CN211119597U - Modular integrated parallel heat exchange intelligent control linkage hot water supply device - Google Patents

Modular integrated parallel heat exchange intelligent control linkage hot water supply device Download PDF

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Publication number
CN211119597U
CN211119597U CN201921329216.7U CN201921329216U CN211119597U CN 211119597 U CN211119597 U CN 211119597U CN 201921329216 U CN201921329216 U CN 201921329216U CN 211119597 U CN211119597 U CN 211119597U
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China
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pipe
water
hot water
heating
furnace body
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Expired - Fee Related
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CN201921329216.7U
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Chinese (zh)
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孟西庆
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Xi'an Haichuan Electromechanical Equipment Engineering Co ltd
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Xi'an Haichuan Electromechanical Equipment Engineering Co ltd
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Abstract

The utility model discloses a modular integrates parallelly connected heat transfer intelligence and controls linkage hot water supply device, including parallelly connected furnace body system, heating hot water system and life hot water system, parallelly connected furnace body system sets up the one side at the heating hot water system, one side that heating hot water system kept away from parallelly connected furnace body system is provided with life hot water system, the beneficial effects of the utility model are that: the utility model relates to a fast mode integrates parallelly connected heat transfer intelligence and controls linkage hot water supply device is controlled by hot water production circulation intelligence, temperature heat transfer data intelligence is controlled, hot water supply terminal regulation and control three part is constituteed, collect many parallelly connected production antithetical couplet of furnace body accuse, heating life components of a whole that can function such as branch heat transfer output, terminal temperature velocity of flow feels accuse linkage as an organic whole, the regulation and control switching operation of implementing monomer furnace body or parallelly connected furnace body, realize the energy-conserving operation of energy consumption of furnace body best, realize the temperature velocity of flow variable automatic control supply of terminal life/heating water, thereby accomplish the production supply of the life/heating water at user terminal.

