CN209116428U - A kind of modularization building heat-exchange unit system - Google Patents

A kind of modularization building heat-exchange unit system Download PDF

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Publication number
CN209116428U
CN209116428U CN201821722866.3U CN201821722866U CN209116428U CN 209116428 U CN209116428 U CN 209116428U CN 201821722866 U CN201821722866 U CN 201821722866U CN 209116428 U CN209116428 U CN 209116428U
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pipe
heat exchanger
water
pipe network
heat
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CN201821722866.3U
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Chinese (zh)
Inventor
屠金
李国青
李鹏
邱航
徐毅
魏继春
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Qingdao Taineng Technology Industrial Development Co Ltd
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Qingdao Taineng Technology Industrial Development Co Ltd
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Abstract

The utility model discloses a kind of modularization building heat-exchange unit systems, are related to Heat supply and heat exchange station applied technical field, including total water supplying pipe and total return pipe, further include at least two heat exchanger groups, and the heat exchanger group includes heat exchanger, exchange for heat;Heat exchanger unit A, heat exchanger unit B and moisturizing unit C, the moisturizing unit C include moisturizing pipeline C, and the moisturizing pipeline C is connected to pipe network water supplying pipe B.The utility model has the beneficial effects that, the system can be produced according to customized type, to be for heat unit with the small-scale unit such as building, compact, occupied area is few, can be carried out according to field pipes deployment scenarios individually designed, it is installed on wall by bracket, installation skill requirement is reduced, it can be achieved that installation is rapidly completed and puts into, reduces construction volume;Each heat exchanger group is arranged in parallel, the influence between reducing, even if going wrong, will not break heat on a large scale, solves the problems such as thermal unbalance, has energy-efficient effect.

