Production plant environment assisted conditioning system

By installing air intake cooling, exhaust ventilation, and lighting devices in the production workshop, combined with solar power, the problems of wasted space, insufficient lighting, poor air circulation, and ineffective cooling in the production workshop have been solved, achieving green and environmentally friendly cooling, ventilation, and lighting effects.

CN114909738BActive Publication Date: 2026-03-27JIANGSU TRIGIANT TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-11
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The production workshop suffers from problems such as wasted space, insufficient lighting, poor air circulation, ineffective cooling, and auxiliary equipment that does not utilize solar energy.

Method used

It employs an air intake cooling device, an exhaust device, a lighting device, and a solar energy device, combining the principles of negative pressure and hot air rising. It utilizes solar power and combines cooling with circulating water in a water storage tank. The design of the frustum-shaped channel and lens optimizes air circulation and lighting.

Benefits of technology

It achieves cooling, ventilation, and lighting functions in the production workshop, reduces energy consumption, improves air quality, utilizes roof space, and meets green and environmentally friendly requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a production workshop environment auxiliary adjustment system, which comprises an air inlet cooling device installed on the wall of a production workshop and used for letting air flow outside the production workshop into the inside of the production workshop to achieve the purpose of cooling the inside of the production workshop, an air exhaust device installed on the roof of the production workshop and used for exhausting hot air in the inside of the production workshop, an illumination device installed on the roof of the production workshop and used for illuminating the inside of the production workshop, and a solar energy device installed outside the roof of the production workshop and used for heat insulating the roof of the production workshop and providing electric energy for the air inlet cooling device, the air exhaust device and the illumination device. The production workshop environment auxiliary adjustment system can realize the functions of reducing temperature, air circulation, illumination and electric energy supplement of the production workshop, is suitable for conventional open production workshops and is a green and environment-friendly production workshop cooling, ventilation and illumination auxiliary adjustment system.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of enterprise production workshop supporting system, and particularly relates to a production workshop environment auxiliary adjusting system. BACKGROUND

[0002] At present, China is in the process of moving from a manufacturing power to a manufacturing country, and it is imperative to promote the sustainable development of manufacturing industry by taking the opportunity of environmental manufacturing, so it is beneficial to the health of workers and improves work efficiency to improve the working environment of production workshop in a green and environmentally friendly way. At present, domestic production workshops more or less have the following problems:

[0003] (1) The roof of the production workshop is generally large in space, and the space is not fully utilized, resulting in space waste;

[0004] (2) The production workshop is generally deep and wide, and some areas in the production workshop have insufficient lighting even in the daytime, so it is necessary to turn on the light, which wastes electric energy;

[0005] (3) Various equipment in the production workshop is densely arranged, which leads to poor air circulation in the production workshop and affects the air quality;

[0006] (4) The open production workshop cannot use air conditioning and other cooling and refrigeration equipment in summer, and the production equipment will inevitably release a large amount of heat during operation. If only fans are placed in the production workshop, the cooling effect is poor, and safety accidents are easy to occur;

[0007] (5) The auxiliary production equipment of the traditional production workshop, such as fan and electric lamp, rarely uses solar energy, and does not consider the problem of energy saving and consumption reduction. SUMMARY

[0008] The present application aims at at least solving the above technical problems existing in the prior art.

[0009] To this end, the present application provides a production workshop environment auxiliary adjusting system, which is combined with the actual situation of current domestic most production workshops and is suitable for conventional open production workshop, and is convenient for cooling, ventilation and lighting of the production workshop.

[0010] The production workshop environment auxiliary adjusting system according to the embodiment of the present application comprises an air inlet cooling device installed on the wall of the production workshop and used for letting the airflow outside the production workshop into the inside of the production workshop to achieve the purpose of cooling the inside of the production workshop, an exhaust device installed on the roof of the production workshop and used for discharging the hot air inside the production workshop, an illumination device installed on the roof of the production workshop and used for illuminating the inside of the production workshop, and a solar device installed outside the roof of the production workshop and used for heat insulation of the roof of the production workshop and providing electric energy for the air inlet cooling device, the exhaust device and the illumination device.

