Intelligent fan box transformer substation intelligent dehumidification management system
Through the circulating condensation dehumidification protection mechanism and the gas-liquid auxiliary circulating temperature adjustment mechanism, the problem of reduced dehumidification effect in the fan box of the intelligent dehumidification management system is solved, continuous and efficient dehumidification and temperature adjustment are achieved, and the convenience and environmental adaptability of the system are improved.
Patent Information
- Application Number
- CN202510832941.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2025-03-04
- Filing Date
- 2025-06-20
- Publication Date
- 2025-09-19
AI Technical Summary
The intelligent dehumidification management system lacks an auxiliary circulation structure in the fan box, resulting in a decrease in dehumidification effect and affecting ease of use.
A circulating condensation dehumidification protection mechanism and a gas-liquid assisted circulating temperature regulation mechanism are designed. Through the combination of multi-layer interception flat boxes and condensation vanes, combined with a circulating pump and a cooling pump, multiple condensation and temperature regulation of the airflow are achieved to ensure the continuous and efficient operation of the dehumidification system.
It effectively removes moisture from the external airflow, prevents condensation, improves the dehumidification effect and system fluidity, and extends the service life and environmental adaptability of the fan box.
Smart Images

Figure CN120674923A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioning inside a fan box transformer, and in particular to an intelligent dehumidification management system for a fan box transformer. Background Art
[0002] The fan box transformer (full name fan substation box transformer) is a special substation equipment that provides power supply to the fan in the wind power generation system. It integrates multiple functions such as transformers, high and low voltage switchgear, and protection devices. It is an important hub connecting the power grid and the fan. During the use of the fan, a corresponding dehumidification management system is required. For this purpose, a Chinese patent discloses a dual-cold source dehumidification fresh air fan with application number 201910325475.0. The patent improves the poor humidification function of the equipment and its unsuitability in the relatively dry autumn and winter seasons through a self-renewing deionized water humidification device. It solves the defects of traditional technology that requires manual water addition and adopts wet film humidification, which is prone to odor and breeding bacteria. The condensed water generated during dehumidification is collected and stored in a self-renewing water tank after deionization treatment. It can collect the latest water in real time and automatically replace the water that has been there for a long time to ensure that the humidified water is odorless and sterile, thereby improving the quality of fresh air.
[0003] However, the current intelligent dehumidification management system lacks an auxiliary circulation structure during use, which makes it impossible for the dehumidification system to continuously condense and collect water vapor entering the fan box during use, resulting in a decrease in the internal dehumidification effect of the fan box after long-term use, thereby reducing the convenience of using the intelligent dehumidification management system. Summary of the Invention
[0004] The present invention provides an intelligent dehumidification management system for fan box transformers, which can effectively solve the problem raised in the above background technology that the current intelligent dehumidification management system lacks an auxiliary circulation structure during use, which makes the dehumidification system unable to continuously condense and collect water vapor entering the fan box transformer during use, thereby causing the internal dehumidification effect of the fan box transformer to decrease after long-term use, thereby reducing the convenience of use of the intelligent dehumidification management system.
[0005] To achieve the above object, the present invention provides the following technical solution: an intelligent fan box transformer intelligent dehumidification management system, comprising a fan box transformer main body, wherein the front and rear sides of the fan box transformer main body are symmetrically hinged with sealed box doors;
[0006] The end of the fan box transformer body is provided with a circulating condensation and dehumidification protection mechanism, which is used to intercept and adsorb the airflow entering the fan box transformer body to remove water vapor in the external circulating airflow;
[0007] The circulating condensation and dehumidification protection mechanism includes a front-end interception box;
[0008] The top of both ends of the fan box body are embedded with front-end interception boxes, both ends of the front-end interception box are embedded with protective end nets, one side of the front-end interception box is embedded with a front air guide baffle, and the middle part of the inside of the front-end interception box is embedded with a middle air guide baffle;
[0009] A rear air guide baffle is embedded in the rear part of the inner side of the front interception box, and an air guide long circular groove is opened on the front side of the front air guide baffle, the middle air guide baffle and the rear air guide baffle;
[0010] A central mounting shaft is rotatably installed at the middle of the front air guide baffle, the middle air guide baffle and the rear air guide baffle at a position inside the front end interception box. A mounting circular plate is symmetrically sleeved on the outside of the central mounting shaft. A sealing arc plate is connected to the side of the mounting circular plate. A condensation ring is installed inside the mounting circular plate. Drainage side holes are evenly and equidistantly opened at the middle position of one side of the condensation ring.
[0011] According to the above technical solution, the long circular wind guide grooves on the sides of the front wind guide baffle and the middle wind guide baffle are both located on the right side, and the long circular wind guide grooves on the sides of the rear wind guide baffle are located on the right side. The sides of the front wind guide baffle and the middle wind guide baffle are tightly slidably fitted with the sides of the mounting circular plate.
[0012] According to the above technical solution, the two mounting circular plates, the four sealing arc plates and the four condensation rings together form an independent sealed chamber, and the drainage side holes are connected to the cavities on both sides of the condensation rings.
[0013] According to the above technical solution, the inner wall of the condensation ring is evenly and equidistantly bonded with connecting rubber blocks along the circumferential direction, the ends of the three connecting rubber blocks located in the same circle are fixedly connected with a connecting narrow ring, the side surface of the central mounting shaft is evenly and equidistantly fixedly connected with a liquid supply tube at a position corresponding to the interior of the condensation ring along the circumferential direction, the ends of the liquid supply tubes are fixedly connected with an interception flat box at a position corresponding to the interior of the condensation ring, condensation wings are evenly and equidistantly fixedly connected to one side of the interception flat box, a short drainage tube is fixedly connected to the outer bottom of the interception flat box, and an inner cavity guide annular sheet is fixedly connected to the position between the two interception flat boxes inside the condensation ring;
[0014] The front air guide baffle, the middle air guide baffle and the rear air guide baffle are all provided with installation angle slots at the four corners of the side surfaces, and the installation angle slots are interspersed with a liquid storage angle box at the position corresponding to the internal position of the front interception box. The two liquid storage angle boxes located on the top of the front interception box are fixedly connected to the sides of the liquid supply cross pipe, and the bottom end of the liquid supply cross pipe is fixedly connected to the circulation pump through a pipe. The circulation pump is powered by an external power supply, and the bottom end of the circulation pump is fixedly connected to the liquid supply annular box at the position corresponding to the outer end of the central mounting shaft, and a reflux liquid box is rotatably sleeved at the position on the outside of the central mounting shaft corresponding to one side of the liquid supply annular box, and the middle of the bottom end of the reflux liquid box is fixedly connected to the reflux bottom pipe, and the outer side of the central mounting shaft is provided with drainage circular holes evenly along the circumferential direction corresponding to the inner cavity positions of the two groups of mounting circular plates, and the interior of the central mounting shaft is fixedly connected with a liquid supply isolation plate at equal intervals along the circumferential direction corresponding to the end position of the liquid supply capillary tube.
