An industrial office building energy conservation and recycling system
By setting up heat, electricity and potential energy recovery systems in industrial office buildings, the problem of energy waste has been solved, and the goals of efficient energy utilization and energy conservation and environmental protection have been achieved.
Patent Information
- Application Number
- CN202211184889.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-27
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2042-09-27
AI Technical Summary
The existing industrial office buildings consume a lot of energy, making energy inconvenient for recycling, resulting in energy waste.
An energy recovery system including thermal, electrical and potential energy recovery systems was designed, and energy recovery systems were used to recycle and store energy for factory use such as solar panels, thermal energy exchangers and potential energy recovery generators.
Maximize the use of energy generated by factories, reduce energy consumption, improve energy utilization, and achieve the green factory goal of energy conservation and environmental protection.
Smart Images

Figure CN115628190B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of energy-saving buildings, and specifically to an energy-saving and recycling system for industrial office buildings. Background Art
[0002] An industrial office building, also known as a manufacturing plant, is a large industrial building or complex used for producing goods. Most factories have production lines composed of large machines or equipment. In modern world history, it generally refers to capitalist large-scale machine production, that is, a capitalist industrial site using mechanized labor to replace manual labor. In the industrial production of factories, energy consumption has always been an essential topic around factory production. Existing factories have high energy consumption, do not pay attention to energy recycling and are not convenient for recycling, resulting in energy waste. In view of the above problems, an energy-saving and recycling system for industrial office buildings is specifically proposed. Summary of the Invention
[0003] The purpose of the present invention is to provide an energy-saving and recycling system for industrial office buildings to solve the problems raised in the above background art.
[0004] To achieve the above purpose, the present invention provides the following technical solution: An energy-saving and recycling system for industrial office buildings, including a control system, the control system and an energy recycling system. The energy recycling system includes an internal heat energy recycling system, an electric energy recycling system and a potential energy recycling system in the factory. The energy recycled by the energy recycling system can provide guarantee and supply for workers, office staff and equipment;
[0005] The electric energy recycling system includes a solar power supply system. The solar power supply system includes solar panels. A locking mechanism is assembled at the rear end of the solar panels, and an installation structure is assembled on the outer surface of the locking mechanism;
[0006] The solar panels include fixing plates. An energy-absorbing plate is hinged to the front end of the fixing plates, and the angle of the energy-absorbing plate can be adjusted. The installation structure includes a fixing frame. First fixing pipes and second fixing pipes are welded to the outer surface of the fixing frame. A card slot is opened on the outer surface of the bottom end of the second fixing pipe. The locking mechanism includes a lifting rod, a first bolt and a second bolt. A steel cable is assembled at the bottom end of the lifting rod. A locking pin is assembled at the bottom end of the steel cable. The locking pin is sleeved on the inner surface of the second bolt, and the steering between the locking pin and the steel cable is realized through a fixed pulley;
[0007] The heat energy recycling system includes a heat exchanger. The heat exchanger includes several articulated parts. An inclined angle of 45° is opened on the inner side of the articulated parts. A heat exchange pipe is assembled inside the articulated parts hinged into one body.
[0008] Preferably, the energy recovery system connects to the electric energy storage system and the hot water storage system according to different types of energy, and uses the stored electric energy and hot water to supply power to the office system and the worker system, as well as to supply power to the groundwater air conditioning system and provide hot water supply.
[0009] Preferably, the energy recovery system includes a potential energy recovery system, which includes the recovery of the potential energy of the falling materials and the falling liquid in the materials during the operation of the factory, and stores the electric energy generated by the recovery to provide part of the power for production equipment or transportation equipment.
[0010] Preferably, the electric energy recovery system includes the electric energy recovered by wind turbines, solar panels, hydroelectric generators and thermal energy generators.
[0011] Preferably, the thermal energy recovery system includes a recovery system for the waste heat at the top of the heating furnace and the preheating of the furnace wall during cooling. In addition to using a heat exchanger, a fixed coiled circulation pipeline is also used to recover the thermal energy with a heat exchange liquid.