[0011] The present application has the advantages of reducing temperature, air circulation, lighting and power supply in a production workshop, and is suitable for conventional open production workshop and is a green and environmental protection system.

[0012] According to one embodiment of the present application, the air inlet cooling device comprises a water storage pool, an air inlet channel, an air inlet fan, a cooling water pipe and a water pump, the water storage pool is embedded underground, the air inlet channel is arranged on the wall of the production workshop, the air inlet fan and the cooling water pipe are both installed at the air inlet channel, the cooling water pipe is located behind the air inlet fan, the water inlet of the cooling water pipe is connected with the water pump, and the two ends of the cooling water pipe are connected with the cooling water in the water storage pool through a hose.

[0013] According to one embodiment of the present application, the air outlet device comprises an air outlet channel, an air outlet fan, an air outlet and a protective cover, the air outlet channel is arranged on the roof of the production workshop, the air outlet fan is installed at the air outlet channel, the air outlet is arranged on the side wall of the air outlet channel, and the protective cover is installed at the outer top end of the air outlet channel.

[0014] According to one embodiment of the present application, the lighting device comprises a circular concave lens, a hemispherical transparent cover, a metal cover, a rotating track, a controller and a sensor, the hemispherical transparent cover is arranged outside the circular concave lens, the metal cover is arranged outside the hemispherical transparent cover, the hemispherical transparent cover and the metal cover are both installed on the rotating track, the controller is connected with the rotating track and controls the rotating track, and the sensor is connected with the controller.

[0015] According to one embodiment of the present application, the solar energy device comprises a solar cell panel, a solar energy controller, a battery pack and an inverter, the solar cell panel is used for absorbing solar energy and converting the solar energy into electric energy, the solar cell panel charges the battery pack under the control of the solar energy controller, and the inverter is used for converting direct current in the battery pack into alternating current.

[0016] According to one embodiment of the present application, the solar energy device supplies power to the air inlet fan of the air inlet cooling device, the water pump of the air inlet cooling device, the air outlet fan of the air outlet device and the controller of the lighting device.

[0017] According to one embodiment of the present application, the circular concave lens comprises a single-face concave lens located at the upper side and a flat light lens located at the lower side.

[0018] According to one embodiment of the present application, the rotating track drives the metal cover to rotate around the circular concave lens.

[0019] According to one embodiment of the present application, the sensor is used to sense the external light intensity information and transmit the external light intensity information to the controller.

[0020] According to one embodiment of the present application, the top end of the sensor has a front light sensitive sensor corresponding to a front direction, a rear light sensitive sensor corresponding to a rear direction, a left light sensitive sensor corresponding to a left direction, a right light sensitive sensor corresponding to a right direction, and an upper light sensitive sensor corresponding to an upper direction.

[0021] Other features and advantages of the present application will be set forth in the following description, and in part will become apparent to those skilled in the art upon examination of the following or can be learned by practice of the application. The objects and other advantages of the application will be realized and attained by the structure particularly pointed out in the written description and claims hereof as well as the appended drawings.

[0022] So that the foregoing objects, features and advantages of the present application can be readily understood, a more particular description of the application follows, as illustrated in the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings described below only represent some embodiments of the present application, and for those skilled in the art, other drawings can be obtained based on these drawings without creative work.

[0024] Figure 1 is a structural schematic diagram of the present application;

[0025] Figure 2 is a schematic diagram of the air inlet cooling device Figure 1 ;

[0026] Figure 3 is a schematic diagram of the air inlet cooling device Figure 2 ;

[0027] Figure 4 is a schematic diagram of the air outlet device;

[0028] Figure 5 is a schematic diagram of the lighting device;

[0029] Figure 6 is a perspective view of the circular concave lens;

[0030] Figure 7 is a front view of the circular concave lens;

[0031] Figure 8 is a top view of the circular concave lens;

[0032] Figure 9is a schematic diagram of the transmission path of light rays before and after the circular concave lens when the sunlight is directly incident;

[0033] Figure 10 is a schematic diagram of the transmission path of light rays before and after the circular concave lens when the sunlight is obliquely incident;

[0034] Figure 11 is a schematic diagram of the working principle of the supplementary light source of the lighting device.

