Soil-Water Conservation, Erosion, and Landslide

The predicted climate change is likely to cause extreme storm events and, subsequently, catastrophic disasters, including soil erosion, debris and landslide formation, loss of life, etc. In the decade from 1976, natural disasters affected less than a billion lives. These numbers have surged in the l...

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Year of Publication:2022
Language:English
Physical Description:1 electronic resource (392 p.)
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ctrlnum (CKB)5680000000037706
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spelling Chen, Su-Chin edt
Soil-Water Conservation, Erosion, and Landslide
Basel MDPI - Multidisciplinary Digital Publishing Institute 2022
1 electronic resource (392 p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
The predicted climate change is likely to cause extreme storm events and, subsequently, catastrophic disasters, including soil erosion, debris and landslide formation, loss of life, etc. In the decade from 1976, natural disasters affected less than a billion lives. These numbers have surged in the last decade alone. It is said that natural disasters have affected over 3 billion lives, killed on average 750,000 people, and cost more than 600 billion US dollars. Of these numbers, a greater proportion are due to sediment-related disasters, and these numbers are an indication of the amount of work still to be done in the field of soil erosion, conservation, and landslides. Scientists, engineers, and planners are all under immense pressure to develop and improve existing scientific tools to model erosion and landslides and, in the process, better conserve the soil. Therefore, the purpose of this Special Issue is to improve our knowledge on the processes and mechanics of soil erosion and landslides. In turn, these will be crucial in developing the right tools and models for soil and water conservation, disaster mitigation, and early warning systems.
English
Technology: general issues bicssc
Environmental science, engineering & technology bicssc
landslide
image classification
spectrum similarity analysis
extreme rainfall-induced landslide susceptibility model
landslide ratio-based logistic regression
landslide evolution
Typhoon Morakot
Taiwan
vegetation community
vegetation importance value
root system
soil erosion
grey correlation analysis
sediment yield
RUSLE
Lancang-Mekong River basin
rainfall threshold
landslide probability model
debris flow
Zechawa Gully
mitigation countermeasures
Jiuzhaigou Valley
water erosion
susceptibility
Gaussian process
climate change
radial basis function kernel
weighted subspace random forest
extreme events
extreme weather
naive Bayes
feature selection
machine learning
hydrologic model
simulated annealing
earth system science
PSED Model
loess
ICU
static liquefaction
mechanical behavior
pore structure
alpine swamp meadow
alpine meadow
degradation of riparian vegetation
root distribution
tensile strength
tensile crack
soil management
land cover changes
Syria
hillslopes
gully erosion
vegetation restoration
soil erodibility
land use
bridge pier
overfall
scour
landform change impact on pier
shallow water equations
wet-dry front
outburst flood
TVD-scheme
MUSCL-Hancock method
laboratory model test
extreme rainfall
rill erosion
shallow landslides
deep lip surface
safety factor
rainfall erosivity factor
USLE R
Deep Neural Network
tree ring
dendrogeomorphology
landslide activity
deciduous broadleaved tree
Shirakami Mountains
spatiotemporal cluster analysis
landslide hotspots
dam breach
seepage
overtopping
seismic signal
flume test
breach model
3-0365-3432-6
3-0365-3431-8
Chen, Su-Chin oth
language English
format eBook
author2 Chen, Su-Chin
author_facet Chen, Su-Chin
author2_variant s c c scc
author2_role Sonstige
title Soil-Water Conservation, Erosion, and Landslide
spellingShingle Soil-Water Conservation, Erosion, and Landslide
title_full Soil-Water Conservation, Erosion, and Landslide
title_fullStr Soil-Water Conservation, Erosion, and Landslide
title_full_unstemmed Soil-Water Conservation, Erosion, and Landslide
title_auth Soil-Water Conservation, Erosion, and Landslide
title_new Soil-Water Conservation, Erosion, and Landslide
title_sort soil-water conservation, erosion, and landslide
publisher MDPI - Multidisciplinary Digital Publishing Institute
publishDate 2022
physical 1 electronic resource (392 p.)
isbn 3-0365-3432-6
3-0365-3431-8
illustrated Not Illustrated
work_keys_str_mv AT chensuchin soilwaterconservationerosionandlandslide
status_str n
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carrierType_str_mv cr
is_hierarchy_title Soil-Water Conservation, Erosion, and Landslide
author2_original_writing_str_mv noLinkedField
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