CN210740551U - Fresh air processing and energy recovery system of air conditioner - Google Patents

Fresh air processing and energy recovery system of air conditioner Download PDF

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Publication number
CN210740551U
CN210740551U CN201922004956.XU CN201922004956U CN210740551U CN 210740551 U CN210740551 U CN 210740551U CN 201922004956 U CN201922004956 U CN 201922004956U CN 210740551 U CN210740551 U CN 210740551U
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processing
fresh air
pipe
coil
matched
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刘宏
雷若冰
于海涛
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Shenzhen Ubiying Information Technology Co.,Ltd.
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Shanghai Yinlu Construction Technology Co Ltd
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Abstract

The utility model discloses an air conditioner new trend is handled and energy recuperation system, include: a radiation component communicated with an external cold source and heat source; the processing section is matched with the direction of the fresh air flow, and a processing coil pipe for reheating the fresh air flowing in is arranged in the processing section; the fresh air treated by the treatment section flows into a room provided with the radiation component through the matched air supply pipe, and the waste water subjected to heat exchange by the radiation component flows into the reheating mechanism through the primary water return pipe and then is communicated with an external cold and heat source through the second water return pipe. The utility model provides an air conditioner new trend is handled and energy recuperation system, it can carry out the reutilization through the waste water to the radiation module use for heat or cool down the new trend and handle, and then make the input controllable to indoor new trend temperature, realize the multiple utilization of the energy, and then guarantee the travelling comfort of using.

