CN206919318U - A kind of toilet's energy conservation project system - Google Patents
A kind of toilet's energy conservation project system Download PDFInfo
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- CN206919318U CN206919318U CN201720895917.1U CN201720895917U CN206919318U CN 206919318 U CN206919318 U CN 206919318U CN 201720895917 U CN201720895917 U CN 201720895917U CN 206919318 U CN206919318 U CN 206919318U
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- toilet
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- exhaust passage
- air exhaust
- energy conservation
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Abstract
The utility model provides a kind of toilet's energy conservation project system, and toilet's energy conservation project system includes the first toilet, the second toilet, static pressure bellows, filter bank, fresh air conveyance conduit, the first air exhaust passage, the second air exhaust passage and the 3rd air exhaust passage;Filter bank is arranged between static pressure bellows and fresh air conveyance conduit;Fresh air conveyance conduit connects the first toilet and the second toilet;First toilet is connected by the first air exhaust passage with the second toilet;Second toilet is connected by the second air exhaust passage with static pressure bellows;Second toilet is connected by the 3rd air exhaust passage with outdoor.Energy conservation project system in toilet's provided by the utility model, by setting the first air exhaust passage between the first toilet and the second toilet, second air exhaust passage is set between the second toilet and static pressure bellows, energy resource consumption caused by air filtering can be effectively reduced and air is heated for reduction or the caused energy resource consumption that cools.
Description
Technical field
Toilet field is the utility model is related to, more particularly to a kind of toilet's energy conservation project system.
Background technology
Toilet (Clean Room), also known as dust-free workshop, dust free room or clean room.Toilet refers to certain space model
Enclose the contaminant exclusions such as particulate in interior air, noxious air, bacterium, and by indoor temperature, cleanliness factor, room pressure, gas
Flow velocity degree gives specially designed room with air flow method, noise vibration and illumination, Electrostatic Control in a certain range of needs
Between.No matter being also how external air conditionses change, it is indoor can maintain originally set by provisioning request cleanliness factor, warm and humid
The performance such as degree and pressure.The most important effect in toilet be the cleanliness factor for controlling product (such as silicon etc.) institute ingress of air and
Humiture, product is set to produce, manufacture in a good environment.Thus it is widely applied at present in electronics industry.
Existing toilet mainly includes clean room, fresh air induction system and gas extraction system;Toilet is defeated by fresh air
Send system that the air of cleaning is sent into clean room, " dilution " is carried out to the air in clean room, original dust content is high
Room air water down and decline its dust content, the air after " dilution " is discharged into outdoor by gas extraction system, reduces indoor
Dust content, the cleanliness factor of interior is set to reach requirement.Therefore it is higher for the purity requirements in toilet, required input it is new
Wind is more.
But toilet typically also requires there is suitable temperature, in largely input fresh air except to enter to the air of input
Outside row filtration, purification, also need to be heated or cooled, it is necessary to consume mass energy;And the cleaning needed for toilet Zhong Ge regions
Degree is different, and unnecessary waste can be caused using unified cleanliness factor.
Utility model content
To solve above-mentioned the deficiencies in the prior art, the utility model provides a kind of toilet's energy conservation project system,
Toilet's energy conservation project system includes the first toilet, the second toilet, static pressure bellows, filter bank, fresh air delivery pipe
Road, the first air exhaust passage, the second air exhaust passage and the 3rd air exhaust passage;
The filter bank is located between the static pressure bellows and the fresh air conveyance conduit;The fresh air conveyance conduit connects
Meet first toilet and second toilet;First toilet passes through first air exhaust passage and described second
Toilet is connected;Second toilet is connected by second air exhaust passage with the static pressure bellows;Described second
Toilet is connected by the 3rd air exhaust passage with outdoor.
Further, centrifugal blower and screen pack are provided with first air exhaust passage.
Further, the fresh air conveyance conduit includes main pipeline, the first branch pipe and the second branch pipe, first branch pipe
And second be respectively equipped with the first regulating valve and the second regulating valve on branch pipe.
Further, it is provided with negative pressure fan in second air exhaust passage and the 3rd air exhaust passage.
Energy conservation project system in toilet's provided by the utility model, by setting the first different toilet of purity requirements
With the second toilet, the first air exhaust passage is set between the first toilet and the second toilet, will be arranged from the first toilet
The air gone out is sent into the second toilet after being mixed with the clean fresh air in fresh air conveyance conduit, the sky in the second toilet is ensured
Gas cleanliness factor reduces the amount for the clean fresh air for needing to input in the second toilet while meeting the requirements, produced when reducing air filtering
Raw energy resource consumption;It is connected in the second toilet by the second air exhaust passage with static pressure bellows, is discharged from the second toilet
Air mixes with the air of external world's input in static pressure bellows, the temperature that the temperature of mixed air needs close to toilet,
Air is heated or the caused energy resource consumption that cools so as to reduce.
Brief description of the drawings
, below will be to embodiment in order to illustrate more clearly of the utility model embodiment or technical scheme of the prior art
Or the required accompanying drawing used is made some and simply introduced in description of the prior art, it should be apparent that, drawings in the following description
It is some embodiments of the utility model, for those of ordinary skill in the art, before creative labor is not paid
Put, other accompanying drawings can also be obtained according to these accompanying drawings.
