Removing non-homogeneous ice from a fuel system
The presently disclosed embodiments utilize an ice separator vessel to trap ice particles in a non-homogeneous ice/fuel mixture flowing in a fuel system. A source of heat, such as heated fuel provided to the ice separator vessel, is used to melt at least a portion of the ice particles so that they do not enter the fuel system downstream of the ice separator vessel.
1. A fuel system comprising:
an ice separator vessel configured to separate ice particles from a first supply of fuel comprising a non-homogeneous fuel/ice mixture, the first supply of fuel being supplied to the ice separator vessel by a fuel supply line at a first ice separator vessel input;
a first stage pump coupled to an output of the ice separator vessel;
a heat exchanger coupled to an output of the first stage pump;
a second stage pump coupled to a fuel output of the heat exchanger;
a pump relief check valve coupled to an output of the second stage pump,
wherein the pump relief check valve provides heated fuel to a second input of the ice separator vessel and wherein the heated fuel is at a temperature greater than the first supply of fuel and the heated fuel melts at least a portion of the ice particles in the ice separator vessel, wherein the heat exchanger is operably coupled to bleed air received from a gas turbine engine.
2. A fuel system comprising:
an ice separator vessel configured to separate ice particles from a first supply of fuel comprising a non-homogeneous fuel/ice mixture, the first supply of fuel being supplied to the ice separator vessel by a fuel supply line at a first ice separator vessel input;
a first stage pump coupled to an output of the ice separator vessel;
a heat exchanger coupled to an output of the first stage pump;
a second stage pump coupled to a fuel output of the heat exchanger;
a pump relief check valve coupled to an output of the second stage pump,
wherein the pump relief check valve provides heated fuel to a second input of the ice separator vessel and wherein the heated fuel is at a temperature greater than the first supply of fuel and the heated fuel melts at least a portion of the ice particles in the ice separator vessel, wherein the heat exchanger is operably coupled to an electric heat source.
3. A fuel system comprising:
an ice separator vessel configured to separate ice particles from a first supply of fuel comprising a non-homogeneous fuel/ice mixture, the first supply of fuel being supplied to the ice separator vessel by a fuel supply line at a first ice separator vessel input;
a first stage pump coupled to an output of the ice separator vessel;
a heat exchanger coupled to an output of the first stage pump;
a second stage pump coupled to a fuel output of the heat exchanger;
a pump relief check valve coupled to an output of the second stage pump,
wherein the pump relief check valve provides heated fuel to a second input of the ice separator vessel and wherein the heated fuel is at a temperature greater than the first supply of fuel and the heated fuel melts at least a portion of the ice particles in the ice separator vessel, wherein the ice separator vessel is configured to separate the ice particles from the non-homogeneous fuel/ice mixture by centrifugation.
4. A fuel system comprising:
an ice separator vessel configured to separate ice particles from a first supply of fuel comprising a non-homogeneous fuel/ice mixture, the first supply of fuel being supplied to the ice separator vessel by a fuel supply line at a first ice separator vessel input;
a first stage pump coupled to an output of the ice separator vessel;
a heat exchanger coupled to an output of the first stage pump;
a second stage pump coupled to a fuel output of the heat exchanger;
a pump relief check valve coupled to an output of the second stage pump,
wherein the pump relief check valve provides heated fuel to a second input of the ice separator vessel and wherein the heated fuel is at a temperature greater than the first supply of fuel and the heated fuel melts at least a portion of the ice particles in the ice separator vessel, wherein the ice separator vessel is configured to separate the ice particles from the non-homogeneous fuel/ice mixture by settling.