CN103488186B - Refrigerant type solar-energy wall machine - Google Patents
Refrigerant type solar-energy wall machine Download PDFInfo
- Publication number
- CN103488186B CN103488186B CN201310402922.0A CN201310402922A CN103488186B CN 103488186 B CN103488186 B CN 103488186B CN 201310402922 A CN201310402922 A CN 201310402922A CN 103488186 B CN103488186 B CN 103488186B
- Authority
- CN
- China
- Prior art keywords
- conical gear
- refrigerant
- assembly
- type solar
- lens group
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
Links
- 239000003507 refrigerant Substances 0.000 title claims abstract description 79
- 230000017525 heat dissipation Effects 0.000 claims abstract description 12
- 230000008878 coupling Effects 0.000 claims description 14
- 238000010168 coupling process Methods 0.000 claims description 14
- 238000005859 coupling reaction Methods 0.000 claims description 14
- 238000009413 insulation Methods 0.000 claims description 7
- 238000010079 rubber tapping Methods 0.000 claims description 7
- 238000004891 communication Methods 0.000 claims description 4
- 238000007789 sealing Methods 0.000 claims description 4
- 230000015572 biosynthetic process Effects 0.000 claims description 3
- 238000007596 consolidation process Methods 0.000 claims description 3
- 238000002347 injection Methods 0.000 claims description 3
- 239000007924 injection Substances 0.000 claims description 3
- 239000007788 liquid Substances 0.000 claims description 3
- 239000011159 matrix material Substances 0.000 claims description 3
- 239000000178 monomer Substances 0.000 claims description 3
- 239000011347 resin Substances 0.000 claims description 3
- 229920005989 resin Polymers 0.000 claims description 3
- 239000000126 substance Substances 0.000 claims description 3
- 238000009434 installation Methods 0.000 abstract description 4
- 238000000034 method Methods 0.000 abstract description 4
- 238000013459 approach Methods 0.000 abstract description 3
- 238000006243 chemical reaction Methods 0.000 abstract description 3
- 238000011161 development Methods 0.000 abstract description 3
- 238000010586 diagram Methods 0.000 description 4
- 230000003287 optical effect Effects 0.000 description 3
- 239000002028 Biomass Substances 0.000 description 2
- UFHFLCQGNIYNRP-UHFFFAOYSA-N Hydrogen Chemical compound [H][H] UFHFLCQGNIYNRP-UHFFFAOYSA-N 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000004927 fusion Effects 0.000 description 1
- 229910052739 hydrogen Inorganic materials 0.000 description 1
- 239000001257 hydrogen Substances 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 230000001360 synchronised effect Effects 0.000 description 1
Landscapes
- Photovoltaic Devices (AREA)
Abstract
The invention belongs to the field that solar energy development utilizes, especially refrigerant type solar-energy wall machine.Refrigerant type solar-energy wall machine, comprises, and lens group plate (1), photovoltaic battery panel (2), refrigerant heat dissipation tank (3) and sunlight axle follow the tracks of assembly (02); Refrigerant medium in described refrigerant heat dissipation tank (3), in the process of dispelling the heat for photovoltaic battery panel (2), obtains the solar thermal energy up to 350 DEG C, and is stored in the hot tank of jumbo storage, takes into account to realize rich owing, steadily runs; Described sunlight axle follows the tracks of assembly (02), compact, and motor just realizes photovoltaic battery panel (2) horizontal angle and vertical angle adjusts in real time; Described refrigerant type solar-energy wall machine, employing lens group focuses on, refrigerant medium obtains heat, the large technical scheme of sunlight axle real-time follow-up three, not only significantly improve sun power conversion ratio, and electric energy, heat energy is held concurrently and obtains it; Refrigerant type solar-energy wall machine simple for structure, flexible for installation, not account for public place, for distributed solar energy has started new approach.
Description
Technical field
The invention belongs to field, particularly refrigerant type solar-energy wall machine that solar energy development utilizes.
Background technology
Solar energy is the energy from outside of the earth celestial body, and the overwhelming majority of necessary for human energy is all directly or indirectly from the sun.Sun power is the huge energy of hydrogen nuclei fusion release when superhigh temperature, and sun power is the treasure-house of mankind's energy, as fossil energy, tellurian wind energy, biomass energy all derive from the sun.The utilization of sun power be divided into indirect utilization sun power and and directly utilize sun power two kinds, have fossil energy, biomass energy as: indirect utilization; Direct utilization has heat collector (flat plate collector, light collecting heat collector), solar cell etc.In the application practice of sun power, how ensureing that collector remains with sun optical axis vertical, is the gordian technique that collector plays maximum efficiency.In existing solar thermal collector, mostly do not adopt with sun optical axis simultaneous techniques, if these solar thermal collectors can install sunlight axle follow the tracks of assembly, just effectively can obtain the maximal value of solar energy acquisition.