[0035] The reference signs in the drawings are as follows: 1, air inlet cooling device; 101, water storage pool; 102, air inlet channel; 103, air inlet fan; 104, cooling water pipe; 1041, water inlet; 1042, water outlet; 105, water pump; 2, air outlet device; 201, air outlet channel; 202, air outlet fan; 203, air outlet; 204, protective cover; 3, lighting device; 301, circular concave lens; 3011, single-side concave lens; 3012, flat light lens; 302, hemispherical transparent protective cover; 304, metal protective cover; 305, rotating track; 306, controller; 307, inductor; 4, solar device. DETAILED DESCRIPTION

[0036] Embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation of the present application.

[0037] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the present application and simplify the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application. In addition, the features defined as "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0038] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0039] The production workshop environment auxiliary control system of the present invention will be described in detail below with reference to the accompanying drawings.

[0040] See Figures 1-11 The production workshop environmental auxiliary control system of the present invention includes an air intake cooling device 1 installed on the wall of the production workshop for allowing airflow from outside the production workshop to enter the production workshop to achieve the purpose of cooling the interior of the production workshop; an exhaust device 2 installed outside the roof of the production workshop for discharging hot air from inside the production workshop; a lighting device 3 installed on the roof of the production workshop for illuminating the interior of the production workshop; and a solar energy device 4 installed on the roof of the production workshop for insulating the roof of the production workshop and providing power to the air intake cooling device 1, the exhaust device 2, and the lighting device 3. That is, the production workshop environmental auxiliary control system is mainly composed of the air intake cooling device 1, the exhaust device 2, the lighting device 3, and the solar energy device 4 to form an integrated cooling, ventilation, and lighting system.

[0041] See Figure 2 and Figure 3 According to one embodiment of the present invention, the air intake cooling device 1 includes a water storage tank 101, an air intake channel 102, an air intake fan 103, a cooling water pipe 104 and a water pump 105. The water storage tank 101 is buried underground. The air intake fan 103 and the cooling water pipe 104 are both installed at the air intake channel 102. The cooling water pipe 104 is located behind the air intake fan 103.

[0042] The air intake duct 102 is shaped like a frustum. The larger cross-sectional area of ​​the air intake duct 102 faces the outside of the production workshop, while the smaller cross-sectional area faces the inside of the production workshop. The air intake fan 103 is installed at the end of the air intake duct 102 with the larger cross-sectional area and close to the outside of the production workshop. This design is because conventional air intake ducts have the same cross-sectional area at both ends and only serve the function of air circulation. However, the air intake duct 102 in this invention is shaped like a frustum (one end is a large opening and the other end is a small opening). First, the air enters through the large opening. Then, the air is compressed by the frustum-shaped duct, which releases the heat inside the air (the heat is carried away by the heat dissipation pipe). Finally, the air temperature entering the production workshop through the small opening is significantly reduced, achieving the purpose of physical ventilation and cooling.

[0043] The number of air inlet channels 102 is multiple, and the water storage pool 101 only needs one. The air inlet channel 102 is arranged on the wall of the north or east of the production workshop, and the axis of the air inlet channel 102 is perpendicular to the wall of the production workshop. The air inlet channel 102 is arranged on the wall of the north or east of the production workshop because the sun directly irradiates the south and west of the building for a long time in the northern hemisphere, and the north and east belong to the shady side, and the direct sunlight time is short. Of course, it can be limited to the north only, and the east is partially irradiated in the morning.