Description

Modular integrated parallel heat exchange intelligent control linkage hot water supply device
Technical Field
The utility model relates to a novel modularization integrated form hot water supply technical field specifically is a mould fast formula integrates parallelly connected heat transfer intelligence and controls linkage hot water supply device.
Background
At present, the supply modes of domestic hot water and heating hot water are basically carried out by adopting respective independent hot water supply system configuration or adopting a secondary heat exchange mode of a public network heat source; the hot water supply modes have the disadvantages of dual equipment configuration, non-interchangeable public use, large construction investment, high operation cost, non-use of seasonal equipment, more maintenance items and the like, and the selection of the hot water supply mode integrating a hot water furnace body, heat energy exchange and hot water intelligent control is particularly important when the difficulties of the disadvantages are faced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a mould fast formula integrates parallelly connected heat transfer intelligence and controls linkage hot water supply device to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a mould fast formula integrates parallelly connected heat transfer intelligence and controls linkage hot water supply device, includes parallelly connected furnace body system, heating hot water system and life hot water system, parallelly connected furnace body system sets up in one side of heating hot water system, one side that heating hot water system kept away from parallelly connected furnace body system is provided with life hot water system.
Preferably, the parallel furnace body system is composed of two parallel hot water furnace bodies, a water collecting output pipe, a circulating pump body, a pure water purifier, a furnace body water outlet valve, a heating water pipe and a pure water output pipe, the parallel hot water furnace bodies are composed of two parallel hot water furnace bodies, the circulating pump body is arranged between the two parallel hot water furnace bodies, one end of each parallel hot water furnace body is communicated with the water collecting output pipe, the furnace body water outlet valve is arranged on the pipe wall of the water collecting output pipe, the pure water purifier is arranged at one end, close to the parallel hot water furnace bodies, of the water collecting output pipe, and the other two ends, far away from the pure water purifier, of the parallel hot water furnace bodies are respectively communicated with the heating water.
Preferably, the heating hot water system comprises a first living heat exchange pipe, a heat exchange water return pipe, a first heat exchanger, a living water delivery pipe, a heating water softener, a living water delivery pump pipe, a heating circulating pump, a heating delivery pipe and a heating hot water pipe, wherein the first living heat exchange pipe and the heat exchange water return pipe are both communicated with the water collection output pipe, the other end of the first living heat exchange pipe is communicated with the first heat exchanger, the other end of the first heat exchanger is communicated with the living water delivery pipe, one end of the living water delivery pipe far away from the first heat exchanger is communicated with the heating water delivery pipe, one end of the first heat exchanger close to the first living heat exchange pipe is communicated with the heating water softener, one end of the first living heat exchange pipe far away from the living water delivery pump pipe is communicated with the living water delivery pump pipe, the other end of the living water delivery pump pipe is connected with, one end of the heating delivery pipe, which is far away from the heating circulating pump, is communicated with a heating hot water pipe, and the other end of the heating hot water pipe is communicated with one end of the first heat exchanger, which is close to the living water delivery pipe.
Preferably, the domestic hot water system is composed of a second heat exchanger, a second domestic heat exchange pipe, a domestic raw water pipe, a domestic hot water pipe and a raw water input pipe, one end of the second heat exchanger is communicated with the heating water pipe, the other end of the second heat exchanger is communicated with the heat exchange water return pipe, one end of the second heat exchanger, which is close to the heating water pipe, is connected with the domestic raw water pipe, the other end of the domestic raw water pipe is communicated with the domestic hot water pipe, the other end of the domestic hot water pipe is communicated with the raw water input pipe, one end of the second heat exchanger, which is close to the heat exchange water return pipe, is communicated with the second domestic heat exchange pipe, and the other end of the second domestic heat exchange pipe is.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model relates to a fast mode integrates parallelly connected heat transfer intelligence and controls linkage hot water supply device is controlled by hot water production circulation intelligence, temperature heat transfer data intelligence is controlled, hot water supply terminal regulation and control three part is constituteed, collect many parallelly connected production antithetical couplet of furnace body accuse, heating life components of a whole that can function such as branch heat transfer output, terminal temperature velocity of flow feels accuse linkage as an organic whole, the regulation and control switching operation of implementing monomer furnace body or parallelly connected furnace body, realize the energy-conserving operation of energy consumption of furnace body best, realize the temperature velocity of flow variable automatic control supply of terminal life/heating water, thereby accomplish the production supply of the life/heating water at user terminal.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
In the figure: 1. a hot water furnace body is connected in parallel; 2. a water collection output pipe; 3. a circulating pump body; 4. a pure water purifier; 5. a furnace body water outlet valve; 6. a heating water pipe; 7. a pure water output pipe; 8. a first heat exchange tube for life; 9. A heat exchange water return pipe; 10. a first heat exchanger; 11. a living water delivery pipe; 12. a heating water softener; 13. a domestic water delivery pump pipe; 14. a heating circulating pump; 15. a heating delivery pipe; 16. a heating hot water pipe; 17. a second heat exchanger; 18. a second life heat exchange pipe; 19. a living raw water pipe; 20. a domestic hot water pipe; 21. a raw water input pipe; 01. a furnace body system is connected in parallel; 02. a heating hot water system; 03. provided is a domestic hot water system.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1, the present invention provides a technical solution: the utility model provides a quick formula integrates parallelly connected heat transfer intelligence and controls linkage hot water supply device, includes parallelly connected furnace body system 01, heating hot water system 02 and life hot water system 03, and parallelly connected furnace body system 01 sets up in one side of heating hot water system 02, and one side that heating hot water system 02 kept away from parallelly connected furnace body system 01 is provided with life hot water system 03.
