CN102200316A - Digital indoor electric heating and heat preserving regulator - Google Patents

Digital indoor electric heating and heat preserving regulator Download PDF

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Publication number
CN102200316A
CN102200316A CN2010101304909A CN201010130490A CN102200316A CN 102200316 A CN102200316 A CN 102200316A CN 2010101304909 A CN2010101304909 A CN 2010101304909A CN 201010130490 A CN201010130490 A CN 201010130490A CN 102200316 A CN102200316 A CN 102200316A
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heat transfer
heat
diffusion
heating
frequency conversion
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CN2010101304909A
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Chinese (zh)
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蔡大波
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Shenzhen Bosaidong Technology Co Ltd
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Shenzhen Bosaidong Technology Co Ltd
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Priority to CN2010101304909A priority Critical patent/CN102200316A/en
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Abstract

The invention relates to the field of digital indoor electric heating and heat preserving regulators, and in particular realizes a way of hot air diffusion by a new heat-source electric heater. A heat diffusion board (8) in a host machine is made of aluminum alloy or metal, a plurality of heat-transfer guide plates (26) are arranged in the heat diffusion board (8) to form a heat-transfer guide plate subassembly (41), and a plurality of heat-transfer guide plate guide holes (40) and a variable frequency fan mounting passageway (39) are arranged in the heat-transfer guide plate subassembly (41), so that the heat diffusion speed is improved. Heat diffusion holes (47), peripheral heat diffusion holes (5), fixing holes (48) for mounting, and a box opening surface (50) of an electric control box (10) are arranged in a back cover (46), a fixing hanging plate (52) of the host machine is fixed on the back cover (46), an upper end bracket (51) and a lower end bracket (53) of the fixing hanging plate (52) are arranged on the fixing hanging plate (52) of the host machine, so that the fixing hanging plate (52) of the host machine is fixed on the wall to connect with the host machine into a whole. According to the invention, a heating and heat preserving control system which has the functions of PID (Proportion Integration Differentiation) self-regulation and self-adaptation is provided, a manual/automatic undisrupted switching function is realized, and various function regulating subassemblies and display modules, in a form of remote input, are equipped. The application of a variable frequency accelerating driving subassembly with function of warm air convective diffusion and a new hot air convective diffusion mode is beneficial to realization of indoor heating without noise, light pollution and adverse emission.