Description

A kind of modularization building heat-exchange unit system
Technical field
The utility model relates to Heat supply and heat exchange station applied technical field, especially a kind of modularization building heat exchanger system System.
Background technique
The definition of heat exchange station is to change parameter of heating medium, distribution, control and metering for converting heating medium type, The facility for supplying user's heat is transported to heat exchange station through pipe network by the steam that steam power plant produces, is sent to heat exchanger and cold Jie Matter (water) carries out sufficient heat exchange.Existing heat exchange station heating demand is big, and heat-exchange unit is set type fixation, and all accessories are integrated It is bulky and inconvenient to transport on pedestal, harshness is required to in-site installation condition, heat supply mode is not fine, and there is also heat supplies not Balance, the deficiencies of energy consumption is high.Especially when facing higher building, it there is a problem that high for thermal unbalance and energy consumption.
Utility model content
Purpose of the utility model is to solve high for thermal unbalance, energy consumption existing for existing building central heating mode The problems such as, for the occupied area for reducing heat exchange station, modularization is arranged, from large to small, realizes Fast Installation, devises one kind Modularization building heat-exchange unit system.
Realize that above-mentioned purpose the technical solution of the utility model is a kind of modularization building heat-exchange unit system, including total Water supplying pipe and total return pipe further include at least two heat exchanger groups, and the heat exchanger group includes heat exchanger, are exchanged for heat; Heat exchanger unit A, equal with the quantity of the heat exchanger, the heat exchanger unit A includes pipe network water supplying pipe A and pipe network return pipe The water inlet end of A, the pipe network water supplying pipe A are connect with total water supplying pipe, and the water outlet of the pipe network return pipe A and total return pipe connect It connects, the pipe network water supplying pipe A is connected to pipe network return pipe A by the heat exchanger, in which: the pipe network water supplying pipe A is equipped with Ball valve A I, pressure transmitter A I, dirt separator A I, electric control valve A I, integrated temperature transmitter A I, thermometer A I and pressure gauge A Ⅰ;The pipe network return pipe A is equipped with calorimeter A II, integrated temperature transmitter A II, pressure transmitter A II, thermometer A II, ball Valve A II and pressure gauge A II;Heat exchanger unit B, equal with the quantity of the heat exchanger, the heat exchanger unit B includes that pipe network supplies The water inlet end of water pipe B and pipe network return pipe B, the pipe network water supplying pipe B and user, which export, to be connected, and the pipe network return pipe B's goes out Water end (W.E.) inputs total return pipe with user and connect, and the pipe network water supplying pipe B is connected to pipe network return pipe B by the heat exchanger, In: the pipe network water supplying pipe B is equipped with ball valve B I, thermometer B I, pressure transmitter B I, integrated temperature transmitter B I, dirt separator B I, butterfly valve B I and water pump B I;The pipe network return pipe B is equipped with butterfly valve B II, integrated temperature transmitter B II, pressure transmitter B II, thermometer B II, pressure gauge B II and calorimeter B II;Moisturizing unit C, it is equal with the quantity of the heat exchanger unit B, it is described Moisturizing unit C includes moisturizing pipeline C, and the moisturizing pipeline C is connected to pipe network water supplying pipe B, and the moisturizing pipeline C is equipped with butterfly valve C I, water pump C I, flowmeter C I.
It further, further include circulating water pipe, the circulating water pipe is equipped with butterfly valve B III, the both ends of the circulating water pipe It is connected to pipe network water supplying pipe B and pipe network return pipe B.
Further, the moisturizing unit C further includes water return pipeline C, and the water return pipeline C is equipped with solenoid valve C II, ball Valve C II, the water return pipeline C and the moisturizing pipeline C form closed circuit, and the water return pipeline C and pipe network water supplying pipe B connect It is logical.
Further, the calorimeter A II is equipped with integrator A II.
Further, the pipe network water supplying pipe B is equipped with check-valves B I.
Further, the moisturizing pipeline C is equipped with check-valves C I and flow transmitter C I.
