Disclosure of Invention
The invention aims to provide a residential area monitoring system for buildings, and aims to solve the problem that the service life of monitoring equipment is influenced due to untimely heat dissipation of the monitoring equipment.
In order to achieve the above object, the present invention provides a residential area monitoring system for building, comprising a monitoring case, a monitoring mechanism and a heat dissipation assembly, wherein the monitoring case is electrically connected with the monitoring mechanism, the heat dissipation assembly comprises a cooling box, a liquid pump, a compressor, a first conduit, a hollow heat pipe, a heat dissipation fin, a heat conduction silica gel sheet, a second conduit and a heat dissipation fan, the cooling box is fixedly connected with the monitoring case and is located at one side of the monitoring case, the liquid pump is fixedly connected with the cooling box and is located at one side of the cooling box close to the monitoring case, the compressor is fixedly connected with the liquid pump and is located at one side of the liquid pump far away from the cooling box, the first conduit is communicated with the compressor, penetrates through the monitoring case, is fixedly connected with the hollow heat pipe and is fixedly connected with the first conduit, and is fixedly connected with the monitoring case, and the heat-conducting silica gel sheet is fixedly connected with the hollow heat-conducting pipe and is positioned on one side of the monitoring case, the heat-radiating fin is fixedly connected with the hollow heat-conducting pipe and penetrates through the monitoring case, one side of the second pipe is communicated with the hollow heat-conducting pipe, the other side of the second pipe is communicated with the cooling box and penetrates through the monitoring case, the heat-radiating fan is fixedly connected with the monitoring case and is positioned on one side of the hollow heat-conducting pipe, the monitoring case is used for security management in a residential area, and the heat-radiating assembly enables the monitoring case to quickly radiate heat to prevent the aging rate of the monitoring case from being accelerated due to overhigh temperature inside the monitoring case, so that the service life of the monitoring system is influenced.
The cooling fan comprises a driving motor and rotating blades, the driving motor is fixedly connected with the monitoring case and is located close to one side of the hollow heat conduction pipe, the rotating blades are fixedly connected with the driving motor and are located close to one side of the hollow heat conduction pipe, the driving motor is electrified, so that the driving motor output shaft drives the rotating blades to rotate and blow air, and the cooling of the heating body of the monitoring case is accelerated.
Wherein, radiator unit still includes heating panel and refrigeration piece, the heating panel with cooler bin fixed connection, and be located the cooler bin is kept away from monitor machine case one side, the refrigeration piece with rotor blade fixed connection just is located rotor blade keeps away from driving motor one side is led back the coolant liquid of cooler bin passes through the heating panel absorbs its heat to dispel the heat with the air contact, thereby make coolant liquid rapid cooling, the setting up of refrigeration piece makes radiator fan bloies and becomes cold wind, accelerates radiator fan's radiating effect.
The heat dissipation assembly further comprises a temperature sensor, the temperature sensor is fixedly connected with the monitoring case and located on the inner side wall of the monitoring case, and the temperature sensor is used for detecting the temperature in the monitoring case and controlling the operation of the liquid pump, the compressor and the heat dissipation fan.
The monitoring case comprises a case body and a mainboard, the case body is fixedly connected with the hollow heat conduction pipe and located on one side of the hollow heat conduction pipe, the mainboard is fixedly connected with the heat conduction silica gel sheet and located on one side of the hollow heat conduction pipe, the case body is provided with heat dissipation holes, the heat dissipation holes are located on two sides of the case body, the case body provides installation conditions for the heat dissipation assemblies, the mainboard is used for security and protection management of a community, and the heat dissipation holes are arranged and used for improving the heat dissipation effect of the monitoring case.
The monitoring case further comprises a case door and a handle, the case door is rotatably connected with the case body and located far away from the case body on one side of the cooling case, the handle is fixedly connected with the case door and located far away from the case body on one side of the cooling case, the handle is arranged to facilitate rotation and opening of the case door, and therefore the mainboard can be maintained conveniently.
The monitoring case further comprises a dust screen, the dust screen is detachably connected with the case body and located on one side close to the heat dissipation holes, and the dust screen is used for preventing dust of the mainboard in the case body and preventing dust from entering and accelerating the aging of the mainboard.
The monitoring case further comprises a support, the support is fixedly connected with the case body and located at the bottom of the case body, the support is used for heightening the case body, and the mainboard is prevented from being affected with damp close to the ground.