[0012] Preferably, a connecting shaft is welded to the front surface of the fixed plate, a rotating shaft is hinged to the inner surface of the connecting shaft, and the rotating shaft is assembled to the rear surface of the energy absorption plate through a fixator.
[0013] Preferably, the number of energy absorption plates used is determined according to the length of the energy absorption plates, and an L-shaped fixing piece is welded to the lower surface of the lowermost energy absorption plate. The front surface and the inner surface of the right end of the fixing piece are respectively provided with a first sliding groove and a second sliding groove. A sliding rod is sleeved on the inner surface of the second sliding groove, and a screw rod is screwed inside the sliding rod. A sleeve knob is sleeved on the rear end of the screw rod. A handle is assembled to the top end of the fixed plate. The handle is assembled near the lifting rod, and the distance between the lifting rod and the handle is about between 5 cm and 13 cm.
[0014] Preferably, insertion holes are provided on the upper surfaces of the first fixing pipe and the second fixing pipe.
[0015] Preferably, one end of the hinge piece is welded with a hinge rod, the other end of the hinge rod is welded with a hinge piece, and an installation rod is welded to the outer side end of the connection head at the connection end. Threads are provided on the outer side of the installation rod, and a top screw structure is screwed on the inner surface of the threads. During installation, several hinge pieces are connected in a ring shape to form a ring structure for recovering heat.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: The present invention provides an overall energy recovery system that can maximize the energy recovery and utilization in industrial factories, including a system for recovering thermal energy and potential energy generated by factory equipment and a system for converting environmental energy into electrical energy, which guarantees energy for workers and offices, recovers and utilizes the excess energy generated by the factory, maximizes the reduction of energy consumption and improves the energy utilization rate, achieving the purpose of energy conservation, environmental protection and green factory, and effectively solving the problem of energy waste caused by large energy consumption, inattention to energy recovery and inconvenient energy recovery in existing factories. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a schematic structural diagram of the present invention;
[0018] Figure 2 is an assembly schematic diagram of the present invention;
[0019] Figure 3 is a sectional assembly schematic diagram of the solar panel adjusting device of the present invention;
[0020] Figure 4 is an assembly schematic diagram of the solar panel installation structure of the present invention;
[0021] Figure 5 is an assembly schematic diagram of the installation structure of the present invention;
[0022] Figure 6 is a schematic structural diagram of the locking mechanism of the present invention;
[0023] Figure 7 is Figure 6 an enlarged schematic diagram of the structure at position a in
[0024] Figure 8 is a sectional assembly schematic diagram of the heat exchanger of the present invention;
[0025] Figure 9 is a system relationship diagram of the present invention;
[0026] Figure 10 is an energy recovery process relationship diagram of the present invention.
[0027] In the figure: 1. Solar panel, 11. Fixing plate, 12. Connecting shaft, 13. Rotating shaft, 14. Fixator, 15. Energy-absorbing plate, 16. Fixing piece, 17. First chute, 18. Second chute, 19. Slide bar, 110. Screw rod, 111. Sleeve button, 112. Handle, 2. Installation structure, 21. Fixing frame, 22. First fixing tube, 23. Insertion hole, 24. Second fixing tube, 25. Card slot, 3. Locking mechanism, 31. Lifting rod, 32. Fixing piece, 33. Steel cable, 34. First bolt, 35. Second bolt, 36. Guide buckle, 37. Third chute, 38. Locking pin, 39. Spring, 310. Fixing plate, 311. Fixed pulley, 312. Guide plate, 4. Heat exchanger, 41. Hinge piece, 42. Hinge rod, 43. Hinge plate, 44. Tilt angle, 45. Heat exchange tube, 46. Connector, 47. Installation rod. Detailed implementation mode
[0028] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0029] Please refer to Figure 1-8 , the present invention provides a technical solution: an energy-saving and recycling system for industrial office buildings, including a control system, a control system and an energy recycling system. The energy recycling system includes an internal heat energy recycling system, an electric energy recycling system and a potential energy recycling system in the factory. The energy recycled by the energy recycling system can provide guarantee and supply for workers, office staff and equipment;
