CN202648484U - Mesh used for extracting heat of transformation of compressed steam to perform radiant heat transfer - Google Patents

Mesh used for extracting heat of transformation of compressed steam to perform radiant heat transfer Download PDF

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Publication number
CN202648484U
CN202648484U CN 201220275358 CN201220275358U CN202648484U CN 202648484 U CN202648484 U CN 202648484U CN 201220275358 CN201220275358 CN 201220275358 CN 201220275358 U CN201220275358 U CN 201220275358U CN 202648484 U CN202648484 U CN 202648484U
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pipe
gas
communicated
net sheet
heat transfer
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Expired - Fee Related
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CN 201220275358
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Chinese (zh)
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陈万仁
梁年良
段建磊
刘中敏
何欣
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陈万仁
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Abstract

The utility model discloses a mesh used for extracting heat of transformation of compressed steam to perform radiant heat transfer. The mesh comprises an intake pipe, at least one section of gas distribution pipe and a collector tube, wherein the intake pipe is fixedly provided with an intake joint, and the collector tube is fixedly provided with a liquid return joint; one end of the gas distribution pipe is communicated with the intake pipe, and the other end of the gas distribution pipe is communicated with the collector tube. The mesh, provided by the utility model, can be used in the many fields of utilization of a heat pump to absorb waste heat and low-grade heat to perform radiant heat transfer, so that the clean energy is utilized, and the energy utilization rate is improved.