[0015] According to the above technical solution, the interior of a single condensation ring includes three intercepting flat boxes and two inner cavity guide annular plates. The drainage short tube connects the inner cavity of the intercepting flat box and the inner chamber of the sealing arc plate. The end faces of the condensation fins are all facing the drainage side holes.
[0016] According to the above technical solution, the end of the central mounting shaft is fixedly connected to the position of the limit slot column at the internal position of the wind turbine box transformer body, and the side of the protective end net is fixedly connected to the position of the outer side of the limit slot column, and the inner side of the mounting circular box is fixedly installed with a limit elastic buckle at the position corresponding to the side of the limit slot column;
[0017] The outer side of the central mounting shaft corresponds to a position between the two groups of mounting circular plates, and a mounting ring is fixedly sleeved on the middle of the outer side of the mounting ring, and a driving gear ring is fixedly sleeved on the middle of the bottom surface of the front end interception box corresponding to the positions on both sides of the driving gear ring. A mounting bottom frame is fixedly connected, and a driven gear is rotatably installed at the top position between the two mounting bottom frames through a rotating shaft. The edge positions on both sides of the driven gear are evenly and evenly fixedly connected with driving arc-shaped small blocks equidistantly along the circumferential direction. A mounting vertical plate is embedded in the bottom of the mounting bottom frame, and a mounting cylinder is embedded in the middle of the side surface of the mounting vertical plate. A knocking horizontal shaft is inserted and installed in the middle of the inner side of the mounting cylinder, and a knocking spring is sleeved on the outer side of the knocking horizontal shaft corresponding to the position inside the mounting cylinder;
[0018] A collecting bottom box is embedded in the middle of the bottom surface of the front-end intercepting box, a collecting vertical pipe is fixedly connected to the middle of the bottom surface of the collecting bottom box, a filtering flat box is fixedly connected to the bottom end of the collecting vertical pipe, a filtering inner net is embedded in the middle of the inner side of the filtering flat box, a collecting bottom barrel is fixedly connected to the bottom of the filtering flat box, and a heat-conducting metal mesh is embedded in the front-end intercepting box at a position corresponding to the side of the circulating pump.
[0019] According to the above technical solution, the liquid supply annular box, the liquid supply isolation plate and the inner cavity of the liquid supply tube are independently connected to each other, the reflux liquid box, the central mounting axis, the drainage circular hole and the inner cavity of the interception flat box are connected to each other, the top of the heat-conducting metal mesh is tightly fitted with the outer side of the upper liquid storage corner box, and a gap is left between the bottom of the heat-conducting metal mesh and the outer side of the lower liquid storage corner box, and the upper and lower liquid storage corner boxes are connected through a reflux pipe.
[0020] According to the above technical solution, the end of the limiting elastic buckle is clamped with the side slot of the limiting slot column, and the limiting slot column can still be reset after being elastically bent ninety degrees. The driving gear ring and the outer side of the driven gear are meshed with each other, and the outer side of the knocking horizontal shaft and the inner side of the mounting cylinder are tightly slid and fitted, and the two ends of the knocking spring are tightly slid and fitted between the end of the knocking horizontal shaft and the inner wall of the mounting cylinder respectively, and an overflow port is provided at the top of one side of the collection bottom barrel.
[0021] According to the above technical solution, a gas-liquid auxiliary circulation temperature regulating mechanism is provided on the top of the fan box body, which is used to assist the gas-liquid flow inside and outside the fan box and to assist in regulating the temperature inside the fan box during the gas-liquid flow.
[0022] The gas-liquid assisted circulation temperature regulating mechanism includes a mounting inclined top;
[0023] The top of the fan box body is fixedly connected to a mounting inclined top, the top inclined surface of the mounting inclined top is embedded with a circulating liquid box, the bottom surface of the circulating liquid box is evenly and evenly fixedly connected with heat exchange fins, the top two ends of the circulating liquid box are fixedly connected to a circulating outer tube, the end of the circulating outer tube is fixedly connected to the bottom position of the side of the collecting bottom barrel, and the cooling pump is powered by an external power supply;
[0024] The bottom of both end surfaces of the circulating liquid box are fixedly connected to the reflux outer tube, and the end of the reflux outer tube is fixedly connected to the reflux sleeve box at the middle position of the outer side of the collecting vertical pipe;
[0025] Circulation fans are embedded and installed at the four corners of the bottom of the fan box body, and a protective cover is sleeved at the position of the bottom of the fan box body corresponding to the outer side of the circulation fan. The bottom of the protective cover is fixedly connected to an air guide cross pipe, and air guide side pipes are fixedly installed in the middle of both ends of the top surface of the air guide cross pipe, and drainage holes are provided in the middle of both ends of the bottom surface of the air guide cross pipe.
[0026] An exhaust flat box is fixedly installed in the middle of the top surface of the air guide horizontal pipe, and a mounting frame is fixedly connected to the bottom end of the inner side of the exhaust flat box. Rubber telescopic rods are fixedly installed at the four corners of the top surface of the mounting frame. The top surfaces of the four rubber telescopic rods are fixedly connected to the internal positions of the exhaust flat box, and a lifting arc plate is fixedly connected to the middle of the bottom surface of the lifting arc plate. Small wind holes are evenly opened on both sides of the bottom surface of the lifting slider, and a narrow guide box is fixedly installed in the middle of the bottom surface of the inner side of the mounting inclined top.
[0027] According to the above technical solution, the top surface of the circulating liquid box is flush with the top slope of the installation slope, the liquid inlet of the cooling pump is connected to the inner cavity of the collection bottom barrel, and the inner cavity of the reflux sleeve is connected to the reflux outer pipe;
[0028] The top of the air guide side tube is connected to the four corners of the bottom surface of the installation inclined top. Heat dissipation stripes are evenly arranged on one side of the air guide side tube. The outer side of the lifting slider is tightly slidably fitted with the inner circle of the installation frame.
[0029] Compared with the prior art, the present invention has the following beneficial effects: the present invention has a scientific and reasonable structure and is safe and convenient to use:
[0030] 1. A circulating condensation and dehumidification protection mechanism is provided. The mutual cooperation between the various components inside the circulating condensation and dehumidification protection mechanism optimizes the dehumidification process during the use of the fan box. The mutual cooperation between the various components inside the front interception box intercepts the airflow entering the main body of the fan box. The dynamic multi-layer and multi-group design of interception flat boxes and condensation vanes allows multiple condensation and dehumidification of the flowing mixed airflow. The mutual cooperation between the components connected to the liquid storage corner box and the circulation pump allows the interception flat boxes and condensation vanes to be actively circulated and assisted in cooling to ensure that the temperature of the interception flat boxes and condensation vanes can be continuously maintained within an appropriate range during the dehumidification process, thereby effectively removing moisture from the external airflow and effectively preventing the fan box from electrical short circuiting or corrosion of electronic components due to condensation in a humid environment, thereby effectively improving the environmental adaptability and service life of the fan box.
