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MET 007

Visibility

Kinds of visibility

Four kinds: forward from the cockpit, at the aerodrome, around the horizon, and straight up. Then why visibility matters to the traffic.

Forward from the cockpit
Flight visibility

The visibility forward from the cockpit of an aircraft in flight.

ObserverAutomatic system
Ground visibility

The visibility at an aerodrome, as reported by an accredited observer or by automatic systems.

FogPrevailingvisibilityAt least halfthe horizon circle
Prevailing visibility

The greatest horizontal distance seen over at least half of the horizon circle.

It is taken as the representative visibility at a particular location.

VVin feetFog: the sky is obscuredObserver or sensor
Vertical visibility (VV)

How far up an observer or a sensor can see into an obscuring layer, such as fog or heavy snow.

When the sky is obscured, it replaces the cloud groups in a meteorological report. Given in feet, as in MET 001.

Why it matters
  • VFR flights
    Need it to see and avoid other aircraft and obstacles.
  • IFR flights
    Need some visibility too: to taxi around the aerodrome, and to see the runway in the final stage of the flight.
  • Procedures and separation
    Low visibility can change the procedures, the separation methods and the minima.
  • Delays and diversions
    Poor visibility can cause delays and diversions. They delay other aircraft and passengers, and add to the controllers’ workload.

Why visibility is reduced

Exam

Two kinds of particle in the air: water, and solid material that is not ice.

Hydrometeors

Liquid or solid water particles. They can greatly reduce visibility.

For example, mist and fog, and precipitation: rain, drizzle and snow.

Lithometeors

Solid material that is not ice.

For example, volcanic ash. The five kinds are under Lithometeors, below.

Fog and mist

Exam

Both are water droplets in the air. The visibility tells them apart.

FogMist
0 m1 000 m5 000 m
Visibility, drawn to scale: fog below 1 000 m, mist from 1 000 to 5 000 m.
FogVisibility less than 1 000 m.
MistVisibility between 1 000 and 5 000 m.

The smaller the difference between temperature and dew point, the nearer the air is to mist or fog: see MET 003.

Kinds of fog

Exam

Seven kinds, and how each forms.

Heat radiates awayFogThe ground cools
Radiation fog

Conditions: night, little or no cloud, little wind.

The land cools down by radiating heat. The moist air near the ground loses heat to the cold ground by conduction and condenses.

The night must be long enough.

Warm, moist airFogCold sea
Advection fog

Conditions: warm, moist air over a cold surface.

The warm air loses heat and condenses. Sea fog is one example.

Moist airCools by expansionFog
Hill fog or upslope fog

Conditions: moist air is forced up by rising ground (orographic lifting).

The air is cooled by expansion and becomes saturated (MET 004).

Warm airCold airFogWarm front
Precipitation fog or frontal fog

Conditions: rain ahead of a warm front or an occlusion (MET 005).

Some of the falling rain evaporates, and the colder air below the main cloud bank becomes saturated. The fog forms in that colder air.

Cold, dense airFog
Valley fog

Cold, dense air settles into the low part of a valley, condenses and forms fog.

Extremely cold airWarm, moist sea
Sea smoke

Extremely cold air passes over a warm, moist surface.

The two mix, and the air becomes saturated.

Supercooled dropletsRime
Freezing fog

Fog of supercooled water (MET 003).

It forms a layer of ice or rime on impact.

Lithometeors

Five kinds of solid particle, each with its report code.

  • FUSmoke
    Small particles suspended in the air, produced by combustion.
  • DUDust
    Small particles of earth or other matter, raised into the air by the wind.
  • SASand
    Particles of sand, raised into the air by the wind.
  • HZHaze
    Extremely small, dry particles, invisible to the naked eye (air pollution).
  • VAVolcanic ash
    Fine particles of rock powder from a volcano. They can stay in the air for a long time.

Haze is dry. That is what separates it from mist, which is water droplets.

Observing and reporting visibility

The units visibility is given in, and the two sensors that measure it.

UnitsVisibility is given in metres or kilometres. The other surface observations and their units are in MET 001.
Visibility sensors
Transmissometer
Forward scatter meter

Runway visual range

RVR (runway visual range): when it is reported, where it is measured, and how it reads in a report.

26L1Touchdown zone2Mid-point3Stop end
Each point gives the RVR for its own part of the runway.
In metresRVR is always given in metres.
WhenReported when the visibility or the RVR is less than 1 500 m.
WhereMeasured at up to three points along the runway: the touchdown zone, the mid-point and the stop end.
HowEach point has a transmissometer or a forward scatter meter.
Reading an RVR group
R26L/0900
R
RVR
26L
Runway 26L
0900
900 m

RVR runway 26L, 900 metres.

R01R/P2000
R
RVR
01R
Runway 01R
P
More than
2000
2 000 m

RVR runway 01R, more than 2 000 metres.

METAR codes

Exam

The codes for the weather in a METAR, column by column. FBL, MOD and HVY are the words of plain language and local reports.

The weather codes
Intensity or proximity
  • FBLLightMinus sign in a METAR
  • MODModerateNo sign in a METAR
  • HVYHeavyPlus sign in a METAR
  • VCVicinityWithin 16 km of the aerodrome, but not on it
Descriptor
  • MIShallowLess than 2 m above the ground
  • BCPatches
  • PRPartial
  • DRLow driftingDust, sand or snow raised by the wind to less than 2 m
  • BLBlowingRaised by the wind to 2 m or more
  • SHShowers
  • TSThunderstorm
  • FZFreezing
Precipitation
  • DZDrizzle
  • RARain
  • SNSnow
  • SGSnow grains
  • PLIce pellets
  • GRHail
  • GSSmall hail or snow pellets
Obscuration
  • BRMist
  • FGFog
  • FUSmoke
  • VAVolcanic ash
  • DUDust
  • SASand
  • HZHaze
Other phenomena
  • PODust or sand whirls
  • SQSquall
  • FCFunnel cloud
  • DSDust storm
  • SSSandstorm

The precipitation codes are each explained in MET 006. CAVOK and its conditions are in MET 001.

Reading material