CN219177827U - Vertical and wall-mounted air energy all-in-one machine with adjustable air duct - Google Patents
Vertical and wall-mounted air energy all-in-one machine with adjustable air duct Download PDFInfo
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- CN219177827U CN219177827U CN202223100592.3U CN202223100592U CN219177827U CN 219177827 U CN219177827 U CN 219177827U CN 202223100592 U CN202223100592 U CN 202223100592U CN 219177827 U CN219177827 U CN 219177827U
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Abstract
The utility model discloses a vertical and wall-mounted air energy integrated machine with an adjustable air duct, which comprises an outer cylinder, wherein a head cover is arranged at the top of the outer cylinder; the joint of the outer cylinder and the head cover is sealed; the bottom of the outer cylinder is provided with a hot water port and a cold water port which are communicated with the water storage enamel liner; a wall hanging frame is fixed on the outer side of the outer cylinder; the bottom of the outer side of the outer cylinder is fixedly provided with a plurality of ear seats which are arranged with the supporting legs; the machine head cover is provided with a grid-shaped air inlet and a grid-shaped first air outlet in a right-opposite mode; the top of the head cover is provided with a grid-shaped second air outlet; a first fan and a second fan are respectively fixed at the first air outlet and the second air outlet on the inner side of the head cover; the air duct adjustable vertical and wall-mounted air energy all-in-one machine can be installed in a wall-mounted mode, and can recover and apply cold energy in summer.
Description
Technical Field
The utility model particularly relates to a vertical and wall-mounted air energy integrated machine with an adjustable air duct, and belongs to the technical field of air energy integrated machines.
Background
The air energy integrated machine is a device for heating by adopting air energy, the evaporator absorbs heat from environmental heat energy in the air to evaporate heat transfer working medium, the pressure and temperature of working medium vapor rise after the working medium vapor is compressed by the compressor, and when the high-temperature vapor is condensed into liquid by an annular tube condenser adhered to the outer surface of the water storage tank, the released heat is transferred to water in the water storage tank of the air source heat pump; the condensed heat transfer working medium returns to the evaporator through the expansion valve and is evaporated again, and the cycle is repeated in this way; the common air energy all-in-one machine in the market at present generally adopts a floor type installation mode, the capacity is more than 150 liters, the air energy all-in-one machine is installed outdoors, a refrigerant is subjected to gas-liquid phase through a compressor, and heat in the air is transferred into water in a water tank to be stored for later use; in the heating process, the air energy all-in-one machine cannot fully utilize the cold energy in the heating process.
Disclosure of Invention
In order to solve the problems, the utility model provides the vertical and wall-mounted air energy integrated machine with the adjustable air duct, which can be installed in a wall-mounted mode and can recover and apply cold energy in summer.
The utility model relates to a vertical and wall-mounted air energy integrated machine with an adjustable air duct, which comprises an outer cylinder, wherein a water storage enamel liner is arranged on the inner side of the outer cylinder; a polyurethane heat-insulating layer is arranged between the outer cylinder and the outer part of the water storage enamel liner; a micro-channel condenser is arranged on the water storage enamel liner; the top of the outer cylinder is fixedly provided with a compression evaporation unit, and the compression evaporation unit and the microchannel condenser form a circulating system; the compression evaporation unit is mainly formed by connecting a compressor and an evaporator; the water storage enamel liner and the micro-channel condenser form a micro-channel water tank; connecting the compression evaporation unit and the micro-channel water tank with a closed-loop system through a connecting copper pipe and a four-way valve; which is prior art and will not be described in detail herein; the top of the outer cylinder is provided with a head cover; the joint of the outer cylinder and the head cover is sealed; the bottom of the outer cylinder is provided with a hot water port and a cold water port which are communicated with the water storage enamel liner; a wall hanging frame is fixed on the outer side of the outer cylinder; the bottom of the outer side of the outer cylinder is fixedly provided with a plurality of ear seats which are arranged with the supporting legs; the machine head cover is provided with a grid-shaped air inlet and a grid-shaped first air outlet in a right-opposite mode; the top of the head cover is provided with a grid-shaped second air outlet; a first fan and a second fan are respectively fixed at the first air outlet and the second air outlet on the inner side of the head cover; the first air outlet is connected to the outside of the room through an exhaust pipe; the outer cylinder is provided with a temperature measuring module; the temperature measuring module is linked with the first fan and the second fan through the controller; the top of the outer cylinder is provided with a condensed water drain outlet; the controller is connected with a control instrument.