[0031] At the same time, the airflow is directionally guided by the front air guide baffle, the middle air guide baffle, the rear air guide baffle and the air guide long circular groove, so that the amount of condensation inside the condensation rings at different positions on the installation circular plate is uneven, so that the installation circular plate can be actively replaced and cleaned during the dehumidification process, so that the condensation blades at the work station and the external airflow always maintain sufficient contact area, thereby ensuring that the dehumidification system can continue to maintain excellent dehumidification effect during operation. At the same time, since the installation circular plate is driven by the change in the amount of condensation inside the condensation ring, it ensures that each replacement of the installation circular plate is an effective rotation, further improving the smoothness and convenience of using the dehumidification system;
[0032] In addition, during the rotation of the installation circular plate, the driving gear ring and the driven gear can cooperate with each other to perform micro-knocks on the components of the installation circular plate, so that the condensed water droplets on the interception flat box and the condensation vanes can fall more quickly and thoroughly, so as to improve the efficiency and effect of cleaning the interception flat box and the condensation vanes, and the condensation water generated by condensation is filtered and collected by collecting the bottom box and the cooperation between the components at the bottom, thereby further ensuring the smooth operation of the dehumidification system, and while the upper liquid storage corner box is cooled by the heat-conducting metal mesh, the airflow entering the fan box body is heated, thereby increasing the difficulty of water vapor condensation by increasing the temperature of the airflow, further improving the dehumidification effect and use effect.
[0033] 2. A gas-liquid assisted circulation temperature regulation mechanism is provided. Through the mutual cooperation between the various components within the gas-liquid assisted circulation temperature regulation mechanism, the temperature regulation process during the use of the fan box transformer is optimized. Through the mutual cooperation between the cooling pump and the circulation fan, the circulation of gas inside the fan box transformer body and the circulation of external condensed water can be actively driven. Then, the heat exchange process in the condensed water and gas circulation is used to continuously cool the inside of the fan box transformer body, thereby ensuring that the fan box transformer can be continuously maintained within the appropriate temperature range during use, effectively ensuring that the fan box transformer can maintain a stable internal temperature under different working conditions, and effectively extending the service life of various electrical components inside the fan box transformer;
[0034] At the same time, when the temperature inside the fan box transformer body rises sharply in a short period of time, the height of the lifting arc plate and the lifting slider can be adjusted by combining the change of the circulating airflow temperature with the rubber telescopic rod, so that the hot air flow inside the fan box transformer body can be discharged, and the external cold air flow can enter the fan box transformer through the front interception box, thereby realizing the circulation of the internal air flow of the fan box transformer, further improving the environmental adaptability and ease of use of the fan box transformer.
[0035] In summary, through the mutual cooperation between the components inside the circulating condensation dehumidification protection mechanism and the gas-liquid auxiliary circulating temperature adjustment mechanism, the airflow entering the fan box body is quickly dehumidified and heated through the components inside the front-end interception box, which effectively reduces the humidity of the airflow and increases the temperature of the airflow, thereby effectively preventing the condensation inside the fan box body. By optimizing the operating process of each component on the mounting circular plate, the dehumidification system can continue to maintain excellent performance during use, and effectively improve the smoothness of the use of the dehumidification system. At the same time, the water flow generated by condensation can also assist in the heat dissipation of the fan box, thereby effectively utilizing the emissions in the dehumidification process and effectively improving the environmental adaptability and use effect of the dehumidification system. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0037] Figure 1 It is a structural schematic diagram of the present invention;
[0038] Figure 2 It is a schematic diagram of the structure inside the front-end interception box of the present invention;
[0039] Figure 3 This is a schematic diagram of the structure of the collection bottom barrel installation of the present invention;
[0040] Figure 4 It is a structural schematic diagram of the circulating condensation and dehumidification protection mechanism of the present invention;
[0041] Figure 5 This is a schematic structural diagram of the installation of the liquid storage corner box of the present invention;
[0042] Figure 6 This is a structural diagram of the installation of the connecting rubber block of the present invention;
[0043] Figure 7 This is a schematic structural diagram of the installation of the limiting elastic buckle of the present invention;
[0044] Figure 8 This is a schematic structural diagram of the installation of the liquid supply isolation plate of the present invention;
[0045] Figure 9 This is a schematic structural diagram of the driven gear installation of the present invention;
[0046] Figure 10 It is a structural schematic diagram of the gas-liquid assisted circulation temperature regulating mechanism of the present invention;
[0047] Figure 11 This is a schematic structural diagram of the installation of the reflux box of the present invention;
[0048] Figure 12 This is a schematic structural diagram of the installation of the rubber telescopic rod of the present invention;
[0049] Numbers in the figure: 1, fan box body; 2, sealed box door;
[0050] 3. Circulating condensation and dehumidification protection mechanism; 301. Front interception box; 302. Protection end net; 303. Front air guide baffle; 304. Middle air guide baffle; 305. Rear air guide baffle; 306. Air guide long circular groove; 307. Center mounting shaft; 308. Mounting circular plate; 309. Sealing arc plate; 310. Condensation circular ring; 311. Drainage side hole; 312. Connecting rubber block; 313. Connecting narrow ring; 314. Liquid supply tube; 315. Intercepting flat box; 316. Condensation wing; 317. Drainage short tube; 318. Inner cavity guide annular plate; 319. Mounting angle notch; 320. Liquid storage angle box; 321. Liquid supply horizontal pipe; 322. Circulation pump; 323, liquid supply annular box; 324, return liquid box; 325, return bottom pipe; 326, drainage hole; 327, liquid supply spacer; 328, limit slot column; 329, installation circular box; 330, limit elastic buckle; 331, installation ring; 332, drive gear ring; 333, installation bottom frame; 334, driven gear; 335, drive arc block; 336, installation vertical plate; 337, installation cylinder; 338, knock horizontal axis; 339, knock spring; 340, collection bottom box; 341, collection vertical pipe; 342, filter flat box; 343, filter inner net; 344, collection bottom barrel; 345, heat-conducting metal mesh;
[0051] 4. Gas-liquid assisted circulation temperature regulating mechanism; 401. Installing inclined roof; 402. Circulating liquid box; 403. Heat exchange fins; 404. Circulating outer pipe; 405. Cooling pump; 406. Return outer pipe; 407. Return sleeve; 408. Circulating fan; 409. Protective cover; 410. Air guide horizontal pipe; 411. Air guide side pipe; 412. Drain hole; 413. Exhaust flat box; 414. Installing frame; 415. Rubber telescopic rod; 416. Lifting arc plate; 417. Lifting slider; 418. Exhaust hole; 419. Narrow guide box. DETAILED DESCRIPTION
[0052] The preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.