Description

Fresh air processing and energy recovery system of air conditioner
Technical Field
The utility model relates to a system device who uses under energy-conserving condition. More specifically, the utility model relates to an air conditioner new trend processing and energy recuperation system under the energy-conserving condition of building is used in.
Background
With the scientific and technological development in recent years, the radiation air conditioner is more and more widely applied, not only because the thermal comfort of the radiation air conditioner is higher, but also because the return water temperature of the chilled water used by the radiation air conditioner is 18-21 ℃, compared with the chilled water of 7-12 ℃ of the traditional air conditioning system, the energy-saving effect is better; in consideration of health and safety, the radiation air conditioner is adopted, and fresh air is required to be sent indoors at the same time, and the fresh air is processed by a fresh air unit and then is sent indoors separately. When the novel air conditioner is used, the temperature of fresh air is lower after the fresh air is processed to the dew point of the machine, the temperature difference of air supply is larger, reheating is needed, cold and heat are generated to offset and not be reheated, and the fresh air is directly sent into a room to cause discomfort for people.
SUMMERY OF THE UTILITY MODEL
An object of the present invention is to solve at least the above problems and/or disadvantages and to provide at least the advantages which will be described later.
The utility model discloses it is also an object to provide an air conditioner new trend is handled and energy recuperation system, and it can carry out the reutilization through the waste water to in the radiation module use for heat or cool down the processing to the new trend, and then make the input to indoor new trend temperature controllable, realize the reuse of the energy, and then guarantee the travelling comfort of using.
In order to achieve these objects and other advantages in accordance with the purpose of the invention, there is provided an air conditioner fresh air processing and energy recovery system, comprising:
the processing section is matched with the direction of the fresh air flow, and a processing coil pipe for reheating the fresh air flowing in is arranged in the processing section;
a radiation component communicated with an external cold source and heat source;
the fresh air treated by the treatment section flows into a room provided with the radiation component through the matched air supply pipe, and the waste water subjected to heat exchange by the radiation component flows into the reheating mechanism through the primary water return pipe and then is communicated with an external cold and heat source through the second water return pipe.
Preferably, the treatment section is further provided with a placing box at a position matched with the treatment coil;
wherein, the processing coil pipe is provided with elastic switching pipes respectively at the position matched with the primary water return pipe and the secondary water return pipe.
Preferably, a plurality of fixing clips matched with the processing coil pipes are arranged on the inner side walls of the processing section and the placing box.
Preferably, wherein the processing coil is externally provided with a shell for packaging the processing coil;
wherein, the shell is provided with ports for extending two ends of the treatment coil pipe and further connecting with the primary water return pipe and the secondary water return pipe;
the casing is provided with the grid that can supply the new trend to pass through on the corresponding position with new trend through direction matched with.
Preferably, the adapter tube is configured as an elastic hose made of metal.
Preferably, the shelving box is arranged below the processing section, and the box body of the processing section is provided with a window for the processing coil to enter and exit on the side wall matched with the shelving box in a pivoted mode.
Preferably, a fresh air pretreatment section is further arranged before the treatment section;
wherein, be provided with the filtering mechanism who gets rid of moisture, impurity on the new trend preliminary treatment section.
The utility model discloses at least, include following beneficial effect: one of which, the utility model discloses a structural design carries out secondary energy collection to the waste water that radiation assembly produced for carry out heat treatment to the new trend that flows into to indoor, so that flow into to indoor new trend temperature controllable, and then have better comfort level.
Two, the utility model discloses a set up in the below of handling the coil pipe and shelve the case to when making not need heat the new trend, the accessible will handle the position change of coil pipe, makes the new trend can directly carry to indoor, and it is more excellent to guarantee the circulation effect of its new trend, and stability in the equipment use is better.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
Fig. 1 is a schematic structural diagram of an air conditioner fresh air processing and energy recovery system according to an embodiment of the present invention;
fig. 2 is a schematic cross-sectional structure diagram of the treatment coil pipe and the shell in an embodiment of the present invention.
Detailed Description
The present invention is further described in detail below with reference to the drawings so that those skilled in the art can implement the invention with reference to the description.
It will be understood that terms such as "having," "including," and "comprising," as used herein, do not preclude the presence or addition of one or more other elements or groups thereof.
Fig. 1 shows according to the utility model discloses an air conditioner new trend is handled and energy recuperation system implementation form, includes wherein:
the processing section 2 is matched with the fresh air flow direction, a processing coil 3 for reheating the fresh air flowing in is arranged in the processing section, and the collected fresh air is heated through the heating action of the processing coil, so that when the temperature of a closed room is controlled by adopting a radiation assembly, and the air quality of the room is controlled by an air supply pipe for conveying the fresh air, the fresh air can be heated or cooled, the temperature of the air flowing into the room can be high, and the indoor comfort level is better;