The head cover and the top of the outer cylinder form a top space for installing a compression evaporation unit; when the compression evaporation unit operates, air enters the head cover from an air inlet of the head cover, the evaporator absorbs heat from environmental heat energy in the air to evaporate heat transfer working media, pressure and temperature of working media vapor rise after the working media vapor is compressed by the compressor, and when the high-temperature vapor is condensed into liquid through a micro-channel condenser bonded on the outer surface of the water storage tank, the released heat is transferred to water in the water storage tank of the air source heat pump; the condensed heat transfer working medium returns to the evaporator through the expansion valve and is evaporated again, and the cycle is repeated in this way; the compression evaporation unit is when the during operation, and the heat in the air is absorbed, forms the refrigeration space in the hood, and during operation, whether there is the refrigeration demand in the room, the first fan of selection is opened or second fan, if when temperature measurement module detects that indoor temperature is less than 27 degrees centigrade, first fan is opened, blows outdoor to the cold wind from the compression evaporation unit, and when the unit survey obtains indoor temperature and is greater than 27 degrees centigrade, the second fan that is located compression evaporation unit top is opened, and the cold wind from the unit is direct to be blown into indoor.
Further, the controller is electrically connected with an internal and external circulation switching button, the switching button can be directly integrated on the control instrument, and in winter, the external circulation mode is switched through the switching button, and the first fan is started to output the cold of the compression evaporator unit outdoors; in summer, the internal circulation mode is switched through the switching button, the second fan is started, and the cooling capacity output of the compression evaporator unit is used for cooling the indoor space.
Further, when the outer cylinder is fixed on a wall body through the wall hanging frame, the capacity of the water storage enamel liner is not more than 120 liters, the water storage enamel liner can be installed on a wall of an indoor balcony or a bathroom, the integrated machine absorbs heat in air and transfers the heat to water in the water tank, and the blown low-temperature air can regulate indoor temperature in summer, so that the dual functions of heating water and reducing room temperature are achieved.
Compared with the prior art, the vertical and wall-mounted air energy integrated machine with the adjustable air duct can adjust the room temperature in summer and lead out the inlet air and the outlet air to the outside in winter while preparing hot water, and the indoor temperature is kept; the integrated machine with the capacity specification of less than 120 liters can be installed in a wall-mounted mode, and the requirement of small-sized consumers on the air energy integrated machine is met.
Drawings
Fig. 1 is a schematic diagram of the overall structure of the present utility model.
Fig. 2 is a schematic diagram of the bottom structure of the integrated machine according to the present utility model.
FIG. 3 is a schematic view of the mounting structure of the outer barrel and nose cap of the present utility model.
Detailed Description
Example 1
The air duct adjustable vertical and wall-mounted air energy integrated machine shown in the figures 1 to 3 comprises an outer barrel 1, wherein a water storage enamel liner 2 is arranged on the inner side of the outer barrel 1; a polyurethane heat-insulating layer 3 is arranged between the outer barrel 1 and the outer part of the water storage enamel liner 2; a micro-channel condenser 4 is arranged on the water storage enamel liner 2; a compression evaporation unit is fixed at the top of the outer cylinder 1, and a circulation system is formed by the compression evaporation unit and the microchannel condenser 4; the compression evaporation unit is mainly formed by connecting a compressor and an evaporator; the water storage enamel liner and the micro-channel condenser form a micro-channel water tank; connecting the compression evaporation unit and the micro-channel water tank with a closed-loop system through a connecting copper pipe and a four-way valve; which is prior art and will not be described in detail herein; the top of the outer barrel 1 is provided with a head cover 6; the joint of the outer cylinder 1 and the nose cap 6 is sealed; the bottom of the outer cylinder 1 is provided with a hot water port 7 and a cold water port 8 which are communicated with the water storage enamel liner; a wall hanging frame 9 is fixed on the outer side of the outer cylinder 1; a plurality of ear seats 10 which are arranged with supporting legs are fixed at the bottom of the outer side of the outer cylinder 1; the head cover 6 is provided with a grid-shaped air inlet 5 and a grid-shaped first air outlet 11; the top of the head cover 6 is provided with a grid-shaped second air outlet 12; a first fan 13 and a second fan 14 are respectively fixed at the inner side of the head cover 6 at the first air outlet 11 and the second air outlet 12; the first air outlet 11 is connected to the outside through an exhaust pipe; a temperature measuring module 15 is arranged on the outer cylinder 1; the temperature measuring module 15 is linked with the first fan 13 and the second fan 14 through a controller; the top of the outer barrel 1 is provided with a condensate water outlet 16; the controller is connected with a control meter 17.