Description

The heat of transformation that is used for the extraction compressed steam is carried out the net sheet of radiant heat transfer
Technical field
The utility model relates to a kind of heating, heating installation that adopts the heat of transformation of extracting compressed steam to carry out radiant heat transfer.
Background technology
At present, along with the fast development of scientific and technical innovation, manufacturing technology, in the heat pump compressor field, frequency conversion, digital scroll compressor come out, can stable operation under the outdoor temperature below-25 ℃, and have very high operational energy efficiency ratio, for wind source heat pump has been opened up new road in the use in heating field.People adopt large-scale water source heat pump system to solve the changes in temperature problem in recent years, but the most areas of China is because the restriction of geological conditions, the underground water storage is limited, and the groundwater recharge that extracts difficulty, the application of large-scale water resource heat pump is very restricted, and therefore large-scale water source heat pump system is not the reasonable plan of dealing with problems.Adopt traditional wind source heat pump that heat is provided, use the heating of fan coil or air-line system, if do not adopt the electric additional heat must blowing cold air in the season of cold, can't satisfy the heating needs, adopt the additional thermoelectric net load of electricity can't all satisfy again.Moreover traditional wind source heat pump operating cost is too high, and the consumer can't accept at all.
In order to address the above problem, in ZL 2,008 2 0071027.X and ZL 2,008 2 0071026.5 patents: the indoor set of heat pump assembly is changed to: the two ends at the indoor fan coil pipe arrange threeway, and electric T-shaped valve is set or magnetic valve is installed, a path leads to the indoor fan coil pipe, another path leads to the coil pipe that is embedded in wallboard or ceiling or floor or the hanging board, compressed vapour directly enters in the coil pipe that is embedded in wallboard or ceiling or floor or the hanging board during heating, compressed steam, be embedded in the heat source body that the interior coil pipe of wallboard or ceiling or floor or hanging board and wallboard or ceiling or hanging board form indoor radiant heat transfer together; Compressed media enters fan coil during cooling.Under driven compressor, continue circulation by compressed steam and keep stable cold, the warm Power supply that carries out, satisfy the demand of indoor cooling heating.Adopt during cooling present technology very ripe fan coil transmit cold, have the Energy Efficiency Ratio the same with traditional approach and result of use; Adopt compressed steam during heating, be embedded in the heat source body transferring heat that coil pipe in wallboard or ceiling or floor or the hanging board and wallboard or ceiling or hanging board form indoor radiant heat transfer together, the condensation temperature of heat pump reduces more than 10 ℃ during heating, the equipment input power is little, Energy Efficiency Ratio is high, and (the Gao Shike of the COP of heating operation reaches more than 6.3, heating season comprehensive energy efficiency ratio can reach more than 2.8), noise is low, the psychological need of flooring radiation heat supply and human body adapts.Number of patent application is that 2,010 2 0555659.0 disclosed technology are: utilize heat pipe to form corresponding units and carry out the heat transmission, the adopting heat pipes for heat transfer unit was connected by air inlet communicating pipe, by air inlet communicating pipe providing compressed steam to the chuck that heat pipe and sleeve pipe form, therefore, air inlet communicating pipe, chuck, heat pipe are the heat source body of radiant heat transfer.
Utilize heat pipe can solve the problem of normal operation in the above-mentioned technology, still, the heat pipe cost is high, and spread is had certain influence.The heating coil pipe that is embedded in floor, wall, the ceiling cement utilizes the more tiny capillary network of diameter can solve the too huge problem of the compressed media circulatory system, can avoid that the pipeline cost is high, the compressed media charging amount is large, expense increases, the distribution of compressed media difficulty, operation stability is relatively poor to wait series of problems, but the on-the-spot installation difficulty of huge pipe network is large, construction quality is difficult to guarantee.Still there are the space of further perfect, raising in the explanation of above-mentioned situation, above-mentioned heat supply (warm up) form, confession (heat) heating equipment.
Summary of the invention
Technical problem to be solved in the utility model is to overcome weak point of the prior art, and the little and manufacturing of can finalizing the design of a kind of compressed media circulatory system, easy for installation, device that the heat of transformation that maintenance cost is low is used for extracting compressed steam is carried out radiant heat transfer are provided.
In order to solve the problems of the technologies described above by the following technical solutions: a kind of heat of transformation for the extraction compressed steam is carried out the net sheet of radiant heat transfer, and it comprises an air inlet pipe, at least one section gas-distributing pipe and a collector tube; Be fixed with inlet suction port on the air inlet pipe, be fixed with back the liquid joint on the collector tube; One end of gas-distributing pipe is communicated with air inlet pipe, and the other end is communicated with collector tube.
One end of gas-distributing pipe directly fixedly is communicated with air inlet pipe, and the other end directly fixedly is communicated with collector tube, and gas-distributing pipe is installed on the plastic deeping that plays the role of fixed and support usefulness.
Also have capillary in the net sheet, an end capillaceous is communicated with close gas-distributing pipe import department, and the other end capillaceous is communicated with close gas-distributing pipe exit; Capillary is communicated with air inlet pipe and collector tube respectively by gas-distributing pipe.
The internal diameter of gas-distributing pipe is the pipe of 1.5mm ~ 6mm in the net sheet, and the length of single gas-distributing pipe is 3m ~ 60m.
The length of each net sheet is that 0.5m ~ 20m, width are 0.5m ~ 1.9m.
This net sheet can be in factory's processing of finalizing the design, and the scene is carried out standardized construction and installed, and has saved huge liquid fill amount, has saved material, and installation quality, speed significantly improve.
If it is that 2,008 2 0071027.X and the patent No. are 2,008 2 0071026.5 to be embedded in the coil system in wallboard or ceiling or floor or the hanging board that this device is used for the patent No., the compressed media pipe network pipeline site operation difficulty of whole system significantly reduces, speed of application increases substantially, the stability of a system, cost, Energy Efficiency Ratio all can increase substantially, and also are convenient to follow-up maintenance.And the device in the utility model can use the field that utilizes heat pump absorption used heat, tow taste heat to carry out radiant heat transfer a plurality of, realizes utilization, the raising energy utilization rate of clean energy resource.
