Fresh air conditioning system capable of humidifying
Technical Field
The utility model relates to a new trend air conditioning system especially relates to a but humidification new trend air conditioning system.
Background
With the development of economy, the living standard of people is improved. At present, indoor decoration pollution, outdoor air pollution and the like are valued by people, an indoor fresh air system can purify outdoor air and guide the outdoor air into a room, the indoor air is discharged through a pipeline, the room can breathe high-quality fresh air all the time, and an air conditioner is a common indoor temperature adjusting electric appliance.
However, the conventional fresh air and air conditioning systems are two systems, which are high in cost and large in occupied area, and some conventional fresh air and air conditioning systems have single working modes and only have single functions of the fresh air system and the air conditioning system, and the functions and structures of the two systems are not effectively combined, so that the waste of resources is caused, and the functions of improving the user experience such as humidification, safety alarm and the like are lacked.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a but humidification new trend air conditioning system for overcome the defect that above-mentioned prior art exists.
The purpose of the utility model can be realized through the following technical scheme:
a fresh air conditioning system capable of humidifying comprises a shell, wherein an outdoor machine room, an air inlet room, a total heat exchange room, a heat exchange room, an air supply room, a return air room, an air outlet room, a circulating air room, a humidification room and a control room are arranged in the shell, the outdoor machine room, the air inlet room, the total heat exchange room, the air supply room and the humidification room are sequentially arranged from left to right, an outdoor air inlet is arranged on the left side in the air inlet room, the air inlet room is communicated with the outside through the outdoor air inlet, the air outlet room is arranged on the lower side of the air inlet room, an outdoor air outlet is arranged on the left side in the air outlet room, the air outlet room is communicated with the outside through the outdoor air outlet, the circulating air room is arranged on the lower side of the air inlet room, the return air room is arranged on the lower side of the total heat exchange room, a return air inlet is arranged, the circulating air chamber is arranged at the lower side of the heat exchange chamber, the bottom in the circulating air chamber is provided with an internal circulating air inlet, the circulating air chamber is communicated with the interior through the internal circulating air inlet, the right side in the humidifying chamber is provided with an air supply outlet, the air supply chamber and the humidifying chamber are communicated with the interior through the air supply outlet, the control chamber is arranged at the upper side of the air inlet chamber,
the system also comprises a heat exchange component, a total heat exchange core, an air supply fan, a return air fan, a controller component, a humidifying component, an air valve component, a fireproof alarm component, an environment sensor component, a pressure difference sensor and a filter component, wherein the heat exchange component, the air supply fan, the return air fan, the humidifying component, the air valve component, the fireproof alarm component, the environment sensor component and the pressure difference sensor are respectively connected with the controller component, the components of the heat exchange component are arranged in an outdoor unit room and a heat exchange room, the total heat exchange core is arranged in the total heat exchange room, the air supply fan is arranged in the air supply room, the return air fan is arranged in an air outlet room, the humidifying component is arranged in the humidifying room, the components of the environment sensor component are arranged in the air inlet room and the heat exchange room, the pressure difference sensor is arranged in the total heat exchange room, the controller component is arranged in, the fireproof alarm component is arranged at the bottom of the right side outside the shell,
the air valve component comprises a first air valve, a second air valve, a third air valve and a fourth air valve, the first air valve, the second air valve, the third air valve and the fourth air valve are all controllable air valves, the first air valve is arranged at an outdoor air inlet in an air inlet chamber, the second air valve is arranged on the left side in the air return chamber, the third air valve is arranged at the inner top of the air return chamber, the fourth air valve is arranged at the top of the air circulation chamber, the filter component comprises a fresh air filter, a return air filter and an internal circulation air filter, the fresh air filter is arranged on the right side of the first air valve in the air inlet chamber, the return air filter is arranged at the air return air inlet, and the internal circulation air filter is arranged at the internal circulation air inlet.
The heat exchange assembly comprises a compressor, a four-way valve, an outdoor heat exchanger and an indoor heat exchanger, the compressor, the four-way valve and the outdoor heat exchanger are arranged in an outdoor unit, the indoor heat exchanger is arranged in a heat exchange chamber, the compressor, the four-way valve, the outdoor heat exchanger and the indoor heat exchanger are communicated through pipelines, and the pipelines are filled with refrigerants.