The head cover and the top of the outer cylinder form a top space for installing a compression evaporation unit; when the compression evaporation unit operates, air enters the head cover from an air inlet of the head cover, the evaporator absorbs heat from environmental heat energy in the air to evaporate heat transfer working media, pressure and temperature of working media vapor rise after the working media vapor is compressed by the compressor, and when the high-temperature vapor is condensed into liquid through a micro-channel condenser bonded on the outer surface of the water storage tank, the released heat is transferred to water in the water storage tank of the air source heat pump; the condensed heat transfer working medium returns to the evaporator through the expansion valve and is evaporated again, and the cycle is repeated in this way; the compression evaporation unit is when the during operation, and the heat in the air is absorbed, forms the refrigeration space in the hood, and during operation, whether there is the refrigeration demand in the room, the first fan of selection is opened or second fan, if when temperature measurement module detects that indoor temperature is less than 27 degrees centigrade, first fan is opened, blows outdoor to the cold wind from the compression evaporation unit, and when the unit survey obtains indoor temperature and is greater than 27 degrees centigrade, the second fan that is located compression evaporation unit top is opened, and the cold wind from the unit is direct to be blown into indoor.
The controller is electrically connected with an internal and external circulation switching button, the switching button can be directly integrated on the control instrument, and in winter, the external circulation mode is switched through the switching button, and the first fan is started to output the cold energy of the compression evaporator set outdoors; in summer, the internal circulation mode is switched through the switching button, the second fan is started, and the cooling capacity output of the compression evaporator unit is used for cooling the indoor space.
When the outer cylinder 1 is fixed on a wall body through a wall hanging frame, the capacity of the water storage enamel liner 2 is not more than 120 liters, the water storage enamel liner can be installed on a wall of an indoor balcony or a bathroom, the integrated machine absorbs heat in air and transfers the heat to water in a water tank, and the blown low-temperature air can regulate indoor temperature in summer, so that the dual functions of heating water and reducing room temperature are achieved.
The above embodiments are merely preferred embodiments of the present utility model, and all changes and modifications that come within the meaning and range of equivalency of the structures, features and principles of the utility model are therefore intended to be embraced therein.
Claims (3)
1. The vertical and wall-mounted air energy integrated machine with the adjustable air duct comprises an outer cylinder, wherein a water storage enamel liner is arranged on the inner side of the outer cylinder; a polyurethane heat-insulating layer is arranged between the outer cylinder and the outer part of the water storage enamel liner; a micro-channel condenser is arranged on the water storage enamel liner; the top of the outer cylinder is fixedly provided with a compression evaporation unit, and the compression evaporation unit and the microchannel condenser form a circulating system; the top of the outer cylinder is provided with a head cover; the joint of the outer cylinder and the head cover is sealed; the bottom of the outer cylinder is provided with a hot water port and a cold water port which are communicated with the water storage enamel liner; the method is characterized in that: a wall hanging frame is fixed on the outer side of the outer cylinder; the bottom of the outer side of the outer cylinder is fixedly provided with a plurality of ear seats which are arranged with the supporting legs; the machine head cover is provided with a grid-shaped air inlet and a grid-shaped first air outlet in a right-opposite mode; the top of the head cover is provided with a grid-shaped second air outlet; a first fan and a second fan are respectively fixed at the first air outlet and the second air outlet on the inner side of the head cover; the first air outlet is connected to the outside of the room through an exhaust pipe; the outer cylinder is provided with a temperature measuring module; the temperature measuring module is linked with the first fan and the second fan through the controller; the top of the outer cylinder is provided with a condensed water drain outlet; the controller is connected with a control instrument.
2. The air energy all-in-one machine with adjustable air duct according to claim 1, wherein: the controller is electrically connected with an internal and external circulation switching button.
3. The air energy all-in-one machine with adjustable air duct according to claim 1, wherein: when the outer cylinder is fixed on a wall body through the wall hanging frame, the capacity of the water storage enamel liner is not more than 120 liters.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223100592.3U CN219177827U (en) | 2022-11-22 | 2022-11-22 | Vertical and wall-mounted air energy all-in-one machine with adjustable air duct |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223100592.3U CN219177827U (en) | 2022-11-22 | 2022-11-22 | Vertical and wall-mounted air energy all-in-one machine with adjustable air duct |
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Publication Number | Publication Date |
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CN219177827U true CN219177827U (en) | 2023-06-13 |
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Family Applications (1)
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CN202223100592.3U Active CN219177827U (en) | 2022-11-22 | 2022-11-22 | Vertical and wall-mounted air energy all-in-one machine with adjustable air duct |
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CN (1) | CN219177827U (en) |
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2022
- 2022-11-22 CN CN202223100592.3U patent/CN219177827U/en active Active
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
PE01 | Entry into force of the registration of the contract for pledge of patent right |
Denomination of utility model: A vertical and wall mounted air energy integrated machine with adjustable air ducts Effective date of registration: 20230721 Granted publication date: 20230613 Pledgee: Heze rural commercial bank Limited by Share Ltd. Pledgor: SHANDONG HAOHUA SOLAR ENERGY CO.,LTD. Registration number: Y2023980049260 |
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PE01 | Entry into force of the registration of the contract for pledge of patent right |