The monitoring mechanism comprises an infrared camera and a display platform, the infrared camera is electrically connected with the monitoring case, the display platform is electrically connected with the infrared camera and the monitoring case, the infrared camera is used for monitoring a cell and transmitting monitoring information to the monitoring case, and the monitoring case receives signals and transmits the signals to the display screen of the display platform for display and viewing by property personnel.
The invention relates to a residential area monitoring system of building, wherein the monitoring case and the monitoring mechanism are matched to carry out security and protection management on residential areas, the hollow heat conduction pipe and the radiating fin are made of copper-aluminum alloy, the monitoring system has good heat absorption and heat conduction performance, heat generated by the operation of the monitoring case is absorbed through the hollow heat conduction pipe at ordinary times, the hollow heat conduction pipe is contacted with air for radiating through the radiating fin, when the temperature in the monitoring case is overhigh, the liquid pump is electrified to operate to extract cooling liquid in the cooling case and guide the cooling liquid into the compressor, the compressor compresses the introduced cooling liquid into low-temperature low-pressure cooling liquid and then guides the cooling liquid into the first guide pipe, the first guide pipe guides the cooling liquid into the hollow heat conduction pipe, the cooling liquid absorbs the heat transferred to the hollow heat conduction pipe by the monitoring case through a heat transfer effect, and the heat conduction silicon film increases the contact area of the hollow heat conduction pipe and the heating body of the monitoring case, the heat transfer efficiency is further improved, the cooling liquid with the temperature is guided back into the cooling box through the second guide pipe, the recycling of the cooling liquid is achieved, when the cooling liquid absorbs the heat of the hollow heat conduction pipe, the heat radiating fan operates to blow air to radiate the heat of the heating body of the monitoring case, the heat radiating effect of the monitoring case is enhanced, and the problem that the service life of the monitoring equipment is affected due to the fact that the heat of the monitoring equipment is not radiated timely is solved.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a schematic structural diagram of a control cabinet of a building cell monitoring system provided by the invention;
FIG. 2 is a left side view of a control box of a building cell monitoring system in accordance with the present invention;
FIG. 3 is a top view of a control box of a building cell monitoring system in accordance with the present invention;
FIG. 4 is a cross-sectional view taken along plane A-A of FIG. 3;
fig. 5 is a schematic connection diagram of a cell monitoring system for building provided by the invention.
In the figure: 1-monitoring case, 2-heat dissipation assembly, 3-infrared camera, 4-display table, 5-monitoring mechanism, 11-case, 12-mainboard, 13-case door, 14-handle, 15-dust screen, 16-bracket, 17-heat dissipation hole, 21-cooling case, 22-liquid pump, 23-compressor, 24-first conduit, 25-hollow heat conduction pipe, 26-heat dissipation fin, 27-heat conduction silica gel sheet, 28-second conduit, 29-heat dissipation fan, 210-heat dissipation plate, 211-refrigeration sheet, 212-temperature sensor, 291-driving motor, 292-rotating blade.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are illustrative and intended to be illustrative of the invention and are not to be construed as limiting the invention.
In the description of the present invention, it is to be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on the orientations or positional relationships illustrated in the drawings, and are used merely for convenience in describing the present invention and for simplicity in description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus, are not to be construed as limiting the present invention. Further, in the description of the present invention, "a plurality" means two or more unless specifically defined otherwise.
Referring to fig. 1 to 5, the present invention provides a residential area monitoring system for a building, including a monitoring case 1, a monitoring mechanism 5 and a heat dissipation assembly 2, wherein the monitoring case 1 is electrically connected to the monitoring mechanism 5, the heat dissipation assembly 2 includes a cooling box 21, a liquid pump 22, a compressor 23, a first conduit 24, a hollow heat pipe 25, a heat dissipation fin 26, a heat conductive silicone sheet 27, a second conduit 28 and a heat dissipation fan 29, the cooling box 21 is fixedly connected to the monitoring case 1 and located at one side of the monitoring case 1, the liquid pump 22 is fixedly connected to the cooling box 21 and located at one side of the cooling box 21 close to the monitoring case 1, the compressor 23 is fixedly connected to the liquid pump 22 and located at one side of the liquid pump 22 far from the cooling box 21, the first conduit 24 is communicated to the compressor 23 and penetrates through the monitoring case 1, the utility model discloses a monitoring device, including monitoring machine case 1, cavity heat pipe 25, heat conduction silica gel piece 27, cavity heat pipe 25, cooling box 21, cooling fan 29, radiator fan 29 and monitoring machine case 1 fixed connection, and with monitoring machine case 1 fixed connection, and be located monitoring machine case 1 inside wall, heat conduction silica gel piece 27 with cavity heat pipe 25 fixed connection, and be located cavity heat pipe 25 keeps away from monitoring machine case 1 one side, radiator fin 26 with cavity heat pipe 25 fixed connection, and run through monitoring machine case 1, one side of second pipe 28 with cavity heat pipe 25 intercommunication, the opposite side of second pipe 28 with cooler bin 21 intercommunication, and run through monitoring machine case 1, radiator fan 29 with monitoring machine case 1 fixed connection, and be close to and be located cavity heat pipe 25 one side.