Summary of the invention
The invention belongs to the field that solar energy development utilizes, especially refrigerant type solar-energy wall machine.The object of the present invention is to the open refrigerant type solar-energy wall machine of society.
Refrigerant type solar-energy wall machine, comprises, lens group plate (1), photovoltaic battery panel (2), refrigerant heat dissipation tank (3) and assembly rotary body (14); Refrigerant medium in described refrigerant heat dissipation tank (3), in the process of dispelling the heat for photovoltaic battery panel (2), obtains the solar thermal energy up to 350 DEG C, and is stored in the hot tank of jumbo storage, takes into account to realize rich owing, steadily runs; Described assembly rotary body (14), compact, motor just realizes photovoltaic battery panel (2) horizontal angle and vertical angle adjusts in real time; Described refrigerant type solar-energy wall machine, employing lens group focuses on, refrigerant medium obtains heat, the large technical scheme of sunlight axle real-time follow-up three, not only significantly improve sun power conversion ratio, and electric energy, heat energy is held concurrently and obtains it; Refrigerant type solar-energy wall machine simple for structure, flexible for installation, not account for public place, for distributed solar energy has started new approach.
The invention has the advantages that.
1, compact conformation.Sunlight axle of the present invention follows the tracks of assembly, compared with existing distributed synchrodyne, has compact conformation, manufacturing standard, widely used advantage.
2, real-time follow-up.In real time, accurate tracks sunlight axle, it is the determinative determining solar thermal collector work efficiency, sunlight axle of the present invention follows the tracks of assembly, has real-time, accurate adjustment refrigerant type solar panels (01) and keeps function vertical in real time with sun optical axis, to obtain the maximum conversion ratio of sun power.
3, simple installation, refrigerant type solar-energy wall machine of the present invention, refrigerant type solar-energy wall machine flexible for installation, not account for public place, for distributed solar energy has started new approach.
4, equipment is easy to get.Main equipment of the present invention is conventional prototype part, facilitates buying and the exploitation of equipment.
Technical scheme of the present invention realizes like this.
Refrigerant type solar-energy wall machine, comprise, refrigerant type solar panels (01), sunlight axle follows the tracks of assembly (02), flexible lamp support (03), lens group plate (1), photovoltaic battery panel (2), refrigerant heat dissipation tank (3), connection bracket seat (4), connection bracket (5), vertical angle tracking rotating shaft (6), push rod set collar (7), hydraulic push rod (8), motor coattail strip (9), worm speed-down micromotor (10), bearing A(11), conical gear A(12), conical gear B(13), assembly rotary body (14), motor dovetail frid (15), assembly seat stationary shaft (16), conical gear C(17), horizontally rotate and control tongue (18), bearing B(19), bearing seat B(20), assembly seat (21), installing plate and support (22), hydraulic valve (23), bearing seat A(24), metope support (25) and southern metope (26), it is characterized in that: described sunlight axle follows the tracks of the outward appearance of assembly (02), in mailbox shape, form by the assembly rotary body (14) on top and the assembly seat (21) of bottom the main body that sunlight axle follows the tracks of assembly (02), described assembly rotary body (14), its top, is provided with symmetrical bearing seat A(24), described bearing seat A(24) on, two ends are installed and are fixed on vertical angle tracking rotating shaft (6) in connection bracket (5), in the middle of described vertical angle tracking rotating shaft (6), be provided with conical gear A(12), conical gear A(12) both sides, be provided with bearing A(11), conical gear A(12 on described vertical angle tracking rotating shaft (6)), at conical gear B(13) driving under, can realize refrigerant type solar panels (01) vertical angle adjustment, on the bottom surface of described assembly rotary body (14), flexible lamp support (03) is installed, described flexible lamp support (03), comprise, push rod set collar (7), hydraulic push rod (8) and motor coattail strip (9), worm speed-down micromotor (10), motor dovetail frid (15), conical gear B(13), horizontally rotate and control tongue (18) and hydraulic valve (23), described worm speed-down micromotor (10), on the motor shaft of its front end, is provided with conical gear B(13), described worm speed-down micromotor (10) rear portion, is provided with the motor coattail strip (9) coordinated with motor dovetail frid (15), before described motor coattail strip (9), be connected with worm speed-down micromotor (10), be positioned at motor coattail strip (9) two push rod set collars (7) below, fixed cover on the hydraulic push rod (8) of hydraulic valve (23), described worm speed-down micromotor (10), under hydraulic push rod (8) in hydraulic valve (23) drives, vertical movement can be done on motor dovetail frid (15) by motor coattail strip (9), make the conical gear B(13 being positioned at worm speed-down micromotor (10) front end), respectively with the conical gear A(12 be located thereon) or conical gear C(17 under it) be coupled, the vertical angle of upwards coupling adjustment refrigerant type solar panels (01), the