[0030] The electric energy recycling system includes a solar power supply system. The solar power supply system includes a solar panel 1. A locking mechanism 3 is assembled at the rear end of the solar panel 1, and an installation structure 2 is assembled on the outer surface of the locking mechanism 3;
[0031] The solar panel 1 includes a fixing plate 11. An energy-absorbing plate 15 is hinged to the front end of the fixing plate 11, and the angle of the energy-absorbing plate 15 can be adjusted. The installation structure 2 includes a fixing frame 21. The outer surface of the fixing frame 21 is welded with a first fixing tube 22 and a second fixing tube 24. A card slot 25 is opened on the outer surface of the bottom end of the second fixing tube 24. The locking mechanism 3 includes a lifting rod 31, a first bolt 34 and a second bolt 35. A steel cable 33 is assembled at the bottom end of the lifting rod 31. A locking pin 38 is assembled at the bottom end of the steel cable 33. The locking pin 38 is sleeved on the inner surface of the second bolt 35, and the steering between the locking pin 38 and the steel cable 33 is realized through a fixed pulley 311;
[0032] The heat energy recovery system includes a heat energy exchanger 4, which includes a number of articulated parts 41. An inclined angle 44 of 45° is provided inside the articulated part 41, and a heat energy exchange pipe 45 is assembled inside the articulated parts 41 articulated into one body;
[0033] The present invention provides an overall energy recovery system that can maximize the energy recovery and utilization in industrial factories, including a system that can recover the heat energy and potential energy generated by factory equipment and a system that can convert environmental energy into electrical energy, to provide guarantees for workers and offices, recover and utilize the excess energy generated by the factory, minimize energy consumption and improve the energy utilization rate, achieving the purpose of energy conservation, environmental protection and green factories, and effectively solving the problem of energy waste caused by large energy consumption, inattention to energy recovery and inconvenience in energy recovery in existing factories.
[0034] Specifically, the energy recovery system will connect to the electrical energy storage system and the hot water storage system according to different types of energy, and use the stored electrical energy and hot water to provide power for the office system and the worker system and power for the groundwater air conditioning system, and provide hot water supply. In the present invention, the energy recovery system can recover the most resources, namely electrical energy and heat energy. The electrical energy can be supplied by diversified energy sources, and is preferentially used for the guarantee of workers, such as facilities like air conditioners and water supply, and secondly as a supplement to the energy for factory production, which can minimize energy consumption. The recovered heat energy can heat necessary resources such as water, which can provide convenience for factory workers and can also be used for the temperature adjustment of some heating facilities and cleaning facilities in the factory.
[0035] Specifically, the energy recovery system includes a potential energy recovery system, which includes the recovery of the potential energy of the falling of materials and the potential energy of the falling of liquids in the materials during the operation of the factory. The electrical energy is stored by means of recovery power generation to provide a part of the power supply for production equipment or transportation equipment. The systems and equipment used in the present invention have separate applications in their respective fields, but need to be determined according to the production mode of the factory. However, solar power generation, wind power generation and heat energy recovery are the most commonly used systems. Other recovery systems, such as the potential energy recovery system of materials, are commonly used for solid materials such as ores and powders to fall on the blades and hammer and rotate to generate electricity, while the potential energy recovery power generation of liquids is just hydropower generation, using the potential energy of liquids with a large drop to generate electricity. These power generation devices can achieve the purpose of flow regulation while achieving energy recovery.
[0036] Specifically, the electrical energy recovery system includes the electrical energy recovered by wind power generators, solar panels 1, hydroelectric generators and heat energy generators.
[0037] Specifically, the heat energy recovery system includes a recovery system for the waste heat at the top of the heating furnace and the preheating of the furnace wall cooling. In addition to using the heat energy exchanger 4, a fixed coiled circulation pipeline is also used to recover the heat energy by using a heat energy exchange liquid.
