The present application relates to the technical field of air conditioning technology, and in particular to an indirect evaporative cooling air conditioner.
With the national advocacy of energy conservation and emission reduction, more and more attention has been paid to the concept of green data center, and evaporative cooling technology has been spread and applied to the field of computer room air conditioning, to use outdoor air and a heat exchanger to perform heat exchange, so as to cool the computer room, which makes full use of natural clean energy. Indirect evaporative cooling is a unique iso-humidity cooling manner of evaporative cooling, the basic principle of which is to use the air after direct evaporative cooling (called secondary air) and water to exchange heat with outdoor air through a heat exchanger, so as to achieve fresh air (called primary air) cooling. Since air does not directly contact with water, its moisture content remains unchanged, and a change process of the primary air is an iso-humidity cooling process. With this technology, cooling capacity can be obtained from the natural environment, which can save 80% to 90% of energy in a hot and dry area, 20% to 25% of energy in a hot and humid area, and 40% in a moderate humidity area compared with general conventional mechanical refrigeration, thereby greatly reducing the energy consumption of air conditioning refrigeration.
However, the existing indirect evaporative cooling air conditioner has complex airflow pattern, large local resistance, and low energy efficiency ratio.
Therefore, a technical problem to be addressed by those skilled in the art is to reduce the resistance of the system, improve the efficiency of the heat exchanger and improve the energy efficiency ratio of the air conditioner.
In view of this, an indirect evaporative cooling air conditioner is provided according to the present application, to reduce the resistance of a system and improve the efficiency of a heat exchanger.
In order to achieve the above objects, the following technical solutions are provided according to the present application.
An indirect evaporative cooling air conditioner includes a housing, multiple partition plates located in the housing and at least two heat exchangers arranged side by side, the multiple partition plates and the at least two heat exchangers separate the housing into multiple indoor air flow passages and multiple outdoor air flow passages, each of the heat exchangers has a first heat exchange flow passage and a second heat exchange flow passage which are crosswise and independently arranged with respect to each other, the multiple indoor air flow passages are in communication with the first heat exchange flow passage to form an indoor circulation passage, the multiple outdoor air flow passages are in communication with the second heat exchange flow passage to form an outdoor circulation passage, and heat exchange between a fluid in the indoor circulation passage and a fluid in the outdoor circulation passage is performed by the at least two heat exchangers.
In an embodiment, outlets or inlets of the first heat exchange passages of two adjacent heat exchangers of the at least two heat exchangers are in communication with a same indoor air flow passage of the multiple indoor air flow passages, and inlets or outlets of the second heat exchange passages of the two adjacent heat exchangers are in communication with a same outdoor air flow passage of the multiple outdoor air flow passages.
In an embodiment, the multiple outdoor air flow passages include a first outdoor air flow passage and a second outdoor air flow passage, the multiple indoor air flow passages include a first indoor air flow passage and a second indoor air flow passage; the first outdoor air flow passage, the second outdoor air flow passage, the first indoor air flow passage and the second indoor air flow passage are distributed to peripherally surround the at least two heat exchangers; the first indoor air flow passage and the second indoor air flow passage are respectively in communication with inlets and outlets of the first heat exchange flow passages, and the first outdoor air flow passage and the second outdoor air flow passage are respectively in communication with inlets and outlets of the second heat exchange flow passages.
In an embodiment, at least one of the multiple outdoor air flow passages is provided with a spray member.
In an embodiment, the spray member is a water sprayer, and the water sprayer is arranged in an outdoor air flow passage, located at an inlet side and/or an outlet side of the second heat exchange flow passage, of the multiple outdoor air flow passages.
In an embodiment, the spray member is a mist sprayer, and the mist sprayer is arranged in an outdoor air flow passage, located at an inlet side of the second heat exchange flow passage.
In an embodiment, the indirect evaporative cooling air conditioner according to the present application further includes a compression refrigeration cycle system, the compression refrigeration cycle system includes an evaporator, and the evaporator is arranged in the indoor circulation passage and located downstream of the at least two heat exchangers.
In an embodiment, the indirect evaporative cooling air conditioner according to the present application further includes a compression refrigeration cycle system, the compression refrigeration cycle system includes a condenser, and the condenser is arranged in the outdoor circulation passage and located downstream of the at least two heat exchangers.
In an embodiment, two heat exchangers are provided, the two heat exchangers, the multiple indoor air flow passages and the multiple outdoor air flow passages are respectively distributed in the housing in an axisymmetrical manner.
In an embodiment, the housing is an one-piece housing, the one-piece housing, the at least two heat exchangers and the multiple partition plates which are arranged inside the housing form an integrated unit; or,
In an embodiment, two adjacent heat exchangers are directly connected or connected through one of the multiple partition plates.
In an embodiment, a sectional shape of each of the at least two heat exchangers is any one of a triangle, a quadrilateral, a pentagon, and a hexagon.
In an embodiment, at least one of the multiple partition plates is a straight plate arranged obliquely or vertically relative to, or in parallel with a side wall of the housing; or at least one of the multiple partition plates is a bent plate.