[0044] The water storage pool 101 is arranged adjacent to the air inlet channel 102. The water storage pool 101 is used to provide recycled cooling water. The water storage pool 101 is arranged adjacent to the air inlet channel 102 because a too long water conveying pipeline will heat the water with a lower temperature in the water storage pool 101 on the circulating path. When the cooling water and the surrounding environment temperature are similar, the cooling effect will be affected.

[0045] The two ends of the cooling water pipe 104 are respectively the water inlet 1041 and the water outlet 1042. The water inlet 1041 of the cooling water pipe 104 is connected with the water pump 105. The two ends of the cooling water pipe 104 are connected with the cooling water in the water storage pool 101 through a hose, that is, the water inlet 1041 and the water outlet 1042 of the cooling water pipe 104 are connected into the water storage pool 101 through a hose, so as to take away the air heat through the circulating water in the water storage pool 101.

[0046] The water storage pool 101 is buried. The top end of the water storage pool 101 is about 0.5m away from the ground surface. The capacity of the water storage pool 101 can be adjusted according to the number of air inlet fans 103 and the refrigeration effect. It is generally recommended to be about 5m 3 The water storage pool 101 is located in a place not directly irradiated by the sun. The water storage pool 101 needs to be equipped with a cover plate. The cover plate has the functions of heat insulation and preventing foreign matters from falling into the water storage pool 101. The sealing and heat insulation of the water storage pool 101 should be good. The water storage capacity and depth should meet the requirements. Under the condition of meeting these prerequisites, the water temperature in the water storage pool 101 can be maintained below 18℃ under the condition of high outdoor temperature.

[0047] The cooling water pipe 104 is a sparse fence structure. The cooling water pipe 104 is made of a hollow seamless copper pipe with a diameter of about 1cm-2cm. The hollow seamless copper pipe is reciprocally coiled into a sparse fence shape. Such a structure design is beneficial to increase the contact area of the cooling water pipe 104 with the entering air and reduce the resistance to the wind, and accelerate the taking away of the air heat.

[0048] The air blown by the air inlet fan 103 enters the production workshop after being compressed by the cooling water pipe 104 and the inclined surface of the air inlet channel 102. During the whole process, the volume of the gas is reduced and heat is released. The heat is absorbed and taken away by the circulating water in the cooling water pipe 104. The gas is discharged from the end of the air inlet channel 102 with a smaller cross-sectional area and adjacent to the inside of the production workshop, enters the production workshop environment, the pressure returns to normal, the volume becomes larger, and the heat in the production workshop is absorbed, thereby further achieving the cooling effect.

[0049] See Figure 4 According to an embodiment of the present application, the air exhaust device 2 is provided in multiple numbers, and is installed above the roof of the production workshop. The air exhaust device 2 comprises an air exhaust channel 201, an air exhaust fan 202, an air exhaust port 203, and a protective cover 204. The air exhaust channel 201 is arranged on the roof of the production workshop, and the axis of the air exhaust channel 201 is perpendicular to the roof of the production workshop. The air exhaust fan 202 is installed at the air exhaust channel 201.

[0050] The air exhaust channel 201 is provided in multiple numbers, and the overall shape of the air exhaust channel 201 is a prism frustum shape. The end of the air exhaust channel 201 with a larger cross-sectional area is directed towards the inside of the production workshop, and the end of the air inlet channel 102 with a smaller cross-sectional area is directed towards the outside of the production workshop. This is conducive to forming an internal and external air pressure difference and accelerating air circulation.

[0051] The air exhaust fan 202 is installed at the end of the air exhaust channel 201 with a larger cross-sectional area and adjacent to the inside of the production workshop. By utilizing the principle of compressing air in a prism frustum channel, an internal and external air pressure difference is formed to accelerate air circulation.