In this embodiment, the monitoring case 1 and the monitoring mechanism 5 cooperate to perform security and protection management on a cell, the hollow heat pipe 25 and the heat dissipation fins 26 are made of copper-aluminum alloy, and have good heat absorption and heat conduction performance, at ordinary times, heat generated by operation of the monitoring case 1 is absorbed by the hollow heat pipe 25, and heat is dissipated by contact of the heat dissipation fins 26 with air, when the temperature in the monitoring case 1 is too high, the liquid pump 22 is powered on to operate to extract the cooling liquid in the cooling box 21 and introduce the cooling liquid into the compressor 23, the compressor 23 compresses the introduced cooling liquid into low-temperature and low-pressure cooling liquid and then introduces the low-temperature and low-pressure cooling liquid into the first conduit 24, the first conduit 24 introduces the cooling liquid into the hollow heat pipe 25, and the cooling liquid absorbs heat transferred to the hollow heat pipe 25 by the monitoring case 1 through a heat transfer effect, the heat-conducting silica gel sheet 27 increases the contact area between the hollow heat-conducting pipe 25 and the heating element of the monitoring case 1, so that the heat transfer efficiency is further improved, the cooling liquid with the temperature is guided back into the cooling box 21 through the second conduit 28, the recycling of the cooling liquid is realized, when the cooling liquid absorbs the heat of the hollow heat-conducting pipe 25, the heat-radiating fan 29 is operated to blow the heat-radiating body of the monitoring case 1, the heat-radiating effect of the monitoring case 1 is enhanced, and the problem that the service life of the monitoring equipment is influenced due to untimely heat radiation of the monitoring equipment is solved.
Further, radiator unit 2 still includes heating panel 210, refrigeration piece 211 and temperature sensor 212, heating panel 210 with cooler bin 21 fixed connection, and be located cooler bin 21 is kept away from monitor machine case 1 one side, radiator fan 29 includes driving motor 291 and rotor blade 292, driving motor 291 with monitor machine case 1 fixed connection, and be located and be close to cavity heat pipe 25 one side, rotor blade 292 with driving motor 291 fixed connection, and be located driving motor 291 is close to cavity heat pipe 25 one side, refrigeration piece 211 with rotor blade 292 fixed connection, and be located rotor blade 292 keeps away from driving motor 291 one side, temperature sensor 212 with monitor machine case 1 fixed connection, and be located monitor machine case 1 inside wall.
In this embodiment, the cooling liquid led back to the cooling box 21 absorbs heat thereof through the heat dissipation plate 210 and is in contact with air to dissipate heat, so that the cooling liquid is cooled rapidly, the heat dissipation plate 210 is also made of copper-aluminum alloy, the cooling fins 211 make the cooling fan 29 blow air to become cold air, and accelerate the heat dissipation effect of the cooling fan 29, the model of the cooling fins 211 is EC1-12703, the temperature sensor 212 is used for detecting the temperature in the monitoring case 1 and controlling the operation of the liquid pump 22, the compressor 23 and the cooling fan 29, the model of the temperature sensor 212 is PT100, and the driving motor 291 is powered on, so that the output shaft of the driving motor 291 drives the rotating blades 292 to rotate to blow air, and accelerate the heat dissipation of the heating body of the monitoring case 1.
Further, the monitoring case 1 includes a case 11, a motherboard 12, a case door 13, a handle 14, a dust screen 15 and a bracket 16, the case 11 is fixedly connected to the hollow heat pipe 25 and located on one side of the hollow heat pipe 25, the motherboard 12 is fixedly connected to the heat-conducting silicone sheet 27 and located on one side of the heat-conducting silicone sheet 27 away from the hollow heat pipe 25, the case 11 has heat dissipation holes 17, the heat dissipation holes 17 are located on two sides of the case 11, the case door 13 is rotatably connected to the case 11 and located on one side of the case 11 away from the cooling box 21, the handle 14 is fixedly connected to the case door 13 and located on one side of the case door 13 away from the case 11, the dust screen 15 is detachably connected to the case 11 and located on one side of the heat dissipation holes 17, the bracket 16 is fixedly connected to the case 11, and is located at the bottom of the case 11.
