Altimetry
Pressure and height
An altimeter measures air pressure, and the pressure falls as you climb. What it shows depends on the setting in its subscale window.
Reads altitude, measured from mean sea level.
Reads height, measured from the aerodrome.
The standard setting, the ISA’s pressure at mean sea level. Reads flight levels.
Levels, and the words for them
Where a vertical distance is measured from, and what the word a pilot uses tells you.
Altitude, height and flight level
Each setting measures from a different level.
The same three are in LAW 005, and the settings they come from in MET 002.
The transition
Below the transition altitude, levels are altitudes on QNH. From the transition level up, they are flight levels on 1013.25 hPa. Between the two is the transition layer.
So inside the transition layer, a climbing aircraft is on flight levels and a descending one on altitudes (ICAO Doc 8168).
The altitude at or below which the vertical position of an aircraft is controlled by reference to altitude. Fixed and published for every aerodrome.
The lowest flight level available for use above the transition altitude. Determined by ATS for every aerodrome.
The airspace between the transition altitude and the transition level. At least 1 000 ft deep: the transition level shall be at least 300 m (1 000 ft) above the transition altitude, so both can be used in cruising flight with vertical separation ensured.
Transition level tables
Which transition level goes with which QNH. The lower the QNH, the lower the 1013.25 hPa level sits, and the flight levels sink with it, so the transition level has to be a higher one.
The table in the notes. 5 000 ft is the transition altitude in the Copenhagen area too.
Denmark’s own, for its 3 000 ft transition altitude. It goes in steps of 1 000 ft.
Working it out
Every calculation here is the same move: find the difference in hPa between two settings, and multiply it by 30 to turn it into feet. The standard setting is 1013.25 hPa. The transition altitude is fixed and published, so there is nothing to work out for it. Pick what you want to find, then change the numbers.
An aircraft is at FL 50, and the QNH is 1003. What is its altitude?
- FL 50 is 5 000 ft above the 1013.25 hPa level.
- The QNH, 1003, is 10.25 hPa below 1013.25. At 30 ft per hPa that is 307.5 ft, so the 1013.25 hPa level lies 307.5 ft below the sea.
- So the aircraft is 307.5 ft lower than its flight level says: 5 000 − 307.5 = 4 692.5 ft above the sea.
In your head, use 1013: 10 hPa × 30 = 300 ft, so about 4 700 ft. Lower QNH, lower aircraft.
In one line: Altitude = FL × 100 − (1013.25 − QNH) × 30
QNH and QFE are given in whole hPa, rounded down. Searching the page puts the example numbers back.
Flight level allocation
Which flight levels go with which magnetic track. Some countries split the compass north and south, instead of east and west.
Used in Italy, France, Spain and Portugal. SERA Appendix 3 allows the turn where most traffic flows north and south. The usual split, east and west, is in LAW 005.
Vertical limits on a chart
Charts can write the vertical limits of an area in lots of different ways. The upper limit goes above the line and the lower limit under it, and each can be measured from a different level.
Up to 19 500 ft above mean sea level. Down to mean sea level.
Up to 16 500 ft above the ground, so the top follows the ground. Down to the ground.
Up to FL 95, on the standard setting. Down to 1 500 ft above mean sea level, on QNH. Two references in one area.