[0052] The end of the air exhaust channel 201 with a smaller cross-sectional area protrudes out of the roof. The air exhaust port 203 is arranged on the side wall of the air exhaust channel 201. Specifically, the air exhaust port 203 is arranged on the four surrounding side walls of the air exhaust channel 201 protruding out of the roof. The axis of the air exhaust port 203 is perpendicular to the axis of the air exhaust channel 201. This is conducive to air convection and can prevent rain and snow from entering the production workshop.

[0053] The air exhaust device 2 is installed on the roof of the production workshop because cold air descends and hot air rises, which is conducive to forming an air circulation channel and accelerating air circulation in the production workshop.

[0054] The protective cover 204 is installed at the outer top end of the air exhaust channel 201. The protective cover 204 is a hemispherical transparent protective cover. By installing the protective cover 204 at the top end of the air exhaust channel 201, and the protective cover 204 is a protruding hemispherical transparent tempered glass cover with an area larger than the top outlet of the air exhaust channel 201, on the one hand, it can prevent dust and rain and snow from entering the production workshop, and on the other hand, it can play a role in supplementing lighting during the day.

[0055] See Figure 5 , Figure 6, Figure 7 , Figure 8 , Figure 9 , Figure 10 and Figure 11 According to one embodiment of the present invention, there are multiple lighting devices 3. The lighting devices 3 are installed on the outside of the roof of the production workshop. The lighting devices 3 include a circular concave lens 301, a hemispherical transparent cover 302, a metal cover 304, a rotating track 305, a controller 306, and a sensor 307. The hemispherical transparent cover 302 covers the outside of the circular concave lens 301, and the metal cover 304 covers the outside of the hemispherical transparent cover 302. Both the hemispherical transparent cover 302 and the metal cover 304 are installed on the rotating track 305. The controller 306 is connected to the rotating track 305 and controls the rotating track 305. The sensor 307 is connected to the controller 306.

[0056] The circular concave lens 301 includes a single-sided concave lens 3011 located above and a flat lens 3012 located below. The lower surface of the single-sided concave lens 3011 is in contact with the upper surface of the flat lens 3012. This design aims to maximize the utilization of incident light rays at various angles, such as... Figure 9 and Figure 10 As shown, this feature has not been used in traditional daylighting products. See Figure 8 Both the top view of the single-sided concave lens 3011 and the top view of the plano lens 3012 are circular, which is to maximize the use of incident light from various angles. Specifically, the circular concave lens 301 is split into a single-sided concave lens 3011 and a plano lens 3012. The single-sided concave lens 3011 completes the scattering of light to illuminate as much area as possible. Compared with conventional diffusers, the single-sided concave lens 3011 (plano-concave lens) has a better scattering effect and reduces the light loss of the diffuser. The plano lens 3012 uses high-strength tempered glass, which increases the light-gathering surface to ensure a scattering angle for the single-sided concave lens 3011, and also provides support for the single-sided concave lens 3011.

[0057] The single-sided concave lens 3011 is also made of high-strength tempered glass. The single-sided concave lens 3011 and the planar lens 3012 can be integrally formed, but considering the difficulty of processing irregularly shaped glass, they can also be formed separately.

[0058] The hemispherical transparent cover 302 is made of high-strength transparent tempered glass. By covering the outside of the circular concave lens 301 with the hemispherical transparent cover 302, the circular concave lens 301 is kept clean and its wear is prevented without blocking sunlight.

[0059] The metal shield 304 is made of stainless steel, and the inner surface is smooth and coated with a reflective enhancement material, which is commonly used aluminum-based reflective paint or chlorinated polyethylene resin, etc. By setting the metal shield 304 outside the hemispherical transparent shield 302, the metal shield 304 must be able to withstand extreme weather conditions (such as heavy rain, strong winds, heavy snow, hail), be openable, and be movable on the controller 306 (the metal shield 304 is fixed on the rotating track 305 and can be rotated along the track and opened and closed within the range of 0°-90° in the vertical direction under the control of the controller 306), and the inner surface of the metal shield 304 is made of a reflective material that can serve as a supplemental light source when the sunlight is not directly shining.

