IP Library › Granted Patent US 11,820,933
Granted Patent B2
US 11,820,933 · App. 16/913,540 · Granted Nov 21, 2023

Refrigeration cycle apparatus

Inventors: Eiji Kumakura (Osaka, JP); Takuro Yamada (Osaka, JP); Atsushi Yoshimi (Osaka, JP); Ikuhiro Iwata (Osaka, JP); Mitsushi Itano (Osaka, JP); Daisuke Karube (Osaka, JP); Yuuki Yotsumoto (Osaka, JP); Kazuhiro Takahashi (Osaka, JP); Tatsuya Takakuwa (Osaka, JP); Yuzo Komatsu (Osaka, JP); Shun Ohkubo (Osaka, JP)
Assignee: DAIKIN INDUSTRIES, LTD.
C09K5/045F25B9/006C09K2205/126C09K2205/22C09K2205/40F25B41/20
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,820,933
App. No.
16/913,540
Granted
Nov 21, 2023
Kind
B2
Abstract

A refrigeration cycle apparatus ( 10 ) includes a refrigerant circuit ( 11 ) including a compressor ( 12 ), a heat source-side heat exchanger ( 13 ), an expansion mechanism ( 14 ), and a usage-side heat exchanger ( 15 ). In the refrigerant circuit ( 11 ), a refrigerant containing at least 1,2-difluoroethylene (HFO-1132 (E)) is sealed. At least during a predetermined operation, in at least one of the heat source-side heat exchanger ( 13 ) and the usage-side heat exchanger ( 15 ), a flow of the refrigerant and a flow of a heating medium that exchanges heating with the refrigerant are counter flows.

Claims (24)

1. A refrigeration cycle apparatus comprising:

a refrigerant circuit that includes a compressor, a heat source-side heat exchanger, an expansion mechanism, and a usage-side heat exchanger,

wherein, in the refrigerant circuit, a refrigerant is sealed, and

wherein, at least during a predetermined operation, in at least one of the heat source-side heat exchanger and the usage-side heat exchanger, a flow of the refrigerant and a flow of a heating medium that exchanges heat with the refrigerant are counter flows,

wherein

the refrigerant comprises trans-1,2-difluoroethylene (HFO-1132(E)), difluoromethane (R32), and 2,3,3,3-tetrafluoro-1-propene (R1234yf),

wherein

when the mass % of HFO-1132(E), R32, and R1234yf based on their sum in the refrigerant is respectively represented by x, y and z, coordinates (x,y,z) in a ternary composition diagram in which the sum of HFO-1132(E), R32, and R1234yf is 100 mass % are within the range of a figure surrounded by line segments ON, NU, and UO that connect the following 3 points:

point O (22.6, 36.8, 40.6),

point N (27.7, 18.2, 54.1), and

point U (3.9, 36.7, 59.4),

or on these line segments;

the line segment ON is represented by coordinates (0.0072y 2 −0.6701y+37.512, y, −0.0072y 2 −0.3299y+62.488);

the line segment NU is represented by coordinates (0.0083y 2 −1.7403y+56.635, y, −0.0083y 2 +0.7403y+43.365); and

the line segment UO is a straight line

wherein the mass % of R1234yf in the refrigerant is 50 mass % or more.

2. The refrigeration cycle apparatus according to claim 1 ,

wherein, during an operation of the refrigeration cycle apparatus using the heat source-side heat exchanger as an evaporator, in the heat source-side heat exchanger, a flow of the refrigerant and a flow of a heating medium that exchanges heat with the refrigerant are counter flows.

3. The refrigeration cycle apparatus according to claim 1 ,

wherein, during an operation of the refrigeration cycle apparatus using the heat source-side heat exchanger as a condenser, in the heat source-side heat exchanger, a flow of the refrigerant and a flow of a heating medium that exchanges heat with the refrigerant are counter flows.

4. The refrigeration cycle apparatus according to claim 1 ,

wherein, during an operation of the refrigeration cycle apparatus using the usage-side heat exchanger as an evaporator, in the usage-side heat exchanger, a flow of the refrigerant and a flow of a heating medium that exchanges heat with the refrigerant are counter flows.

5. The refrigeration cycle apparatus according to claim 1 ,

wherein, during an operation of the refrigeration cycle apparatus using the usage-side heat exchanger as a condenser, in the usage-side heat exchanger, a flow of the refrigerant and a flow of a heating medium that exchanges heat with the refrigerant are counter flows.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 3, 2020
From: KUMAKURA, EIJI; YAMADA, TAKURO; YOSHIMI, ATSUSHI; IWATA, IKUHIRO; ITANO, MITSUSHI; KARUBE, DAISUKE; YOTSUMOTO, YUUKI; TAKAHASHI, KAZUHIRO; TAKAKUWA, TATSUYA; KOMATSU, YUZO; OHKUBO, SHUN
To: DAIKIN INDUSTRIES, LTD.
Reel/Frame 054253/0731 →
Priority Claims (9)
JP 2017-242183 · Dec 18, 2017 · national
JP 2017-242185 · Dec 18, 2017 · national
JP 2017-242186 · Dec 18, 2017 · national
JP 2017-242187 · Dec 18, 2017 · national
WO PCT/JP2018/037483 · Oct 5, 2018 · international
WO PCT/JP2018/038746 · Oct 17, 2018 · international
WO PCT/JP2018/038747 · Oct 17, 2018 · international
WO PCT/JP2018/038748 · Oct 17, 2018 · international
WO PCT/JP2018/038749 · Oct 17, 2018 · international
Continuity (2)
Continuation In Part 16772927
Related Publication 20200325377A1 · Oct 15, 2020