The humidifying component comprises an ultrasonic humidifier and a humidifying sprayer, the ultrasonic humidifier is connected with the controller component, the ultrasonic humidifier is communicated with the water inlet pipeline, and when the indoor humidity is too low, the humidifying component is started to humidify the air fed into the room.
The fireproof alarm assembly comprises a smoke sensor and a buzzer, and the smoke sensor and the buzzer are respectively connected with the controller assembly. When the indoor smoke concentration is too high, namely fire occurs, the smoke sensor transmits delay information to the controller component, and the controller component controls the buzzer to buzz.
The environmental sensor subassembly include outdoor sensor subassembly and indoor sensor subassembly, outdoor sensor subassembly locate the air inlet indoor, outdoor sensor subassembly's sensing portion locate between outdoor air intake and the first blast gate, outdoor sensor subassembly include PM2.5 sensor, temperature sensor and humidity transducer, indoor sensor subassembly fixed mounting on indoor wall, indoor sensor subassembly's sensing portion locate indoor, indoor sensor subassembly include PM2.5 sensor, CO2 sensor, temperature sensor and humidity transducer.
The total heat exchange core body on be equipped with new trend inlet air passageway and new trend air-out passageway, pressure differential sensor include air inlet pressure measurement portion and air-out pressure measurement portion, air inlet pressure measurement portion locate in the new trend air intake passageway, air-out pressure measurement portion locate in the new trend air outlet passageway.
The system comprises a controller assembly, a heat exchange assembly, a wind valve assembly, a fireproof alarm assembly, an environment sensor assembly and a pressure difference sensor, wherein the controller assembly comprises a controller and a server, the controller is respectively connected with the server, the heat exchange assembly, the wind supply fan, the return air fan, the humidification assembly, the wind valve assembly, the fireproof alarm assembly, the environment sensor assembly and the pressure difference sensor, the system further comprises a smart phone, and an information input end and an output end of the server are connected with an information output end and an input end of.
The system also comprises a control panel, wherein the control panel is provided with a display and a control button for displaying indoor and outdoor air conditions and filter assembly blocking conditions, and the control panel is connected with the server.
The fresh air filter comprises a coarse filter and a high-efficiency filter which are connected in sequence, and the return air filter and the internal circulation air filter are both coarse filters.
The coarse filter is effective on particles with the particle size of more than or equal to 5 micrometers, the filtering efficiency is more than or equal to 70%, the high-efficiency filter is effective on particles with the particle size of more than or equal to 0.5 micrometers, and the filtering efficiency is more than or equal to 99.9%.
The fresh air filter, the return air filter and the internal circulation air filter are all pull-type filters which are easy to replace.
The utility model discloses during the use, including refrigeration/heating/dehumidification, pure new wind, free refrigeration and four kinds of modes of inner loop, under refrigeration/heating/dehumidification, heat transfer assembly starts, first blast gate, third blast gate and fourth blast gate are opened, outdoor new wind is through first blast gate, the air inlet room gets into the total heat transfer core, it adjusts the temperature to get into indoor heat exchanger after the heat transfer, then send into indoorly through the supply-air room, indoor circulating air gets into indoor heat exchanger through fourth blast gate, circulation plenum, send into indoorly through supply-air room, humidification chamber after adjusting the temperature, indoor return air gets into total heat transfer core through return-air room and third blast gate, send outdoor through the air-out room after the heat transfer; in the pure fresh air mode, the first air valve and the third air valve are opened, outdoor fresh air enters the total heat exchange core body through the air inlet chamber for heat exchange, then enters the room through the heat exchange chamber, the air supply chamber and the humidification chamber, indoor return air enters the total heat exchange core body through the air return chamber and the third air valve, and is sent to the outside through the air outlet chamber after heat exchange; in a free refrigeration mode, a first air valve and a second air valve are opened, outdoor fresh air is filtered in an air inlet chamber and then sent into a room through a total heat exchange chamber, a heat exchange chamber and an air supply chamber, and indoor return air is sent out of the room through an air return chamber, the second air valve and an air outlet chamber; and in the internal circulation mode, the heat exchange assembly is started, the fourth air valve is opened, indoor circulating air enters the indoor heat exchanger through the fourth air valve and the circulating air chamber, and is delivered into the room through the air supply chamber and the humidification chamber after temperature adjustment. The free refrigeration mode is suitable for transition seasons with proper outdoor temperature, and the internal circulation mode is suitable for the situation of serious outdoor air pollution.