[0060] The rotating track 305 drives the metal shield 304 to rotate around the circular concave lens 301. The controller 306 can receive signals from the sensor 307 and open and rotate the metal shield 304 according to a pre-set program and adjust the position of the metal shield 304. The hemispherical transparent shield 302 can be easily opened for cleaning the circular concave lens 301.

[0061] The sensor 307 includes a light-sensitive sensor, an electronic sensor, a control element, and a related control program, and is used to sense the external light intensity information and transmit it to the controller 306. The top end of the sensor 307 has five light-sensitive sensors, respectively for the front, back, left, right, and top directions. Specifically, the top end of the sensor 307 has a front light-sensitive sensor corresponding to the front direction, a back light-sensitive sensor corresponding to the back direction, a left light-sensitive sensor corresponding to the left direction, a right light-sensitive sensor corresponding to the right direction, and a top light-sensitive sensor corresponding to the top direction. The rotating track 305 where the sensor 307, the mechanical transmission component, and the metal shield 304 are located can rotate 360 degrees parallel to the horizontal plane, and the sensor 307 transmits the received light signals to the controller 306, which adjusts the position of the rotating track 305, the metal shield 304, and the angle of the metal shield 304 through the mechanical transmission component.

[0062] According to an embodiment of the present application, the solar energy device 4 is located above the factory roof, and the solar energy device 4 utilizes the idle plane space on the top of the production workshop to convert solar energy into electrical energy and store and supply energy, etc. The solar energy device 4 includes a conventional solar cell panel, a solar energy controller, a battery pack, and an inverter. The solar cell panel is used to absorb solar energy and convert it into electrical energy, the solar energy controller controls the charging of the battery pack, and the inverter is used to convert the direct current electrical energy in the battery pack into alternating current.

[0063] The solar energy device 4 plays a role of heat insulation for the roof of the workshop on one hand, and provides electric energy for the related equipment on the other hand, specifically, the solar energy device 4 provides electric energy for the air inlet fan 103 of the air inlet cooling device 1, the water pump 105 of the air inlet cooling device 1, the air outlet fan 202 of the air outlet device 2 and the controller 306 of the lighting device 3.

[0064] According to one embodiment of the present application, the electric energy source for driving the air inlet fan 103 and the water pump 105 to work is preferentially selected as the solar energy device 4, and when the solar energy supply is insufficient, it will be automatically switched to the conventional power supply circuit, thus being beneficial to utilize the solar energy and reduce the energy consumption of the workshop. The driving electric energy source of the air outlet fan 202 is preferentially selected as the solar energy device 4, and when the solar energy supply is insufficient, it will be automatically switched to the conventional power supply circuit, likewise, thus being beneficial to utilize the solar energy and reduce the energy consumption of the workshop.

[0065] The production workshop environment auxiliary regulation system of the present application has the following points to be explained:

[0066] I. The system simultaneously solves the problems of cooling, ventilation and lighting of the production workshop, and realizes the problems by using the green and environment-friendly mode;

[0067] II. The reason why the system is composed of multiple parts: the pure air inlet cooling device 1 cannot completely realize the air circulation of the production workshop, in order to improve the cooling effect, the air outlet device 2 is added, although the supplementary lighting component is added on the air outlet device 2, it is insufficient to completely improve the lighting conditions of the production workshop, therefore the lighting device 3 is added, in addition, the reason why the solar energy device 4 is introduced is that the solar energy device 4 can play a role of heat insulation for the roof of the production workshop, and can be considered as a supplement of the cooling device, at the same time, the solar energy device 4 serves as the driving energy source of other equipment, which completely meets the original intention of pursuing green and environment-friendly, energy-saving and consumption-reducing of the whole system;

[0068] III. In the air inlet cooling device 1, the circulating water of the water storage pool 101 is simultaneously used for cooling, and the prismatic shape of the air inlet channel 102 is used for compressing air, so that the sufficient cooling and ventilation effects can be realized (the basic principle is that heat is released when air is compressed, and heat is absorbed when air expands, which is similar to the refrigeration process of a refrigerator);