The beneficial effects of the utility model are: the system can be produced according to customized type, it is with the small-scale unit such as building For heat unit, compact, occupied area is few, can be individually designed according to the progress of field pipes deployment scenarios, installs by bracket In on wall, reducing installation skill requirement, it can be achieved that installation is rapidly completed and puts into, reduce construction volume;Each heat exchanger Group is arranged in parallel, in same installation for that in heat unit, can also be layered installation, the influence between reducing, even if occurring Problem, will not break heat on a large scale, solve the problems such as thermal unbalance, have energy-efficient effect.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the application modularization building heat-exchange unit system;
Fig. 2 is the effect diagram of the application modularization building heat-exchange unit system.
In above each figure, 1, heat exchanger;
2, heat exchanger unit A;21, pipe network water supplying pipe A;22, pipe network return pipe A;23, ball valve A I;24, pressure transmitter A Ⅰ;25, dirt separator A I;26, electric control valve A I;27, integrated temperature transmitter A I;28, thermometer A I;29, pressure gauge A I; 210, calorimeter A II;211, integrated temperature transmitter A II;212, pressure transmitter A II;213, thermometer A II;214, ball valve A Ⅱ;215, pressure gauge A II;216, integrator A II;
3, heat exchanger unit B;31, pipe network water supplying pipe B;32, pipe network return pipe B;33, ball valve B I;34, thermometer B I;35, Pressure transmitter B I;36, integrated temperature transmitter B I;37, dirt separator B I;38, butterfly valve B I;39, water pump B I;310, butterfly valve B II; 311, integrated temperature transmitter B II;312, power transmitter B II;313, thermometer B II;314, pressure gauge B II;315, calorimeter B Ⅱ;316, check-valves B I;317, circulating water pipe;318, butterfly valve B III;
4, moisturizing unit C;41, moisturizing pipeline C;42, butterfly valve C I;43, water pump C I;44, flowmeter C I;45, water return pipeline C;46, solenoid valve C II;47, ball valve C II;48, check-valves C I;49, flow transmitter C I;
51, total water supplying pipe;52, total return pipe.
Specific embodiment
Further to illustrate that the utility model is the technical means and efficacy reaching predetermined purpose of utility model and being taken, Below in conjunction with attached drawing and preferred embodiment, to foundation specific embodiment of the present utility model, structure, feature and its effect, in detail Carefully it is described as follows:
The working principle of the application is: as unit of heat exchanger group, if building are to carry out modularization installation for heat unit and set It sets, compact, occupied area is few, can be carried out according to field pipes deployment scenarios individually designed.Each heat exchanger group is in parallel Setting, the association between reducing, convenient for detection replacement.Heat-exchange unit is that primary net is obtained heat, automatic continuous Be converted to the domestic water and heating water of user's needs.Hot water enters heat exchanger from the pipe network water supplying pipe A of heat exchanger unit A After carrying out heat exchange, flowed out from pipe network return pipe A;Secondary side return water, i.e. domestic water and heating pass through pipe network water supplying pipe B with water Heat exchange is carried out into heat exchanger, produces the hot water for different temperatures such as heating, air-conditioning, floor heating or domestic waters, with It meets the needs of users.
A kind of modularization building heat-exchange unit system is also wrapped as shown in Figure 1, including total water supplying pipe 51 and total return pipe 52 At least two heat exchanger groups are included, heat exchanger group includes heat exchanger 1, heat exchanger unit A2, heat exchanger unit B 3 and moisturizing unit C4. Wherein, heat exchanger 1 is mainly used for heat exchange.Heat exchanger unit A2 is equal with the quantity of heat exchanger 1, and heat exchanger unit A2 includes Pipe network water supplying pipe A21 and pipe network return pipe A22, the water inlet end of pipe network water supplying pipe A21 are connect with total water supplying pipe 51, pipe network return pipe The water outlet of A22 is connect with total return pipe 52, and pipe network water supplying pipe A21 is connected to pipe network return pipe A22 by heat exchanger 1.In pipe Net water supplying pipe A21 is equipped with ball valve A I 23, pressure transmitter A I 24, dirt separator A I 25, electric control valve A I 26, a temperature and becomes Send device A I 27, thermometer A I 28 and pressure gauge A I 29.Pipe network return pipe A22 is equipped with calorimeter A II 210, a temperature pick-up Device A II 211, pressure transmitter A II 212, thermometer A II 213, ball valve A II 214 and pressure gauge A II 215, in calorimeter A II Integrator A II 216 is set on 210.Above-mentioned all parts ensure that the hot water come from pipe network water supplying pipe A21 can pass through heat exchanger It is flowed out after 1, provides heat to heat exchanger.