In this embodiment, through box 11 is right radiator unit 2 provides the installation condition, mainboard 12 is used for the security protection management in district, radiator hole 17's setting is used for improving monitor machine case 1's radiating effect, handle 14's setting is convenient for rotate and is opened door 13, thereby be convenient for right mainboard 12 maintenance, dust screen 15 is right in the box 11 mainboard 12 is dustproof, prevents that the dust from following radiator hole 17 from getting into in the box 11 for mainboard 12's ageing, support 16 will box 11 bed hedgehopping prevents mainboard 12 is close to ground and is affected with damp.
The monitoring mechanism 5 comprises an infrared camera 3 and a display platform 4, the infrared camera 3 is electrically connected with the monitoring case 1, and the display platform 4 is electrically connected with the infrared camera 3 and the monitoring case 1.
In this embodiment, the infrared camera 3 is configured to monitor a cell and transmit monitoring information to the monitoring box 1, and the monitoring box 1 receives a signal and transmits the signal to the display screen of the display platform 4 for display, so that a property worker can check the signal.
The invention relates to a residential area monitoring system of building buildings, which comprises a monitoring case 1, a heat dissipation component 2, a monitoring mechanism 5, an infrared camera 3 and a display platform 4, wherein the monitoring case 1 comprises a case body 11, a mainboard 12, a case door 13, a handle 14, a dust screen 15 and a bracket 16, the heat dissipation component 2 comprises a cooling box 21, a liquid pump 22, a compressor 23, a first conduit 24, a hollow heat conduction pipe 25, a heat dissipation fin 26, a heat conduction silica gel sheet 27, a second conduit 28, a heat dissipation fan 29, a heat dissipation plate 210, a refrigeration sheet 211 and a temperature sensor 212, the heat dissipation fan 29 comprises a driving motor 291 and a rotating blade 292, the case body 11 provides installation conditions for the heat dissipation component 2, the mainboard 12, the infrared camera 3 and the display platform 4 are used for security and protection management of residential areas, and the heat dissipation hole 17 improves the heat dissipation effect of the monitoring case 1, the handle 14 facilitates the rotation of the door 13 to maintain the motherboard 12, the dust screen 15 prevents dust on the motherboard 12 in the box 11, the bracket 16 elevates the box 11 to prevent the motherboard 12 from getting damp near the ground, the hollow heat pipe 25 and the heat dissipating fins 26 are made of copper-aluminum alloy, and have good heat absorbing and heat conducting properties, at ordinary times, the heat of the motherboard 12 is absorbed by the hollow heat pipe 25, and the heat dissipating fins 26 are in contact with air to dissipate heat, when the temperature sensor 212 detects that the temperature in the box 11 is higher than a preset value, the liquid pump 22 is powered on to operate to extract the coolant in the cooling box 21 and guide the coolant into the compressor 23, the compressor 23 compresses the guided coolant into the first conduit 24 to a low-temperature and low-pressure coolant, the first conduit 24 guides the cooling liquid into the hollow heat conduction pipe 25, the cooling liquid absorbs the heat transferred to the hollow heat conduction pipe 25 by the monitoring case 1 through the heat transfer effect, the heat conduction silica gel sheet 27 increases the contact area between the hollow heat conduction pipe 25 and the motherboard 12, further improves the heat transfer efficiency, the cooling liquid with temperature is guided back into the cooling box 21 through the second conduit 28, absorbs the heat through the heat dissipation plate 210, and is in contact with the air for heat dissipation, so that the cooling liquid is rapidly cooled, the recycling of the cooling liquid is realized, the cooling fan 29 operates to blow air to dissipate the heat of the monitoring case 1 while the cooling liquid absorbs the heat of the hollow heat conduction pipe 25, the cooling sheet 211 enables the cooling fan 29 to blow air to become cold air, and the heat dissipation effect of the monitoring case 1 is enhanced, the problem of supervisory equipment influence supervisory equipment's life because the heat dissipation is not timely is solved.
While the invention has been described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes in form and detail may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.