EP1526912A2

Variable evaporator control for a gas dryer

Abstract

A variable evaporator control system and method in a gas dryer for maximizing the cooling which can be accomplished for a given length heat exchanger by adjusting the evaporator refrigerant approach temperature responsive to changes in the gas load on the system. Pressure and/or temperature sensors positioned at particular locations in the system provide feedback for controlling adjustments in the approach temperature depending on the gas load.

Term

Term ended

Projected expiry passed 16 April 2023, 3.4 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

21 claims: 6 independent, 15 dependent

  1. 1
    Claims of equivalent WO 03089118 A2 CLAIMS:1. A refrigerated compressed gas dryer variable evaporator control method comprising: a. introducing compressed gas at a first temperature through a first flow path in a heat exchanger;b. circulating a refrigerant through a second flow path in said heat exchanger, said refrigerant having a second temperature measured at a refrigerant inlet of said heat exchanger, said second temperature being less than said first temperature;c. cooling said compressed gas to a third temperature as it flows through said heat exchanger;and d. controlling said second temperature responsive to changes in said third temperature to generally maintain said third temperature at a desired value.
  2. 5
    A variable evaporator control method wherein gas at a first temperature is passed through first flow path in a heat exchanger having a second flow path through which a refrigerant at a second temperature lower than said first temperature is circulated to cool said gas to a third temperature, said method comprising:a. sensing a fourth temperature at a single location in said heat exchanger at which said fourth temperature is representative of said third temperature when a gas load is above a certain level, and representative of said second temperature when said gas load is below said certain level;and b. adjusting said second temperature responsive to changes in said fourth temperature to generally maintain said fourth temperature at a desired value.
  3. 7
    A variable evaporator control refrigerated compressed gas dryer comprising:a. an evaporator heat exchanger having a first flow path for compressed gas at a first temperature;b. said evaporator heat exchanger having a second flow path for a refrigerant at a second temperature which is lower than said first temperature to cool said compressed gas to a third temperature;c. a compressor to circulate said refrigerant at a predetermined pressure, said predetermined pressure having a correlation to said second temperature;d. a temperature sensor to sense said third temperature at an outlet of said first flow path;e. a valve intermediate said second flow path and a source of refrigerant, said valve controllable to admit refrigerant into circulation to adjust said predetermined pressure;and f. a controller connected to receive feedback from said temperature sensor indicative of said third temperature, said controller controlling said valve to adjust said predetermined pressure and thus adjust said second temperature to generally maintain said third temperature at a desired value.
  4. 14
    A variable evaporator control system comprising:a. an evaporator heat exchanger having a first flow path for a gas at a first temperature and a second flow path for circulation of a refrigerant at a second temperature which is lower than said first temperature to cool said gas to a third temperature;b. a compressor to circulate said refrigerant;c. a temperature sensor positioned in said evaporator heat exchanger at a single location to sense a fourth temperature which is representative of said third temperature when a gas load is above a certain level, and representative of said second temperature when said gas load is below said certain level;and d. a controller connected to receive feedback from said temperature sensor indicative of said fourth temperature to control said second temperature to generally maintain said fourth temperature at a desired value.
  5. 16
    A variable evaporator control method maximizing cooling of a gas passed through an evaporator heat exchanger of a given length, wherein gas at a first temperature flows through said evaporator heat exchanger in a first flow path and a refrigerant at a second temperature lower than said first temperature is circulated through said evaporator heat exchanger in a second flow path to cool said gas to a third temperature, the difference between said first and second temperatures being an approach temperature, said control method comprising:a. increasing said approach temperature as a gas load through said evaporator heat exchanger increases;b. decreasing said approach temperature as a gas load through said evaporator heat exchanger decreases;and c. wherein said third temperature is thus generally maintained at a desired value irrespective of said gas load.
  6. 19
    A compressed gas dryer having a heat exchanger with a first flow path for a compressed gas and a second flow path for a refrigerant to cool said compressed gas, the compressed gas dryer comprising:a. a temperature sensor to sense a temperature of said compressed gas at an outlet of said first flow path;and b. a controller connected to receive feedback from said temperature sensor indicative of said temperature of said compressed gas at said outlet of said first flow path, said controller controlling a temperature of said refrigerant at an inlet of said second flow path to generally maintain said temperature of said compressed gas at said outlet of said first flow path at a desired value.