In an embodiment, a mounting angle of each of the at least two heat exchangers in the housing ranges from 0 degree to 360 degrees.
The indirect evaporative cooling air conditioner according to the present application includes the housing, the multiple partition plates located in the housing and the at least two heat exchangers arranged side by side, the multiple partition plates and the at least two heat exchangers separate the housing into the multiple indoor air flow passages and the multiple outdoor air flow passages, each of the heat exchangers has the first heat exchange flow passage and the second heat exchange flow passage which are crosswise and independently arranged with respect to each other, the multiple indoor air flow passages are in communication with the first heat exchange flow passages to form the indoor circulation passage, the multiple outdoor air flow passages are in communication with the second heat exchange flow passages to form the outdoor circulation passage, and heat exchange between the fluid in the indoor circulation passage and the fluid in the outdoor circulation passage is performed by the at least two heat exchangers.
Since at least two heat exchangers are arranged side by side in the air conditioner in this solution, provided that the core body volume of the heat exchanger is unchanged, a windward heat exchange area in the first or second heat exchange flow passage can be increased, and an air flow resistance is reduced. In addition, the heat exchangers arranged side by side increase a heat exchange temperature difference between the first heat exchanger flow passage and the second heat exchanger flow passage, so that heat exchange efficiency is increased, and an energy efficiency ratio of the air conditioner is improved.
For more clearly illustrating embodiments of the present application or the technical solutions in the conventional technology, drawings referred to for describing the embodiments or the conventional technology will be briefly described hereinafter. Apparently, drawings in the following description are only examples of the present application, and for the person skilled in the art, other drawings may be obtained based on the provided drawings without any creative efforts.
according to the specific embodiments of the present application;
Reference numerals in
The technical solutions according to the embodiments of the present application will be described clearly and completely as follows in conjunction with the drawings in the embodiments of the present application. It is apparent that the described embodiments are only a part of the embodiments according to the present application, rather than all of the embodiments. Based on the embodiments of the present application, all of other embodiments, made by the person skilled in the art without any creative efforts, fall into the scope of protection of the present application.
Referring to
An indirect evaporative cooling air conditioner according to the present application includes a housing 1, multiple partition plates 5 located in the housing 1 and at least two heat exchangers 4 arranged side by side, the multiple partition plates 5 and the at least two heat exchangers 4 separate the housing 1 into multiple indoor air flow passages 3 and multiple outdoor air flow passages 2, each heat exchanger 4 has a first heat exchange flow passage and a second heat exchange flow passage which are crosswise and independently arranged, the multiple indoor air flow passages 3 are in communication with the first heat exchange flow passage to form an indoor circulation passage, the multiple outdoor air flow passages 2 are in communication with the second heat exchange flow passage to form an outdoor circulation passage, and heat exchange between a fluid in the indoor circulation passage and a fluid in the outdoor circulation passage is performed by the at least two heat exchangers 4.
In this solution, since at least two heat exchangers 4 arranged side by side are provided in the air conditioner, provided that a core body volume is unchanged, a windward heat exchange area of the first or second heat exchange flow passage in the heat exchanger can be increased, and an air flow resistance is reduced. In addition, the heat exchangers arranged side by side increase a heat exchange temperature difference between the first heat exchanger flow passage and the second heat exchanger flow passage, thus the heat exchange efficiency is increased, and the energy efficiency ratio of the air conditioner is improved.
In an embodiment, outlets or inlets of the first heat exchange passages of two adjacent heat exchangers 4 are in communication with a same indoor air flow passage 3 of the multiple indoor air flow passages, and inlets or outlets of the second heat exchange passages of two adjacent heat exchangers 4 are in communication with a same outdoor air flow passage 2 of the multiple indoor air flow passages. Such arrangement can ensure that airflow can circulate through the first heat exchange passages of the two adjacent heat exchangers 4 and the same indoor air flow passage 3, and airflow can circulate through the second heat exchange passages of the two heat exchangers 4 and the same outdoor air flow passage 2, which further simplifies the airflow pattern in a unit.
It should be noted that two or more heat exchangers 4 can be arranged side by side in one air conditioner. In a solution, two heat exchangers 4 are provided, the two heat exchangers 4, the multiple indoor air flow passages 3 and the multiple outdoor air flow passages 2 are respectively distributed in the housing 1 in an axisymmetrical manner.