the radiation assembly 6 is communicated with an external cold and heat source, the indoor air temperature is processed by cold and hot water circulating in the radiation assembly, the external cold and heat source can be arranged according to the requirement, such as a ground source heat pump, so that the dual-purpose of winter and summer is realized, the radiation assembly can be arranged to be a common water chilling unit, a boiler and the like, or a cold and heat integrated machine such as an air source heat pump, a ground source heat pump and the like can be adopted, and the radiation assembly is connected with the external cold and heat source through a water supply pipe 7;
the fresh air treated by the treatment section flows into a room provided with a radiation component through a matched air supply pipe 5, waste water subjected to heat exchange by the radiation component flows into a reheating mechanism through a primary water return pipe 8 and then is communicated with an external cold and heat source through a second water return pipe 10, in the scheme, when the solar water heater is used in summer, 7 ℃ chilled water from the cold and heat source enters a radiation plate in the radiation component through a water supply pipe, after the chilled water is subjected to radiation heat exchange and heat conduction with indoor enclosing structures, furniture, personnel and the like in the radiation plate, the temperature of the chilled water is approximately 12 ℃, the chilled water enters a treatment coil pipe through the primary water return pipe, is subjected to cooling treatment with the pretreated fresh air, and further enters a secondary water return pipe to the cold and heat source after heat exchange is finished, so that the cyclic utilization of circulating cooling water is realized. When using in winter, the hot water that comes from cold and hot source gets into the radiation panel, the process with the refrigerated water is the same, get back to cold and hot source through wet return, elastic hose, handle the coil pipe, secondary wet return etc. and get back to cold and hot source, design through this kind of structure, realize the reuse of the energy, improve user's travelling comfort, and the structure of product system is comparatively simple, and is also more nimble, be convenient for operate, application scope is wide, cool down cold water when handling new trend, the high-efficient utilization of the energy has been realized, improve user's travelling comfort, reduce the energy consumption of new trend unit.
As shown in fig. 1, in another example, a placing box 4 is further disposed at a position of the processing section, which is matched with the processing coil, and is used for preventing the position of the fresh air from blocking the delivery of the fresh air and causing too large air supply resistance when the fresh air does not need to be processed or cooled, the processing coil can be manually taken into the placing box, and the fresh air is directly sent into a room, so as to ensure the air supply amount;
wherein, handle the coil pipe on with a wet return, secondary wet return matched with position, be provided with respectively and have elastic switching pipe 9, its effect through the switching pipe, through the effect through the switching pipe in this kind of scheme for its length has the variability, and then makes the position of handling the coil pipe change as required, and then adapts to different temperature environment's use needs.
In another example, handle the section, shelve and be provided with on the inside wall of case and handle a plurality of fixing clips of coil pipe matched with, in this kind of scheme, through the effect of fixing clip, when the position of handling the coil pipe changes, the effect through the fixing clip is fixed its position, and then guarantee to handle the structural stability of coil pipe on different positions, the effect through the fixing clip makes the two structure have detachability simultaneously, the structure of fixing clip can be set as the couple as required or have the plastics annular card of notch in addition, and then make it have smooth and easy nature and stability in the fixed course.
In another example, as shown in fig. 2, a casing 11 for enclosing the processing coil is arranged outside the processing coil, and is used for enclosing the processing coil 3, so that the processing coil does not interfere with an external structure, and meanwhile, the structural symmetry is ensured, and the service life is better;
the shell is provided with a port 12 for extending two ends of the treatment coil pipe and further connecting with the primary water return pipe and the secondary water return pipe, the port is arranged on the shell, so that the primary water return pipe and the secondary water return pipe can extend outwards and further are connected with an external adapter pipe, the treatment coil pipe can be provided with a fixed conical part matched with the port, and further the stability between structures is ensured;
the casing is provided with the grid 13 that can supply the new trend to pass through on the corresponding position with new trend flow direction matched with, and it is used for the setting through the grid for the suitable new trend of temperature after handling the coil pipe through handling, accessible grid can flow in to indoor through the blast pipe, and then guarantees the quality of its air supply.
In another example, the adapter tube is configured as a flexible hose made of metal, and in this scheme, the length of the adapter tube can be changed by the action of the flexible hose, so that the adapter tube can adapt to the change of different positions of the treatment coil pipe, and further adapt to the use requirements of different temperature occasions.
In another example, the shelving box is arranged below the processing section, and the box body of the processing section is pivoted with a window (not shown) for the processing coil to enter and exit on the side wall matched with the shelving box, in the scheme, the processing coil is placed in the shelving box in an initial state, when the processing coil needs to be in a working state, the pivoted window is pushed open by moving the position of the processing coil, so that the position of the processing coil can be changed to the processing section, and when the processing coil does not need to process fresh air, the position of the processing coil is moved, and after the position of the processing coil is changed, the pivoted window is naturally released, so that the space between the processing section and the shelving box is sealed, and the output of the fresh air is ensured.