Description

Digital indoor electrothermal adjuster
Technical field
Patent of the present invention relates to a kind of " digital indoor electrothermal adjuster " field, especially employing aluminium alloy or metal rapid diffusion heat energy have been realized, new hot gas convection model, noiselessness and light pollution have been realized warming adjusting digitlization, the control of system type temperature/humidity, improved energy-conservation and comprehensive ratio ease of use, make energy conversion efficiency more than 98%, the heat energy utilization rate can reach 100%, and heating duration, indoor warming temperature can realize network management and regulate arbitrarily.
Background technology
At present, known heating mode has air-conditioning, air feed radiator and commercially available space heater, space heater generally is to adopt the mode of oily fourth, warm braw, reverberation, its shortcoming is a defective such as always have heating, the speed that heats is slow, big noise is arranged, light pollution is arranged, disposal of pollutants is arranged, service life is short, thermal conversion efficiency is low, and the air feed heat cost is high and be subjected to the restriction of air feed, is the comparatively general mode of heating at present.
Summary of the invention
In order to overcome above-mentioned defective, patent of the present invention provides a kind of " digital indoor electrothermal adjuster ", adopt new thermal source electric heating element, the convection current diffusion heat heating assembly that aluminium alloy or metal are new, can carry out PID from adjusting and the heating of adaptation function and the control of warming system, manual no disturbance handoff functionality, the heat of remote control input and function adjusting part and demonstration module.Overall structure is divided into new thermal source calandria, the convection current diffusion heat schema component that aluminium alloy is new, and driven unit, the closed-loop control system of DSP technology are quickened in the frequency conversion of heating installation convection current.The functional Metal Structural Parts that are adapted to interior decoration, patent of the present invention can extensively be useful for all places of heating demand, is that practicality is better than air feed or electricity is warmed oneself and the outstanding heating mode of energy-saving and emission-reduction.
Patent of the present invention solves the technical scheme that its technical problem adopts:
A kind of " digital indoor electrothermal adjuster ", it is characterized in that: adopt new thermal source electric heating element, the convection current diffusion heat pattern that metal or aluminium alloy are new, the drive pattern of the heating installation water conservancy diversion that frequency conversion is quickened, the natural heating installation convection type that thermal diffusion plate and thermally induced flow plate are formed.The closed-loop control system of DSP technology, the heating and the warming system of realization PID self-regulation mode and adaptation function, manual no disturbance handoff functionality, the adjusting part of remote control input function and demonstration module operating case.Realize heating fast, the heating installation water conservancy diversion is quickened in frequency conversion, makes it form noiselessness, unglazed interference, does not have bad discharging, need not the heating installation system product of the electrothermal of air feed heating.
The complete machine shape and the structural feature of digital indoor electrothermal adjuster are divided into:
Adopt square or rectangular metal material to make the protective plate of gaseous exchange, in the middle or periphery have pod apertures, in the front of water conservancy diversion protective plate and periphery be provided with fixing point and be connected as a whole with the thermal source diffuser plate.The electric heating assembly multidigit is installed on the thermal source diffuser plate, thereon down or periphery embed temperature detection sensor, perpendicular multi-disc hot gas deflector is set on the thermal source diffuser plate, and to form the assembly of rapid diffusion heat be thermal diffusion plate.The diversion mode of thermal diffusion plate is provided with two kinds of hot component patterns of rapid diffusion, a kind of is the hole of opening the natural air convection current of symmetry on the thermally induced flow plate, another kind is that the upper and lower natural air of opening at the thermally induced flow plate is to discharge orifice, perforate in the middle embeds circular or cylindrical gas and quickens blower fan or fan, forms convection current of nature heating installation and the new thermal source thermal diffusion plate system of quickening convection current.At the periphery of new thermal source thermal diffusion plate and the plane is provided with installing hole and bonnet connects as one, plane and periphery at bonnet are provided with louvre, a left side or lower right side at bonnet are provided with electric control box, being provided with fixing hole on the plane of bonnet connects as one with the fixedly link plate of installing and using, provide convenience with convenient for indoor installation, increased substantially the stability of complete machine.A left side or the right at bonnet are provided with EL or LED night-light, are provided with to be electrically connected aviation socket and adjusting and to show that the module operating case links to each other, and forms electric warming closed-loop control system on the electric control box of bonnet.