Description of drawings
Fig. 1 is the structural representation of embodiment 1.
Fig. 2 is the structural representation of embodiment 2.
Fig. 3 is the structural representation of embodiment 3.
Fig. 4 is the structural representation of embodiment 4.
Fig. 5 is the structural representation of embodiment 5.
The specific embodiment
Embodiment 1: as shown in Figure 1, the heat of transformation that is used for the extraction compressed steam in the present embodiment is carried out the net sheet of radiant heat transfer, and the net sheet is comprised of an air inlet pipe 2, one section gas-distributing pipe 4 and a collector tube 6; Air inlet pipe 2 is fixedly mounted with inlet suction port 3, is fixed with back liquid joint 7 on the collector tube 6; An end of gas-distributing pipe 4 is directly fixing with air inlet pipe 2 and is communicated with in the present embodiment, and the other end is direct to be fixed with collector tube 6 and be communicated with; The length 15m of gas-distributing pipe, internal diameter 1.5mm; Easy for installation gas-distributing pipe is fixed on the plastic deeping 1 in order to make.The net sheet that conducts heat should be complete in factory process, after packing is transported to the scene, as follows construction: the net sheet of the heat transfer that the vanning that factory is provided is complete, take out from packing box, in corresponding room, launch, air inlet pipe, gas-distributing pipe and collector tube are fixedly connected on design attitude.
Embodiment 2: as shown in Figure 2, the heat of transformation that be used for to extract compressed steam in the present embodiment is carried out the net sheet of radiant heat transfer, the net sheet by an air inlet pipe 2, collector tube 6, a plastic deeping 1 and be connected in parallel on air inlet pipe 2 and collector tube 6 between five sections gas-distributing pipes 4 form; Air inlet pipe 2 one ends are provided with inlet suction port 3, and the other end of collector tube 6 is provided with back liquid joint 7; One end of every section gas-distributing pipe 4 is directly fixed with air inlet pipe 2 and is communicated with, and the other end is directly fixed with collector tube 6 and is communicated with.Easy for installation gas-distributing pipe is fixed on the plastic deeping 1 in order to make.Net sheet area can be 6 ㎡-9 ㎡.
Other structures are with embodiment 1.
Embodiment 3: as shown in Figure 3, the heat of transformation that is used for the extraction compressed steam in the present embodiment is carried out the net sheet of radiant heat transfer, and the net sheet is comprised of an air inlet pipe 2, one section capillary 5, a collector tube 6 and one section gas-distributing pipe 4; Gas-distributing pipe 4 one ends are fixed with air inlet pipe 2 and are communicated with, and the other end of gas-distributing pipe 4 is fixed with collector tube 6 and is communicated with; Capillary 5 S-type being looped around around the gas-distributing pipe 4, an end of capillary 5 is communicated with the m place of close gas-distributing pipe 4 imports, and the other end of capillary 5 is communicated with the n place that exports near gas-distributing pipe 4; Capillary 5 is communicated with air inlet pipe 2 and collector tube 6 respectively by gas-distributing pipe 4.The net sheet is fixed by the horizontal Template Location that is carved with holddown groove and with wire when mounted.
Other structures are identical with embodiment 1.
Embodiment 4: as shown in Figure 4, the heat of transformation that be used for to extract compressed steam in the present embodiment is carried out the net sheet of radiant heat transfer, the net sheet by the net sheet by an air inlet pipe 2, a collector tube 6 and be connected in parallel on air inlet pipe 2 and collector tube 6 between five sections gas-distributing pipes 4 form; Air inlet pipe 2 is fixedly mounted with inlet suction port 3, is fixed with back liquid joint 7 on the collector tube 6.It is fixing that five sections gas-distributing pipes 4 are traversed the wire 8 of intersection.Above-mentioned parts can also be fixed on the plastic deeping again.
Other structures are with embodiment 1.
Embodiment 5: as shown in Figure 5, the heat of transformation that be used for to extract compressed steam in the present embodiment is carried out the net sheet of radiant heat transfer, and the net sheet is comprised of an air inlet pipe 2, two sections gas-distributing pipes 4, collector tube 6 and two networking shape capillaries 5; One end of every section gas-distributing pipe 4 all fixing with air inlet pipe 2 and be communicated with, the other end is all fixed with collector tube 6 and be communicated with; Netted capillary is corresponding one by one with gas-distributing pipe, and an end of the first networking shape capillary 5 is communicated with a place of close first paragraph gas-distributing pipe 4 imports, its other end is communicated with the b place that exports near first paragraph gas-distributing pipe 4; Another networking shape capillary 5a one end is located to be communicated with a ' of close second segment gas-distributing pipe 4a import, and its other end is located to be communicated with the b ' that exports near second segment gas-distributing pipe 4a; Two networking shape capillaries are communicated with air inlet pipe 2 and collector tube 6 respectively by two sections gas-distributing pipes respectively.Netted capillary also can play fixed support, and net sheet area can be 3 ㎡-5 ㎡.
Other structures are identical with embodiment 1.
Employing internal diameter capillaceous can adopt the pipe of 1.5mm ~ 6mm in above-described embodiment, and the length of single capillary is 3m ~ 60m; According to the convenience of installing, it is that 0.5m ~ 20m, width are that 0.5m ~ 1.9m is advisable that each heat transfer meshes sheet is made length.Gas-distributing pipe can or have many places to turn to for " U " or " S ", and gas-distributing pipe can be 2 sections, 3 sections, 4 sections, 6 sections, 8 sections or more that are arranged in parallel, and namely should select and lay according to the needs of construction.
The patent No. is that to be laid in indoor radiation heating coil system in 2,008 2 0071026.5 be that indoor heating system and the patent No. are that the radiation heating coil system in the used heat transfer coils of heating and other versions can be used device of the present utility model instead among 2,008 2 0071027.X.Be 2,008 2 0071026.5 and the patent No. when being 2,008 2 0071027.X when the utility model is used for the patent No., its using method is as follows: before the use, the pipe network device that the utility model is provided is embedded in the floor, link to each other by pipeline corresponding in compressed media pipe-line system and the utility model, vacuumize, then be filled with the compression media such as an amount of 410a, R245fa after connecting, connect control wire harness, plugged, setting operational mode, temperature parameter.This moment, whole system will according to setting automatic operation, realize energy-saving run.

