Device and method for recovery of refrigerant
A device for recovery of refrigerant from a sealed heat transfer system includes a refrigerant conduit formed in the device for guiding a flow of refrigerant from the heat transfer system to a refrigerant outlet of the device, a refrigerant inlet to the refrigerant conduit. The refrigerant inlet can be provided in a surface of the device. The device can include a tool for providing an opening between an opening area of a part of the heat transfer system and the refrigerant inlet, a driver to drive a movement of the tool in order to provide the opening in the opening area. The device further includes a first gas conduit formed in the device for guiding a flow of gas between a first internal gas opening being provided in a surface of the device and a first external gas opening of the device.
1 . A device for recovery of refrigerant from a sealed heat transfer system, the device comprising:
a refrigerant conduit formed in the device for guiding a flow of refrigerant from the heat transfer system to a refrigerant outlet of the device;
a refrigerant inlet to the refrigerant conduit, the refrigerant inlet being provided in a surface of the device;
a tool for providing an opening between an opening area of a part of the heat transfer system and the refrigerant inlet; and
a driver to drive a movement of the tool in order to provide the opening in the opening area,
wherein the device further comprises:
a first gas conduit formed in the device for guiding a flow of gas between a first internal gas opening being provided in a surface of the device and a first external gas opening of the device;
an outer, resilient gasket arranged to provide a sealed-off space enclosing a surface of the device, a surface of the part of the heat transfer system, the refrigerant inlet, and the first internal gas opening when the device is mounted to the part of the heat transfer system.
2 . The device according to claim 1 , further comprising:
a clamp for clamping the device to the part of the heat transfer system, wherein the clamp is employed to clamp the device to the part of the heat transfer system to mount the device to the part of the heat transfer system.
3 . The device according to claim 1 , wherein the tool is suitable for providing the opening in the opening area of the part of the heat transfer system by activating a valve of the heat transfer system.
4 . The device according to claim 1 , wherein the tool and the driver are arranged for providing the opening in the opening area of the part of the heat transfer system by forming an opening in an outer wall of the part of the heat transfer system.
5 . The device according to claim 4 , wherein the tool comprises:
a needle and the driver arranged for advancing the needle to pierce the outer wall of the part of the heat transfer system.
6 . The device according to claim 1 , further comprising:
a second gas conduit formed in the device between a second internal gas opening being provided in the device; and
a pressure sensor,
wherein the sealed-off space further comprises the second internal gas opening.
7 . The device according to claim 1 , further comprising:
a second gas conduit formed in the device for guiding a flow of gas between a second internal gas opening being provided in the device and a second external gas opening of the device,
wherein the sealed-off space further includes the second internal gas opening, and
wherein the sealed-off space forms a channel between the first internal gas opening and the second internal gas opening.
8 . The device according to claim 7 ,
wherein the second internal gas opening is included within a second sealed-off space, and
wherein the second sealed-off space, forms a channel between the first internal gas opening and the second internal gas opening.
9 . A method of recovering refrigerant from a sealed heat transfer system by use of the device according to claim 1 , the method comprising:
mounting the device to a dedicated part of the heat transfer system;
providing an opening at an opening area of the part of the heat transfer system by the tool; and
recovering of refrigerant from the sealed heat transfer system by allowing refrigerant to flow from the opening area through the sealed-off space, via the refrigerant inlet through the refrigerant conduit and the refrigerant outlet into a receiving arrangement for the refrigerant.
10 . The method according to claim 9 , which previous to the recovering of the refrigerant further comprises:
providing a gas pressure in a second sealed-off space by the first gas conduit, the gas pressure in the second sealed-off space being lower than the gas pressure of the refrigerant in the heat transfer system by at least 3 bar, the absolute gas pressure in a second sealed-off space being below 1 bar, so as to leak test the second sealed-off space.
11 . The method according to claim 9 , which after said mounting of the device and before said recovering of the refrigerant further comprises:
providing a gas pressure in the sealed-off space by the first gas conduit, the gas pressure in the sealed-off space exceeding the gas pressure of the refrigerant in the heat transfer system, so as to leak test a second sealed-off space,
and/or
wherein the device further comprises a second gas conduit formed in the device for guiding a flow of gas between a second internal gas opening being provided in the device and a second external gas opening of the device, and wherein said providing of the gas pressure in the sealed-off space to leak test the sealed-off space, further comprises:
allowing a flow of the gas from the first internal gas opening and to the second internal gas opening and
measuring the pressure of the gas that flows through the second gas conduit.
12 . The method according to claim 9 , further comprising:
providing a gas pressure in the sealed-off space by the first gas conduit, the gas pressure being lower than the gas pressure of the refrigerant in the heat transfer system by at least 3 bar, while the refrigerant is recovered, the absolute gas pressure in the sealed-off space being below 1 bar, so as to leak test the sealed-off space.
13 . The method according to claim 9 , which previous to the recovering of the refrigerant further comprises:
providing a gas pressure in a second sealed-off space by the first gas conduit, the gas pressure in the second sealed-off space being lower than the gas pressure of the refrigerant in the heat transfer system by at least 3 bar, the absolute gas pressure in the second sealed-off space being below 0.5 bar, so as to leak test the second sealed-off space.
14 . The method according to claim 9 , which after said mounting of the device and before said recovering of the refrigerant further comprises:
providing a gas pressure in the sealed-off space by the first gas conduit, the gas pressure in the sealed-off space exceeding the gas pressure of the refrigerant in the heat transfer system by at least 3 bar, so as to leak test a second sealed-off space.
