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Abrupt changes across the Arctic permafrost region endanger northern development
by
Sushama, L
, Teufel, B
in
Bearing capacity
/ Climate adaptation
/ Climate change
/ Climate change adaptation
/ Climate models
/ Climatic analysis
/ Communities
/ Computer simulation
/ Convective precipitation
/ Ecosystems
/ Flammability
/ Lightning
/ Lightning frequencies
/ Permafrost
/ Rain
/ Rainfall
/ Regional climate models
/ Regional climates
/ Relative humidity
/ Retrofitting
/ Runoff
/ Soil
/ Soil bearing capacity
/ Soil degradation
/ Soil moisture
/ Soils
/ Surface runoff
/ Surface temperature
/ Wildfires
2019
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Abrupt changes across the Arctic permafrost region endanger northern development
by
Sushama, L
, Teufel, B
in
Bearing capacity
/ Climate adaptation
/ Climate change
/ Climate change adaptation
/ Climate models
/ Climatic analysis
/ Communities
/ Computer simulation
/ Convective precipitation
/ Ecosystems
/ Flammability
/ Lightning
/ Lightning frequencies
/ Permafrost
/ Rain
/ Rainfall
/ Regional climate models
/ Regional climates
/ Relative humidity
/ Retrofitting
/ Runoff
/ Soil
/ Soil bearing capacity
/ Soil degradation
/ Soil moisture
/ Soils
/ Surface runoff
/ Surface temperature
/ Wildfires
2019
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Abrupt changes across the Arctic permafrost region endanger northern development
by
Sushama, L
, Teufel, B
in
Bearing capacity
/ Climate adaptation
/ Climate change
/ Climate change adaptation
/ Climate models
/ Climatic analysis
/ Communities
/ Computer simulation
/ Convective precipitation
/ Ecosystems
/ Flammability
/ Lightning
/ Lightning frequencies
/ Permafrost
/ Rain
/ Rainfall
/ Regional climate models
/ Regional climates
/ Relative humidity
/ Retrofitting
/ Runoff
/ Soil
/ Soil bearing capacity
/ Soil degradation
/ Soil moisture
/ Soils
/ Surface runoff
/ Surface temperature
/ Wildfires
2019
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Abrupt changes across the Arctic permafrost region endanger northern development
Journal Article
Abrupt changes across the Arctic permafrost region endanger northern development
2019
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Overview
Extensive degradation of near-surface permafrost is projected during the twenty-first century1, which will have detrimental effects on northern communities, ecosystems and engineering systems. This degradation is predicted to have consequences for many processes, which previous modelling studies have suggested would occur gradually. Here we project that soil moisture will decrease abruptly (within a few months) in response to permafrost degradation over large areas of the present-day permafrost region, based on analysis of transient climate change simulations performed using a state-of-the-art regional climate model. This regime shift is reflected in abrupt increases in summer near-surface temperature and convective precipitation, and decreases in relative humidity and surface runoff. Of particular relevance to northern systems are changes to the bearing capacity of the soil due to increased drainage, increases in the potential for intense rainfall events and increases in lightning frequency. Combined with increases in forest fuel combustibility, these are projected to abruptly and substantially increase the severity of wildfires, which constitute one of the greatest risks to northern ecosystems, communities and infrastructures. The fact that these changes are projected to occur abruptly further increases the challenges associated with climate change adaptation and potential retrofitting measures.
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