Heat exchanger unit B 3 is equal with the quantity of heat exchanger 1, and heat exchanger unit B 3 includes that pipe network water supplying pipe B31 and pipe network return The water inlet end of water pipe B32, pipe network water supplying pipe B31 and user, which export, to be connected, and the water outlet of pipe network return pipe B32 and user's input are total Return pipe 52 connects, and pipe network water supplying pipe B31 is connected to pipe network return pipe B32 by heat exchanger 1.Wherein, on pipe network water supplying pipe B31 Equipped with ball valve B I 33, thermometer B I 34, pressure transmitter B I 35, integrated temperature transmitter B I 36, dirt separator B I 37, butterfly valve B I 38 With water pump B I 39, it is additionally provided with check-valves B I 316 on pipe network water supplying pipe B31, places water adverse current in managing.On pipe network return pipe B32 Equipped with butterfly valve B II 310, integrated temperature transmitter B II 311, pressure transmitter B II 312, thermometer B II 313, pressure gauge B II 314 and calorimeter B II 315.Above-mentioned all parts ensure that the water at low temperature come from pipe network water supplying pipe B31 can pass through heat exchanger 1 The a large amount of heat for flowing out, and conveniently adsorbing later.
Moisturizing unit C4 is equal with the quantity of heat exchanger unit B 3, and moisturizing unit C4 includes moisturizing pipeline C41, moisturizing pipeline C41 is connected to pipe network water supplying pipe B31, and moisturizing pipeline C41 is equipped with butterfly valve C I 42, water pump C I 43, flowmeter C I 44 and flow and becomes It send device C I 49, moisturizing pipeline C41 to be equipped with check-valves C I 48, prevents water adverse current in pipe.Automatic water replenishing system is devised, system is made Keep constant pressure.On this basis, moisturizing unit C4 further includes water return pipeline C45, water return pipeline C45 be equipped with solenoid valve C II 46, Ball valve C II 47, water return pipeline C45 and moisturizing pipeline C41 form closed circuit, and water return pipeline C45 and pipe network water supplying pipe B31 connect It is logical.Water return pipeline C45 is not only formed into a loop with moisturizing pipeline C41, is also formed into a loop with pipe network water supplying pipe B31.It is acted on It is as follows: the pressure in moisturizing pipeline C41 to be adjusted, convenient for the waste water in release pipe network water supplying pipe B31, moreover it is possible to play convenient for examination water Effect.
In addition, devising circulating water pipe 317, circulating water pipe 317 is equipped with butterfly valve B III 318, the both ends of circulating water pipe 317 It is connected to pipe network water supplying pipe B31 and pipe network return pipe B32.When more switching heat-exchanger 1, it can be kept by circulating water pipe 317 Smooth, the reduction replacement bring trouble in channel;Be conducive to the smooth of pipeline in real-time detection heat exchanger unit B 3.
In the application, primary net flow is controlled with electric control valve A I 26, secondary network outlet is made to keep set temperature, according to Outdoor temperature passes through the outlet temperature that integrated temperature transmitter A II 211 automatically adjusts secondary network, passes through pressure transmitter A II 212 Secondary side is controlled for return water pressure difference.
When in use, that heat exchanger group is mounted on building etc. is multiple for heat unit, and one of heat exchanger group is placed on In high area, another is placed in low area, and such as the high level of 80m, 40m is the following are low layer, and the above are high levels by 40m, by heat exchanger group Layering installation can be directly mounted on wall by bracket.Specifically, heat exchanger group is returned with total water supplying pipe 51 and always respectively Water pipe 52 connects, and hot water is flowed into from pipe network water supplying pipe A, flows out from pipe network return pipe A22, and heat exchanger 1 adsorbs the heat.By user The water pipe at end inputs total return pipe 52 with the water inlet end of pipe network water supplying pipe B31 and family respectively and connect, and user's water passes through heat exchanger 1 Afterwards, the heat in absorption heat-exchange device 1, then takes away heat.
The utility model is described above with reference to preferred embodiment, but the protection scope of the utility model is not Limited to this can carry out various improvement and can be with equivalent without departing from the scope of the invention to it Object replaces component therein, as long as structural conflict is not present, items technical characteristic mentioned in the various embodiments can appoint Meaning mode combines, and any reference signs in the claims should not be construed as limiting the involved claims no matter From the point of view of which point, the present embodiments are to be considered as illustrative and not restrictive.Therefore, any right that falls into is wanted All technical solutions in the range of asking are within the protection scope of the present utility model.

