Fresh air refrigerating heat exchanger
Technical Field
The utility model relates to a new trend refrigeration system heat exchanger belongs to air conditioning equipment technical field.
Background
With the improvement of living standard of people, people have higher and higher requirements on the environment around the people, and the people hope that the air around the people is clean and safe. However, with the development of economy, the air environment is continuously worsened, people are continuously disturbed by the haze weather, the three items of sulfur dioxide, nitrogen oxide and inhalable particles are the main components of haze, harmful particles in the air contain various fine particles and more than 20 toxic substances which are harmful to human bodies, and if people live and work in the environment with poor air quality for a long time, the reduction of the respiratory function and the generation of respiratory system diseases are caused, and the life is threatened.
For example, in the known art, a positive pressure oxygen supplying machine for haze-proof multifunctional indoor air purification is disclosed in the technical name of [ patent application No.: 2017100330607, a glass fiber filter H14 filter, a glass fiber filter H13 filter, and a granular activated carbon filter are provided to purify and filter the air introduced into the room, and a heater is provided in a duct in the air inlet to heat the air introduced into the room. However, the heater of the technology is directly arranged in the pipeline, the contact area of air flowing in the pipeline and the heater is small, so that the heating temperature of the air in the pipeline is low, and the temperature of the air in the pipeline can only reach 20 ℃, so that the temperature of the air fed into the room is lower, and the requirement of the indoor proper comfortable temperature cannot be met; meanwhile, the arrangement of the heater in the pipe has limitation, and the air inlet cannot be randomly selected to be in a proper position. Furthermore, indoor air cannot be purified and temperature-regulated all the year round.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the problems and provide a fresh air refrigerating and heat-producing exchanger; the multifunctional heat exchanger arranged by the exchanger provides a sealed space, has large volume and more stored heat energy, can fully heat air, and the internal temperature of the multifunctional heat exchanger can meet the indoor temperature requirement; moreover, the temperature controller arranged in the exchanger can set the heating temperature, when the temperature value in the multifunctional heat exchanger exceeds a set numerical value, the heating or the refrigerating is automatically stopped, and when the temperature value in the multifunctional heat exchanger is lower than the set numerical value, the heating or the refrigerating is automatically started, so that the power supply cost is saved; meanwhile, the controller of the exchanger is independently arranged and can be installed on a specific required proper position in a room, and the installation position can be adjusted in time according to the requirements of indoor decoration and decoration; in addition, the exchanger has a strict structure and a reasonable design, and is suitable for social popularization and use.
In order to achieve the above object, the present invention is achieved by the following technical means.
The utility model provides a new trend refrigeration system heat exchanger, it is by cold and heat exchanger, controller, purification outer machine, heating pipe, casing, low-pressure pipe, low pressure expansion angle valve, high pressure expansion angle valve, amortization cotton, high-pressure pipe, acoustical panel, baffle, refrigeration pipe, second temperature controller, first temperature controller, response head portion and constitute its characterized in that: a shell is arranged on the outer side of the cold-heat exchanger, one side of the multifunctional heat exchanger is respectively connected with the air inlet and the purification external unit through a hole, a flange plate and two pipelines, a low-pressure expansion angle valve and a high-pressure expansion angle valve are arranged on the other side of the cold-heat exchanger, a refrigeration pipe is fixedly arranged at the bottom of the inner side of the cold-heat exchanger through a support, and the cold-heat exchanger and the purification external unit can be arranged outdoors; the improved silencer is characterized in that two holes are formed in one side of the shell, a partition plate is arranged on the inner wall of one side of the shell, a first temperature controller is arranged on the partition plate, silencing plates are arranged on the other three sides of the inner wall of the shell, silencing cotton is arranged on the inner sides of the silencing plates, and a plurality of strip holes are formed in the silencing plates.
Furthermore, one side of the first temperature controller is connected with the induction head through a sensing wire, the induction head is inserted into the hole, and the first temperature controller is respectively connected with the controller and the heating pipe through conducting wires.
Furthermore, the two ends of the heating pipe and the middle part of the heating pipe are fixed in the cold-heat exchanger through a support, and the heating pipe is provided with cooling fins to increase the cooling area.
Furthermore, the cooling pipe is provided with a cooling fin to increase the cooling area, the cooling pipe is respectively connected with a low-pressure pipe, a high-pressure pipe and a second temperature controller through leads, the low-pressure pipe is connected with a low-pressure expansion angle valve, one end of the high-pressure pipe is provided with a filter, and the high-pressure pipe is connected with the high-pressure expansion angle valve.
Furthermore, the second temperature controller is connected with the induction head through a sensing wire, the induction head is inserted into the hole, and the second temperature controller is respectively connected with the controller through a conducting wire.