horizontal angle of downward coupling then adjustable refrigerant type solar panels (01), described motor coattail strip (9) below, is provided with and controls tongue (18) with integrally formed the horizontally rotating of motor coattail strip (9), described horizontally rotates the front end controlling tongue (18), be provided with and conical gear C(17) coordinate, tooth pitch is less than conical gear C(17) three pieces, lock tooth, conical gear B(13 on worm speed-down micromotor (10)) with vertical angle tracking rotating shaft (6) on conical gear A(12), during coupling, just the conical gear C(17 and on assembly seat stationary shaft (16)) flush, to lock assembly rotary body (14), the level orientation of location refrigerant type solar panels (01), described motor dovetail frid (15), in " L " type structure, the front and back of described dovetail frid (15), are separately installed with worm speed-down micromotor (10) and hydraulic valve (23), described dovetail frid (15), by the transverse part of " L ", is installed on the bottom of assembly rotary body (14), the center of described assembly rotary body (14) bottom surface, is provided with bearing seat B(20), described bearing seat B(20) in, bearing B(19 is installed), described assembly rotary body (14), by bearing B(19), overlap on the assembly seat stationary shaft (16) being positioned at assembly seat (21) center consolidation, on described assembly seat stationary shaft (16), conical gear C(17 is installed), the described conical gear B(13 being positioned at worm speed-down micromotor (10) front end), round conical gear C(17) do roller shape rotate time, impel assembly rotary body (14) to make rotary motion, realize refrigerant type solar panels (01) horizontal angle adjustment, the below of described assembly seat (21) is provided with the mounting hole be connected with installing plate and support (22), described assembly seat (21), is installed in metope support (25) installing plate foremost and support (22), described metope support (25), is installed on the southern metope (26) of home dwelling.
Described refrigerant heat dissipation tank (3), comprise, self-tapping screw (30), sunlight axle (31), lens group support (32), lens group plate (33), the low temperature mouth of pipe (34), connection box (35), installing plate (36), photovoltaic cell (37), four-in-one framework (38), coupling bolt (39), heat radiator (40), back cover plate (41), focusing group (42), communication channel (43), refrigerant medium (44), temperature controller (45), the high temperature mouth of pipe (46), sealing ring (47) and heat-insulation layer (48); Described lens group plate (33), adopt the high resin of transparency to be injection molded into the laterally zygomorphic semi-permeable mirror shell plates by monomer semi-permeable mirror shell matrix, two semi-permeable mirror shell plateses, through supersonic thermal setting, form lens group plate (33) after injecting transparent chemical liquids; Described lens group plate (33), is fixedly mounted on the lens group support (32) of four-in-one framework (38) by self-tapping screw (30), forms totally enclosed operating environment; Lens group support (32) on described four-in-one framework (38), connection box (35), installing plate (36) and heat radiator (40) are be the four-in-one component of four one; Described four-in-one framework (38), in " H " structure, the top of " H " structure is described lens group support (32), " horizontal stroke " in the middle of four-in-one framework (38), it upward, the installing plate (36) of described photovoltaic cell (37), " horizontal stroke " to below, be described heat radiator (40); The periphery of four-in-one framework (38) bottom, the connection box (35) described in formation; Described connection box (35), is connected by coupling bolt (39) and described seal base (41), forms the entirety of refrigerant type solar panels (01); On the framework of described four-in-one framework (38) below, be also provided with the low temperature mouth of pipe (34) and the high temperature mouth of pipe (46), refrigerant medium (44) is inputted by the low temperature mouth of pipe (34), exports from the high temperature mouth of pipe (46); Described temperature controller (45), is positioned on the high temperature mouth of pipe (46) of solar panels, described temperature controller (45) operating temperature 350 degrees Celsius; Described temperature controller (45) operating temperature 350 degrees Celsius; When temperature controller (45) temperature recorded on the high temperature mouth of pipe (46) rises to 350 degrees Celsius, temperature controller (45) circuit ON, refrigerant circulation is started working, and when the temperature on the high temperature mouth of pipe (46) drops to 350 degrees Celsius, refrigerant circulation stops; Described sunlight axle (31), forms intensive focusing group (42) through lens group plate (33); In the plane of described focusing group (42) land, be namely the installing plate (36) in four-in-one framework (38), photovoltaic cell (37) is mounted thereon; The described central shaft of photovoltaic cell (37) and the central shaft of lens, keep absolute consistent, to ensure that the focus energy land focusing on group (42) are on the central point of photovoltaic cell (37); Distance between described photovoltaic cell (37) and lens group plate (33), is limited by the focal length of lens group plate (33); Both sides and the bottom of described refrigerant type solar panels (01) are provided with heat-insulation layer (48).