Claims (6)

1. a kind of modularization building heat-exchange unit system, including total water supplying pipe (51) and total return pipe (52), which is characterized in that also Including at least two heat exchanger groups, the heat exchanger group includes
Heat exchanger (1) is exchanged for heat;
Heat exchanger unit A (2), equal with the quantity of the heat exchanger (1), the heat exchanger unit A (2) includes pipe network water supplying pipe The water inlet end of A (21) and pipe network return pipe A (22), the pipe network water supplying pipe A (21) are connect with total water supplying pipe (51), the pipe network The water outlet of return pipe A (22) is connect with total return pipe (52), and the pipe network water supplying pipe A (21) and pipe network return pipe A (22) are logical Cross the heat exchanger (1) connection, in which: the pipe network water supplying pipe A (21) is equipped with ball valve A I (23), pressure transmitter A I (24), dirt separator A I (25), electric control valve A I (26), one temperature transmitter A I (27), thermometer A I (28) and pressure gauge A Ⅰ(29);The pipe network return pipe A (22) is equipped with calorimeter A II (210), integrated temperature transmitter A II (211), pressure inverting Device A II (212), thermometer A II (213), ball valve A II (214) and pressure gauge A II (215);
Heat exchanger unit B (3), equal with the quantity of the heat exchanger (1), the heat exchanger unit B (3) includes pipe network water supplying pipe B (31) and pipe network return pipe B (32), the water inlet end of the pipe network water supplying pipe B (31) and user, which export, to be connected, the pipe network return water The water outlet of pipe B (32) inputs total return pipe (52) with user and connect, the pipe network water supplying pipe B (31) and pipe network return pipe B (32) it is connected to by the heat exchanger (1), in which: the pipe network water supplying pipe B (31) is equipped with ball valve B I (33), thermometer B I (34), pressure transmitter B I (35), one temperature transmitter B I (36), dirt separator B I (37), butterfly valve B I (38) and water pump B I (39);The pipe network return pipe B (32) is equipped with butterfly valve B II (310), one temperature transmitter B II (311), pressure transmitter B II (312), thermometer B II (313), pressure gauge B II (314) and calorimeter B II (315);
Moisturizing unit C (4), equal with the quantity of the heat exchanger unit B (3), the moisturizing unit C (4) includes moisturizing pipeline C (41), the moisturizing pipeline C (41) is connected to pipe network water supplying pipe B (31), and the moisturizing pipeline C (41) is equipped with butterfly valve C I (42), water pump C I (43), flowmeter C I (44).
2. a kind of modularization building heat-exchange unit system according to claim 1, which is characterized in that further include circulating water pipe (317), the circulating water pipe (317) is equipped with butterfly valve B III (318), and the both ends connection pipe network of the circulating water pipe (317) supplies water Pipe B (31) and pipe network return pipe B (32).
3. a kind of modularization building heat-exchange unit system according to claim 1, which is characterized in that the moisturizing unit C It (4) further include (45) water return pipeline C, the water return pipeline C (45) is equipped with solenoid valve C II (46), ball valve C II (47), described Water return pipeline C (45) and the moisturizing pipeline C (41) form closed circuit, the water return pipeline C (45) and pipe network water supplying pipe B (31) it is connected to.
4. a kind of modularization building heat-exchange unit system according to claim 1, which is characterized in that the calorimeter A II (210) it is equipped with integrator A II (216).
5. a kind of modularization building heat-exchange unit system according to claim 1, which is characterized in that the pipe network water supplying pipe B (31) is equipped with check-valves B I (316).
6. a kind of modularization building heat-exchange unit system according to claim 1, which is characterized in that the moisturizing pipeline C (41) it is equipped with check-valves C I (48) and flow transmitter C I (49).
CN201821722866.3U 2018-10-24 2018-10-24 A kind of modularization building heat-exchange unit system Active CN209116428U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821722866.3U CN209116428U (en) 2018-10-24 2018-10-24 A kind of modularization building heat-exchange unit system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821722866.3U CN209116428U (en) 2018-10-24 2018-10-24 A kind of modularization building heat-exchange unit system

Publications (1)

Publication Number Publication Date
CN209116428U true CN209116428U (en) 2019-07-16

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Application Number Title Priority Date Filing Date
CN201821722866.3U Active CN209116428U (en) 2018-10-24 2018-10-24 A kind of modularization building heat-exchange unit system

Country Status (1)

Country Link
CN (1) CN209116428U (en)

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Effective date of registration: 20210618

Granted publication date: 20190716