In another example, a fresh air preprocessing section 1 is arranged before the processing section, a pump for extracting fresh air can be arranged on the fresh air preprocessing section as required so that the flow rate of the fresh air meets the output requirement, and a valve can be arranged on the fresh air preprocessing section as required so as to control the state of the fresh air output by the fresh air preprocessing section;
wherein, be provided with the filtering mechanism (not shown) who gets rid of moisture, impurity on the new trend preliminary treatment section, it gets rid of the moisture in the air through the cotton nature material of getting rid of the moisture, the steel mesh of less aperture or activated carbon, and then guarantees that the new trend of its output all has dry wind, all carries out the part through activated carbon to the impurity in the air and gets rid of simultaneously, and then guarantees that the new trend of output all is clean wind, and activated carbon here can carry out appropriate replacement through other mechanisms of getting rid of moisture and impurity.
Example (b):
the utility model provides an air conditioner new trend is handled and energy recuperation system schematic diagram is shown in fig. 1, including new trend preliminary treatment section 1, new trend processing section 2, handle coil pipe 3, handle the coil pipe and shelve case 4, blast pipe 5, radiation panel 6, delivery pipe 7, a wet return 8, secondary wet return 10, elastic hose 9 etc. and constitute, its system is comparatively simple, and is also comparatively more nimble, the operation of being convenient for, application scope is wide, can realize the reuse of the energy, improves user's travelling comfort, greatly reduced new trend unit's energy consumption.
In this embodiment, an office is taken as an example, the room size is 4m × 5m × 3m, and the room area is 20m2Each radiant panel in the room is 2m multiplied by 1m, the radiant panel is arranged at the top of the room, and the fresh air volume of the room is 100m3A processing coil pipe placing box 4 is arranged on the side of a fresh air processing section 2 of the fresh air unit and used for placing a processing coil pipe 3, a layer of shell is arranged outside the processing coil pipe 3 and is of an integrated structure with the processing coil pipe 3, and a rubber clamping pad used for fixing is arranged outside the structure; a water supply pipe 7 and a primary water return pipe 8 are respectively connected with a radiation plate 6 in a room, the primary water return pipe 8 and a secondary water return pipe 10 are connected with the treatment coil pipe 3 through an elastic hose 9, and the embodiment adopts an elastic pipe made of metal; when fresh air does not need to be treated, the treatment coil 3 is taken into the treatment coil storage box 4, the elastic hose 9 automatically contracts, and the cold source and the heat source of the embodiment adopt a ground source heat pump and can be used in winter and summer.
In summer, the 7 ℃ chilled water from the ground source heat pump enters the radiation plate 6 in the room through the water supply pipe 7, after the radiation heat exchange with the building enclosure, personnel, equipment and the like in the room is finished, the water temperature is changed to about 12 ℃, the chilled water is collected and enters the primary water return pipe 8, the temperature of the fresh air is too low after being treated, so that primary water return can treat the fresh air in the treatment coil pipe 3, and the fresh air enters the elastic hose 9 and the secondary water return pipe 10 after the heat exchange is finished and finally returns to the ground source heat pump unit.
In winter, similar to summer, hot water from the ground source heat pump enters the radiation plate 6 through the water supply pipe 7, enters the processing coil pipe 3 to process fresh air after heat exchange in a room is finished, and returns to the ground source heat pump after the processing is finished.
The fresh air processing and energy recovery system of the air conditioner is characterized in that: a processing coil pipe placing box is arranged on the side of the fresh air processing section, a layer of shell is arranged outside the processing coil pipe, the coil pipe and the shell are of an integrated structure, and the processing coil pipe is connected with a primary water return pipe and a secondary water return pipe through hoses. When fresh air needs to be treated, the return water from the radiation plate is sent into the treatment coil through the primary water return pipe, exchanges heat with the fresh air and then is sent out through the secondary water return pipe; when the fresh air does not need to be treated, the treatment coil can be manually placed in the treatment coil storage box due to the large resistance of the treatment coil. The device has simple structure and flexible operation, realizes the repeated utilization of energy sources, and can reduce the energy consumption of the fresh air handling unit.
The above embodiments are merely illustrative of a preferred embodiment, but not limiting. When the utility model is implemented, the proper replacement and/or modification can be carried out according to the requirements of users.
The number of apparatuses and the scale of the process described here are intended to simplify the description of the present invention. The application, modification and variation of the air conditioning fresh air treatment and energy recovery system of the present invention will be apparent to those skilled in the art.
While embodiments of the invention have been disclosed above, it is not intended to be limited to the applications listed in the specification and the examples. It can be applicable to various and be fit for the utility model discloses a field completely. Additional modifications will readily occur to those skilled in the art. The invention is therefore not to be limited to the specific details and illustrations shown and described herein, without departing from the general concept defined by the claims and their equivalents.