Compared with the prior art, the utility model has the advantages of as follows:
(1) the system structure of the utility model can realize four modes of refrigeration/heat, pure fresh air, free refrigeration and internal circulation, wherein, the refrigeration/heat mode utilizes the total heat exchange core body to carry out heat exchange on indoor return air and outdoor fresh air and then adjust the temperature, and adds indoor circulating air, provides fresh air and adjusts the room temperature, thereby effectively saving the energy consumed by the compressor; in the pure fresh air mode, the total heat exchange core body is utilized to exchange heat between indoor return air and outdoor fresh air so as to bring filtered fresh air into the room; in a free refrigeration mode, in a season with proper outdoor temperature, filtered fresh air is directly introduced without heat exchange, indoor air is discharged, and the functions of temperature reduction and ventilation are achieved; the internal circulation mode can only utilize indoor circulating air to refrigerate and heat when external air is seriously polluted, so as to prevent outdoor polluted gas from being introduced into a room;
(2) the pressure difference sensor detects the pressure of an inlet and an outlet of a fresh air channel of the total heat exchange core body, the blockage condition of the fresh air filter and the fresh air volume are obtained through calculation of the controller assembly, on one hand, the replacement of the fresh air filter is reminded, on the other hand, the controller assembly further controls the opening degree of a fourth air valve of the internal circulation air and the opening degree of a first air valve of the fresh air, and therefore the constant fresh air volume is guaranteed;
(3) the utility model utilizes the dehumidification function and the humidification component to match with the humidity sensor, can regulate and control the humidity of the indoor air, and improves the indoor comfort level;
(4) the utility model is provided with a fireproof alarm component, can buzz to alarm when a fire occurs, and can send fire information to the mobile phone in time, thereby improving the indoor safety;
(5) the utility model controls the system through the controller component, the smart phone and the control panel, thereby improving the use convenience;
(6) the utility model discloses air inlet department is equipped with the new trend filter, and the outdoor new trend of guarantee gets into the back through high efficiency filter, and air return air inlet department is equipped with the return air filter, makes the outdoor air of discharge through filtering, protects outdoor air circumstance, and inner loop air inlet department is equipped with the inner loop wind filter, further purifies the room air.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural diagram of the heat exchange assembly of the present invention.
The system comprises an outdoor sensor assembly, an outdoor air inlet, a first air valve, a fresh air filter, a server, a total heat exchange core body, a controller, an indoor heat exchanger, a 9, an air supply fan, a 10, an ultrasonic humidifier, a 11, a humidifying sprayer, a 12, a shell, a 13, a compressor, a 14, an outdoor heat exchanger, a 15, an outdoor air outlet, a 16, a return air fan, a 17, a second air valve, a 18, a return air filter, a 19, a third air valve, a 20, a return air inlet, a 21, an internal circulation air inlet, a 22, a fourth air valve, a 23, an internal circulation air filter, a 24, a fireproof alarm assembly, a 25, an air inlet pressure detection portion, a 26, an air supply outlet, a 27, a four-way valve, a 28 and an air outlet pressure detection portion.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments. Note that the following description of the embodiments is merely an example of the nature, and the present invention is not intended to limit the application or the use thereof, and the present invention is not limited to the following embodiments.