The parallel furnace body system 01 is composed of parallel hot water furnace bodies 1, a water collecting output pipe 2, a circulating pump body 3, a pure water purifier 4, a furnace body water outlet valve 5, a heating water delivery pipe 6 and a pure water output pipe 7, wherein the parallel hot water furnace bodies 1 are composed of two parallel hot water furnace bodies 1, the circulating pump body 3 is arranged between the two parallel hot water furnace bodies 1, one end of each parallel hot water furnace body 1 is communicated with the water collecting output pipe 2, the furnace body water outlet valve 5 is arranged on the pipe wall of the water collecting output pipe 2, the pure water purifier 4 is arranged at one end of the water collecting output pipe 2 close to the parallel hot water furnace bodies 1, the other two ends of the parallel hot water furnace bodies 1 far away from the pure water purifier 4 are respectively communicated with the heating water delivery pipe 6 and the pure water output pipe 7, and the water purification treatment, the plurality of parallel furnace bodies, the furnace body circulating pump bodies 3, the system consists of parts such as a return connection pipe network, a temperature control flow sensing control and the like, and is mainly used for combustion automatic control operation of a single furnace body, switching joint control operation of parallel furnace bodies and furnace body heat exchange joint control of a system on one side.
The heating and hot water system 02 comprises a first living heat exchange pipe 8, a heat exchange water return pipe 9, a first heat exchanger 10, a living water delivery pipe 11, a heating water softener 12, a living water delivery pump pipe 13, a heating circulating pump 14, a heating delivery pipe 15 and a heating hot water pipe 16, wherein the first living heat exchange pipe 8 and the heat exchange water return pipe 9 are both communicated with a water collection output pipe 2, the other end of the first living heat exchange pipe 8 is communicated with the first heat exchanger 10, the other end of the first heat exchanger 10 is communicated with the living water delivery pipe 11, one end of the living water delivery pipe 11 far away from the first heat exchanger 10 is communicated with the heating water delivery pipe 6, one end of the first heat exchanger 10 close to the first living heat exchange pipe 8 is communicated with the heating water softener 12, one end of the living heat exchange pipe 8 far away from the first living heat exchange pipe is communicated with the living water delivery pump pipe 13, the other end of the living water, the heating water supply system is characterized in that one end, far away from a heating circulating pump 14, of a heating conveying pipe 15 is communicated with a heating hot water pipe 16, the other end of the heating hot water pipe 16 is communicated with one end, close to a life water conveying pipe 11, of a first heat exchanger 10, a life heat exchange facility, a heating heat exchange facility, one-side water temperature sensing and control unit, two-side heating soft water, two-side life water tanks, a heating circulating pump 14, a life water supply pump body and other components are assembled, and the valve body and pump body automatic control switching device is mainly used for.
The domestic hot water system 03 comprises a second heat exchanger 17, a second domestic heat exchange pipe 18, a domestic raw water pipe 19, a domestic hot water pipe 20 and a raw water input pipe 21, one end of the second heat exchanger 17 is communicated with the heating water delivery pipe 6, the other end of the second heat exchanger 17 is communicated with a heat exchange water return pipe 9, one end of the second heat exchanger 17 close to the heating water delivery pipe 6 is connected with the domestic raw water pipe 19, the other end of the domestic raw water pipe 19 is communicated with the domestic hot water pipe 20, the other end of the domestic hot water pipe 20 is communicated with the raw water input pipe 21, one end of the second heat exchanger 17 close to the heat exchange water return pipe 9 is communicated with the second domestic heat exchange pipe 18, the other end of the second domestic heat exchange pipe 18 is communicated with the domestic hot water pipe 20, a heating water return terminal temperature sensor, a heating water supply flow speed change controller, a heating circulating pump 14 and other parts are assembled to form a heating, The domestic circulation pump body 3 and other parts are assembled to form a domestic hot water supply system which is mainly used for implementing automatic control variable regulation on the temperature and flow rate of heating/domestic hot water.
Specifically, when the utility model is used, according to the heat negative variety demand used by the terminal life/heating hot water, the control and the switching operation of the single furnace body or the parallel furnace bodies are implemented through the control of the intelligent data control software system, the optimal energy consumption and energy saving operation of the furnace body is realized, the temperature flow rate variety automatic control and supply of the terminal life/heating water is realized, thereby the production and supply process of the life/heating water using the terminal is completed, the parallel hot water furnace body 1 and the parallel circulating pump body 3 which are arranged on the frame of the furnace body are operated through the system intelligent main cabinet or the furnace body control panel, the pure water purification device automatically controls and supplies water to the furnace body through the water tank, the furnace water is output through the furnace body water outlet valve 5 and is connected in parallel into the water collecting output header pipe, and is controlled by the heating water delivery valve pipe and the life water delivery valve pipe and is respectively, the respective backwater is converged into a water collecting and returning header pipe; the two sides of the heating heat exchange, the heating circulating pump 14 and the heating conveying main pipe form a secondary slow main water supply system, the heating water softener automatically supplies water to the secondary system through a water tank, and the heating circulating pump 14 is driven to run by the sensing and control of the heating flow speed arranged at the tail end of the heating system; the heating branch valve pipe, the heat exchange coil inlet pipe, the heat exchange coil return pipe and the heat exchange return water main pipe form a secondary heating and buffering branch water supply system, and return water temperature sensing control arranged at the tail end of a branch system drives the heating branch valve pipe to operate; the domestic raw water storage tank, the two sides of the domestic heat exchange, the domestic water delivery pump body and the domestic delivery main pipe form a secondary domestic water main water supply system, a heating circulating pump 14 is driven to operate by sensing and controlling the heating flow speed installed at the tail end of the system, and a return water temperature sensing and controlling device installed at the tail end of the branch system drives the domestic branch delivery pipe to operate.
In the description of the present invention, it is to be understood that the terms "coaxial", "bottom", "one end", "top", "middle", "other end", "upper", "one side", "top", "inner", "front", "center", "both ends", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
Furthermore, the terms "first", "second", "third", "fourth" are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated, whereby the features defined as "first", "second", "third", "fourth" may explicitly or implicitly include at least one such feature.
In the present invention, unless otherwise expressly stated or limited, the terms "mounted," "disposed," "connected," "fixed," "screwed" and the like are to be construed broadly, e.g., as meaning fixedly connected, detachably connected, or integrally formed; can be mechanically or electrically connected; they may be directly connected or indirectly connected through an intermediate medium, and may be connected through the inside of two elements or in an interaction relationship between two elements, unless otherwise specifically defined, and the specific meaning of the above terms in the present invention will be understood by those skilled in the art according to specific situations.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (3)