[0038] Specifically, a connecting shaft 12 is welded to the front surface of the fixing plate 11. A rotating shaft 13 is hinged to the inner surface of the connecting shaft 12. The rotating shaft 13 is assembled to the rear surface of the energy absorption plate 15 through a fixator 14.
[0039] Specifically, the number of energy absorption plates 15 used is determined according to the length of the energy absorption plate 15. An L-shaped fixing member 16 is welded to the lower surface of the lowermost energy absorption plate 15. A first sliding groove 17 and a second sliding groove 18 are respectively formed in the front surface and the inner surface of the right end of the fixing member 16. A sliding rod 19 is sleeved in the inner surface of the second sliding groove 18. A screw rod 110 is screwed inside the sliding rod 19. A sleeve knob 111 is sleeved at the rear end of the screw rod 110. A handle 112 is assembled to the top end of the fixing plate 11. The handle 112 is assembled near the lifting rod 31, and the distance between the lifting rod 31 and the handle 112 is about between 5 cm and 13 cm.
[0040] In the present invention, the solar panel 1 is the most commonly used and can be said to be a necessary system device. The usage method of the solar panel 1 is that after the installation structure 2 is assembled on the outer wall of the building and the roof of the factory building, the first plug pin 34 and the second plug pin 35 at the rear of the solar panel 1 with the locking mechanism 3 are inserted into the first fixing pipe 22 and the second fixing pipe 24. During the insertion process, the wedge-shaped locking pin 38 will retract and compress the spring. After the locking pin 38 enters the inside of the card slot 25, it will pop out, which is convenient for installation. When disassembling, hold the handle 112 and pull the lifting rod 31 to drive the lifting of the lifting rod inside the fixing member 32, thereby driving the steel cable 33 to move upward. Thus, through the steering effect of the fixed pulley 311, the locking pin 38 is stretched inward to unlock, and the installation and disassembly processes are convenient and fast.
[0041] According to the different illumination directions of the use location, by rotating the screw rod 110 to drive the screw rod 110 to rotate in the middle of the sliding rod 19, the screw rod 110 can be driven to move back and forth in the middle of the sliding rod 19. Affected by the fixed member 16 that can only be flipped, the sliding rod 19 will slide inside the second sliding groove 18, and thus the purpose of adjusting the flipping of the whole row of energy absorption plates 15 can be achieved.
[0042] Specifically, insertion holes 23 are formed in the upper surfaces of the first fixing pipe 22 and the second fixing pipe 24.
[0043] Specifically, one end of the hinge member 41 is welded with a hinge rod 42, the other end of the hinge rod 42 is welded with a hinge plate 43, the outer end of the connection head 46 located at the connection end is welded with a mounting rod 47, and the outer end of the mounting rod 47 is provided with threads, and a setscrew structure is screwed on the inner surface of the threads. During installation, several hinge members 41 are connected in a ring to form a collar structure for heat recovery. When the heat exchanger 4 is in use, it selects an appropriate length according to the diameter of different heat exchange devices and is assembled so that the heat exchange tube 45 fits on the outer surface of the exchange device and is connected to an external circulation pipe to drive water or a heat exchange liquid to circulate, realizing heat recovery and exchange. The heat exchange tube 45 is a naked structure with a main body of a bend-resistant fiber grid inside and composed of a thin metal film material outside, and can be bent while ensuring sealing.