[0053] Example: Figure 1-12 As shown, the present invention provides a technical solution, an intelligent fan box transformer intelligent dehumidification management system, comprising a fan box transformer body 1, and sealed box doors 2 are symmetrically hinged on the front and rear sides of the fan box transformer body 1;
[0054] A circulating condensation and dehumidification protection mechanism 3 is provided at the end of the fan box transformer body 1. The circulating condensation and dehumidification protection mechanism 3 is used to intercept and adsorb the airflow entering the fan box transformer body 1 to remove water vapor in the external circulating airflow;
[0055] The circulating condensation and dehumidification protection mechanism 3 includes a front interception box 301, a protection end net 302, a front air guide baffle 303, a middle air guide baffle 304, a rear air guide baffle 305, an air guide long circular groove 306, a central mounting shaft 307, a mounting circular plate 308, a sealing arc plate 309, a condensation ring 310, a drainage side hole 311, a connecting rubber block 312, a connecting narrow ring 313, a liquid supply tube 314, an interception flat box 315, a condensation wing 316, a drainage short tube 317, an inner cavity guide annular plate 318, a mounting angle notch 319, a liquid storage angle box 320, a liquid supply horizontal pipe 321, and a circulating pump. 322, liquid supply annular box 323, reflux liquid box 324, reflux bottom pipe 325, liquid discharge circular hole 326, liquid supply spacer 327, limiting slot column 328, mounting circular box 329, limiting elastic buckle 330, mounting ring 331, driving gear ring 332, mounting bottom frame 333, driven gear 334, driving arc block 335, mounting vertical plate 336, mounting cylinder 337, knocking horizontal shaft 338, knocking spring 339, collecting bottom box 340, collecting vertical pipe 341, filtering flat box 342, filtering inner net 343, collecting bottom barrel 344 and heat-conducting metal mesh 345;
[0056] A front interception box 301 is embedded and installed at the top of both ends of the fan box body 1, and a protective end net 302 is embedded and installed at both ends of the front interception box 301. A front air guide baffle 303 is embedded and installed on one side of the front interception box 301, a middle air guide baffle 304 is embedded and installed in the middle of the inside of the front interception box 301, and a rear air guide baffle 305 is embedded and installed at the tail of the inside of the front interception box 301. An air guide long circular groove 306 is opened on one side of the front air guide baffle 303, the middle air guide baffle 304 and the rear air guide baffle 305.
[0057] The front air guide baffle 303, the middle air guide baffle 304 and the rear air guide baffle 305 are rotatably mounted at the position inside the front interception box 301. The outer side of the central mounting shaft 307 is symmetrically fixed with a mounting circular plate 308 at the side position corresponding to the front air guide baffle 303 and the middle air guide baffle 304. The side edge of the mounting circular plate 308 is evenly and evenly fixed with a sealing arc plate 309 along the circumferential direction. The inner side of the mounting circular plate 308 corresponds to A condensation ring 310 is fixedly installed on the side of the sealing arc plate 309. Drainage side holes 311 are evenly spaced in the middle of one side of the condensation ring 310. The long circular grooves 306 on the sides of the front air guide baffle 303 and the middle air guide baffle 304 are both located on the right side. The long circular grooves 306 on the side of the rear air guide baffle 305 are also located on the right side. The sides of the front air guide baffle 303 and the middle air guide baffle 304 are tightly slidably fitted with the side of the mounting circular plate 308.
[0058] The inner wall of the condensation ring 310 is evenly bonded with connecting rubber blocks 312 at equal distances along the circumferential direction. The ends of the three connecting rubber blocks 312 located in the same circle are fixedly connected to a connecting narrow ring 313. The side of the central installation shaft 307 is evenly fixedly connected to the inner position of the condensation ring 310 at equal distances along the circumferential direction. The end of the liquid supply tube 314 is fixedly connected to the inner position of the condensation ring 310 at equal distances. The intercepting flat box 315 is evenly fixedly connected to one side of the intercepting flat box 315. There are condensation fins 316, and a short drainage tube 317 is fixedly connected to the bottom of the outer side of the interception flat box 315. An inner cavity guide annular piece 318 is fixedly connected to the position between the two interception flat boxes 315 inside the condensation ring 310. A single condensation ring 310 includes three interception flat boxes 315 and two inner cavity guide annular pieces 318. The short drainage tube 317 connects the inner cavity of the interception flat box 315 and the inner chamber of the sealing arc plate 309. The end faces of the condensation fins 316 are all facing the drainage side hole 311.
[0059] The four corners of the side of the front air guide baffle 303, the middle air guide baffle 304 and the rear air guide baffle 305 are all penetrated with installation angle slots 319, and the interior of the installation angle slots 319 corresponds to the interior position of the front interception box 301 and is interspersed with a liquid storage angle box 320. The two liquid storage angle boxes 320 located on the top of the front interception box 301 are fixedly connected to the sides of the liquid supply cross pipe 321. The bottom end of the liquid supply cross pipe 321 is fixedly connected to a circulation pump 322 through a pipeline. The circulation pump 322 is powered by an external power supply. The bottom end of the circulation pump 322 corresponds to the center installation A liquid supply annular box 323 is fixedly connected to the outer end of the shaft 307. A reflux liquid box 324 is rotatably sleeved on the outer side of the central mounting shaft 307 corresponding to one side of the liquid supply annular box 323. A reflux bottom pipe 325 is fixedly connected to the middle of the bottom end of the reflux liquid box 324. Liquid drainage holes 326 are uniformly opened along the circumferential direction at the inner cavities of the two sets of mounting circular plates 308 on the outer side of the central mounting shaft 307. Liquid supply spacers 327 are fixedly connected to the inner side of the central mounting shaft 307 at positions corresponding to the ends of the liquid supply capillaries 314 at equal intervals along the circumferential direction.
[0060] The end of the central mounting shaft 307 is fixedly connected to a limiting slot column 328 at a position corresponding to the inner portion of the fan box transformer body 1. A mounting circular box 329 is fixedly connected to a position corresponding to the outer side of the limiting slot column 328 on one side of the protective end net 302. A limiting elastic buckle 330 is fixedly installed inside the mounting circular box 329 at a position corresponding to the side of the limiting slot column 328.
