New research finds that chemical weathering can weaken rock structures in river beds, making them more susceptible to erosion. The study reveals a positive feedback loop where high precipitation rates maintain high erosion rates despite continuously exposing 'fresh rock'.
Researchers in China have developed a portable laboratory and topography meter to measure the frequency of random landslides on the steep slopes of the Loess Plateau. The system allows for site-specific tests, such as simulated rainfall, and can digitally reconstruct the slope's behavior under erosion conditions.
Researchers found that meltwater streams on Greenland's ice sheet erode channels at a rate of up to 10 centimeters daily, similar to river erosion patterns. This discovery provides a new tool for studying melt rates and glacial response to climate change.
Researchers study coastal uplift and erosion in Northern California, discovering rivers cut down hillslopes, triggering landslides that balance uplift. Landslides also deliver resistant rocks to rivers, delaying erosion, with implications for landscape evolution and hazards like landslides.
A new study uses multistripe laser triangulation (MLT) scanner to predict water movement through soil, identifying preferential flow patterns. The technique helps scientists manage water resources better by predicting recharge rates, water runoff, and soil erosion.
Drumlin hills, shaped like upturned boats, are formed when sediment is streamlined 'islands' that are often bisected to form megaridges. The research suggests that drumlins and megaridges are part of a single family of landforms formed by erosion, with the data indicating they occur on hard rock.
Scientists have found that repeated storms in 2013/14 were the most energetic to hit western Europe in almost seven decades, leading to extensive beach and dune erosion. The research also shows a growing trend of stormy conditions with potential changes to beaches along the continent.
Scientists have discovered five new limestone sea stacks, or 'Drowned Apostles', 50m beneath the water's surface 6km off Victoria's southern coast. The unexpected find challenges normal erosion rates and provides insights into the region's reef ecosystems.
Heavy rainfall causes gullies to expand rapidly, with predicted climate change increasing rates up to three times faster. Researchers have developed a model to predict gully expansion and warn of devastating consequences for agriculture, water quality, and infrastructure.
A team of geologists at UC Santa Barbara is measuring coastal erosion and the effects of sea level rise and higher energy storms brought by El Niño this winter. The study aims to simulate future climate conditions and provide insights into California's coast a century from now.
Numerical simulations found that erosion played a key role in driving magma production and subsequent volcanic activity at the end of the last ice age. The study's results may have implications for understanding climate change and atmospheric CO2 levels, as similar mechanisms are expected to occur at shorter timescales.
A new study shows that Aboriginal burning practices in Australia had a minimal effect on the erosion of their inhabited landscapes. The researchers used beryllium-10 to model the impact of fire on landscape erosion and found that it was not intense enough to change the natural rate of erosion over thousands of years.
The 2011 flood caused by Tropical Storm Lee had a significant impact on the geomorphology of several large watersheds in north-central Pennsylvania. Channel widening and bank erosion were common, and huge volumes of gravel were transported during the flood. The study suggests that part of the reason for these changes was related to the...
Researchers found that waves driven by moderate storms cause the most loss in salt marshes, not severe events like hurricanes. This knowledge brings new tools for managing and restoring wetlands, enabling predictions of erosion based on wind and wave climates.
Researchers have discovered that climate-induced glaciation during ice ages can wear down mountains at a rate comparable to plate tectonics' ability to build them. Over a million-year period, erosion accelerated sharply due to global climate cooling, outpacing mountain building by 50-80 percent.
Researchers found that the region was a frost-covered grassy landscape with erosion rates up to 2.5 higher than today's, suggesting colder temperatures and faster erosion during the last ice age. The study provides new insights into how non-glaciated terrain across North America was formed.
A groundbreaking international study has revealed that mountain ranges actively evolve with the Earth's climate, responding to changes in temperature and ice cover. The research found that erosion accelerated sharply during global cooling periods, wearing down mountains faster than plate tectonics can build them.
Erosion caused by glaciation during ice ages can wear down mountains faster than plate tectonics can build them, according to a new study. The research, conducted over more than a decade, revealed that erosion rates accelerated sharply about 1 million years ago when global climate cooling triggered stronger and more persistent ice ages.
Researchers measure mountain range material flow and find glacial erosion accelerates faster than tectonics can rebuild mountains. Climate fluctuations play a pivotal role in shaping Earth's landforms, with erosion rates outpacing tectonic inputs by up to 80%.
San Francisco State University researchers developed a new method to analyze river rocks, revealing the impact of climate on sediment size. The study found that larger sediment sizes are produced on steeper, colder mountains, controlling canyon formation.
Researchers found that cold, steep slopes produce coarser sediment than gentle slopes, suggesting variations in climate, topography, and weathering rates shape mountain landscapes. This discovery quantifies the relationship between sediment size and erosion rates, providing new insights into the interplay of climate and tectonics.
The Martian atmosphere is losing gas to space via stripping by the solar wind, with erosion rates increasing significantly during solar storms. Researchers have determined that almost 75% of escaping ions come from Mars' tail region.
Research led by University of Cincinnati geologist Eva Enkelmann shows a strong relationship between global and local climate change and mountain range tectonic plate shifts. The study found that climate-driven erosion can influence tectonics, changing the motion of rocks in affected areas.
