RECEIVER, CONNECTION METHOD THEREOF, RECEIVER ASSEMBLY AND HEAT PUMP SYSTEM
20220228785 ยท 2022-07-21
Inventors
- Xingye Zhou (Shanghai, CN)
- Shuguang Zhang (Shanghai, CN)
- Guangyu Shen (Shanghai, CN)
- Xi Feng (Shanghai, CN)
- Jinxiang Wang (Shanghai, CN)
Cpc classification
F24H9/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B2400/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24D2220/0285
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24D2220/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B2313/007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B30/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B41/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24D2220/0228
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B43/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F2221/54
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B2313/0233
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24H4/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24D2220/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24D15/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F25B43/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B30/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A receiver, a receiver assembly and a heat pump system. The receiver includes a first pipe, a second pipe and a third pipe leading to the cavity of the receiver, wherein the first pipe, the second pipe and the third pipe connect to a first load unit, a second load unit and a cold and heat source unit, respectively.
Claims
1. A receiver, comprising: a first pipe, a second pipe and a third pipe leading to a cavity of the receiver, wherein, the first pipe, the second pipe and the third pipe connect to a first load unit, a second load unit and a cold and heat source unit, respectively.
2. The receiver according to claim 1, wherein the receiver is placed upright, and the first pipe, the second pipe and the third pipe extend to the bottom of the receiver; or the receiver is placed upside down.
3. A heat pump system, comprising: the receiver according to claim 1; a first load unit connected to a first pipe of the receiver; a second load unit connected to a second pipe of the receiver; and a cold and heat source unit connected to a third pipe of the receiver.
4. The heat pump system according to claim 3, wherein the first load unit and/or the second load unit are selected from an air conditioning unit, a hot water generating unit, a floor heating unit, and a refrigerator cabinet unit.
5. The heat pump system according to claim 3, wherein the first load unit is a refrigerator cabinet unit, and the second load unit is an air conditioning unit.
6. The heat pump system according to claim 3, wherein the cold and heat source unit comprises a compressor, a switching device, a heat exchanger, and a throttling device, and the receiver and the cold and heat source unit are integrated in a same outdoor unit housing, or arranged separately.
7. The heat pump system according to claim 3, wherein the heat pump system is capable of operating in one, multiple, or all of the following modes: a first mode in which the first load refrigerates and the second load shuts down; a second mode in which the first load heats and the second load shuts down; a third mode in which the first load shuts down and the second load refrigerates; a fourth mode in which the first load shuts down and the second load heats; a fifth mode in which the first load refrigerates and the second load refrigerates; a sixth mode in which the first load heats and the second load heats; a seventh mode in which the first load refrigerates and the second load heats; an eighth mode in which the first load heats and the second load refrigerates; wherein, the receiver functions in any of the above modes.
8. A receiver assembly for use in a refrigeration system, comprising: a receiver; a first pipe and a second pipe leading to a cavity of the receiver; wherein, the receiver assembly further comprises: a third pipe connected between the first pipe and the second pipe, wherein a first check valve and a second check valve are provided on the third pipe, and the first check valve and the second check valve only allow fluid to flow from the first pipe to the second pipe.
9. The receiver assembly according to claim 8, wherein the first pipe connects to a first load unit, the second pipe connects to a second load unit, and a connection point for a cold and heat source unit is provided between the first check valve and the second check valve on the third pipe.
10. A heat pump system, comprising the receiver assembly according to claim 8.
11. The heat pump system according to claim 10, wherein the first load unit and/or the second load unit are selected from an air conditioning unit, a hot water generating unit, a floor heating unit, and a refrigerator cabinet unit.
12. The heat pump system according to claim 10, wherein the first load unit is a refrigerator cabinet unit, and the second load unit is an air conditioning unit.
13. The heat pump system according to claim 10, wherein the cold and heat source unit comprises: a compressor, a switching device, a heat exchanger and a throttling device, and the receiver and the cold and heat source unit are integrated in a same outdoor unit housing, or arranged separately.
14. The heat pump system according to claim 10, wherein the receiver is placed upright, and the first pipe and the second pipe extend to the bottom of the receiver; or the receiver is placed upside down.
15. The heat pump system according to claim 10, wherein the heat pump system is capable of operating in one, multiple, or all of the following modes: a first mode in which the first load refrigerates and the second load shuts down; a third mode in which the first load shuts down and the second load refrigerates; a fourth mode in which the first load shuts down and the second load heats; a fifth mode in which the first load refrigerates and the second load refrigerates; a seventh mode in which the first load refrigerates and the second load heats; wherein, the receiver functions in any of the above modes.
16. The heat pump system according to claim 15, wherein in the fifth mode, refrigerant passes from the second load unit through the second pipe, the receiver and the first pipe, and flows to the first load unit.