Accompanying drawing explanation
Accompanying drawing 1 is refrigerant type solar-energy wall machine structural representation of the present invention.
Accompanying drawing 2 is refrigerant type solar-energy wall machine tracking assembly structure schematic diagram of the present invention.
Accompanying drawing 3 is refrigerant type solar-energy wall machine tracking general assembly loose mail schematic diagram of the present invention.
Accompanying drawing 4 is refrigerant type solar-energy wall machine refrigerant heat-dissipation box structure schematic diagram of the present invention.
Accompanying drawing 5 is refrigerant type solar-energy wall machine embodiment schematic diagram of the present invention.
Embodiment
Fig. 1-3 unified mark title is: refrigerant type solar panels (01), sunlight axle follows the tracks of assembly (02), flexible lamp support (03), lens group plate (1), photovoltaic battery panel (2), refrigerant heat dissipation tank (3), connection bracket seat (4), connection bracket (5), vertical angle tracking rotating shaft (6), push rod set collar (7), hydraulic push rod (8), motor coattail strip (9), worm speed-down micromotor (10), bearing A(11), conical gear A(12), conical gear B(13), assembly rotary body (14), motor dovetail frid (15), assembly seat stationary shaft (16), conical gear C(17), horizontally rotate and control tongue (18), bearing B(19), bearing seat B(20), assembly seat (21), installing plate and support (22), hydraulic valve (23), bearing seat A(24), metope support (25) and southern metope (26).
Fig. 4 marks title: self-tapping screw (30), sunlight axle (31), lens group support (32), lens group plate (33), the low temperature mouth of pipe (34), connection box (35), installing plate (36), photovoltaic cell (37), four-in-one framework (38), coupling bolt (39), heat radiator (40), back cover plate (41), focus on group (42), communication channel (43), refrigerant medium (44), temperature controller (45), the high temperature mouth of pipe (46), sealing ring (47) and heat-insulation layer (48).
The present invention is described in detail below in conjunction with accompanying drawing.
As Figure 1-3, refrigerant type solar-energy wall machine, comprise, refrigerant type solar panels (01), sunlight axle follows the tracks of assembly (02), flexible lamp support (03), lens group plate (1), photovoltaic battery panel (2), refrigerant heat dissipation tank (3), connection bracket seat (4), connection bracket (5), vertical angle tracking rotating shaft (6), push rod set collar (7), hydraulic push rod (8), motor coattail strip (9), worm speed-down micromotor (10), bearing A(11), conical gear A(12), conical gear B(13), assembly rotary body (14), motor dovetail frid (15), assembly seat stationary shaft (16), conical gear C(17), horizontally rotate and control tongue (18), bearing B(19), bearing seat B(20), assembly seat (21), installing plate and support (22), hydraulic valve (23), bearing seat A(24), metope support (25) and southern metope (26).
As Figure 1-3, described sunlight axle follows the tracks of assembly (02) outward appearance, in mailbox shape, is that assembly seat (21) forms by the assembly rotary body (14) on top and bottom.
As Figure 1-3, described assembly rotary body (14), its top is provided with symmetrical bearing seat A(24).
As Figure 1-3, described bearing seat A(24) on, two ends are installed and are fixed on vertical angle tracking rotating shaft (6) in connection bracket (5); In the middle of described vertical angle tracking rotating shaft (6), be provided with conical gear A(12), conical gear A(12) both sides, be provided with bearing A(11).
As Figure 1-3, the conical gear A(12 on described vertical angle tracking rotating shaft (6)) at conical gear B(13) drive under, angle tracking rotating shaft (6) of hanging down drives refrigerant type solar panels (01) to realize vertical angle adjustment.
As Figure 1-3, on the bottom surface of described assembly rotary body (14), flexible lamp support (03) is installed.
As Figure 1-3, described flexible lamp support (03), comprise, hydraulic valve (23), worm speed-down micromotor (10), motor dovetail frid (15), conical gear B(13), horizontally rotate and control tongue (18), hydraulic push rod (8), push rod set collar (7) and motor coattail strip (9).
As Figure 1-3, described worm speed-down micromotor (10), on the motor shaft of its front end, is provided with conical gear B(13), its rear portion, is provided with the motor coattail strip (9) coordinated with motor dovetail frid (15).
As Figure 1-3, on described motor coattail strip (9), be provided with the push rod set collar (7) be connected with the hydraulic push rod of hydraulic valve (23) (8).
As Figure 1-3, described motor coattail strip (9) below, be provided with integrally formed with motor coattail strip (9), can do with worm speed-down micromotor (10) horizontally rotating of being synchronized with the movement and control tongue (18); Described horizontally rotate the front end controlling tongue (18), be provided with and conical gear C(17) coordinate, tooth pitch is less than conical gear C(17) three pieces, lock tooth.