[0069] IV. Another key point of the air inlet cooling device 1 is that the sealing and heat insulation of the water storage pool 101 should be good, the storage capacity and depth should meet the requirements, and under the condition that the outdoor temperature is about 30℃, the water temperature in the water storage pool can still be maintained below 18℃;

[0070] V. In the exhaust device 2, the prismatic shape of the exhaust channel 201 is used to compress air, achieve air pressure difference, and improve the exhaust effect. Meanwhile, a hemispherical transparent tempered glass cover is applied at the top outlet of the exhaust channel 201, which can block rain, snow and dust from entering the production workshop and also provide supplementary lighting function;

[0071] VI. In the lighting device 3, the principle of single-sided concave lens 3011 scattering light can be used to introduce a large amount of sunlight into the production workshop through the limited space at the top, and the sunlight can be scattered without the need for additional light scattering devices, which reduces energy loss and improves lighting effect.

[0072] VII. Instead of simply considering the cooling or ventilation of the production workshop, the key point is to combine the two, which is to use the principle of negative pressure and the principle of hot air rising to integrate the air inlet and outlet devices, forming a convection, thereby reducing the temperature of the production workshop while ensuring the effective circulation of air in the production workshop.

[0073] VIII. All devices in the system are equipped with two sets of power supply systems, which preferentially use the power provided by the solar device 4, and when the solar battery group is insufficient, the conventional power supply system is started.

[0074] The production workshop environment auxiliary adjustment system fully considers the environmental factors of the production workshop (production workshop temperature, production workshop air quality, production workshop lighting), effectively improves the three environmental factors, and implements the concept of energy saving and environmental protection. Specifically, it effectively reduces the temperature of the production workshop in summer, improves the air circulation efficiency of the production workshop, provides daylight supplemental lighting, and generates electricity from solar energy. The system can reduce the temperature, air circulation, lighting, and power supply of the production workshop, and is suitable for conventional open production workshops. It is a green and environmentally friendly system that solves some problems existing in conventional production workshops: reasonably solves the problem of high temperature in the production workshop in summer, solves the problem of poor air circulation in the production workshop, solves the problem of insufficient lighting in some areas of the production workshop during the day, uses solar devices to effectively solve the problem of waste of roof space in the production workshop, and solves the problem of non-energy-saving and non-environmental protection of auxiliary facilities in the production workshop. Under the premise of not affecting the production efficiency of the production workshop, the working environment of the relevant personnel is optimized, and the enterprise is more green and environmentally friendly.

[0075] In the description of the specification, reference to "one embodiment", "some embodiments", "an exemplary embodiment", "an example", "a specific example", or "some examples" means that a particular feature, structure, material, or characteristic being described is included in at least one embodiment or example of the application. The appearances of the phrases "in one embodiment", "in some embodiments", "in an exemplary embodiment", "an example", "a specific example", or "some examples" in various places in the specification are not necessarily referring to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics can be combined in any suitable manner in one or more embodiments or examples.

[0076] Although embodiments of the application have been illustrated and described, it will be clear to those of ordinary skill in the art that various changes, modifications, substitutions, and alterations can be made therein without departing from the principles and the spirit of the application. The scope of the application is limited only by the claims and the equivalents thereof.