17. A method for connecting a receiver, comprising: connecting a first pipe and a second pipe of the receiver through a third pipe, wherein a first check valve and a second check valve are provided on the third pipe, and the first check valve and the second check valve only allow fluid to flow from the first pipe to the second pipe; and connecting the first pipe to a first load unit, connecting the second pipe to a second load unit, and connecting a cold and heat source unit between the first check valve and the second check valve on the third pipe.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] With reference to the drawings, the disclosure of the present invention will become easier to understand. It is easy for those skilled in the art to understand that these drawings are only for illustrative purposes, and are not intended to limit the scope of protection of the present invention. In addition, similar numerals in the figures are used to denote similar components, among which:
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION OF THE INVENTION
[0029]
[0030] With continued reference to
[0031] The heat pump system configured with a three-pipe receiver 8 as shown in
[0032] In some embodiments, the first load unit 2 and/or the second load unit 3 are selected from an air conditioning unit, a hot water generating unit, a floor heating unit, and a refrigerator cabinet unit. In some embodiments, the first load unit 2 is a refrigerator cabinet unit, and the second load unit 3 is an air conditioning unit. In some embodiments, the cold and heat source unit 1 comprises: a compressor, a switching device (such as a four-way valve), a heat exchanger, and a throttling device (such as an expansion valve). In the embodiment shown in
[0033] The heat pump system configured with the receiver 8 can function in various operating modes. Specifically, in the case where the first load unit 2 refrigerates only, the refrigerant from the cold and heat source unit 1 enters the receiver 8 from the third pipe 83 and then flows to the first load unit 2 from the first pipe 81. In the case where the first load unit 2 heats only, the refrigerant flows through the receiver 8 in the direction opposite to that of the aforementioned refrigerating only mode. In the case where the second load unit 3 refrigerates only, the refrigerant from the cold and heat source unit 1 enters the receiver 8 from the third pipe 83 and then flows to the second load unit 3 from the second pipe 82. In the case where the second load unit 3 heats only, the refrigerant flows through the receiver 8 in the direction opposite to that of the aforementioned heating only mode. In the case where the first load unit 2 and the second load unit 3 refrigerate at the same time, the refrigerant from the cold and heat source unit 1 enters the receiver 8 from the third pipe 83 and divides into a first portion and a second portion, wherein the first portion of the refrigerant flows to the first load unit 2 through the first pipe 81, and the second portion of the refrigerant flows to the second load unit 3 through the second pipe 82. Similarly, in the case where the first load unit 2 and the second load unit 3 heat at the same time, the refrigerant flows in the direction opposite to that of the aforementioned mode in which both refrigerating at the same time. Finally, in the case where the first load unit 2 refrigerants and the second load unit 3 heats, the refrigerant enters the receiver 8 from the second load unit 3 through the second pipe 82, and flows to the first load unit 2 through the first pipe 81. In the case where the second load unit 3 refrigerants and the first load unit 2 heats, the refrigerant flows in the direction opposite to that of the aforementioned mode, and passes through the receiver 8. It should be appreciated that the receiver with three pipes 81, 82, 83 can function under various working conditions where the refrigerant flows between any two or three of the first load unit 2, the second load unit 3, and the cold and heat source unit 1.
[0034] The receiver assembly 50 according to an embodiment of the present invention is described in detail with continued reference to
[0035] As shown in detail in the enlarged view of
[0036] Although the above description is based on units with five operating modes, specifically, the operating modes comprise: a first mode in which the first load refrigerates and the second load shuts down; a third mode in which the first load shuts down and the second load refrigerates; a fourth mode in which the first load shuts down and the second load heats; a fifth mode in which the first load refrigerates and the second load refrigerates; and a seventh mode in which the first load refrigerates and the second load heats. However, according to the actual situations of the load units, the refrigeration system may only operate in some of the above five modes, or the refrigeration system may also operate in other modes, for example, in the case where the first load unit heats only, and so on. These do not affect the functions of the receiver assembly 50.
[0037] In some embodiments, as shown in the figure, the receiver 5 may preferably be placed upside down. At this time, the gravity of the refrigerant can be used to assist the release of the refrigerant in the receiver, and the first pipe 51 and the second pipe 52 are disposed at the bottom of the receiver, and do not/cannot extend to the top of the receiver. In other embodiments, the receiver in the refrigeration system may be placed upright. At this time, the first pipe 51 and the second pipe 52 need to extend to the bottom of the receiver 5.
[0038] In some embodiments, the first load unit 2 and/or the second load unit 3 may be selected from any one of an air conditioning unit, a hot water generating unit, a floor heating unit, and a refrigerator cabinet unit. In some embodiments, the first load unit 2 may be a refrigerator cabinet unit. Since the refrigerator cabinet unit generally only operates in the refrigeration mode, and is in a state of multiple units connected in parallel and being turned on and off at irregular intervals, based on this characteristic, the refrigerator cabinet unit is connected to the first pipeline 71, so that the receiver 5 can provide sufficient refrigerant to ensure the refrigeration demand of the refrigerator no matter when the refrigerator cabinet unit has a refrigeration demand. In some embodiments, the second load unit 3 may be an air conditioning unit. Connecting the air conditioning unit to the second pipeline 72 allows the receiver 5 to possess the function of adjusting the circulation amount of the refrigerant in the system.
[0039] In addition, a method for connecting a receiver is further provided, which comprises: connecting a first pipe and a second pipe of the receiver through a third pipe, wherein a first check valve and a second check valve are provided on the third pipe, and the first check valve and the second check valve only allow fluid to flow from the first pipe to the second pipe; connecting the first pipe to a first load unit, connecting the second pipe to a second load unit, and connecting a cold and heat source unit between the first check valve and the second check valve on the third pipe.
[0040] The devices and method according to the embodiments of the present invention realize the application of the receiver in various modes only through the design of the receiver itself or the design of the connecting flow paths of the receiver and several check valves, in which no complicated control logic is involved, and a good stability is presented. In addition, the products according to the embodiments of the present invention can be easily implemented without adding excessive costs, and can also be used for simple transformation of existing systems.
[0041] The specific embodiments described above are only used to describe the principle of the present invention more clearly, wherein each component is clearly shown or described to make the principle of the present invention easier to understand. Without departing from the scope of the present invention, those skilled in the art can easily make various modifications or changes to the present invention. Therefore, it should be understood that these modifications or changes should be included in the scope of patent protection of the invention.