IP Library Granted Patent US 10,746,442
Granted Patent B2
US 10,746,442 · App. 16/074,582 · Granted Aug 18, 2020

Refrigerating apparatus

Inventor: Wilhelmus Franciscus Schoonen (BA Son, NL)
Assignee: Franke Technology and Trademark Ltd
F25B41/062F25B49/022F25B2600/2513
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Quick Facts
Patent No.
US 10,746,442
App. No.
16/074,582
Granted
Aug 18, 2020
Kind
B2
Abstract

A refrigeration apparatus including a compressor ( 301 ), a condenser ( 302 ), an expansion device ( 304 ), and an evaporator ( 305 ), fluidly connected to form a refrigeration cycle for a refrigerant, wherein the compressor ( 301 ) has a variable working capacity, and wherein the expansion device ( 304 ) has a configurable flow resistance with respect to the refrigerant passing through the expansion device. The apparatus further includes a controller ( 300 ) which is configured to determine a current working capacity of the compressor ( 301 ) and to control the resistance of the expansion device ( 304 ) in dependence on the current working capacity of the compressor ( 301 ). The controller ( 300 ) is further configured to control the resistance of the expansion device ( 304 ) in order to achieve a mass flow of the refrigerant through the expansion device ( 304 ), which mass flow corresponds to a mass flow of the refrigerant through the compressor ( 301 ).

Claims (38)

1. A refrigeration apparatus, comprising:

a compressor ( 301 ), a condenser ( 302 ), an expansion device ( 304 ), and an evaporator ( 305 ), fluidly connected to form a refrigeration cycle for a refrigerant, the compressor ( 301 ) has a variable working capacity, and the expansion device ( 304 ) has a configurable resistance with respect to the refrigerant passing through the expansion device; and

a controller ( 300 ) configured to determine a current working capacity of the compressor ( 301 ) and to control the resistance of the expansion device ( 304 ) in dependence on the working capacity of the compressor ( 301 );

a non-volatile memory of the controller configured with a plurality of different working capacities for the compressor, and for each of the selected working capacities, an associated setting of the expansion device is stored that achieves a throughput of the refrigerant through the expansion device corresponding to the selected working capacity of the compressor at a desired evaporating temperature of the refrigerant and a desired condensing temperature;

wherein the controller is further configured to control the resistance of the expansion device in dependence on the setting stored for the current working capacity of the compressor.

2. The apparatus of claim 1 , wherein the controller ( 300 ) is configured to control the resistance of the expansion device ( 304 ) in order to achieve a mass flow of the refrigerant through the expansion device ( 304 ) corresponding to a mass flow of the refrigerant through the compressor ( 301 ).

3. The apparatus of claim 1 , wherein the controller ( 300 ) is configured to determine the current working capacity of the compressor ( 301 ) based on a signal received from the compressor ( 301 ), and said signal is indicative of the current working capacity of the compressor ( 301 ).

4. The apparatus of claim 1 ,

further comprising at least one sensor ( 330 ) configured to measure a property of the refrigerant; and

the controller ( 300 ) is configured to set the working capacity of the compressor ( 301 ) based on the measured property of the refrigerant, and to control the compressor ( 301 ) to apply the set working capacity.

5. The apparatus of claim 1 , wherein the expansion device ( 304 ) comprises a valve having different settings corresponding to different resistances.

6. The apparatus of claim 5 , wherein the valve comprises

a housing ( 412 ) with a valve inlet ( 409 ) fluidly connected to a valve outlet ( 410 ), the valve inlet ( 409 ) fluidly connected to an outlet of the condenser ( 302 ) and the valve outlet ( 410 ) fluidly connected to an inlet ( 324 ) of the evaporator ( 305 ),

a valve member ( 405 ) extending into the housing ( 412 ) to cause a flow resistance in a conduit ( 402 ) that extends from the valve inlet ( 409 ) to the valve outlet ( 410 ), to regulate a flow of the refrigerant from the valve inlet ( 409 ) to the valve outlet ( 410 ), and the valve member ( 405 ) is configured to move into a specified position in accordance with a signal transmitted by the controller ( 300 ).

7. The apparatus of claim 6 , wherein the valve member ( 405 ) is a needle valve member.

8. A method of operating a refrigeration apparatus, the refrigeration apparatus comprising a compressor, a condenser, an expansion device, and an evaporator, fluidly connected to form a refrigeration cycle for a refrigerant, the compressor has a variable working capacity, and the expansion device has a configurable resistance with respect to the refrigerant passing through the expansion device,

the method comprising:

selecting a desired evaporating temperature and a desired condensing temperature;

selecting a plurality of different working capacities for the compressor;

for each of the selected working capacities:

determining a setting of the expansion device that achieves a throughput of the refrigerant through the expansion device corresponding to the selected working capacity of the compressor at the desired evaporating temperature and the desired condensing temperature, and

storing the setting of the expansion device corresponding to the selected working capacity of the compressor in a memory of the controller;

determining a current working capacity of the compressor ( 501 ); and

controlling the resistance of the expansion device in dependence on the setting stored for the current working capacity of the compressor ( 502 ).

9. A method of making a refrigeration apparatus, comprising:

providing the refrigeration apparatus with a compressor, a condenser, an expansion device, and an evaporator, fluidly connected to form a refrigeration cycle for a refrigerant, the compressor has a variable working capacity, and the expansion device has a configurable resistance with respect to the refrigerant passing through the expansion device ( 601 );

providing the refrigeration apparatus with a controller ( 602 );

configuring the controller to determine a current working capacity of the compressor and to control the resistance of the expansion device in dependence on the current working capacity of the compressor ( 603 );

selecting a desired evaporating temperature and a desired condensing temperature ( 701 );

selecting a plurality of different working capacities for the compressor;

for each of the selected working capacities:

determining a setting of the expansion device that achieves a throughput of the refrigerant through the expansion device corresponding to the selected working capacity of the compressor at the desired evaporating temperature and the desired condensing temperature ( 703 ), and

storing the setting of the expansion device corresponding to the selected working capacity of the compressor in a memory of the controller ( 704 ); and

programming the controller to determine a current working capacity of the compressor and control the expansion device based on the setting stored for the current working capacity of the compressor ( 706 ).

10. The method of claim 9 , wherein the step of determining a setting of the expansion device ( 703 ) comprises:

operating the compressor at the selected working capacity and at the desired evaporating temperature and at the desired condensing temperature;

determining a mass flow of refrigerant through the compressor under these operating conditions; and

determining a setting of the expansion device based on the determined mass flow.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2024
From: FRANKE TECHNOLOGY AND TRADEMARK LTD
To: WSP INVESTMENT II BV
Reel/Frame 068598/0802 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2018
From: SCHOONEN, WILHELMUS FRANCISCUS
To: FRANKE TECHNOLOGY AND TRADEMARK LTD
Reel/Frame 046527/0443 →
Continuity (1)
Related Publication 20190041109A1 · Feb 7, 2019