Claims (7)

1. The utility model provides an air conditioner new trend is handled and energy recuperation system which characterized in that includes:
a radiation component communicated with an external cold source and heat source;
the processing section is matched with the direction of the fresh air flow, and a processing coil pipe for reheating the fresh air flowing in is arranged in the processing section;
the fresh air treated by the treatment section flows into a room provided with the radiation component through the matched air supply pipe, and the waste water subjected to heat exchange by the radiation component flows into the reheating mechanism through the primary water return pipe and then is communicated with an external cold and heat source through the second water return pipe.
2. The fresh air processing and energy recovery system of air conditioner as claimed in claim 1, wherein the processing section is further provided with a holding box at a position matched with the processing coil;
wherein, the processing coil pipe is provided with elastic switching pipes respectively at the position matched with the primary water return pipe and the secondary water return pipe.
3. The fresh air processing and energy recovery system of claim 2 wherein the inner side walls of the processing section and the holding box are provided with a plurality of fixing clips which are matched with the processing coil.
4. The fresh air processing and energy recovery system of air conditioner as claimed in claim 2, wherein the processing coil is externally provided with a shell for encapsulating the processing coil;
wherein, the shell is provided with ports for extending two ends of the treatment coil pipe and further connecting with the primary water return pipe and the secondary water return pipe;
the casing is provided with the grid that can supply the new trend to pass through on the corresponding position with new trend through direction matched with.
5. The air conditioning fresh air treatment and energy recovery system of claim 2 wherein the adapter tube is configured as a flexible hose of metal material.
6. The fresh air processing and energy recovery system of claim 4 wherein the shelving box is disposed below the processing section, and the box body of the processing section is pivotally provided with a window for the processing coil to enter and exit on the side wall matched with the shelving box.
7. The air conditioner fresh air processing and energy recovery system as claimed in claim 1, wherein a fresh air pre-processing section is further provided before the processing section;
wherein, be provided with the filtering mechanism who gets rid of moisture, impurity on the new trend preliminary treatment section.
CN201922004956.XU 2019-11-18 2019-11-18 Fresh air processing and energy recovery system of air conditioner Active CN210740551U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112880030A (en) * 2021-01-28 2021-06-01 宁波奥克斯电气股份有限公司 Fresh air control method and device and air conditioner
CN114811735A (en) * 2022-04-01 2022-07-29 北京小米移动软件有限公司 Air conditioner, control method and device thereof and storage medium

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112880030A (en) * 2021-01-28 2021-06-01 宁波奥克斯电气股份有限公司 Fresh air control method and device and air conditioner
CN112880030B (en) * 2021-01-28 2022-08-19 宁波奥克斯电气股份有限公司 Fresh air control method and device and air conditioner
CN114811735A (en) * 2022-04-01 2022-07-29 北京小米移动软件有限公司 Air conditioner, control method and device thereof and storage medium

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Effective date of registration: 20240514

Address after: 518000, Building 9, Building A2606, Zone 2, Shenzhen Bay Science and Technology Ecological Park, No. 3609 Baishi Road, High tech Zone Community, Yuehai Street, Nanshan District, Shenzhen City, Guangdong Province

Patentee after: Shenzhen Ubiying Information Technology Co.,Ltd.

Country or region after: China

Address before: 201499 room 10144, building 14, 251 Liantang Road, Xinghuo Development Zone, Fengxian District, Shanghai

Patentee before: Shanghai Yinlu Construction Technology Co.,Ltd.

Country or region before: China