The electrical installation principle of digital indoor electrothermal adjuster is to adopt the closed-loop control system mode of DSP technology, realize the heating and the warming system of PID self-regulation mode and adaptation function, mainly be to be the energy-conservation and efficient thermal diffusion warming design of warming oneself, manual no disturbance handoff functionality, the detection of remote control input function and indoor temperature and demonstration module are formed system's operating case.Use for many indoor electrothermal adjusters of number simultaneously provides network monitoring and management, has realized in the hotel, the integrated operation when use in train and collective place, helps energy-saving monitoring.Circuit part is divided into: information shows and operating unit, indoor temperature is provided with and detecting unit, the temperature PID self-regulation of electrical heating thermal source and thermal diffusion plate, detection control module, the variable frequency drive unit that the cross-ventilation of room temperature, thermal diffusion plate quickens, as shown in figure 10, its principle and annexation are described below:
Information shows and operation part: adopt the demonstration of VFD/LED/LCD as data message and function, remote-controlled input function is selected operation manually, automatically, and VFD/LED/LCD can adjust brightness automatically after showing information data, avoid light to disturb.For improving heating efficient, in the service life of demonstration of prolongation information and operation part, adopt the aviation socket to link to each other with host machine part.
The detection and the control section of indoor temperature and electrical heating thermal source diffuser plate temperature: the indoor temperature detecting sensor is arranged on the operating case, and the detection data send system to and carry out temperature PID self-regulation.The detecting sensor of electrical heating thermal source diffuser plate temperature is arranged on the thermal source diffuser plate, and the data of detection send system to and control electrically heated time and power, carries out temperature PID self-regulation, guarantees effectively heating and warming.
The closed-loop control system of DSP technology is by setting operation and demonstration, and indoor temperature detects, the temperature detection of electrical heating thermal source diffuser plate, the frequency conversion fan of current of warm air speed control system, compositions such as electric thermal power driving and frequency-converter power driving.System detects indoor temperature, and the data of thermal source diffuser plate temperature detection are handled, the speed of the self-adjusting air-flow of warming heating power of the Data Control after the processing and frequency conversion fan, the heating and the warming system of realization PID self-regulation mode and adaptation function.
The beneficial effect of the digital indoor electrothermal adjuster of patent of the present invention is, new hot gas convection model, noiselessness and light pollution, do not have any discharging, realized warming adjusting digitlization, the control of system type temperature/humidity, improved energy-conservation and comprehensive ratio ease of use, make energy conversion efficiency more than 98%, the heat energy utilization rate can reach 100%, and heating duration, indoor warming temperature can realize network control and management.
Description of drawings
Below in conjunction with drawings and Examples patent of the present invention is further specified.
Fig. 1 is the profile stereogram of digital indoor electrothermal adjuster main frame.
Fig. 2 is the operation and the display box structural map of digital indoor electrothermal adjuster.
Fig. 3 is the thermal source convection current diffuser plate assembly structural map among Fig. 1.
Fig. 4 is the electric heating assembly structural map among Fig. 3.
Fig. 5 is the another kind of thermal convection current diffusion board structure figure among Fig. 1.
Fig. 6 is the thermal convection current diffusion board structure figure among Fig. 1.
Fig. 7 is the acceleration component structural map of thermal convection current diffusion among Fig. 1.
Fig. 8 is the rear cover structure figure among main frame Fig. 1.
Fig. 9 is the three-view diagram structure chart of main frame Fig. 1.
Figure 10 is the electrical schematic diagram of digital indoor electrothermal adjuster.