Furthermore, the air inlet can be selected to be installed according to actual indoor requirements, and can be arranged on an indoor wall or an indoor ceiling.
Furthermore, the controller is respectively connected with a first temperature controller, a second temperature controller, an air conditioner external unit and a motor in the purification external unit in the cold-heat exchanger through wires, the controller can be arranged on an indoor wall, the position height is not limited, and the controller can be controlled manually, remotely or by network signals.
Furthermore, the cold-heat exchanger, the controller, the air conditioner external unit, the purification external unit, the heating pipe, the shell, the low-pressure pipe, the high-pressure pipe, the sound-absorbing plate, the radiating fin, the partition plate, the bracket, the refrigeration pipe, the induction head, the sensing wire, the bolt and the rivet are all made of 304 white steel materials.
Further, the controller, the motor in the purifying external machine and the power supply are connected.
The utility model discloses mainly have following beneficial effect:
1. the multifunctional heat exchanger provided by the exchanger has the advantages that a sealed space is provided, the size is large, the heat energy is stored more, the air can be heated fully, and the internal temperature of the multifunctional heat exchanger can meet the indoor temperature requirement.
2. The temperature controller arranged on the heat exchanger can set the heating temperature, when the temperature value in the multifunctional heat exchanger exceeds a set numerical value, the heating or the refrigerating is automatically stopped, and when the temperature value in the multifunctional heat exchanger is lower than the set numerical value, the heating or the refrigerating is automatically started, so that the power cost is saved.
3. The controller of the exchanger is separately arranged and can be installed on a proper position of specific indoor needs, and the installation position can be adjusted timely according to the needs of indoor decoration and decoration.
4. The exchanger has a strict structure and a reasonable design, and is suitable for social popularization and use.
Drawings
Fig. 1 is the three-dimensional structure schematic diagram of the fresh air refrigerating heat exchanger of the utility model.
Fig. 2 is the internal structure schematic diagram of the multifunctional exchanger of the fresh air refrigerating heat exchanger of the utility model.
Fig. 3 is the utility model discloses new trend refrigeration system heat exchanger's acoustical panel structure sketch map.
Fig. 4 is the utility model discloses new trend refrigeration system heat exchanger's acoustical panel structure sketch map.
Fig. 5 is a schematic view of the structure of the heating pipe of the fresh air refrigerating heat exchanger of the present invention.
Fig. 6 is a schematic structural view of the first temperature controller of the fresh air refrigerating heat exchanger of the present invention.
Fig. 7 is the internal structure schematic diagram of the purification external unit of the fresh air refrigeration heat exchanger of the utility model.
Fig. 8 is the utility model discloses fresh air refrigeration system heat exchanger's the inside spatial structure sketch map of outer machine of purification.
As shown in fig. 1-8, the various parts of the figure are represented by the following arabic numerals:
the air conditioner comprises a cold-heat exchanger-1, a controller-2, an air inlet-3, a pipeline-4, a lead-5, an air conditioner external unit-6, a purification external unit-7, a heating pipe-8, a shell-9, a low-pressure pipe-10, a low-pressure expansion angle valve-11, a high-pressure expansion angle valve-12, silencing cotton-13, a high-pressure pipe-14, a silencing plate-15, a cooling fin-16, a partition plate-17, a support-18, a refrigerating pipe-19, a second temperature controller-20, a first temperature controller-21, an induction head-22, a hole-23, a sensing line-24, a filter-25 and a flange-26.
The invention will be described in more detail with reference to the following examples and the accompanying drawings:
Detailed Description
Examples
As shown in fig. 1-8, a fresh air refrigerating and heat-producing heat exchanger is composed of a cold heat exchanger 1, a controller 2, a purifying outdoor unit 7, a heating pipe 8, a casing 9, a low-pressure pipe 10, a low-pressure expansion angle valve 11, a high-pressure expansion angle valve 12, silencing cotton 13, a high-pressure pipe 14, a silencing plate 15, a partition plate 17, a refrigerating pipe 19, a second temperature controller 20, a first temperature controller 21 and an induction head 22.
As shown in fig. 1-8, a shell 9 is arranged on the outer side of a cold-heat exchanger 1, one side of the multifunctional heat exchanger 1 is connected with an air inlet 3 and a purification external machine 7 through a hole 23, a flange 26 and two pipelines 4 respectively, a low-pressure expansion angle valve 11 and a high-pressure expansion angle valve 12 are arranged on the other side of the cold-heat exchanger 1, a refrigeration pipe 19 is fixedly arranged at the bottom of the inner side of the cold-heat exchanger 1 through a bracket 18, and the cold-heat exchanger 1 and the purification external machine 7 can be arranged outdoors; two holes 23 are formed in one side of the shell 9, a partition plate 17 is arranged on the inner wall of one side of the shell 9, a first temperature controller 21 is arranged on the partition plate 17, silencing plates 15 are arranged on the other three sides of the inner wall of the shell 9, silencing cotton 13 is arranged on the inner sides of the silencing plates 15, and a plurality of strip holes are formed in the silencing plates 15.