As Figure 1-3, described horizontally rotating controls tongue (18), conical gear B(13 on worm speed-down micromotor (10)) with conical gear A(12) under the operating mode that is coupled, just with conical gear C(17) flush, to lock assembly rotary body (14), the level orientation of location refrigerant type solar panels (01).
As Figure 1-3, the described conical gear B(13 being positioned at worm speed-down micromotor (10) front end), along with moving up and down of hydraulic push rod (8) that are installed on the hydraulic valve (23) at motor dovetail frid (15) rear, motor dovetail frid (15) does or upper or under vertical movement, respectively be located thereon under conical gear A(12) or conical gear C(17) be coupled.
As Figure 1-3, further, the described conical gear B(13 being positioned at worm speed-down micromotor (10) front end), when being upwards coupled, the vertical angle of adjustable refrigerant type solar panels (01); During downward coupling, then the horizontal angle of adjustable refrigerant type solar panels (01).
As Figure 1-3, described motor dovetail frid (15), in " L " type structure.
Described worm speed-down micromotor (10) and hydraulic valve (23) are installed on before and after it respectively.
As Figure 1-3, described dovetail frid (15), by the transverse part of " L ", is installed on the bottom of assembly rotary body (14).
As Figure 1-3, the center of described assembly rotary body (14) bottom surface, is provided with bearing seat B(20).
As Figure 1-3, described bearing seat B(20) in, bearing B(19 is installed).
As Figure 1-3, described assembly rotary body (14), by bearing B(19), overlap consolidation be positioned at assembly seat (21) center, it is provided with conical gear C(17) assembly seat stationary shaft (16) on.
As Figure 1-3, the conical gear B(13 of described worm speed-down micromotor (10) front end), round conical gear C(17) make roller shape when rotating, impel assembly rotary body (14) to make rotary motion, realize the adjustment of refrigerant type solar panels (01) horizontal angle.
As Figure 1-3, the below of described assembly seat (21) is provided with the mounting hole be connected with installing plate and support (22).
As Figure 1-3, described assembly seat (21), is installed in metope support (25) installing plate foremost and support (22).
As Figure 1-3, described metope support (25), is installed on the southern metope (26) of home dwelling.
As shown in Figure 4, described refrigerant heat dissipation tank (3), comprise, self-tapping screw (30), sunlight axle (31), lens group support (32), lens group plate (33), the low temperature mouth of pipe (34), connection box (35), installing plate (36), photovoltaic cell (37), four-in-one framework (38), coupling bolt (39), heat radiator (40), back cover plate (41), focusing group (42), communication channel (43), refrigerant medium (44), temperature controller (45), the high temperature mouth of pipe (46), sealing ring (47) and heat-insulation layer (48).
As shown in Figure 4, described lens group plate (33), adopt the high resin of transparency to be injection molded into the laterally zygomorphic semi-permeable mirror shell plates by monomer semi-permeable mirror shell matrix, two semi-permeable mirror shell plateses, through supersonic thermal setting, form lens group plate (33) after injecting transparent chemical liquids.
As shown in Figure 4, described lens group plate (33), is fixedly mounted on the lens group support (32) of four-in-one framework (38) by self-tapping screw (30), forms refrigerant type solar panels (01) totally-enclosed operating environment.
As shown in Figure 4, the lens group support (32) on described four-in-one framework (38), connection box (35), installing plate (36) and heat radiator (40) are be the four-in-one component of four one.
As shown in Figure 4, described four-in-one framework (38), in " H " structure, the top of " H " structure is described lens group support (32), " horizontal stroke " in the middle of four-in-one framework (38), it is the installing plate (36) of described photovoltaic cell (37) upward, " horizontal stroke " to below, be described heat radiator (40); The periphery of four-in-one framework (38) bottom, the connection box (35) described in formation.
As shown in Figure 4, described connection box (35), is connected by coupling bolt (39) and described seal base (41), forms the entirety of refrigerant type solar panels (01).
As shown in Figure 4, on the framework of described four-in-one framework (38) below, be also provided with the low temperature mouth of pipe (34) and the high temperature mouth of pipe (46), refrigerant medium (44) is inputted by the low temperature mouth of pipe (34), exports from the high temperature mouth of pipe (46).
As shown in Figure 4, described temperature controller (45), is positioned on the high temperature mouth of pipe (46) of solar panels, described temperature controller (45) operating temperature 350 degrees Celsius; Described temperature controller (45) operating temperature 350 degrees Celsius; When temperature controller (45) temperature recorded on the high temperature mouth of pipe (46) rises to 350 degrees Celsius, temperature controller (45) circuit ON, refrigerant circulation is started working, and when the temperature on the high temperature mouth of pipe (46) drops to 350 degrees Celsius, refrigerant circulation stops.