1. The modular integrated parallel heat exchange intelligent control linkage hot water supply device is characterized by comprising a parallel furnace body system (01), a heating hot water system (02) and a domestic hot water system (03), wherein the parallel furnace body system (01) is arranged on one side of the heating hot water system (02), and the domestic hot water system (03) is arranged on one side, away from the parallel furnace body system (01), of the heating hot water system (02);
the parallel furnace body system (01) consists of a parallel hot water furnace body (1), a water collecting output pipe (2), a circulating pump body (3), a pure water purifier (4), a furnace body water outlet valve (5), a heating water pipe (6) and a pure water output pipe (7), the parallel hot water furnace body (1) is composed of two parallel hot water furnace bodies (1), and a circulating pump body (3) is arranged between the two parallel hot water furnace bodies (1), one end of the parallel hot water furnace body (1) is communicated with a water collecting output pipe (2), a furnace body water outlet valve (5) is arranged on the pipe wall of the water collecting output pipe (2), and one end of the water collecting output pipe (2) close to the parallel hot water furnace body (1) is provided with a pure water purifier (4), the other two ends of the parallel hot water furnace body (1) far away from the pure water purifier (4) are respectively communicated with a heating water pipe (6) and a pure water output pipe (7).
2. The modular integrated parallel heat exchange intelligent control linkage hot water supply device as claimed in claim 1, wherein: the heating hot water system (02) consists of a first life heat exchange pipe (8), a heat exchange water return pipe (9), a first heat exchanger (10), a life water conveying pipe (11), a heating water softener (12), a life water conveying pump pipe (13), a heating circulating pump (14), a heating conveying pipe (15) and a heating hot water pipe (16), wherein the first life heat exchange pipe (8) and the heat exchange water return pipe (9) are communicated with a water collecting output pipe (2), the other end of the first life heat exchange pipe (8) is communicated with the first heat exchanger (10), the other end of the first heat exchanger (10) is communicated with the life water conveying pipe (11), one end, far away from the first heat exchanger (10), of the life water conveying pipe (11) is communicated with the heating water conveying pipe (6), one end, close to the first life heat exchange pipe (8), of the first heat exchanger (10) is communicated with the heating water softener (12), one end far away from first life heat exchange pipe (8) communicates has life water delivery pump line (13), the other end of life water delivery pump line (13) is connected with heating circulating pump (14), the other end of heating circulating pump (14) is connected with heating conveyer pipe (15), the one end that heating circulating pump (14) were kept away from to heating conveyer pipe (15) communicates with heating hot-water line (16), the other end of heating hot-water line (16) communicates with the one end that first heat exchanger (10) is close to life raceway (11).
3. The modular integrated parallel heat exchange intelligent control linkage hot water supply device as claimed in claim 1, wherein: the domestic hot water system (03) consists of a second heat exchanger (17), a second domestic heat exchange pipe (18), a domestic raw water pipe (19), a domestic hot water pipe (20) and a raw water input pipe (21), one end of the second heat exchanger (17) is communicated with the heating water pipe (6), the other end of the second heat exchanger (17) is communicated with the heat exchange water return pipe (9), one end of the second heat exchanger (17) close to the heating water pipe (6) is connected with a living raw water pipe (19), the other end of the life raw water pipe (19) is communicated with a life hot water pipe (20), the other end of the domestic hot water pipe (20) is communicated with a raw water input pipe (21), one end of the second heat exchanger (17) close to the heat exchange water return pipe (9) is communicated with a second living heat exchange pipe (18), the other end of the second domestic heat exchange pipe (18) is communicated with a domestic hot water pipe (20).
CN201921329216.7U 2019-08-16 2019-08-16 Modular integrated parallel heat exchange intelligent control linkage hot water supply device Expired - Fee Related CN211119597U (en)

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Application Number Priority Date Filing Date Title
CN201921329216.7U CN211119597U (en) 2019-08-16 2019-08-16 Modular integrated parallel heat exchange intelligent control linkage hot water supply device

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CN201921329216.7U CN211119597U (en) 2019-08-16 2019-08-16 Modular integrated parallel heat exchange intelligent control linkage hot water supply device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113685891A (en) * 2021-07-16 2021-11-23 河北壬昌科技有限公司 Intelligent parallel group control heating system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113685891A (en) * 2021-07-16 2021-11-23 河北壬昌科技有限公司 Intelligent parallel group control heating system

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Granted publication date: 20200728

Termination date: 20210816