In an embodiment, the multiple outdoor air flow passages 2 include a first outdoor air flow passage 21 and a second outdoor air flow passage 22, the multiple indoor air flow passages 3 includes a first indoor air flow passage 31 and a second indoor air flow passage 32, the first outdoor air flow passage 21, the second outdoor air flow passage 22, the first indoor air flow passage 31 and the second indoor air flow passage 32 are distributed to peripherally surround the at least two heat exchangers 4. The first indoor air flow passage 31 and the second indoor air flow passage 32 are respectively in communication with inlets and outlets of the first heat exchange flow passages, and the first outdoor air flow passage 21 and the second outdoor air flow passage 22 are respectively in communication with inlets and outlets of the second heat exchange flow passages. The first indoor air flow passage 31 may be multiple, and the first outdoor air flow passage 21 may be multiple. In the embodiment shown in
It should be noted that, the outdoor air flow passages 2 and the indoor air flow passages 3 according to the present application may be arranged in various manners, which can form various airflow patterns. As shown in the cross-sectional schematic views of the air conditioner in
As shown in
As shown in
As shown in
As shown in
In the solutions of various airflow patterns in
It should be noted that, the housing 1 of the air conditioner according to the present application may be an one-piece housing, the one-piece housing, the at least two heat exchangers 4 and the multiple partition plates 5 which are arranged inside the housing 1 form an integrated unit. Alternatively, the housing 1 of the air conditioner may include multiple independent housings. That is, the air conditioner may be composed of only one unit, or formed by multiple independent units assembled together. As shown in
It should be noted that, in consideration of different sizes of the heat exchangers 4, two adjacent heat exchangers in the air conditioner may be directly connected or connected through a partition plate 5. Referring to
It should be noted that, the multiple partition plates 5 in the air conditioner according to the present application may be made of a metallic material or a heat insulation material, which has a low thermal conductivity and sufficient strength, for example, a metal plate, a fire-proof insulation plate or a heat insulation plate.
Referring to
It should be noted that, the mounting angle of the heat exchanger 4 in the housing 1 may be any angle which is implementable, that is, the mounting angle of the heat exchanger 4 in the housing 1 ranges from 0 degree to 360 degrees. Six different mounting angles of the heat exchanger 4 are shown in
It should be noted that, in order to realize the arrangement and airflow patterns of the heat exchanger according to the present application, the partition plates 5 configured to isolate the indoor side airflow from the outdoor side airflow can be designed to have different sizes, thicknesses, shapes and mounting angles. Specifically, the partition plate 5 may be designed as a straight plate arranged obliquely or vertically relative to, or in parallel with a side wall of the housing 1, or the partition plate 5 may be designed as a bent plate or a curved plate.
It should be noted that, in the indirect evaporative cooling air conditioner, in order to further improve the heat exchange efficiency, a spray member 6 configured to spray cooling water is further arranged in the outdoor air flow passage 2. Specifically, the spray member 6 may adopt a water sprayer or a mist sprayer or a combination of the water sprayer and the mist sprayer. The spray member 6 may be arranged in various manners in the outdoor air flow passage 2.
In a preferred solution, the spray member 6 is a water sprayer, and the water sprayer is arranged in the outdoor air flow passage 2 located at an inlet side and/or an outlet side of the second heat exchange flow passage (that is, the water sprayer is arranged in the first outdoor air flow passage 21 and/or the second outdoor air flow passage 22). In another preferred solution, the spray member 6 is a mist sprayer, and the mist sprayer is arranged in the outdoor air flow passage 2 located at an inlet side of the second heat exchange flow passage (that is, the mist sprayer is arranged in the first outdoor air flow passage 21), and the water mist sprayed by the mist sprayer can be sprayed on the heat exchanger 4 under the action of the introduced outdoor air.
In the indirect evaporative cooling air conditioner, in a case that the outdoor temperature is high or the humidity is large, the indirect evaporative cooling efficiency is reduced. In order to meet the refrigeration capacity, the indirect evaporative cooling air conditioner provided according to the present application further includes a compression refrigeration cycle system, the compression refrigeration cycle system includes an evaporator 8 and a condenser 7, and the evaporator 8 and the condenser 7 may have different arrangement manners. The evaporator 8 is arranged in the indoor circulation passage and located downstream of the at least two heat exchangers 4 (that is, the second indoor air flow passage 32), to cool the fluid flowing out of the first heat exchange flow passages (that is, the indoor side airflow), so as to supplement the cooling capacity in a case that the indirect evaporative refrigeration capacity is insufficient. The condenser 7 is arranged in the outdoor circulation passage and located downstream of the at least two heat exchangers 4 (that is, the second outdoor air flow passage 22), to exchange heat with the fluid flowing out of the second heat exchange flow passage (that is, the outdoor side airflow). In this solution, the condenser 7 is arranged in the outdoor circulation passage, so as to cool a refrigerant in the condenser 7 by using the air flowing out of the outdoor circulation passage, to improve the condensation effect.
The present application has the following beneficial effects:
Based on the above description of the disclosed embodiments, those skilled in the art are capable of carrying out or using the present application. It is obvious for those skilled in the art to make many modifications to these embodiments. The general principle defined herein may be applied to other embodiments without departing from the scope of the present application. Therefore, the present application is not limited to the embodiments illustrated herein, but should be defined by the broadest scope consistent with the principle and novel features disclosed herein.
Number | Date | Country | Kind |
---|---|---|---|
202121217207.6 | Jun 2021 | CN | national |
This is a continuation application of U.S. patent application Ser. No. 17/827,981, filed May 30, 2022, which claims the priority to Chinese Patent Application No. 202121217207.6 titled “INDIRECT EVAPORATIVE COOLING AIR CONDITIONER”, filed with the China National Intellectual Property Administration on Jun. 1, 2021, each of which is incorporated herein by reference in its entirety.
Number | Date | Country | |
---|---|---|---|
Parent | 17827981 | May 2022 | US |
Child | 18663091 | US |