15 . A device for recovery of refrigerant from a sealed heat transfer system, the device comprising:
a refrigerant conduit formed in the device for guiding a flow of refrigerant from the heat transfer system to a refrigerant outlet of the device;
a refrigerant inlet to the refrigerant conduit, the refrigerant inlet being provided in a surface of the device;
a tool for providing an opening between an opening area of a part of the heat transfer system and the refrigerant inlet; and
a driver to drive a movement of the tool in order to provide the opening in the opening area,
wherein the device further comprises:
a first gas conduit formed in the device for guiding a flow of gas between a first internal gas opening being provided in a surface of the device and a first external gas opening of the device;
an outer, resilient gasket arranged to provide a sealed-off space enclosing a surface of the device, a surface of the part of the heat transfer system, the refrigerant inlet, and the first internal gas opening when the device is mounted to the part of the heat transfer system;
an inner, resilient gasket arranged to provide a first sealed-off space including the opening area and the refrigerant inlet when the device is mounted to the part of the heat transfer system, and
wherein the outer, resilient gasket is arranged to provide a second sealed-off space enclosing the first sealed-off space and including the inner, resilient gasket.
16 . A method of recovering refrigerant from a sealed heat transfer system by use of the device according to claim 2 , the method comprising:
mounting the device to a dedicated part of the heat transfer system;
providing an opening at an opening area of the part of the heat transfer system by the tool; and
recovering of refrigerant from the sealed heat transfer system by allowing refrigerant to flow from the opening area through the sealed-off space, via the refrigerant inlet through the refrigerant conduit and the refrigerant outlet into a receiving arrangement for the refrigerant,
wherein the recovering of refrigerant from the sealed heat transfer system is performed by allowing refrigerant to flow from the opening area through the first sealed-off space, and/or
wherein the refrigerant is a flammable and/or toxic fluid.
17 . The method of claim 16 , comprising:
providing a gas pressure of a gas in the second sealed-off space by the first gas conduit, the gas pressure in the second sealed-off space exceeding the gas pressure of the refrigerant in the first sealed-off space, and/or
wherein the gas is an oxygen-free gas.
18 . The method according to claim 17 , which after said mounting of the device and before said recovering of the refrigerant further comprises:
providing a gas pressure in the second sealed-off space by the first gas conduit, the gas pressure in the second sealed-off space exceeding the gas pressure of the refrigerant in the heat transfer system, so as to leak test the second sealed-off space.
19 . The method according to claim 18 , wherein the device further comprises a second gas conduit formed in the device for guiding a flow of gas between a second internal gas opening being provided in the device and a second external gas opening of the device, and wherein said providing of the gas pressure in the second sealed-off space to leak test the second sealed-off space, further comprises:
allowing a flow of the gas from the first internal gas opening and to the second internal gas opening; and
measuring the pressure of the gas that flows through the second gas conduit.
20 . The method according to claim 16 , further comprising:
providing a gas pressure in a second sealed-off space by the first gas conduit, the gas pressure being lower than the gas pressure of the refrigerant in the first sealed-off space by at least 3 bar, while the refrigerant is recovered, the absolute gas pressure in the second sealed-off space being below 1 bar.
21 . The method according to claim 16 , comprising:
providing a gas pressure of a gas in a second sealed-off space by the first gas conduit, the gas pressure in the second sealed-off space exceeding the gas pressure of the refrigerant in the first sealed-off space by at least 3 bar, while the refrigerant is recovered.
22 . The method according to claim 16 , further comprising:
providing a gas pressure in a second sealed-off space by the first gas conduit, the gas pressure being lower than the gas pressure of the refrigerant in the first sealed-off space by at least 3 bar, while the refrigerant is recovered, the absolute gas pressure in the second sealed-off space being below 0.1 bar.
23 . The method according to claim 17 , which after said mounting of the device and before said recovering of the refrigerant further comprises:
providing a gas pressure in the second sealed-off space by the first gas conduit, the gas pressure in the second sealed-off space exceeding the gas pressure of the refrigerant in the heat transfer system by at least 3 bar, so as to leak test the second sealed-off space.
24 . The method according to claim 18 , wherein the leak test comprises:
monitoring the pressure of the gas in the second sealed-off space, or in the sealed-off space, for a period of time, by a pressure sensor in fluid connection with the second sealed-off space, or with the sealed-off space, respectively.
25 . The device according to claim 15 , further comprising:
a clamp for clamping the device to the part of the heat transfer system, wherein the clamp is employed to clamp the device to the part of the heat transfer system to mount the device to the part of the heat transfer system.
26 . The device according to claim 15 , wherein the tool is suitable for providing the opening in the opening area of the part of the heat transfer system by activating a valve of the heat transfer system.
27 . The device according to claim 26 , wherein the valve of the heat transfer system is a quick coupler valve.
28 . The device according to claim 15 , wherein the tool and the driver are arranged for providing the opening in the opening area of the part of the heat transfer system by forming an opening in an outer wall of the part of the heat transfer system.
29 . The device according to claim 15 , further comprising:
a second gas conduit formed in the device between a second internal gas opening being provided in the device; and
a pressure sensor,
wherein the sealed-off space further comprises the second internal gas opening.
30 . The device according to claim 15 , further comprising:
a second gas conduit formed in the device for guiding a flow of gas between a second internal gas opening being provided in the device and a second external gas opening of the device,
wherein the sealed-off space further includes the second internal gas opening, and
wherein the sealed-off space forms a channel between the first internal gas opening and the second internal gas opening.