1. metal fever gas flow guiding protective covers in the accompanying drawing, 2. the gas flow guiding hole in the protective cover, 3. protective cover hold-down screw, 4. heat transfer deflector, 5. louvre, 6. gas flow guiding groove, 7. bonnet, 8. thermal diffusion plate, 9. frequency conversion fan, 10. electric control box, 11. output aviation socket, 12. operating cases, 13. temperature settings increase/subtract button, 14. night-light button, 15. manual air quantity button, 16. input aviation sockets, 17. manual options buttons, 18. indoor temperature detecting sensor, 19. air quantity increases/subtract button, 20. remote controls receive head, 21. operating case panels, 22.PID adjusting key, 23. temperature setting key, 24. system switchings, 25. functions and data display window, 26. heat transfer deflector, 27. the thermal conductance chute, 28. thermal diffusion plate temperature detection sensors, 29. thermal source heat generating components, 30. thermal diffusion plate, 31. the thermal diffusion plate temperature detection sensor, 32. thermal source reflecting plates, 33. thermal source heat-generating pipes, 34. thermal diffusion plate, 35. the heat transfer baffle assembly, 36. heat transfer deflector pod apertures, 37. thermal diffusion plates, 38. frequency conversion fan fixing point, 39. frequency conversion fan is installed passage, 40. heat transfer deflector pod apertures, 41. heat transfer baffle assemblies, 42. blower fan fixed axis, 43. draught fan impeller, 44. variable-frequency motors, 45. multicores transmission electric wire, 46. bonnet, 47. the bonnet louvre, 48. installation fixing holes, 49. bonnet sides, 50. electric control box, 51. fixing end support on the link plate, 52. main frames are link plate fixedly, 53. fixing end supports under the link plate, 54. front view, 55. the vertical view protective cover, 56. vertical views, 57.EL night-light, 58. right view, 59. blower fan rigid bearings.
Specific embodiments
In main frame Fig. 1, metal fever gas flow guiding protective cover (1), on have and decorate and fixing screw (3), at the middle part of (1) or other positions have gas flow guiding hole (2) in the protective cover, heat transfer deflector (4), be fixed on the thermal diffusion plate (8), periphery at bonnet (7) has louvre (5), form gas flow guiding groove (6) in the middle of metal fever gas flow guiding protective cover (1) and the thermal diffusion plate (8), frequency conversion fan (9) is installed on the thermal diffusion plate (8), be provided with electric control box (10) in the bottom of bonnet (7), output aviation socket (11) I/O electric function and information are housed in electric control box (10).
In the operation and display box of Fig. 2, in operating case (12), be provided with the temperature setting and increase/subtract button, (13), night-light button (14), manual air quantity button (15), input aviation socket (16), manual options button (17), indoor temperature detecting sensor (18), air quantity increases/subtracts button (19), remote control receives head (20), operating case panel (21), PID adjusting key (22), temperature setting key (23), system switching (24), function and data display window (25), the input aviation socket (16) of operating case among Fig. 2 (2) is connected with multicore cable with output aviation socket (11) among main frame Fig. 1, form operation and Display System Function and main frame is carried out the monitoring of automation, implement heating.
In the embodiment shown in fig. 3, in thermal diffusion plate (30), make multi-disc heat transfer deflector (26), form thermal source convection current diffuser plate assembly, in (30), establish thermal conductance chute at regular intervals (27), temperature detection sensor (28) and (31), thermal source heat generating component (29) are installed on (30) are divided into organize more and are installed in (30).
Fig. 4 be among Fig. 3 thermal source heat generating component (29), in thermal source reflecting plate (32), fix an above thermal source heat-generating pipe (33) or similar heater element.
Fig. 5 is another embodiment in Fig. 1 main frame, is manufactured with multi-disc heat transfer deflector (26) and forms heat transfer baffle assembly (35), have a plurality of heat transfer deflector pod apertures (36) on heat transfer baffle assembly (35), improve heat energy nature diffusion velocity in thermal diffusion plate (34).
In shown in Figure 6, thermal diffusion plate (37) be among Fig. 5 (34), (8) among Fig. 1, in thermal diffusion plate (37), make multi-disc heat transfer deflector (26) and form heat transfer baffle assembly (41), in heat transfer baffle assembly (41), open a plurality of heat transfer deflector pod apertures (40), in heat transfer baffle assembly (41), open frequency conversion fan and passage (39) is installed, frequency conversion fan fixing point (38) is set on heat transfer baffle assembly (41).
In shown in Figure 7 fixed axis (42) be frequency conversion fan (9) fixed axis, draught fan impeller (43) variable-frequency motor (44), multicore transmission electric wire (45), frequency conversion fan (9) is inserted among Fig. 6 frequency conversion fan installs in the passage (39), further improve the heat energy automation and regulate diffusion velocity.
In shown in Figure 8, in bonnet (46), be provided with louvre (47) and peripheral louvre (5), the box face of opening (50) with fixing hole (48), electric control box (10) be installed, with main frame fixedly link plate (52) be fixed on the bonnet (46), fixedly be provided with end support (51) on the fixing link plate on the link plate (52), descend end support (53) at main frame, with main frame fixedly link plate (52) be fixed on the wall with Fig. 1 in main frame connect into an integral body, be indoor heating.
In shown in Figure 9, front view (54) is main frame, vertical view protective cover (55), main frame vertical view (56), EL night-light (57), right view (58), blower fan rigid bearing (59), the fixed axis (42) on the frequency conversion fan (9) is inserted in the blower fan rigid bearing (59), forms the frequency conversion air quantity of positive mechanical performance.