Claims

1. A production plant environment assisted conditioning system, characterized by: The application relates to an air inlet cooling device (1) installed on the wall of a production workshop and used for letting air flow outside the production workshop into the interior of the production workshop to achieve the purpose of cooling the interior of the production workshop, an air outlet device (2) installed on the roof of the production workshop and used for discharging hot air in the interior of the production workshop, an illumination device (3) installed on the roof of the production workshop and used for illuminating the interior of the production workshop, and a solar energy device (4) installed outside the roof of the production workshop and used for heat insulating the roof of the production workshop and providing electric energy for the air inlet cooling device (1), the air outlet device (2) and the illumination device (3); The air inlet cooling device (1) comprises a water storage pool (101), an air inlet channel (102), an air inlet fan (103), a cooling water pipe (104) and a water pump (105), the water storage pool (101) is adjacent to the air inlet channel (102), the water storage pool (101) is used for providing circulating cooling water, the air inlet channel (102) is in the shape of a prism, there are a plurality of air inlet channels (102), the air inlet channel (102) is arranged on the wall of the production workshop, the air inlet fan (103) and the cooling water pipe (104) are both arranged at the air inlet channel (102), the end of the air inlet channel (102) with a large cross-sectional area is adjacent to the outside of the production workshop, the air inlet fan (103) is arranged at the end of the air inlet channel (102) with a large cross-sectional area and adjacent to the outside of the production workshop, the cooling water pipe (104) is located behind the air inlet fan (103), the cooling water pipe (104) is in the shape of a sparse fence, the two ends of the cooling water pipe (104) are connected with cooling water in the water storage pool (101) through a hose, and the water inlet (1041) of the cooling water pipe (104) is connected with the water pump (105); The air outlet device (2) comprises an air outlet channel (201), an air outlet fan (202), an air outlet (203) and a protective cover (204), there are a plurality of air outlet devices (2), the air outlet device (2) is arranged above the roof of the production workshop, the air outlet channel (201) is in the shape of a prism, the end of the air outlet channel (201) with a large cross-sectional area is adjacent to the interior of the production workshop, the air outlet fan (202) is arranged at the end of the air outlet channel (201) with a large cross-sectional area and adjacent to the interior of the production workshop, the end of the air inlet channel (102) with a small cross-sectional area is adjacent to the outside of the production workshop, the air outlet (203) is arranged on the side wall of the air outlet channel (201) protruding to the outside of the roof, and the protective cover (204) is arranged at the top end of the air outlet channel (201), and the protective cover (204) is in the shape of a hemispherical transparent protective cover. The lighting device (3) comprises a circular concave lens (301), a hemispherical transparent cover (302), a metal cover (304), a rotating track (305), a controller (306) and a sensor (307). The lighting device (3) is installed outside the roof of a production workshop. The hemispherical transparent cover (302) is arranged outside the circular concave lens (301). The metal cover (304) is arranged outside the hemispherical transparent cover (302). The hemispherical transparent cover (302) and the metal cover (304) are both installed on the rotating track (305). The controller (306) is connected with the rotating track (305) and controls the rotating track (305). The sensor (307) is connected with the controller (306). The rotating track (305) drives the metal cover (304) to rotate around the circular concave lens (301). The solar device (4) comprises a solar panel, a solar controller, a battery pack and an inverter.

2. The production plant environment assisted conditioning system of claim 1, wherein: The solar panel is used for absorbing solar energy and converting the solar energy into electric energy. The solar panel charges the battery pack under the control of the solar controller. The inverter is used for converting direct current in the battery pack into alternating current.

3. The production plant environment auxiliary conditioning system of claim 1, wherein: The solar device (4) supplies power to the air inlet fan (103) of the air inlet cooling device (1), the water pump (105) of the air inlet cooling device (1), the air outlet fan (202) of the air outlet device (2) and the controller (306) of the lighting device (3).

4. The production plant environment auxiliary conditioning system of claim 1, wherein: The circular concave lens (301) comprises an upper single-sided concave lens (3011) and a lower flat lens (3012).

5. The production plant environment auxiliary conditioning system of claim 1, wherein: The sensor (307) is used for sensing external light intensity information and transmitting the external light intensity information to the controller (306).

6. The production plant environment auxiliary conditioning system of claim 5, wherein: The top end of the sensor (307) is provided with a front light sensor corresponding to a front position, a rear light sensor corresponding to a rear position, a left light sensor corresponding to a left position, a right light sensor corresponding to a right position and an upper light sensor corresponding to an upper position.

Citation Information

Patent Citations

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