[0061] A mounting ring 331 is fixedly sleeved at a position between the two groups of mounting circular plates 308 on the outside of the central mounting shaft 307, a driving gear ring 332 is fixedly sleeved at the middle of the outer side of the mounting ring 331, a mounting bottom frame 333 is fixedly connected at positions on both sides of the driving gear ring 332 in the middle of the bottom surface of the front interception box 301, a driven gear 334 is rotatably installed at the top position between the two mounting bottom frames 333 through a rotating shaft, and driving arc-shaped small blocks 335 are fixedly connected to the side positions of the driven gear 334 at equal distances along the circumferential direction, a mounting vertical plate 336 is embedded in the bottom of the mounting bottom frame 333, a mounting cylinder 337 is embedded in the middle of the side of the mounting vertical plate 336, a knocking horizontal shaft 338 is inserted through the middle of the inner side of the mounting cylinder 337, and a knocking spring 339 is sleeved at a position inside the mounting cylinder 337 on the outer side of the knocking horizontal shaft 338;
[0062] The collecting bottom box 340 is embedded in the middle of the bottom surface of the front interception box 301, and the collecting bottom box 340 is fixedly connected to the collecting vertical pipe 341 in the middle of the bottom surface of the collecting bottom box 340. The bottom end of the collecting vertical pipe 341 is fixedly connected to the filtering flat box 342. The filtering inner net 343 is embedded in the middle of the inner side of the filtering flat box 342. The bottom of the filtering flat box 342 is fixedly connected to the collecting bottom barrel 344. The end of the limiting elastic buckle 330 and the side slot of the limiting slot column 328 are mutually clamped. The limiting slot column 328 can still be reset after being elastically bent at ninety degrees. The driving gear ring 332 and the outer side of the driven gear 334 are meshed with each other, and the outer side of the knocking horizontal shaft 338 and the inner wall of the mounting cylinder 337 are tightly slidably fitted. The two ends of the knocking spring 339 are respectively tightly slidably fitted between the end of the knocking horizontal shaft 338 and the inner wall of the mounting cylinder 337. An overflow port is provided on the top of one side of the collecting bottom barrel 344.
[0063] A heat-conducting metal mesh 345 is embedded in the front-end intercepting box 301 at a position on one side of the circulating pump 322. The inner cavities of the liquid supply annular box 323, the liquid supply isolation sheet 327 and the liquid supply tube 314 are independently connected to each other, and the inner cavities of the reflux liquid box 324, the central installation shaft 307, the drainage hole 326 and the intercepting flat box 315 are connected to each other. The top of the heat-conducting metal mesh 345 fits tightly with the outer side of the upper liquid storage corner box 320, and there is a gap between the bottom of the heat-conducting metal mesh 345 and the outer side of the lower liquid storage corner box 320. The upper and lower liquid storage corner boxes 320 are connected through the reflux pipe. The mutual cooperation between the internal components of the circulating condensation dehumidification protection mechanism 3 optimizes the dehumidification process during the use of the fan box. The components cooperate with each other to intercept the airflow entering the fan box body 1 from the outside. Through the design of dynamic multi-layer and multi-group interception flat boxes 315 and condensation vanes 316, the flowing mixed airflow is condensed and dehumidified multiple times. Through the cooperation between the components connected to the liquid storage corner box 320 and the circulation pump 322, the interception flat box 315 and the condensation vanes 316 are actively circulated to assist in cooling, so as to ensure that the temperature of the interception flat box 315 and the condensation vanes 316 can be continuously maintained within a suitable range during the dehumidification process, thereby effectively removing moisture from the external airflow and effectively preventing the fan box from causing electrical short circuits or corrosion of electronic components due to condensation in a humid environment, thereby effectively improving the environmental adaptability and service life of the fan box.
[0064] At the same time, the airflow is directionally guided by the front air guide baffle 303, the middle air guide baffle 304, the rear air guide baffle 305 and the air guide long circular groove 306, so that the amount of condensation appears unevenly inside the condensation ring 310 at different positions on the mounting circular plate 308, so that the mounting circular plate 308 can be actively replaced and cleaned during the dehumidification process, so that the condensation fins 316 at the work station always maintain a sufficient contact area with the external airflow, thereby ensuring that the dehumidification system can continuously maintain an excellent dehumidification effect during operation. At the same time, since the mounting circular plate 308 is driven by the change in the amount of condensation inside the condensation ring 310, it ensures that each replacement of the mounting circular plate 308 is an effective rotation, further improving the smoothness and convenience of using the dehumidification system;
[0065] The condensation water of the condensation box 315 and the condensation vane 316 is cleaned by the condensation of the condensation water.
[0066] A gas-liquid auxiliary circulation temperature regulating mechanism 4 is provided on the top of the fan box body 1. The gas-liquid auxiliary circulation temperature regulating mechanism 4 is used to assist the gas-liquid flow inside and outside the fan box, and to assist in regulating the temperature inside the fan box during the gas-liquid flow.
[0067] The gas-liquid auxiliary circulation temperature adjustment mechanism 4 includes an installation inclined top 401, a circulating liquid box 402, heat exchange wings 403, a circulating outer pipe 404, a cooling pump 405, a return outer pipe 406, a return sleeve box 407, a circulating fan 408, a protective cover 409, an air guide horizontal pipe 410, an air guide side pipe 411, a liquid drainage hole 412, an exhaust flat box 413, an installation frame 414, a rubber telescopic rod 415, a lifting arc plate 416, a lifting slider 417, an exhaust hole 418 and a narrow guide box 419;
[0068] The top of the fan box transformer body 1 is fixedly connected to a mounting inclined top 401, and a circulating liquid box 402 is embedded in the inclined surface of the top of the mounting inclined top 401. Heat exchange fins 403 are evenly and evenly fixedly connected to the bottom surface of the circulating liquid box 402. Both ends of the top of the circulating liquid box 402 are fixedly connected to a circulating outer tube 404. The end of the circulating outer tube 404 is fixedly connected to a cooling pump 405 at the bottom position of the side of the collecting bottom barrel 344. The cooling pump 405 is powered by an external power supply.
[0069] The bottom of both end surfaces of the circulating liquid box 402 is fixedly connected to a reflux outer tube 406. The end of the reflux outer tube 406 is fixedly connected to a reflux sleeve 407 at the middle position of the outer side of the collecting vertical pipe 341. The top surface of the circulating liquid box 402 is flush with the top inclined surface of the mounting inclined roof 401. The liquid inlet of the cooling pump 405 is connected to the inner cavity of the collecting bottom barrel 344, and the inner cavity of the reflux sleeve 407 is connected to the reflux outer tube 406.
[0070] Circulation fans 408 are embedded and installed at the four corners of the bottom of the fan box transformer body 1. A protective cover 409 is sleeved on the outer position of the circulation fan 408 at the bottom of the fan box transformer body 1. The bottom of the protective cover 409 is fixedly connected to an air guide cross pipe 410. Air guide side pipes 411 are fixedly installed in the middle of both ends of the top surface of the air guide cross pipe 410. Drain holes 412 are provided in the middle of both ends of the bottom surface of the air guide cross pipe 410.