As shown in Figure 4, described sunlight axle (31), forms intensive focusing group (42) through lens group plate (33); In the plane of described focusing group (42) land, be namely the installing plate (36) in four-in-one framework (38), photovoltaic cell (37) is mounted thereon.
As shown in Figure 4, the described central shaft of photovoltaic cell (37) and the central shaft of lens, keep absolute consistent, to ensure that the focus energy land focusing on group (42) are on the central point of photovoltaic cell (37).
As shown in Figure 4, the distance between described photovoltaic cell (37) and lens group plate (33), is limited by the focal length of lens group plate (33); Both sides and the bottom of described refrigerant type solar panels (01) are provided with heat-insulation layer (48).
Claims (2)
1. refrigerant type solar-energy wall machine, comprise, refrigerant type solar panels (01), sunlight axle follows the tracks of assembly (02), flexible lamp support (03), lens group plate (1), photovoltaic battery panel (2), refrigerant heat dissipation tank (3), connection bracket seat (4), connection bracket (5), vertical angle tracking rotating shaft (6), push rod set collar (7), hydraulic push rod (8), motor coattail strip (9), worm speed-down micromotor (10), bearing A(11), conical gear A(12), conical gear B(13), assembly rotary body (14), motor dovetail frid (15), assembly seat stationary shaft (16), conical gear C(17), horizontally rotate and control tongue (18), bearing B(19), bearing seat B(20), assembly seat (21), installing plate and support (22), hydraulic valve (23), bearing seat A(24), metope support (25) and southern metope (26), it is characterized in that: described sunlight axle follows the tracks of the outward appearance of assembly (02), in mailbox shape, form by the assembly rotary body (14) on top and the assembly seat (21) of bottom the main body that sunlight axle follows the tracks of assembly (02), described assembly rotary body (14), its top, is provided with symmetrical bearing seat A(24), described bearing seat A(24) on, two ends are installed and are fixed on vertical angle tracking rotating shaft (6) in connection bracket (5), in the middle of described vertical angle tracking rotating shaft (6), be provided with conical gear A(12), conical gear A(12) both sides, be provided with bearing A(11), conical gear A(12 on described vertical angle tracking rotating shaft (6)), at conical gear B(13) driving under, can realize refrigerant type solar panels (01) vertical angle adjustment, on the bottom surface of described assembly rotary body (14), flexible lamp support (03) is installed, described flexible lamp support (03), comprise, push rod set collar (7), hydraulic push rod (8) and motor coattail strip (9), worm speed-down micromotor (10), motor dovetail frid (15), conical gear B(13), horizontally rotate and control tongue (18) and hydraulic valve (23), described worm speed-down micromotor (10), on the motor shaft of its front end, is provided with conical gear B(13), described worm speed-down micromotor (10) rear portion, is provided with the motor coattail strip (9) coordinated with motor dovetail frid (15), before described motor coattail strip (9), be connected with worm speed-down micromotor (10), be positioned at motor coattail strip (9) two push rod set collars (7) below, fixed cover on the hydraulic push rod (8) of hydraulic valve (23), described worm speed-down micromotor (10), under hydraulic push rod (8) in hydraulic valve (23) drives, vertical movement can be done on motor dovetail frid (15) by motor coattail strip (9), make the conical gear B(13 being positioned at worm speed-down micromotor (10) front end), respectively with the conical gear A(12 be located thereon) or conical gear C(17 under it) be coupled, the vertical angle of upwards coupling adjustment refrigerant type solar panels (01), the horizontal angle of downward coupling then adjustable refrigerant type solar panels (01), described motor coattail strip (9) below, is provided with and controls tongue (18) with integrally formed the horizontally rotating of motor coattail strip (9), described horizontally rotates the front end controlling tongue (18), be provided with and conical gear C(17) coordinate, tooth pitch is less than conical gear C(17) three pieces, lock tooth, conical gear B(13 on worm speed-down micromotor (10)) with vertical angle tracking rotating shaft (6) on conical gear A(12), during coupling, just the conical gear C(17 and on assembly seat stationary shaft (16)) flush, to lock assembly rotary body (14), the level orientation of location refrigerant type solar panels (01), described motor dovetail frid (15), in " L " type structure, the front and back of described dovetail frid (15), are separately installed with worm speed-down micromotor (10) and hydraulic valve (23), described dovetail frid (15), by the transverse part of " L ", is installed on the bottom of assembly rotary body (14), the center of described assembly rotary body (14) bottom surface, is provided with bearing seat B(20), described bearing seat B(20) in, bearing B(19 is installed), described assembly rotary body (14), by bearing B(19), overlap on the assembly seat stationary shaft (16) being positioned at assembly seat (21) center consolidation, on described assembly seat stationary shaft (16), conical gear C(17 is installed), the described conical gear B(13 being positioned at worm speed-down micromotor (10) front end), round conical gear C(17) do roller shape rotate time, impel assembly rotary body (14) to make rotary motion, realize refrigerant type solar panels (01) horizontal angle adjustment, the below of described assembly seat (21) is provided with the mounting hole be connected with installing plate and support (22), described assembly seat (21), is installed in metope support (25) installing plate foremost and support (22), described metope support (25), is installed on the southern metope (26) of home dwelling.
