Cryo-Tracker Level, Temperature, and Mass Gauging Fluid Sensors - PowerPoint PPT Presentation

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Cryo-Tracker Level, Temperature, and Mass Gauging Fluid Sensors

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Cryo-Tracker Level, Temperature, and Mass Gauging Fluid Sensors Behavior of Sub-cooled Propellants in Room Temp. Fig: Liquid Nitrogen unloaded from a small a Dewar ... – PowerPoint PPT presentation

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Title: Cryo-Tracker Level, Temperature, and Mass Gauging Fluid Sensors


1
Cryo-Tracker Level, Temperature,and Mass
Gauging Fluid Sensors
2
Behavior of Sub-cooled Propellants in Room Temp.
  • Fig Liquid Nitrogen unloaded from a small a
    Dewar Flask to a bucket in a laboratory.

3
Dewar Flask
  • Fig A 25 l liquid nitrogen laboratory Dewar
    flask.
  • Inner wall linings are silvered to reduce heat
    leakage.

4
Flexible Sensing Probe
  • Probe is made of series of polyimide layers of
    thickness 0.0254 mm.
  • Rakes made of stainless steel tubing, wire, and
    phenolic insulators weigh (6.70 g/cm).

5
Internal Structure of Cryo-Tracker
  • Silicon diode sensors incorporated with the
    probe.
  • Conductor Traces which constitute the rake of the
    temp- element

6
Installed Cryo-Tracker Probe
  • Cryo-Tracker probe 60 ft. long.
  • 2.5 cm wide.
  • containing 26 silicon diode sensors.
  • Its weight is less than 0.59 kg.

7
Stratification of Sub-cooled Propellants
  • The heat leak causes the propellant to warm and
    stratify due to natural buoyancy forces.

8
Cryo-Tracker
  • Initially designed for incorporating in the
    propellant vessels of reusable launch vehicles.

9
Purpose of Cryo-Tracker
  • For knowing the amount of propellant loaded in.
  • For knowing the liquid ullage temperature.
  • For knowing liquid level.

10
Mass Gauging Method
  • The entire liquid and ullage temperature profile
    is first obtained.
  • Tank pressure can then be used to calculate a
    liquid density profile.
  • Liquid density profile is integrated over the
    known tank volume.

11
Dual-Purpose Probe.
  • Temperature measured using silicon diode
    sensors.
  • Liquid level detection accuracy is a function of
    the sensor spacing.
  • For 12 inch sensor spacing, the overall liquid
    level accuracy is 6 inches.

12
Performance
  • Consistent thermal response can be
  • seen between the sensing elements in
  • a dual-element probe when its thermal-cycled
    in liquid nitrogen.

13
Hot-Fire Test (anomaly condition)
  • The probe is also capable of measuring
    transient fluid temperature changes.
  • Figure Tracking the rapid change in liquid
    oxygen temperature when warm gases injected
    into the tank mixed the contents.

14
Advantages of Cryo-Tracker
  • Operating Costs
  • Accuracy
  • Reliability
  • Safety
  • Efficiency
  • Scalability
  • Flexibility

15
Commercial Applications
  • Cryogenic storage and transport tanks
  • Home oxygen vessels
  • Medevac helicopter and military field hospital
    oxygen-generating systems
  • Automobiles running on liquid hydrogen or
    liqufied natural gas
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