[0071] An exhaust flat box 413 is fixedly installed in the middle of the top surface of the air guide horizontal pipe 410, and a mounting frame 414 is fixedly connected to the bottom end of the inner side of the exhaust flat box 413. Rubber telescopic rods 415 are fixedly installed at the four corners of the top surface of the mounting frame 414. The top surfaces of the four rubber telescopic rods 415 are fixedly connected to the internal positions of the exhaust flat box 413. A lifting arc plate 416 is fixedly connected to the middle of the bottom surface of the lifting arc plate 416. Exhaust holes 418 are evenly provided on both sides of the bottom surface of the lifting slider 417. A narrow guide box 419 is fixedly installed in the middle of the bottom surface of the inner side of the installation inclined top 401. The top of the air guide side pipe 411 is connected to the four corners of the bottom surface of the installation inclined top 401. Heat dissipation stripes are evenly provided on one side of the air guide side pipe 411. The outer side of the descending slider 417 is tightly slidably fitted with the inner ring of the mounting frame 414. The mutual cooperation between the components inside the gas-liquid auxiliary circulation temperature regulation mechanism 4 optimizes the temperature regulation process during the use of the fan box transformer. The mutual cooperation between the cooling pump 405 and the circulating fan 408 can actively drive the circulation of gas inside the fan box transformer body 1 and the circulation of external condensed water, and then continuously cool the inside of the fan box transformer body 1 through the heat exchange process in the condensed water and gas circulation, thereby ensuring that the fan box transformer can continuously maintain a suitable temperature range during use, effectively ensuring that the fan box transformer can maintain a stable internal temperature under different working conditions, and effectively extending the service life of various electrical components inside the fan box transformer;
[0072] At the same time, when the temperature inside the fan box transformer main body 1 rises sharply in a short period of time, the height of the lifting arc plate 416 and the lifting slider 417 can be adjusted by coordinating the change in the temperature of the circulating airflow with the rubber telescopic rod 415, thereby discharging the hot air flow inside the fan box transformer main body 1 and allowing the external cold air flow to enter the fan box transformer through the front-end interception box 301, thereby realizing the circulation of the air flow inside the fan box transformer and further improving the environmental adaptability and ease of use of the fan box transformer.
[0073] The working principle and use process of the present invention: During the actual application of the present invention, when it is necessary to use an intelligent dehumidification management system to dehumidify the airflow entering the fan box transformer, the components are installed on the two ends of the top of the fan box transformer main body 1 through the front-end interception box 301, and the two ends of the front-end interception box 301 are protected by the protective end net 302. When the external airflow enters the fan box transformer main body 1 from the end of the front-end interception box 301, the front air guide baffle 303, the middle air guide baffle 304, the rear air guide baffle 305 and the air guide elongated circular groove 306 cooperate with each other to guide the airflow passing through the front-end interception box 301, so that the airflow can flow along the target route when passing through the front-end interception box 301.
[0074] As the external mixed airflow passes through the air guide slots 306 and flows through the interior of the condensation ring 310, the mixed airflow, guided by the inner cavity guide ring sheet 318, flows sequentially through the corresponding interception flat box 315 and the outside of the condensation vane 316. Utilizing the low specific heat capacity of the condensation vane 316, the condensation vane 316 can maintain a low temperature during the dehumidification process. Furthermore, due to the temperature difference between the condensation vane 316 and the mixed airflow, the water vapor in the mixed airflow gradually condenses outside the condensation vane 316, thereby achieving dehumidification of the external airflow entering the interior of the fan box transformer body 1.
[0075] At the same time, in order to ensure that the temperature of the intercepting flat box 315 and the condensing vane 316 can be continuously lower than the temperature of the mixed airflow, when it is monitored that the temperature of the coolant in the intercepting flat box 315 continues to rise, the circulation pump 322 can be started to drive the coolant to circulate, and the coolant located in the liquid supply transverse pipe 321 is introduced into the liquid supply annular box 323 through the circulation pump 322. The coolant in the liquid supply annular box 323 will flow along the edge of the inner cavity of the central mounting shaft 307 through the liquid supply isolation piece 327, and then be introduced into the corresponding intercepting flat box 315 through the liquid supply capillary 314. In the process of the coolant flowing through the interior of the intercepting flat box 315, rapid heat exchange is performed between the coolant and the condensing vane 316, so as to ensure that the condensing vane 316 can maintain a low temperature during use;
[0076] The cooling liquid flowing through the intercepting flat box 315 is discharged into the chamber composed of the mounting circular plate 308 and the sealing arc plate 309 through the drainage short pipe 317 after heat exchange, and then the cooling liquid is introduced into the center mounting shaft 307 through the drainage circular hole 326, and the cooling liquid is introduced into the return liquid box 324 through the center mounting shaft 307, and the cooling liquid inside the return liquid box 324 is guided back to the bottom liquid storage angle box 320 through the return bottom pipe 325, and then the bottom liquid storage angle box 320 can flow to the top liquid storage angle box 320 through the return pipe to realize the circulation of the cooling liquid, and the heat inside the rising liquid storage angle box 320 is transferred to the inside of the front intercepting box 301 through the heat conductive metal mesh 345, and heat is exchanged in the process of the dehumidified external air flow flowing through the outside of the heat conductive metal mesh 345, so as to increase the temperature of the air flow entering the fan box transformer main body 1;
[0077] When the condensation ring 310 rotates, the condensation water droplets inside the condensation ring 310 will increase, causing the overall center of gravity of the mounting circular plate 308 to shift and drive the central mounting shaft 307 to rotate. When the central mounting shaft 307 rotates, the limiting slot column 328 is driven to rotate synchronously. The rotation of the limiting slot column 328 drives the limiting elastic buckle 330 inside the mounting circular box 329 to be elastically bent. When the end of the limiting elastic buckle 330 is completely separated from the side slot of the limiting slot column 328, the limitation of the limiting slot column 328 is cancelled, so that the central mounting shaft 307 rotates a quarter turn driven by the mounting circular plate 308 and the condensation ring 310. During the rotation of the condensation ring 310 at the bottom, the condensation water accumulated inside the condensation ring 310 is discharged to the bottom of the front interception box 301 through the drainage side hole 311, thereby realizing the cleaning of the condensation water droplets on the outside of the interception flat box 315 and the condensation wing 316 inside the condensation ring 310.
[0078] The cam 338 of the embodiment of the present invention is the cam 339 of the embodiment of the present invention, and the cam 339 of the embodiment of the present invention is the cam 339 of the embodiment of the present invention.
[0079] The condensate collected at the bottom of the front interception box 301 is then guided through the collecting bottom box 340, and then introduced into the interior of the filter flat box 342 through the collecting vertical pipe 341. When the condensate flows through the interior of the filter flat box 342, it is filtered through the filter inner net 343, and then collected in the collecting bottom bucket 344.
