Mixed-phase regulator for managing coolant in a refrigerant based high efficiency energy storage and cooling system
Disclosed is a method and device to efficiently regulate flow of refrigerant while maintaining a sealed chamber in systems providing stored thermal energy for use during peak electrical demand. A mixed-phase regulator replaces the thermostatic expansion valve used in conventional air-conditioning systems that, along with capillary tubes and orifices, regulates the refrigerant fed from the compressor to the heat load.
1. A method of controlling pressure and flow of a refrigerant comprising:
regulating pressure of said refrigerant by controlling the flow of said refrigerant through a mixed phase regulator between an inlet of said regulator and an outlet of said regulator by varying said flow of said refrigerant in response to the quantity of vapor entrained within a liquid portion of said refrigerant as said refrigerant passes from said inlet of said regulator to said outlet of said regulator.
2. A method of controlling pressure and flow of a refrigerant comprising:
regulating pressure of said refrigerant by controlling the flow of said refrigerant through a mixed phase regulator between an inlet of said regulator and an outlet of said regulator by varying said flow of said refrigerant in response to the quantity of vapor present within said refrigerant as said refrigerant passes from said inlet of said regulator to said outlet of said regulator;
opening and closing two or more orifices disposed between said inlet and said outlet with a piston that reacts to pressure differential and phase of said refrigerant within said regulator.
3. A method of controlling pressure and flow of a refrigerant comprising:
regulating pressure of said refrigerant by controlling the flow of said refrigerant through a mixed phase regulator between an inlet of said regulator and an outlet of said regulator by varying said flow of said refrigerant in response to the quantity of vapor present within said refrigerant as said refrigerant passes from said inlet of said regulator to said outlet of said regulator;
separating a high-pressure first chamber from an intermediate-pressure second chamber and a low-pressure third chamber with a valve, said valve that allows flow from said first chamber to said second chamber and regulates pressure by controlling flow from said first chamber to said third chamber by reacting to the phase of said refrigerant;
receiving a high-pressure refrigerant with a refrigerant inlet of said first chamber;
receiving a first portion of said high-pressure refrigerant from said first chamber with said second chamber when there is positive differential pressure between said first chamber and said second chamber, thereby reducing the pressure of said high-pressure refrigerant within said chamber two and creating an intermediate-pressure refrigerant;
receiving said intermediate-pressure refrigerant from said second chamber with said third chamber when there is positive differential pressure between said second chamber and said third chamber, thereby reducing the pressure of said intermediate-pressure refrigerant within said third chamber and creating a first low-pressure refrigerant;
receiving a metered portion of said high-pressure refrigerant from said first chamber with said third chamber when there is positive differential pressure between said first chamber and said third chamber, thereby reducing the pressure of said high-pressure refrigerant within said third chamber and creating a second low-pressure refrigerant; and,
combining existing said first low-pressure refrigerant and existing said second low-pressure refrigerant within said third chamber to form a effluent low-pressure refrigerant.