Fig. 1 is the structural representation that clean room provided by the utility model saves procedures system.
Reference:
The static pressure bellows of 10 first 20 second toilet of toilet 30
The branch pipe of 40 filter bank, 51 main pipeline 52 first
The regulating valve of 53 second branch pipe, 54 first regulating valve 55 second
The air exhaust passage of 61 first 62 second air exhaust passage 63 of air exhaust passage the 3rd
The screen pack of 611 centrifugal blower 612
Embodiment
It is new below in conjunction with this practicality to make the purpose, technical scheme and advantage of the utility model embodiment clearer
Accompanying drawing in type embodiment, the technical scheme in the embodiment of the utility model is clearly and completely described, it is clear that is retouched
The embodiment stated is the utility model part of the embodiment, rather than whole embodiments.Based on the implementation in the utility model
Example, the every other embodiment that those of ordinary skill in the art are obtained under the premise of creative work is not made, is belonged to
The scope of the utility model protection.
Fig. 1 is the structural representation of energy conservation project system in toilet's provided by the utility model;As shown in Figure 1:Toilet
Energy conservation project system, including the first toilet 10, the second toilet 20, static pressure bellows 30, filter bank 40, fresh air delivery pipe
Road, the first air exhaust passage 61, the second air exhaust passage 62 and the 3rd air exhaust passage 63;The filter bank 40 is located at the static pressure
Between bellows 30 and the fresh air conveyance conduit;The fresh air conveyance conduit connects first toilet 10 and described second clean
Clean room 20;First toilet 10 is connected by first air exhaust passage 61 with second toilet 20;Described
Two toilets 20 are connected by second air exhaust passage 62 with the static pressure bellows 30;Second toilet 20 passes through institute
The 3rd air exhaust passage 63 is stated with outdoor to be connected.
When it is implemented, as shown in figure 1, clean room's energy-conservation procedures system includes the first toilet 10, the second toilet 20,
Static pressure bellows 30, filter bank 40, fresh air conveyance conduit, the first air exhaust passage 61, the second air exhaust passage 62 and the 3rd air draft
Passage 63;Wherein the purity requirements of the first toilet 10 are higher than the purity requirements of the second toilet 20, the first toilet 10
It is connected by the first air exhaust passage 61 with the second toilet 20;Filtering is provided between static pressure bellows 30 and fresh air conveyance conduit
Unit 40, fresh air conveyance conduit connect the first toilet 10 and the second toilet 20.
The air that static pressure bellows 30 are connected with the external world and entered to the external world is tentatively filtered, and filter bank 40 includes centrifugation
Blower fan and filter, centrifugal blower extracts the air in static pressure bellows 30, clean fresh air is formed after filtered device filtering, clean
Net fresh air is sent into the first toilet 10 and the second toilet 20 by fresh air conveyance conduit;Fresh air conveyance conduit and the first toilet
10 connection is clean positioned at first positioned at the top of the first toilet 10, the first air exhaust passage 61 and the tie point of the first toilet 10
The bottom of clean room 10;It is and original in the first toilet 10 after clean fresh air is sent into the first toilet 10 by fresh air conveyance conduit
Air is mixed, and reduces the air dust content in the first toilet 10, and the air after dust content reduces is led to by the first air draft
Road 61 enters the second toilet 20, and with continually entering for clean fresh air, the air dust content of the first toilet 10 gradually drops
It is low, until the cleanliness factor of the first toilet 10 reach the required standards;Air dust content is less than second in first toilet 10
Original air dust content in toilet 10, enter second by the first air exhaust passage 61 with the air of the first toilet 10
Toilet 20, the dust content of the second toilet 20 gradually reduce, it is therefore desirable to are sent into the second toilet by fresh air conveyance conduit
The amount of 20 clean fresh air is reduced, and then reduces the energy resource consumption needed for air filtering, reduces operating cost.
The air of second toilet 20, a part are discharged into outdoor by the 3rd air exhaust passage 63, maintain inside and outside toilet
Air pressure balance, a part by the second air exhaust passage 62 is transported to static pressure bellows 30, mixed with the air in static pressure bellows 30;
The temperature required from the temperature of the air of the second toilet 20 discharge close to toilet, is mixed with the air in static pressure bellows 30
Afterwards, the temperature of the mixing air in static pressure bellows 30 is made to reduce and add to air also close to the temperature required by toilet
Energy resource consumption needed for heat or cooling, reduce further operating cost.
Energy conservation project system in toilet's provided by the utility model, by setting the first different toilet of purity requirements
With the second toilet, the first air exhaust passage is set between the first toilet and the second toilet, will be arranged from the first toilet
The air gone out is sent into the second toilet after being mixed with the clean fresh air in fresh air conveyance conduit, the sky in the second toilet is ensured
Gas cleanliness factor reduces the amount for the clean fresh air for needing to input in the second toilet while meeting the requirements, produced when reducing air filtering
Raw energy resource consumption;It is connected in the second toilet by the second air exhaust passage with static pressure bellows, is discharged from the second toilet
Air mixes with the air of external world's input in static pressure bellows, the temperature that the temperature of mixed air needs close to toilet,
Air is heated or the caused energy resource consumption that cools so as to reduce.