Examples
As shown in fig. 1, a humidifying fresh air conditioning system comprises a shell 12, a heat exchange assembly, a total heat exchange core 6, an air supply fan 9, a return air fan 16, a controller assembly, a humidifying assembly, an air valve assembly, a fireproof alarm assembly 24, an environment sensor assembly, a pressure difference sensor and a filter assembly, wherein the heat exchange assembly comprises a compressor 13, a four-way valve 27, an outdoor heat exchanger 14 and an indoor heat exchanger 8, the air valve assembly comprises a first air valve 3, a second air valve 17, a third air valve 19 and a fourth air valve 22, the first air valve 3, the second air valve 17, the third air valve 19 and the fourth air valve 22 are all controllable air valves, the humidifying assembly comprises an ultrasonic humidifier 10 and a humidifying spray head 11, the filter assembly comprises a fresh air filter 4, a return air filter 18 and an internal circulation air filter 23, the fresh air filter 4, the return air filter 18 and the internal circulation air filter 23 are all pull-type easily replaceable filters, fireproof alarm subassembly 24 includes smoke transducer and bee calling organ, and the environmental sensor subassembly includes outdoor sensor subassembly 1 and indoor sensor subassembly, and outdoor sensor subassembly 1 includes PM2.5 sensor, temperature sensor and humidity transducer, and indoor sensor subassembly includes PM2.5 sensor, CO2 sensor, temperature sensor and humidity transducer, and pressure differential sensor includes air inlet pressure measurement portion 25 and air-out pressure measurement portion 28.
In this embodiment, the fresh air filter 4 includes a coarse filter and a high efficiency filter that are connected in sequence, the return air filter 18 and the internal circulation air filter 23 are both coarse filters, the coarse filters are effective on particles with a particle size of greater than or equal to 5 micrometers, the filtration efficiency is greater than or equal to 70%, the high efficiency filters are effective on particles with a particle size of greater than or equal to 0.5 micrometers, and the filtration efficiency is greater than or equal to 99.9%.
Specifically, as shown in fig. 1, an outdoor unit room, an air inlet room, a total heat exchange room, a heat exchange room, an air supply room and a humidification room are sequentially arranged in a shell 12 from left to right, an air outlet room, an air return room, a circulating room and a control room are further arranged in the shell 12, the air outlet room is arranged at the lower side of the air inlet room, the air return room is arranged at the lower side of the total heat exchange room, the circulating room is arranged at the lower side of the heat exchange room, the control room is arranged at the upper side of the air inlet room, an outdoor air inlet 2 is arranged at the left side in the air inlet room, the air inlet room is communicated with the outdoor through the outdoor air inlet 2, an outdoor air outlet 15 is arranged at the left side in the air outlet room, the air outlet room is communicated with the outdoor through the outdoor air outlet 15, the air return room is arranged at the lower side of the total heat exchange room, a return air, an air supply port 26 is provided on the right side in the humidification chamber, and the air supply chamber and the humidification chamber are communicated with the inside of the chamber through the air supply port 26.
Correspondingly, the first air valve 3 is arranged at the outdoor air inlet 2 in the air inlet chamber, the second air valve 17 is arranged at the left side in the air return chamber, the third air valve 19 is arranged at the top in the air return chamber, the fourth air valve 22 is arranged at the top of the circulating air chamber, the fresh air filter 4 is arranged at the right side of the first air valve 3 in the air inlet chamber, the return air filter 18 is arranged at the return air inlet 20, and the internal circulating air filter 23 is arranged at the internal circulating air inlet 21.
As shown in fig. 1, the heat exchange assembly, the air supply fan 9, the return air fan 16, the humidification assembly, the air valve assembly, the fireproof alarm assembly 24, the environment sensor assembly and the differential pressure sensor are respectively connected with the controller assembly, the compressor 13, the four-way valve 27 and the outdoor heat exchanger 14 are arranged in an outdoor unit, the indoor heat exchanger 8 is arranged in the heat exchange chamber, as shown in fig. 2, the compressor 13, the four-way valve 27, the outdoor heat exchanger 14 and the indoor heat exchanger 8 are communicated through a pipeline filled with a refrigerant, the outdoor sensor assembly 1 is arranged in the outdoor unit, a sensing part of the outdoor sensor assembly 1 is arranged outdoors through the shell 12, the indoor sensor assembly is fixedly arranged on an indoor wall, a sensing part of the indoor sensor assembly is arranged indoors, the total heat exchange core 6 is arranged in the total heat exchange chamber, and the total heat exchange core 6 is, in pressure sensor's air inlet pressure measurement portion 25 located new trend air intake passageway, pressure sensor's air-out pressure measurement portion 28 located new trend air outlet passageway, air supply fan 9 locates in the air supply room, it is indoor that air-out is located to return air fan 16, it is indoor that ultrasonic humidifier 10 and humidification shower nozzle 11 locate the humidification, the inlet channel is connected to ultrasonic humidifier 10, the controller subassembly is located in the control room, the outer right side bottom of casing 12 is located to fire prevention alarm component 24.
