AU2005299930B2

Vertical heat exchanger configuration for LNG facility

Abstract

LNG facility employing one or more vertical core-in-kettle heat exchangers to cool natural gas via indirect heat exchange with a refrigerant. The vertical core-in-kettle heat exchangers save plot space and can be use to reduce the size of cold boxes employed in the LNG facility. In addition, vertical core-in-kettle heat exchangers can exhibit enhanced heat transfer efficiency due to improved refrigerant access to the core, improved refrigerant circulation around the core, and/or improved vapor/liquid disengagement above the core.

AU2005299930B2, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Expired 14 October 2025, 0.9 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

6 claims: 2 independent, 4 dependent

  1. 1
    THE CLAIMS DEFINING THE INVENTION ARE AS FOLLOWS:1. A method of transferring heat from a refrigerant to a cooled fluid, said method comprising: 5 (a) introducing the refrigerant into an internal volume defined within a shell, said internal volume having a height-to-width ratio greater than 1;(b) introducing the cooled fluid into a plate-fin core disposed within the internal volume of the shell;(c) transferring heat from the cooled fluid in the core to the refrigerant in 10 the shell via indirect heat exchange;and (d) withdrawing a predominantly liquid stream of the refrigerant from a liquid outlet defined in the shell at a lower elevation than the bottom of the core, wherein the ratio of the vertical distance between the bottom of the core and 15 the liquid outlet to the maximum height of the internal volume is greater than about 0.15, said core being spaced from the top and bottom of the shell, said core defining a plurality of generally upwardly extending shell-side flow 20 passageways for receiving said refrigerant, each of said passageways defining a downwardly facing lower refrigerant inlet and an upwardly facing upper refrigerant outlet.
  2. 4
    The method according to any one of claims 1 to 3;and (e) maintaining the level of liquid-phase refrigerant in said shell at an 20 elevation where at least 50% of the height of the core is submerged in the liquidphase refrigerant;
  3. 6
    6/8 + WO 2006/047097 PCT/US2005/036846 WO 2006/047097 PCT/US2005/036846 900 v 542 ^568 ^554