[0080] When auxiliary heat dissipation is required inside the fan box, the circulating liquid box 402 can be installed on the top of the fan box body 1 by installing the inclined top 401, and then the condensed water inside the collection bottom barrel 344 is transported by the cooling pump 405, and the condensed water is introduced into the circulating liquid box 402 through the circulating outer pipe 404, so that the condensed water can flow from top to bottom along the inside of the circulating liquid box 402, and in the process of the condensed water flowing along the inside of the circulating liquid box 402, it exchanges heat with the air inside the installed inclined top 401 through the heat exchange fins 403, and then the condensed water at the bottom of the circulating liquid box 402 is introduced into the inside of the reflux sleeve 407 through the reflux outer pipe 406, and then the condensed water is re-guided back to the inside of the collection vertical pipe 341 through the reflux sleeve 407, thereby realizing the circulation of the condensed water;
[0081] While the condensed water flows inside the circulating liquid box 402, the circulating fan 408 is started to continuously drive the air flow inside the fan box transformer main body 1 to flow, and then the circulating air flow is introduced into the interior of the wind guide cross pipe 410 through the protective cover 409, and the circulating air flow is introduced into the interior of the installation inclined roof 401 through the wind guide side pipe 411, and the circulating air flow is allowed to flow along the interior of the installation inclined roof 401, and then the circulating air flow is re-guided back to the interior of the fan box transformer main body 1 through the guide narrow box 419, thereby realizing the circulation of the air flow inside the fan box transformer;
[0082] In addition, when the circulating airflow flows along the inside of the air guide cross duct 410 and the air guide side duct 411, heat is exchanged with the external air through the air guide cross duct 410 and the air guide side duct 411, thereby cooling the circulating airflow. When the temperature of the circulating airflow is too high and it is impossible to sufficiently dissipate heat during the external circulation of the circulating airflow, the rubber telescopic rod 415 will gradually extend after absorbing heat, and after the rubber telescopic rod 415 extends, it will synchronously drive the lifting arc plate 416 and the lifting slider 417 to rise. When the lifting slider 417 is detached from the inside of the mounting frame 414, the ventilation volume inside the exhaust flat box 413 can be effectively increased, so that the high-temperature circulating airflow can be discharged into the external environment along the exhaust flat box 413, so as to quickly cool down the inside of the fan chassis in real time, thereby further improving the temperature regulation effect inside the fan chassis.
[0083] Finally, it should be noted that the above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or substitute equivalents for some of the technical features. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. An intelligent fan box transformer intelligent dehumidification management system, comprising a fan box transformer main body (1), characterized in that: The front and rear sides of the fan box transformer body (1) are symmetrically hinged with sealed box doors (2); The end of the fan box transformer body (1) is provided with a circulating condensation and dehumidification protection mechanism (3), which is used to intercept and adsorb the airflow entering the fan box transformer body (1) to remove water vapor in the external circulating airflow; The circulating condensation and dehumidification protection mechanism (3) comprises a front-end interception box (301); A front interception box (301) is embedded at the top of both ends of the fan box body (1), protective end nets (302) are embedded at both ends of the interior of the front interception box (301), a front air guide baffle (303) is embedded at one side of the interior of the front interception box (301), and a middle air guide baffle (304) is embedded in the middle of the interior of the front interception box (301); A rear air guide baffle (305) is embedded in the rear portion of the inner side of the front interception box (301), and an air guide long circular groove (306) is provided through the front side of each of the front air guide baffle (303), the middle air guide baffle (304), and the rear air guide baffle (305); A central mounting shaft (307) is rotatably mounted on the middle of the front air guide baffle (303), the middle air guide baffle (304) and the rear air guide baffle (305) at a position corresponding to the interior of the front interception box (301); a mounting circular plate (308) is symmetrically sleeved on the outer side of the central mounting shaft (307); a sealing arc plate (309) is connected to the side of the mounting circular plate (308); a condensation ring (310) is mounted inside the mounting circular plate (308); and drainage side holes (311) are evenly and equidistantly opened at the middle position of one side of the condensation ring (310).
2. The intelligent dehumidification management system for fan box transformer according to claim 1 is characterized in that: The long circular wind guide grooves (306) on the sides of the front wind guide baffle (303) and the middle wind guide baffle (304) are both located on the right side, and the long circular wind guide grooves (306) on the side of the rear wind guide baffle (305) are located on the right side. The sides of the front wind guide baffle (303) and the middle wind guide baffle (304) are tightly slidably fitted with the side of the mounting circular plate (308).
3. The intelligent dehumidification management system for fan box transformer according to claim 1 is characterized in that: The two mounting circular plates (308), the four sealing arc plates (309) and the four condensation rings (310) together form an independent sealed chamber, and the drainage side holes (311) are connected to the cavities on both sides of the condensation rings (310).
4. The intelligent dehumidification management system for fan box transformer according to claim 1 is characterized in that: The inner wall of the condensation ring (310) is uniformly bonded with connecting rubber blocks (312) along the circumferential direction, and the ends of the three connecting rubber blocks (312) located in the same circle are fixedly connected to a connecting narrow ring (313). The side surface of the central mounting shaft (307) is uniformly and uniformly fixedly connected to a liquid supply tube (314) at a position corresponding to the interior of the condensation ring (310) along the circumferential direction. The ends of the liquid supply tube (314) are fixedly connected to an interception flat box (315) at a position corresponding to the interior of the condensation ring (310). Condensation fins (316) are uniformly and uniformly fixedly connected to one side of the interception flat box (315). A short liquid discharge tube (317) is fixedly connected to the outer bottom of the interception flat box (315). An inner cavity guide annular piece (318) is fixedly connected to the position between the two interception flat boxes (315) inside the condensation ring (310). The four corners of the side surfaces of the front air guide baffle (303), the middle air guide baffle (304) and the rear air guide baffle (305) are all penetrated with installation angle slots (319), and the interior of the installation angle slots (319) corresponds to the interior position of the front interception box (301) and is interspersed with a liquid storage angle box (320). The sides of the two liquid storage angle boxes (320) located on the top of the front interception box (301) are fixedly connected with a liquid supply transverse pipe (321), and the bottom end of the liquid supply transverse pipe (321) is fixedly connected with a circulation pump (322) through a pipeline. The circulation pump (322) is powered by an external power supply, and the bottom end of the circulation pump (322) corresponds to the middle A liquid supply annular box (323) is fixedly connected to the outer end of the central mounting shaft (307); a reflux liquid box (324) is rotatably sleeved at a position on the outer side of the central mounting shaft (307) corresponding to one side of the liquid supply annular box (323); a reflux bottom pipe (325) is fixedly connected to the middle of the bottom end of the reflux liquid box (324); liquid discharge circular holes (326) are uniformly opened along the circumferential direction at positions on the outer side of the central mounting shaft (307) corresponding to the inner cavities of the two groups of mounting circular plates (308); and a liquid supply isolation sheet (327) is fixedly connected to the inner side of the central mounting shaft (307) at positions corresponding to the ends of the liquid supply capillary (314) at equal intervals along the circumferential direction.
5. The intelligent dehumidification management system for fan box transformer according to claim 4 is characterized in that: The interior of a single condensation ring (310) includes three interception flat boxes (315) and two inner cavity guide annular plates (318); the drainage short tube (317) connects the inner cavity of the interception flat box (315) and the inner chamber of the sealing arc plate (309); the end faces of the condensation fins (316) are all facing the drainage side hole (311).