The system further comprises a control panel and a smart phone, wherein a display and a control button which are used for displaying indoor and outdoor air conditions and filter assembly blocking conditions are arranged on the control panel, and the smart phone is used for displaying the indoor and outdoor air conditions and the filter assembly blocking conditions and controlling the working mode of the system.
The controller assembly comprises a controller 7 and a server 5, the controller 7 is respectively connected with the server 5, the heat exchange assembly, the environment sensor assembly, the pressure difference sensor, the air supply fan 9, the return air fan 16, the humidifying assembly, the air valve assembly, the filter assembly and the fireproof alarm assembly 24, and an information input end and an output end of the server 5 are connected with an information output end and an input end of the smart phone.
The utility model discloses during the use, including four kinds of modes of refrigeration/heating/dehumidification, pure new trend, free refrigeration and inner loop.
In a refrigeration/heating/dehumidification mode, the heat exchange assembly is started, the first air valve 3, the third air valve 19 and the fourth air valve 22 are opened, outdoor fresh air enters the total heat exchange core 6 through the first air valve 3, the fresh air filter 4 and the air inlet chamber, enters the indoor heat exchanger 8 for temperature regulation after heat exchange, is sent into a room through the air supply chamber, indoor circulating air enters the indoor heat exchanger 8 through the internal circulating air filter 23, the fourth air valve 22 and the circulating air chamber, is sent into the room through the air supply chamber and the humidification chamber after temperature regulation, indoor return air enters the total heat exchange core 6 through the return air filter 18, the return air chamber and the third air valve 19, and is sent out of the room through the air outlet chamber after heat exchange; in the pure fresh air mode, the first air valve 3 and the third air valve 19 are opened, outdoor fresh air enters the total heat exchange core 6 through the fresh air filter 4 and the air inlet chamber for heat exchange, then enters the room through the heat exchange chamber, the air supply chamber and the humidification chamber, indoor return air enters the total heat exchange core 6 through the return air filter 18, the air return chamber and the third air valve 19, and is sent to the outside through the air outlet chamber after heat exchange; in a free refrigeration mode, the first air valve 3 and the second air valve 17 are opened, outdoor fresh air passes through the fresh air filter 4 and the air inlet chamber and then is sent into the room through the total heat exchange chamber, the heat exchange chamber and the air supply chamber, and indoor return air passes through the return air filter 18, the air return chamber, the second air valve 17 and the air outlet chamber and is sent out of the room; in the internal circulation mode, the heat exchange assembly is started, the fourth air valve 22 is opened, indoor circulating air enters the indoor heat exchanger 8 through the circulating air filter 23, the fourth air valve 22 and the circulating air chamber, and is delivered into the room through the air supply chamber and the humidification chamber after temperature adjustment. The free refrigeration mode is suitable for transition seasons with proper outdoor temperature, and the internal circulation mode is suitable for the situation of serious outdoor air pollution.
When the indoor humidity is lower than the set humidity, the controller assembly controls the ultrasonic humidifier 10 and the driving nozzle 11 to be started, and humidifies the air blown out by the air supply fan 9, so that the indoor air humidity is improved. When the indoor smoke concentration is too high, namely a fire occurs, the smoke sensor 24 transmits delay information to the controller 7, the controller 7 controls the buzzer to buzz, the fire information is transmitted to the server 5, and the smart phone can remind a user of the occurrence of the fire in time.
Pressure difference sensor is used for detecting the wind pressure difference in new trend air intake passageway and the new trend air outlet passageway and transmits for controller 7, controller 7 handles wind pressure difference, acquire new trend filter 4's the jam condition, and transmit for server 5, can show new trend filter 4's the jam condition on control panel and the smart mobile phone, remind user's new trend filter whether need change, and, controller 7 obtains new trend amount of wind size according to the pressure difference calculation, and then adjust first blast gate 3's opening degree and air supply fan 9 power, guarantee the invariant of new trend amount of wind.
The above embodiments are merely examples and do not limit the scope of the present invention. These embodiments may be implemented in other various manners, and various omissions, substitutions, and changes may be made without departing from the technical spirit of the present invention.