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Davos vs Tusayan

Dfc SubarcticCsb Warm-summer Mediterranean

Comparing Davos change · Tusayan change

Bottom line

Tusayan is the warmer of the two — about 4°C on the annual average; Davos is the wetter, with 717 mm more rain a year, and Tusayan the sunnier.

Warmer Tusayan 4°C on the year
Wetter Davos 717 mm more a year
Sunnier Tusayan 27 pp less cloud
Colder winters Tusayan 2°C colder nights

How the seasons compare

The differences between Davos and Tusayan, in everyday terms.

Summers

Tusayan has far hotter summers

Davos: Cool
Tusayan: Warm

Winters

Winters are similar

Davos: Very cold
Tusayan: Very cold

Rain & snow

Davos is much wetter

Davos: Wet
Tusayan: Fairly dry

Sky

Tusayan is far sunnier

Davos: Often cloudy
Tusayan: Fairly sunny

Month-by-month charts

Temperature

Tusayan is the warmer of the two — about 4°C on the annual average.

-20°20°40° JanAprJulOct DavosTusayan

Precipitation

Davos is the wetter — about 717 mm more across the year.

PRECIPITATION (mm) 075150 JanAprJulOct DavosTusayan

Clear skies

Tusayan has the clearer skies — the higher line.

0%25%50%75%100% JanAprJulOct DavosTusayan

Exact monthly numbers

Tap a metric to open its full table. Desktop shows all twelve months; on a phone each metric splits into Jan–Jun and Jul–Dec.

Avg high (°C) Tusayan runs higher most of the year
JanFebMarAprMayJunJulAugSepOctNovDec
Davos015813171918141151
Tusayan781316222830282519127
Difference+7+7+8+8+9+12+12+10+11+8+8+6
Jan – JunJanFebMarAprMayJun
Davos01581317
Tusayan7813162228
Difference+7+7+8+8+9+12
Jul – DecJulAugSepOctNovDec
Davos1918141151
Tusayan30282519127
Difference+12+10+11+8+8+6
Avg low (°C) Varies through the year
JanFebMarAprMayJunJulAugSepOctNovDec
Davos-9-9-6-2268841-4-7
Tusayan-10-9-6-4-13994-2-7-10
Difference-1-1-2-3-3+2+1-3-3-3
Jan – JunJanFebMarAprMayJun
Davos-9-9-6-226
Tusayan-10-9-6-4-13
Difference-1-1-2-3-3
Jul – DecJulAugSepOctNovDec
Davos8841-4-7
Tusayan994-2-7-10
Difference+2+1-3-3-3
Precipitation (mm) Davos runs higher most of the year
JanFebMarAprMayJunJulAugSepOctNovDec
Davos705257548912913315096777168
Tusayan27262618159495334331820
Difference-43-26-31-37-73-120-84-96-62-44-53-48
Jan – JunJanFebMarAprMayJun
Davos7052575489129
Tusayan27262618159
Difference-43-26-31-37-73-120
Jul – DecJulAugSepOctNovDec
Davos13315096777168
Tusayan495334331820
Difference-84-96-62-44-53-48
Cloud cover (%) Davos runs higher most of the year
JanFebMarAprMayJunJulAugSepOctNovDec
Davos687072757569626163657070
Tusayan484946413727504632323748
Difference-19-21-27-34-38-42-12-15-31-34-34-22
Jan – JunJanFebMarAprMayJun
Davos687072757569
Tusayan484946413727
Difference-19-21-27-34-38-42
Jul – DecJulAugSepOctNovDec
Davos626163657070
Tusayan504632323748
Difference-12-15-31-34-34-22
Relative humidity (%) Davos runs higher most of the year
JanFebMarAprMayJunJulAugSepOctNovDec
Davos878992858079798183838887
Tusayan615749413525374340425060
Difference-26-32-43-44-45-54-43-38-42-41-37-27
Jan – JunJanFebMarAprMayJun
Davos878992858079
Tusayan615749413525
Difference-26-32-43-44-45-54
Jul – DecJulAugSepOctNovDec
Davos798183838887
Tusayan374340425060
Difference-43-38-42-41-37-27

How both climates are changing

Both cities are warming. Each city has its own warming trend; see its trends page for the year-by-year detail. Davos trends → · Tusayan trends →

Methodology & sources

Davos

Temperature & precipitation — the official 1991–2020 climate normals from a national meteorological service, measured at Davos, about 1 km from the city centre.

Cloud, humidity, wind & sunshine — modelled estimates from NASA POWER, NASA's satellite-and-reanalysis climatology. This is the standard global source for atmospheric variables, which are not measured at most weather stations.

Tusayan

Temperature & precipitation — 1991–2020 normals computed from 24 years of daily observations at Grand Canyon NP AP, a weather station, about 4 km from the city centre. The underlying daily records come from NOAA's global station network.

Cloud, humidity, wind & sunshine — modelled estimates from NASA POWER, NASA's satellite-and-reanalysis climatology. This is the standard global source for atmospheric variables, which are not measured at most weather stations.

How we build these numbers →