2. refrigerant type solar-energy wall machine according to claim 1, it is characterized in that, described refrigerant heat dissipation tank (3), comprise, self-tapping screw (30), sunlight axle (31), lens group support (32), lens group plate (33), the low temperature mouth of pipe (34), connection box (35), installing plate (36), photovoltaic cell (37), four-in-one framework (38), coupling bolt (39), heat radiator (40), back cover plate (41), focus on group (42), communication channel (43), refrigerant medium (44), temperature controller (45), the high temperature mouth of pipe (46), sealing ring (47) and heat-insulation layer (48), described lens group plate (33), adopt the high resin of transparency to be injection molded into the laterally zygomorphic semi-permeable mirror shell plates by monomer semi-permeable mirror shell matrix, two semi-permeable mirror shell plateses, through supersonic thermal setting, form lens group plate (33) after injecting transparent chemical liquids, described lens group plate (33), is fixedly mounted on the lens group support (32) of four-in-one framework (38) by self-tapping screw (30), forms totally enclosed operating environment, lens group support (32) on described four-in-one framework (38), connection box (35), installing plate (36) and heat radiator (40) are be the four-in-one component of four one, described four-in-one framework (38), in " H " structure, the top of " H " structure is described lens group support (32), " horizontal stroke " in the middle of four-in-one framework (38), it upward, the installing plate (36) of described photovoltaic cell (37), " horizontal stroke " to below, be described heat radiator (40), the periphery of four-in-one framework (38) bottom, the connection box (35) described in formation, described connection box (35), is connected by coupling bolt (39) and described seal base (41), forms the entirety of refrigerant type solar panels (01), on the framework of described four-in-one framework (38) below, be also provided with the low temperature mouth of pipe (34) and the high temperature mouth of pipe (46), refrigerant medium (44) is inputted by the low temperature mouth of pipe (34), exports from the high temperature mouth of pipe (46), described temperature controller (45), is positioned on the high temperature mouth of pipe (46) of solar panels, described temperature controller (45) operating temperature 350 degrees Celsius, when temperature controller (45) temperature recorded on the high temperature mouth of pipe (46) rises to 350 degrees Celsius, temperature controller (45) circuit ON, refrigerant circulation is started working, and when the temperature on the high temperature mouth of pipe (46) drops to 350 degrees Celsius, refrigerant circulation stops, described sunlight axle (31), forms intensive focusing group (42) through lens group plate (33), in the plane of described focusing group (42) land, be namely the installing plate (36) in four-in-one framework (38), photovoltaic cell (37) is mounted thereon, the described central shaft of photovoltaic cell (37) and the central shaft of lens, keep absolute consistent, to ensure that the focus energy land focusing on group (42) are on the central point of photovoltaic cell (37), distance between described photovoltaic cell (37) and lens group plate (33), is limited by the focal length of lens group plate (33), both sides and the bottom of described refrigerant type solar panels (01) are provided with heat-insulation layer (48).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201310402922.0A CN103488186B (en) | 2013-09-09 | 2013-09-09 | Refrigerant type solar-energy wall machine |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201310402922.0A CN103488186B (en) | 2013-09-09 | 2013-09-09 | Refrigerant type solar-energy wall machine |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| CN103488186A CN103488186A (en) | 2014-01-01 |
| CN103488186B true CN103488186B (en) | 2016-01-13 |
Family
ID=49828492
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN201310402922.0A Expired - Fee Related CN103488186B (en) | 2013-09-09 | 2013-09-09 | Refrigerant type solar-energy wall machine |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN103488186B (en) |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN104777849A (en) * | 2015-03-26 | 2015-07-15 | 青海黄河上游水电开发有限责任公司 | Flat-shaft scale-type double-shaft double-linkage tracking support device |
Citations (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2007025618A1 (en) * | 2005-08-30 | 2007-03-08 | Karl Neff | Tracking system for solar units |
