Powerplant
Citation Bravo
Developed for Training Purposes
5L-23
March 2009
Engine Anti-Icing
The engine bullet nose cone and T
1
thermocouple are continuously anti-
iced by engine bleed air whenever
the engine is operating
(Figure 5L-
12).
Each receives bleed air from
different sources.
Compressor discharge air travelling
down a hollow, low pressure com-
pressor shaft enters the double wall
inlet cone where it provides anti-
icing protection. The bleed air trav-
els rear-ward where holes in the
inner wall allow it to discharge into
the engine bullet nose cone cavity.
From the cone cavity, it flows to the
No. 1 bearing labyrinth seal.
A tube assembly and solenoid shut-
off valve carry bleed air from the gas
generator case to the intermediate
casing. From the casing, the air trav-
els through the outer strut into the
inner bore of the intermediate case.
An annular (i.e., ring-shaped) anti-
icing air manifold then routes the air
to the hollow stator vanes. After
travelling through the vanes, the air
discharges around the leading rotary
shroud where it mixes with the pri-
mary air stream.
An external transfer tube on the
engine bypass duct routes warm,
high pressure compressor air from
the gas generator case for T
1
thermo-
couple anti-icing.
Engine Inlet Anti-Icing
The engine inlet anti-icing system
uses compressor bleed air to warm
the engine inlet duct. A stainless
steel duct carries compressor bleed
air from the engine to an electrically
closed anti-ice solenoid valve
.
The
solenoid valve controls bleed air
flow to the engine inlet duct.
DISCHARGE
TO PRIMARY
AIR STREAM
FAN
SHAFT
DOUBLE
WALL
INLET
CONE
ANTI-ICING
AIR DUCTS
HOT AIR MANIFOLD
5L-12
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