Norwegian Meteorological Institute / Arctic Data Centre
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Difference in the number of days with heavy precipitation given as daily precipitation exceeding the 99.7 percentile for the whole year (pr>99.7p) for year or season, between the reference period (1991-2020) and a future period, at a 1x1 km spatial resolution. The first time step represents the future period 2041-2070, and the second time step represents the future period 2071-2100.
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Change in the number of days with minimum temperature below zero (tasmin<=0 °C) between the reference period (1991-2020) and a future period, at a 1x1 km spatial resolution. The first time step represents the future period 2041-2070, and the second time step represents the future period 2071-2100.
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Change in the number of days with an average air temperature above 10 degrees (tas>10 °C) between the reference period (1991-2020) and a future period, at a 1x1 km spatial resolution. The first time step represents the future period 2041-2070, and the second time step represents the future period 2071-2100. Based on daily temperature normals.
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Percentage change in the 50-year return values of daily mean wind speed between the reference period (1991-2020) and a future period, at a 1x1 km spatial resolution. The first time step represents the future period 2041-2070, and the second time step represents the future period 2071-2100.
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Change in mean air temperature (ca. 2 meters above ground) between the reference period (1991-2020) and a future period for year or season, at a 1x1 km spatial resolution. The first time step represents the future period 2041-2070, and the second time step represents the future period 2071-2100.
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Change in the average of each day's highest air temperature (approx. 2 meters above the ground) for year or season, between the reference period (1991-2020) and a future period, at a 1x1 km spatial resolution. The first time step represents the future period 2041-2070, and the second time step represents the future period 2071-2100.
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Change in the sum of degree days above 5 degrees (tas>5ºC) between the reference period (1991-2020) and a future period, at a 1x1 km spatial resolution. Growing degree days, also called growing degree numbers, are the sum of the heat of the day and are a measure of how good the conditions are for plant growth. The heat sum for a day is defined as the number of degrees the daily average temperature is above a threshold value (which here is tas > 5 ºC). The first time step represents the future period 2041-2070, and the second time step represents the future period 2071-2100. Based on daily temperature normals.
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Change in the number of days with an average air temperature above 10 degrees (tas>10 °C) between the reference period (1991-2020) and a future period, at a 1x1 km spatial resolution. The first time step represents the future period 2041-2070, and the second time step represents the future period 2071-2100. Based on daily temperature normals.
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Change in the number of days with an average air temperature above or equal to 5 degrees (tas>=5 °C) between the reference period (1991-2020) and a future period, at a 1x1 km spatial resolution. The first time step represents the future period 2041-2070, and the second time step represents the future period 2071-2100. Based on daily temperature normals.
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Change in the number of days with precipitation exceeding the 95 percentile for the reference period and for the whole year (pr>95p) for year or season, between the reference period (1991-2020) and a future period, at a 1x1 km spatial resolution. The first time step represents the future period 2041-2070, and the second time step represents the future period 2071-2100.
Arctic SDI catalogue