Claims (5)

1. one kind " digital indoor electrothermal adjuster " field, mode and DSP closed-loop adjustment mode by new thermal source electric heating element diffusion heat gas, the temperature detection pattern of comparison expression, improve the energy-conservation and thermal efficiency, the thermal diffusion plate (8) that adopts aluminium alloy or metal to make in the main frame is formed thermal diffusion assembly (41), in (8), make multi-disc heat transfer deflector (26) and form heat transfer baffle assembly (41), in heat transfer baffle assembly (41), open a plurality of heat transfer deflector pod apertures (40) and frequency conversion fan passage (39) is installed, improve the heat energy radiating rate, in bonnet (46), be provided with louvre (47) and peripheral louvre (5), install with fixing hole (48), the box face of opening (50) of electric control box (10), with main frame fixedly link plate (52) be fixed on the bonnet (46), fixedly be provided with fixedly end support (51) on the link plate on the link plate (52) at main frame, following end support (53) with main frame fixedly link plate (52) be fixed on the wall again plug-in mounting and go into main frame, main frame Fig. 1 is connected realization with multicore cable heats with Fig. 2 operating case.
2. according to the realization of the indoor electrothermal controller structure of the described number of claim (1), it is characterized in that: can carry out PID from adjusting and the heating and the warming control system of adaptation function, manual no disturbance handoff functionality, being provided with remote control imports various function adjusting parts and shows module, driven unit is quickened in the frequency conversion of heating installation convection current diffusion, new hot gas convection current dispersal pattern has been realized noiselessness and light pollution, does not have the indoor heating that is of bad discharging.
3. it is characterized in that according to the indoor electrothermal adjuster of the described number of claim (1) Fig. 5 is another embodiment in Fig. 1 main frame, in thermal diffusion plate (34), be manufactured with multi-disc heat transfer deflector (26) and form heat transfer baffle assembly (35), on heat transfer baffle assembly (35), have a plurality of heat transfer deflector pod apertures (36), improve heat energy nature diffusion velocity.
4. it is characterized in that according to the indoor electrothermal adjuster of the described number of claim (1) thermal diffusion plate shown in Figure 6 (37) is (34) among Fig. 5, (8) among Fig. 1, in thermal diffusion plate (37), make multi-disc heat transfer deflector (26) and form heat transfer baffle assembly (41), in heat transfer baffle assembly (41), open a plurality of heat transfer deflector pod apertures (40), in heat transfer baffle assembly (41), open frequency conversion fan passage (39) is installed, frequency conversion fan fixing point (38) is set on heat transfer baffle assembly (41) according to automatic adjusting hot gas flow velocity is set.
5. it is characterized in that according to the indoor electrothermal adjuster of the described number of claim (1) fixed axis shown in Figure 7 (42) is fixed axis, draught fan impeller (43) variable-frequency motor (44) of frequency conversion fan (9), multicore transmission electric wire (45), frequency conversion fan (9) is inserted among Fig. 6 frequency conversion fan installs in the passage (39), further improve the heat energy automation and regulate diffusion velocity.
CN2010101304909A 2010-03-22 2010-03-22 Digital indoor electric heating and heat preserving regulator Pending CN102200316A (en)

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Application Number Priority Date Filing Date Title
CN2010101304909A CN102200316A (en) 2010-03-22 2010-03-22 Digital indoor electric heating and heat preserving regulator

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Application Number Priority Date Filing Date Title
CN2010101304909A CN102200316A (en) 2010-03-22 2010-03-22 Digital indoor electric heating and heat preserving regulator

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108539633A (en) * 2018-05-24 2018-09-14 郑州云海信息技术有限公司 A kind of heat pipe air conditioner block terminal
CN109708215A (en) * 2019-02-21 2019-05-03 珠海格力电器股份有限公司 Air-conditioner set and air-conditioner set fan section

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2226228Y (en) * 1994-12-07 1996-05-01 北京市海淀区同心圆测量技术研究所 Structure of thin convection type electric heater
CN2249372Y (en) * 1995-07-21 1997-03-12 广东美的集团股份有限公司 Oil-filled type electric heating radiator
CN2457483Y (en) * 2000-11-22 2001-10-31 李秀娟 Directly heating electric radiator without medium
CN201992726U (en) * 2010-03-22 2011-09-28 深圳市波赛恩数字科技有限公司 Indoor digital electric heat preservation regulator

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2226228Y (en) * 1994-12-07 1996-05-01 北京市海淀区同心圆测量技术研究所 Structure of thin convection type electric heater
CN2249372Y (en) * 1995-07-21 1997-03-12 广东美的集团股份有限公司 Oil-filled type electric heating radiator
CN2457483Y (en) * 2000-11-22 2001-10-31 李秀娟 Directly heating electric radiator without medium
CN201992726U (en) * 2010-03-22 2011-09-28 深圳市波赛恩数字科技有限公司 Indoor digital electric heat preservation regulator

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108539633A (en) * 2018-05-24 2018-09-14 郑州云海信息技术有限公司 A kind of heat pipe air conditioner block terminal
CN108539633B (en) * 2018-05-24 2024-03-19 郑州云海信息技术有限公司 Distribution box for heat pipe air conditioner
CN109708215A (en) * 2019-02-21 2019-05-03 珠海格力电器股份有限公司 Air-conditioner set and air-conditioner set fan section

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Application publication date: 20110928