Unless it's a turbo! :rawk:
Oh no you di-int!By the way, is the top lifting surface of that bi-plane one "wing" or two "wings"?
+1All I can say is WOW. I agree with the others...Where are the performance charts for reduced power takeoff?
That's not necessarily accurate. Sometimes, you push the throttles all the way up and the MP comes up to where it should.Full-throttle in a turbocharged engine can over-psi the manifold pressure, a condition called "overboost".
That's not necessarily accurate. Sometimes, you push the throttles all the way up and the MP comes up to where it should.
That's not necessarily accurate. Sometimes, you push the throttles all the way up and the MP comes up to where it should.
aloft is correct for the most part. Turbocharged airplanes require some serious mixture and power attention.
In older turbocharged airplanes, throttle travel is only about 3/4 forward to take off power. Anymore, and you'll damage the engine if not rapidly corrected. Even in new turbocharged airplanes which allow for full throttle travel to achieve maximum MP, if the temperature if below nominal, you'll overboost the engine.
As a matter of practice in turbocharged engines, 98% of the time I'll do a static takeoff and actually "set power". To complicate the matter, in older turbocharged airplanes, you actually adjust the mixture to achieve a specific TIT during the takeoff roll after power has been set.
It's almost like I've never flown a turbocharged airplane before...In older turbocharged airplanes, throttle travel is only about 3/4 forward to take off power. Anymore, and you'll damage the engine if not rapidly corrected. Even in new turbocharged airplanes which allow for full throttle travel to achieve maximum MP, if the temperature if below nominal, you'll overboost the engine.
In older turbocharged airplanes, throttle travel is only about 3/4 forward to take off power. Anymore, and you'll damage the engine if not rapidly corrected. Even in new turbocharged airplanes which allow for full throttle travel to achieve maximum MP, if the temperature if below nominal, you'll overboost the engine.
It's almost like I've never flown a turbocharged airplane before...:dunno::beer:
-mini
Don't you guys do an engine warm-up as necessary before boarding the pax? Not a run-up, necessarily...but enough to get temperatures and pressures back up into the green arcs if they've cooled off?The only time you have to pay attention is on colder days when the oil is still cold. You might have to pull the throttles back just a little bit to keep it at 39" MP.
Don't you guys do an engine warm-up as necessary before boarding the pax? Not a run-up, necessarily...but enough to get temperatures and pressures back up into the green arcs if they've cooled off?
-mini
We fly both. You know how finicky the power and speed levers are in the metro. I'd be lucky to get the power levers properly set on the takeoff roll most of the time.
In cruise the props are out of sync and you adjust the speed levers to get them into sync. Then theres a split in torque. So you adust the torque so there's no split. Then the props are out of sync again. You adjust this for a few minutes before you finally give in a just take the split in torque or the out of sync props. It's an evil game.![]()
Full-throttle in a turbocharged engine can over-psi the manifold pressure, a condition called "overboost".
The pratts on the 1900 used to spray enough oil around that the magnetic contactors for the sync would dirty up and the computer would go batty trying to find the magic speed. Not much fun for 8 legs at a time.
Was this an examiner or an inspector?
The pratts on the 1900 used to spray enough oil around that the magnetic contactors for the sync would dirty up and the computer would go batty trying to find the magic speed. Not much fun for 8 legs at a time.
Type I Prop Sync off in the King Air for t/o. Type II on...
To complicate the matter, in older turbocharged airplanes, you actually adjust the mixture to achieve a specific TIT during the takeoff roll after power has been set.
True, but full-rated power for takeoff in a turbo is generally overkill. If a normally-aspirated 182 can take off with only 24", so can a turbo'ed one.Which would mean you would takeoff with full rated takeoff power, which has nothing to do with the position of the throttle in the cockpit.
So you're still not doing a partial power takeoff, you're just using the full rated horsepower for takeoff. Anything more would be beyond the limits of the engine.