Claims (5)

1. the heat of transformation that be used for to extract compressed steam is carried out the net sheet of radiant heat transfer, and it is characterized in that: it comprises an air inlet pipe, at least one section gas-distributing pipe and a collector tube; Be fixed with inlet suction port on the air inlet pipe, be fixed with back the liquid joint on the collector tube; One end of gas-distributing pipe is communicated with air inlet pipe, and the other end is communicated with collector tube.
2. the heat of transformation for the extraction compressed steam according to claim 1 is carried out the net sheet of radiant heat transfer, it is characterized in that: an end of gas-distributing pipe directly fixedly is communicated with air inlet pipe, the other end directly fixedly is communicated with collector tube, and gas-distributing pipe is installed on the plastic deeping that plays the role of fixed and support usefulness.
3. the heat of transformation for the extraction compressed steam according to claim 1 is carried out the net sheet of radiant heat transfer, it is characterized in that: also have capillary in the net sheet, an end capillaceous is communicated with close gas-distributing pipe import department, and the other end capillaceous is communicated with close gas-distributing pipe exit; Capillary is communicated with air inlet pipe and collector tube respectively by gas-distributing pipe.
4. according to claim 1,2 or 3 describedly carry out the net sheet of radiant heat transfer for the heat of transformations of extracting compressed steam, it is characterized in that: the internal diameter of gas-distributing pipe is the pipe of 1.5mm ~ 6mm in the net sheet, the length of single gas-distributing pipe is 3m ~ 60m.
5. the heat of transformation for the extraction compressed steam according to claim 4 is carried out the net sheet of radiant heat transfer, and it is characterized in that: the length of each net sheet is that 0.5m ~ 20m, width are 0.5m ~ 1.9m.
CN 201220275358 2012-06-12 2012-06-12 Mesh used for extracting heat of transformation of compressed steam to perform radiant heat transfer Expired - Fee Related CN202648484U (en)

Priority Applications (1)

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CN 201220275358 CN202648484U (en) 2012-06-12 2012-06-12 Mesh used for extracting heat of transformation of compressed steam to perform radiant heat transfer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201220275358 CN202648484U (en) 2012-06-12 2012-06-12 Mesh used for extracting heat of transformation of compressed steam to perform radiant heat transfer

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104315906A (en) * 2014-11-03 2015-01-28 陈万仁 Phase-change heat exchange pipe bundle with optimized structure and production process of phase-change heat exchange pipe bundle
CN107289060A (en) * 2017-01-19 2017-10-24 裘列秀 Electric car

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104315906A (en) * 2014-11-03 2015-01-28 陈万仁 Phase-change heat exchange pipe bundle with optimized structure and production process of phase-change heat exchange pipe bundle
CN107289060A (en) * 2017-01-19 2017-10-24 裘列秀 Electric car
CN107289060B (en) * 2017-01-19 2019-01-11 金超凡 Electric vehicle

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
EE01 Entry into force of recordation of patent licensing contract

Assignee: Henan Ruibang Environmental Technology Co. Ltd.

Assignor: Chen Wanren

Contract record no.: 2014410000042

Denomination of utility model: Mesh used for extracting heat of transformation of compressed steam to perform radiant heat transfer

Granted publication date: 20130102

License type: Exclusive License

Record date: 20140512

LICC Enforcement, change and cancellation of record of contracts on the licence for exploitation of a patent or utility model
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130102

Termination date: 20180612

CF01 Termination of patent right due to non-payment of annual fee