Preferably, centrifugal blower 611 and screen pack 612 are provided with first air exhaust passage 61.When it is implemented, as schemed
Shown in 1, centrifugal blower 611 and screen pack 612 are set in the first air exhaust passage 61, accelerate the air in the first air exhaust passage 61
Flow velocity, the efficiency that air is changed is improved, while the air to flowing to the second toilet 20 from the first toilet 10 filters, and blocks
Cut bulky grain debris that may be present in air.
Preferably, the fresh air conveyance conduit includes main pipeline 51, the first branch pipe 52 and the second branch pipe 53, and described first
The first regulating valve 54 and the second regulating valve 55 are respectively equipped with the branch pipe 53 of branch pipe 52 and second.When it is implemented, such as Fig. 1 institutes
Show, fresh air conveyance conduit includes main pipeline 51, the first branch pipe 52 and the second branch pipe 53;First branch pipe 52 connects the first toilet
10, the second branch pipe 53 connects the second toilet 20;The first regulating valve 54 is respectively equipped with the first branch pipe 52 and the second branch pipe 53
With the second regulating valve 55, it can be controlled by adjusting the first regulating valve 54 and the second regulating valve 55 and be sent into the first toilet 10 and the
The air mass flow of two toilets 20.
Preferably, it is provided with negative pressure fan in second air exhaust passage 62 and the 3rd air exhaust passage 63.Specific implementation
When, negative pressure fan is provided with the second air exhaust passage 62 and the 3rd air exhaust passage 63, accelerates the flow velocity of air by negative pressure fan,
Make the air circulation in the second air exhaust passage 62 and the 3rd air exhaust passage 63 more smooth.
Although more herein used such as toilet, toilet, static pressure bellows, filter bank, regulating valve, air draft
The terms such as passage, centrifugal blower, screen pack, fresh air conveyance conduit, but it is not precluded from the possibility using other terms.Use this
A little terms are used for the purpose of more easily describing and explaining essence of the present utility model;It is construed as what any one was added
Limitation is all disagreed with the utility model spirit.
Finally it should be noted that:Various embodiments above is only to illustrate the technical solution of the utility model, rather than it is limited
System;Although the utility model is described in detail with reference to foregoing embodiments, one of ordinary skill in the art should
Understand:It can still modify to the technical scheme described in foregoing embodiments, either to which part or whole
Technical characteristic carries out equivalent substitution;And these modifications or replacement, the essence of appropriate technical solution is departed from this practicality newly
The scope of each embodiment technical scheme of type.
Claims (4)
- A kind of 1. toilet's energy conservation project system, it is characterised in that:Toilet's energy conservation project system includes the first toilet (10), the second toilet (20), static pressure bellows (30), filter bank (40), fresh air conveyance conduit, the first air exhaust passage (61), Second air exhaust passage (62) and the 3rd air exhaust passage (63);The filter bank (40) is located between the static pressure bellows (30) and the fresh air conveyance conduit;The fresh air delivery pipe Road connects first toilet (10) and second toilet (20);First toilet (10) passes through the first row Wind passage (61) is connected with second toilet (20);Second toilet (20) passes through second air exhaust passage (62) it is connected with the static pressure bellows (30);Second toilet (20) passes through the 3rd air exhaust passage (63) and outdoor It is connected.
- 2. toilet's energy conservation project system according to claim 1, it is characterised in that:Set in first air exhaust passage (61) There are centrifugal blower (611) and screen pack (612).
- 3. toilet's energy conservation project system according to claim 1, it is characterised in that:The fresh air conveyance conduit includes supervisor Road (51), the first branch pipe (52) and the second branch pipe (53), set respectively on first branch pipe (52) and the second branch pipe (53) There are the first regulating valve (54) and the second regulating valve (55).
- 4. toilet's energy conservation project system according to claim 1, it is characterised in that:Second air exhaust passage (62) and Negative pressure fan is provided with three air exhaust passages (63).
Priority Applications (1)
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CN201720895917.1U CN206919318U (en) | 2017-07-22 | 2017-07-22 | A kind of toilet's energy conservation project system |
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CN201720895917.1U CN206919318U (en) | 2017-07-22 | 2017-07-22 | A kind of toilet's energy conservation project system |
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CN206919318U true CN206919318U (en) | 2018-01-23 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110043982A (en) * | 2019-04-16 | 2019-07-23 | 北京联合大学 | Dynamic self-adapting pressure-difference fluctuation control system and method |
-
2017
- 2017-07-22 CN CN201720895917.1U patent/CN206919318U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110043982A (en) * | 2019-04-16 | 2019-07-23 | 北京联合大学 | Dynamic self-adapting pressure-difference fluctuation control system and method |
CN110043982B (en) * | 2019-04-16 | 2020-08-28 | 北京联合大学 | Dynamic self-adaptive differential pressure fluctuation control system and method |
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