| CN101795092A (en) * | 2010-03-29 | 2010-08-04 | 北京印刷学院 | Hydraulic drive single-point support chain driving group synchronization tracking lighting solar household power supply |
| CN102637042A (en) * | 2012-04-10 | 2012-08-15 | 李万红 | Solar optical axis synchronous machine |
| CN102778896A (en) * | 2012-07-02 | 2012-11-14 | 洛阳师范学院 | Automatic solar tracking device |
| CN103117680A (en) * | 2012-12-09 | 2013-05-22 | 李万红 | Solar energy family system |
| CN103439982A (en) * | 2013-09-09 | 2013-12-11 | 李万红 | Sunlight shaft tracking device |
| CN203414825U (en) * | 2013-09-09 | 2014-01-29 | 李万红 | Sunlight shaft tracker |
| CN203433369U (en) * | 2013-09-09 | 2014-02-12 | 李万红 | Refrigerant type solar energy wall machine |
-
2013
- 2013-09-09 CN CN201310402922.0A patent/CN103488186B/en not_active Expired - Fee Related
Patent Citations (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2007025618A1 (en) * | 2005-08-30 | 2007-03-08 | Karl Neff | Tracking system for solar units |
| CN101795092A (en) * | 2010-03-29 | 2010-08-04 | 北京印刷学院 | Hydraulic drive single-point support chain driving group synchronization tracking lighting solar household power supply |
| CN102637042A (en) * | 2012-04-10 | 2012-08-15 | 李万红 | Solar optical axis synchronous machine |
| CN102778896A (en) * | 2012-07-02 | 2012-11-14 | 洛阳师范学院 | Automatic solar tracking device |
| CN103117680A (en) * | 2012-12-09 | 2013-05-22 | 李万红 | Solar energy family system |
| CN103439982A (en) * | 2013-09-09 | 2013-12-11 | 李万红 | Sunlight shaft tracking device |
| CN203414825U (en) * | 2013-09-09 | 2014-01-29 | 李万红 | Sunlight shaft tracker |
| CN203433369U (en) * | 2013-09-09 | 2014-02-12 | 李万红 | Refrigerant type solar energy wall machine |
Also Published As
| Publication number | Publication date |
|---|---|
| CN103488186A (en) | 2014-01-01 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| CN103423888B (en) | Movable motor base for sunlight axis tracker | |
| CN202928138U (en) | Solar water heater with direction adjustable heat-collecting tube set | |
| CN203491952U (en) | Cooling type solar tower | |
| CN203561885U (en) | Solar electricity-free tracking device | |
| CN102637042B (en) | Solar optical axis synchronous machine | |
| CN200996730Y (en) | Energy-storage solar cooker with automatic-tracking function | |
| KR101379445B1 (en) | Solr lightand heat hybrid collecting System having a solar tracker | |
| CN205103669U (en) | Solar energy becomes to being bare tracker | |
| CN205427632U (en) | Solar energy automatically regulated tracking means | |
| CN103439982B (en) | Sunlight axis tracker | |
| CN203414825U (en) | Sunlight shaft tracker | |
| CN203433369U (en) | Refrigerant type solar energy wall machine | |
| CN201504195U (en) | Automatic sun-chasing solar power generating set | |
| CN103412576B (en) | Cooled solar column | |
| CN218209758U (en) | All-weather heating system of light and heat photovoltaic antithetical couplet usefulness | |
| CN203432108U (en) | Movable motor base of sunshine axis tracker | |
| CN201490938U (en) | Shaft-free automatic cooling type solar electricity generating system | |
| CN103488186A (en) | Refrigerant type solar wall machine | |
| CN204832972U (en) | Solar energy two dimension tracking means | |
| CN203501487U (en) | Solar vacuum tube collector | |
| CN216617732U (en) | A composite energy storage device | |
| CN102647115B (en) | Water-cooled concentration photovoltaic solar power generation field | |
| CN208635348U (en) | Solar tracking high-efficient flat-plate solar thermal collector | |
| CN202521896U (en) | Solar heat collection power generation device | |
| CN202231640U (en) | Novel dual freedom mechanical tracking solar power generation system |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| C06 | Publication | ||
| PB01 | Publication | ||
| C10 | Entry into substantive examination | ||
| SE01 | Entry into force of request for substantive examination | ||
| C14 | Grant of patent or utility model | ||
| GR01 | Patent grant | ||
| C41 | Transfer of patent application or patent right or utility model | ||
| TR01 | Transfer of patent right |
Effective date of registration: 20160204 Address after: Yang Mu Lu high tech Zone 315030 in Zhejiang province Ningbo City 226 No. 103 Lane 601 Patentee after: Ningbo Technology Park Lvpai Soft Packing Trade Co., Ltd. Patentee after: Li Wanhong Address before: 315332, Zhejiang, Ningbo, Cixi province Hai Hai Road, No. two Patentee before: Li Wanhong |
|
| CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160113 Termination date: 20160909 |
|
| CF01 | Termination of patent right due to non-payment of annual fee |