[0044] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An energy saving and recycling system for industrial office buildings, including a control system, characterized in that: The control system and the energy recovery system. The energy recovery system includes an internal plant heat energy recovery system, an electric energy recovery system, and a potential energy recovery system. The energy recovered by the energy recovery system can provide guarantee and supply for workers, office staff, and equipment. The electric energy recovery system includes a solar power supply system. The solar power supply system includes a solar panel (1). A locking mechanism (3) is assembled at the rear end of the solar panel (1), and an installation structure (2) is assembled on the outer surface of the locking mechanism (3). The solar panel (1) includes a fixing plate (11). A energy absorption plate (15) is hinged to the front end of the fixing plate (11), and the angle of the energy absorption plate (15) can be adjusted. The installation structure (2) includes a fixing frame (21). A first fixing pipe (22) and a second fixing pipe (24) are welded to the outer surface of the fixing frame (21). A card slot (25) is opened on the outer surface of the bottom end of the second fixing pipe (24). The locking mechanism (3) includes a lifting rod (31), a first plug pin (34), and a second plug pin (35). A steel cable (33) is assembled at the bottom end of the lifting rod (31). A locking pin (38) is assembled at the bottom end of the steel cable (33). The locking pin (38) is sleeved on the inner surface of the second plug pin (35), and the turning between the locking pin (38) and the steel cable (33) is realized through a fixed pulley (311). The heat energy recovery system includes a heat exchanger (4). The heat exchanger (4) includes a number of articulated parts (41). An inclined angle (44) of 45° is opened on the inner side of the articulated part (41). A heat exchange pipe (45) is assembled inside the articulated parts (41) articulated into one body. One end of the articulated part (41) is welded with an articulated rod (42). The other end of the articulated rod (42) is welded with an articulated piece (43). An installation rod (47) is welded to the outer side end of the connection head (46) at the connection end. Threads are opened on the outer side end of the installation rod (47), and a top screw structure is screwed on the inner surface of the threads. During installation, a number of articulated parts (41) are connected in a ring shape to form a ring structure for recovering heat.
2. The energy-saving and recycling system for an industrial office building according to claim 1, wherein: The energy recovery system will connect to the electric energy storage system and the hot water storage system respectively according to different types of energy, and use the stored power and hot water to provide power for the office system and the worker system, and supply power for the groundwater air conditioning system and provide hot water supply.
3. The energy-saving and recycling system for an industrial office building according to claim 1, wherein: The energy recovery system includes a potential energy recovery system. The potential energy recovery system includes the recovery of the potential energy of the falling of materials and the falling of liquids in the materials during the operation of the factory, and stores the electric energy in the form of recovery power generation to provide a part of the power for production equipment or transportation equipment.
4. An industrial office building energy conservation and recovery system according to claim 1, characterized in that: The electric energy recovery system includes the electric energy recovered by a wind power generator, a solar panel (1), a water power generator, and a heat power generator.
5. An industrial office building energy conservation and recycling system according to claim 1, characterized in that: The heat energy recovery system includes a recovery system for the waste heat at the top of the heating furnace and the preheating of the furnace wall cooling. In addition to using the heat exchanger (4), a fixed coiled circulation pipeline is also used to recover the heat energy by using a heat exchange liquid.
6. The energy-saving and recycling system for an industrial office building according to claim 1, characterized in that: A connecting shaft (12) is welded to the front surface of the fixing plate (11), a rotating shaft (13) is hinged to the inner surface of the connecting shaft (12), and the rotating shaft (13) is assembled to the rear surface of the energy-absorbing plate (15) through a fixator (14).
7. An energy conservation and recovery system for an industrial office building according to claim 6, characterized in that: The number of the energy-absorbing plates (15) used is determined according to the length of the energy-absorbing plates (15), and an L-shaped fixing member (16) is welded to the lower surface of the lowermost energy-absorbing plate (15). A first sliding groove (17) and a second sliding groove (18) are respectively formed in the front surface and the inner surface of the right end of the fixing member (16). A sliding rod (19) is sleeved in the inner surface of the second sliding groove (18), and a screw rod (110) is screwed in the interior of the sliding rod (19). A sleeve knob (111) is sleeved on the rear end of the screw rod (110). A handle (112) is assembled to the top end of the fixing plate (11). The handle (112) is assembled near a lifting rod (31), and the distance between the lifting rod (31) and the handle (112) is about between 5 cm and 13 cm.
8. An energy conservation and recovery system for an industrial office building according to claim 1, characterized in that: Insertion holes (23) are formed in the upper surfaces of both the first fixing pipe (22) and the second fixing pipe (24).
Citation Information
Patent Citations
Method of pipe network complementary energy reutilization
CN101324222A
Park-level comprehensive energy supply system
CN108418251A