in upper layer (24) and upper layer (25),
The second fire resistant doorsets (12) are equipped in upper layer partition wall (26).
10. the comprehensive pipe gallery structure of comprehensive utilization of energy according to claim 9, which is characterized in that the left cabin in upper layer
(24) top is equipped with ventilation hole (21), is equipped with left side ladder (14) in the left cabin in upper layer (24), the upper end of left side ladder (14)
It is connect with left side longitudinal direction manhole (6), is equipped with right side ladder (22) in the right cabin in upper layer (25), the upper end and the right side of right side ladder (22)
Side longitudinal direction manhole (5) connection.
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN109139040A (en) * | 2018-10-25 | 2019-01-04 | 中冶京诚工程技术有限公司 | Comprehensive energy utilization's utility tunnel structure |
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Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109139040A (en) * | 2018-10-25 | 2019-01-04 | 中冶京诚工程技术有限公司 | Comprehensive energy utilization's utility tunnel structure |
CN109139040B (en) * | 2018-10-25 | 2024-02-06 | 中冶京诚工程技术有限公司 | Comprehensive pipe rack structure for comprehensive utilization of energy |
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