Furthermore, one side of the first temperature controller 21 is connected with the inductive head 22 through a sensing wire 24, the inductive head 22 is inserted into the hole 23, and the first temperature controller 21 is respectively connected with the controller 2 and the heating pipe 8 through a conducting wire 5.
Furthermore, the two ends of the heating pipe 8 and the middle part of the heating pipe 8 are fixed in the cold-heat exchanger 1 through a bracket 18, and the heating pipe 8 is provided with a radiating fin 16 to increase the radiating area.
Furthermore, the cooling pipe 19 is provided with a cooling fin 16 to increase the cooling area, the cooling pipe 19 is respectively connected with the low-pressure pipe 10, the high-pressure pipe 14 and the second temperature controller 20 through conducting wires, the low-pressure pipe 10 is connected with the low-pressure expansion angle valve 11, one end of the high-pressure pipe 14 is provided with a filter 25, and the high-pressure pipe 14 is connected with the high-pressure expansion angle valve 12.
Furthermore, the second thermostat 20 is connected to the sensor head 22 through a sensor wire 24, the sensor head 22 is inserted into the hole 23, and the second thermostat 20 is connected to the controller 2 through a wire 5.
Further, the air inlet 3 can be installed on an indoor wall or an indoor ceiling according to actual indoor requirements.
Further, the controller 2 is respectively connected with the first temperature controller 21, the second temperature controller 20, the air conditioner external unit 6 and the motor in the purification external unit 7 in the cold-heat exchanger 1 through the wires 5, and the controller 2
The controller 2 can be arranged on an indoor wall, the height of the position is not limited, and the controller can be controlled manually, remotely or by network signals.
Furthermore, the cold-heat exchanger 1, the controller 2, the air conditioner external unit 6, the purification external unit 7, the heating pipe 8, the shell 9, the low-pressure pipe 10, the high-pressure pipe 14, the sound-absorbing plate 15, the radiating fins 16, the partition plate 17, the bracket 18, the refrigerating pipe 19, the induction head 22, the sensing wire 24, the bolt and the rivet are all made of 304 white steel materials.
Further, the controller 2, the motor inside the purifying outdoor unit 7 and the power supply are connected.
In the using process, firstly, the cold-heat exchanger 1 is placed on the purifying external machine 7, the cold-heat exchanger 1, the purifying external machine 7 and the air conditioner external machine 6 are placed and fixed outdoors, and the cold-heat exchanger 1 and the purifying external machine 7 are connected with each other through the pipeline 4; then, the cold-heat exchanger 1 is connected with the air inlet 3 through the pipeline 4, and the air inlet 3 is arranged on a specific and suitable position in a room, such as an indoor side wall or an indoor ceiling, so that the installation position can be adjusted in due time according to the requirements of indoor decoration and decoration; then, the second temperature controller 20, the first temperature controller 21 and the motor in the purifying external machine 7 in the cold-heat exchanger 1 are connected with the controller 2 through wires, the second temperature controller 20 is respectively connected with the refrigerating pipe 19 and the air-conditioning external machine 6 through wires, the controller 2 can be installed indoors, and the installation position can be adjusted timely according to the requirements of indoor decoration and decoration; finally, the controller can be started manually or remotely by switching on the power supply, or the controller can be controlled by a mobile phone or a computer network; meanwhile, before the product leaves the factory, the temperature controller is set to a set temperature,
therefore, the purified outdoor unit 7 purifies outdoor air and then enters the cold-heat exchanger 1 through the pipeline 4, the purified air is heated or refrigerated in the cold-heat exchanger 1 and then is conveyed into the indoor space through the pipeline 4 and the air inlet 3 far away, the heating temperature in the cold-heat exchanger 1 can reach 50-60 ℃, the refrigerating temperature in the cold-heat exchanger 1 can reach 15-18 ℃, and clean and fresh air with proper temperature can be provided for the indoor space at any time interval for seasonal climate change.
Purify outer machine 6 in this technique and use the public technical name as antifog haze multi-functional indoor air purification malleation oxygenerator [ patent application no: 2017100330607] according to the technical content.
It should be noted that: the above description is only a preferred embodiment of the present invention, and should not be taken as limiting the scope of the invention. Therefore, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.