6. The intelligent dehumidification management system for fan box transformer according to claim 4 is characterized in that: The end of the central mounting shaft (307) is fixedly connected to a limiting slot column (328) at a position corresponding to the interior of the fan box transformer body (1); a mounting circular box (329) is fixedly connected to a position corresponding to the exterior of the limiting slot column (328) on one side of the protective end net (302); and a limiting elastic buckle (330) is fixedly installed inside the mounting circular box (329) at a position corresponding to the side of the limiting slot column (328); A mounting ring (331) is fixedly sleeved at a position between two groups of mounting circular plates (308) on the outside of the central mounting shaft (307), a driving gear ring (332) is fixedly sleeved at the middle of the outside of the mounting ring (331), a mounting bottom frame (333) is fixedly connected at positions on both sides of the driving gear ring (332) on the middle of the bottom surface of the front interception box (301), and a driven gear (334) is rotatably installed at the top position between the two mounting bottom frames (333) through a rotating shaft. Driving arc-shaped small blocks (335) are fixedly connected at both sides of the wheel (334) at equal intervals along the circumferential direction. A mounting vertical plate (336) is embedded in the bottom of the mounting bottom frame (333). A mounting cylinder (337) is embedded in the middle of the side of the mounting vertical plate (336). A knocking horizontal shaft (338) is inserted into the middle of the inner side of the mounting cylinder (337). A knocking spring (339) is sleeved on the outer side of the knocking horizontal shaft (338) at a position corresponding to the inner side of the mounting cylinder (337). A collecting bottom box (340) is embedded and installed in the middle of the bottom surface of the front-end intercepting box (301), a collecting vertical pipe (341) is fixedly connected to the middle of the bottom surface of the collecting bottom box (340), a filtering flat box (342) is fixedly connected to the bottom end of the collecting vertical pipe (341), a filtering inner net (343) is embedded and installed in the middle of the inner side of the filtering flat box (342), a collecting bottom barrel (344) is fixedly connected to the bottom of the filtering flat box (342), and a heat-conducting metal mesh (345) is embedded and installed in the interior of the front-end intercepting box (301) at a position corresponding to one side of the circulating pump (322).
7. The intelligent dehumidification management system for fan box transformer according to claim 6 is characterized in that: The inner cavities of the liquid supply annular box (323), the liquid supply isolation plate (327) and the liquid supply capillary (314) are independently connected to each other; the inner cavities of the reflux liquid box (324), the central mounting shaft (307), the liquid discharge circular hole (326) and the intercepting flat box (315) are connected to each other; the top of the heat-conducting metal mesh (345) is tightly fitted to the outer side of the upper liquid storage corner box (320); and a gap is left between the bottom of the heat-conducting metal mesh (345) and the outer side of the lower liquid storage corner box (320); the upper and lower liquid storage corner boxes (320) are connected via a reflux pipe.
8. The intelligent dehumidification management system for fan box transformer according to claim 7 is characterized in that: The end of the limiting elastic buckle (330) and the side slot of the limiting slot column (328) are mutually engaged, and the limiting slot column (328) can still be reset after being elastically bent at 90 degrees. The driving gear ring (332) and the outer side of the driven gear (334) are mutually engaged, and the outer side of the knocking horizontal shaft (338) and the inner side of the mounting cylinder (337) are tightly slidably fitted. The two ends of the knocking spring (339) are tightly slidably fitted with the end of the knocking horizontal shaft (338) and the inner wall of the mounting cylinder (337) respectively. An overflow port is provided on the top of one side of the collecting bottom barrel (344).
9. The intelligent dehumidification management system for fan box transformer according to claim 7, characterized in that: A gas-liquid auxiliary circulation temperature regulating mechanism (4) is provided on the top of the fan box transformer body (1), and the gas-liquid auxiliary circulation temperature regulating mechanism (4) is used to assist the gas-liquid flow inside and outside the fan box transformer, and to assist in regulating the temperature inside the fan box transformer during the gas-liquid flow process; The gas-liquid auxiliary circulation temperature regulating mechanism (4) includes a mounting inclined top (401); The top of the fan box transformer body (1) is fixedly connected to a mounting inclined top (401), a circulating liquid box (402) is embedded and installed on the top inclined surface of the mounting inclined top (401), the bottom surface of the circulating liquid box (402) is evenly and evenly fixedly connected to heat exchange fins (403), the top ends of the circulating liquid box (402) are fixedly connected to a circulating outer tube (404), the end of the circulating outer tube (404) is fixedly connected to the bottom position of the side of the collecting bottom barrel (344), and the cooling pump (405) is powered by an external power supply; The bottoms of both end surfaces of the circulating liquid box (402) are fixedly connected to a reflux outer tube (406), and the end of the reflux outer tube (406) is fixedly connected to a reflux sleeve box (407) at a position corresponding to the middle of the outer side of the collection vertical pipe (341); The four corners of the bottom of the fan box transformer body (1) are embedded with circulating fans (408), the bottom of the fan box transformer body (1) is sleeved with a protective cover (409) at a position corresponding to the outer side of the circulating fan (408), the bottom of the protective cover (409) is fixedly connected with an air guide cross pipe (410), the middle of both ends of the top surface of the air guide cross pipe (410) are fixedly installed with air guide side pipes (411), and the middle of both ends of the bottom surface of the air guide cross pipe (410) are provided with drainage holes (412); An exhaust flat box (413) is fixedly installed in the middle of the top surface of the air guide horizontal pipe (410), and a mounting frame (414) is fixedly connected to the inner bottom end of the exhaust flat box (413). Rubber telescopic rods (415) are fixedly installed at the four corners of the top surface of the mounting frame (414). The top surfaces of the four rubber telescopic rods (415) are fixedly connected to the internal positions of the exhaust flat box (413). A lifting arc plate (416) is fixedly connected to the middle of the bottom surface of the lifting arc plate (416). Wind holes (418) are evenly opened at both sides of the bottom surface of the lifting slider (417). A guide narrow box (419) is fixedly installed in the middle of the inner bottom surface of the mounting inclined top (401).
10. The intelligent dehumidification management system for fan box transformer according to claim 9, characterized in that: The top surface of the circulating liquid box (402) is flush with the top slope of the installation sloped top (401), the liquid inlet of the cooling pump (405) is connected to the inner cavity of the collecting bottom barrel (344), and the inner cavity of the reflux sleeve box (407) is connected to the reflux outer pipe (406); The top of the air guide side tube (411) is connected to the four corners of the bottom surface of the installation inclined top (401), and heat dissipation stripes are evenly arranged on one side of the air guide side tube (411). The outer side of the lifting slider (417) is tightly slidably fitted with the inner circle of the installation frame (414).
Citation Information
Patent Citations
A dual-cold-source dehumidification fresh air unit
CN110094820B