A new study warns that wildfires may double soil erosion in some western US states by 2050, degrading water quality and affecting aquatic life. The increase in wildfires due to climate change is projected to cause at least a 100% increase in erosion in a quarter of western watersheds.
A new study at MIT applies the fracture mechanics theory of local symmetry to predict river network evolution. The research found that rivers grow in a direction consistent with symmetry, driven by groundwater pressure and water table height.
A large study of UK professional footballers found that nearly 4 out of 10 have active tooth decay, while 1 in 20 has irreversible gum disease. This poor dental health is affecting performance and wellbeing among players, highlighting the need for regular screening and preventive approaches.
The study found that the glacial ice covering New England's highest peaks was unable to erode the rock below, preserving the landscape in a fossil state. The contrast between stable summit landscapes and adjacent valleys deeply eroded by glacial ice contributed to the development of northern Appalachian topography.
Data from New Horizons' flyby of Pluto suggest the dwarf planet has been frequently resurfaced by erosion or crustal recycling. The study also reveals large regions of differing brightness on Pluto's surface, carved out by structures similar to terrestrial glaciers.
Floodwaters in Vermont (2011) and Colorado (2013) highlighted the impact of downstream increases and decreases in stream power on erosion and sedimentation. The study successfully predicted river channel and floodplain responses in almost 90% of cases, revealing the potential role of downstream changes in stream power.
A new study has identified a law for glacial erosion that captures variability in different climate zones. The results show that fast glaciers are more effective landscape gougers than slow-moving ones, explaining lower long-term erosion rates in Polar Regions.
New data from Curiosity rover finds ancient lakes in Gale crater were stable for 100-10,000 years, providing insights into Mars' past water patterns and climate. The study suggests that the lakes could have supported life for extended periods, raising hopes for finding signs of life on the Red Planet.
Scientists discovered that warmer glaciers in Patagonia erode 100-1,000 times faster than those in Antarctica, shedding sediment into oceans and impacting freshwater access. The study highlights the complex effects of climate change on polar regions.
A multi-agency study found that severe El Niño and La Niña events will cause an increase in storm events leading to extreme coastal flooding and erosion across the Pacific. The research analyzed data from 48 beaches across three continents, suggesting the predicted increase will exacerbate coastal erosion irrespective of sea level rise.
A multi-agency study found that severe El Niño and La Niña events will cause an increase in storm events leading to extreme coastal flooding and erosion. The research analyzed coastal data from across the Pacific Ocean basin and determined that all Pacific regions were affected during either an El Niño or La Niña year.
A recent study uses color fingerprinting to identify the origin of sediments in the South Tobacco Creek watershed. The technique reveals that nature is more often responsible for sedimentation than previously thought, while human activities have a significant impact on hydrology and erosion.
The EU loses approximately 970 million tonnes of soil annually due to water erosion, equivalent to a one-metre-depth loss from Berlin-sized area. Soil erosion by water accounts for the greatest loss in Europe, with agricultural lands accounting for 68.3% of total losses.
Hurricane Jimena is classified as a category 4 storm with maximum sustained winds near 130 mph. The Global Precipitation Measurement satellite detected a double eye-wall structure with evidence of erosion, indicating decay and weakening of the storm's inner eyewall.
Researchers found that wind blew dust from the Mu Us Desert into the Loess Plateau, creating a massive accumulation of consolidated dust. The plateau is not static but slowly moving downwind due to wind erosion, and linear ridges on its top are also sculpted by the wind.
A historic storm triggered widespread flooding in Colorado's Front Range, causing massive landslides and rapid debris flows that transported hundreds of years' worth of accumulated sediment. Researchers used high-resolution topographic maps to measure the effects of extreme weather on erosion rates.
A Dartmouth study reveals that strong winds blowing off the Greenland Ice Sheet are eroding soil and vegetation in the surrounding tundra, making it less productive for grazing animals. The study found that wind-driven soil erosion is more widespread near the ice sheet but restricted to steep south-facing slopes farther away.
Coral reefs are under pressure from climate change, which may reduce their ability to protect tropical islands against wave attack and erosion. The study suggests that coasts fronted by relatively narrow reefs with steep faces and deeper reef flats will experience the highest wave runup and greatest potential for island flooding.
Researchers found that strip-till farming increased soil organic matter content by 8.6% after five years compared to no-till methods. This resulted in reduced bulk density and penetration resistance, creating a more favorable environment for crop growth.
A new study published in Nature Geoscience suggests that Earth's first crust was torn from the planet and lost to space due to asteroid bombardment, leading to the evolution of its plate tectonics, magnetic field and climate. This phenomenon, known as impact erosion, helps explain why Earth is habitable while Venus is not.
A team of researchers led by UO doctoral student Kristin E. Sweeney conducted a series of experiments in small sandboxes to witness the formation of ridges and valleys in real-time. The study provides new insights into the competition between erosion driven by runoff and soil movement on hillsides, revealing how climate change may impa...
A new study finds that the lag time between rock uplift and river erosion in the Tibetan Plateau was just 2 million years or so, making them relatively synchronous events. The researchers used fission track dating to determine the timing of these events and shed light on the geological history of the region.
Researchers studied the western Grand Canyon and found that it must be younger than a fault slip that occurred 18 to 12 million years ago. The data also suggest that the notion of the canyon starting to erode about six million years ago is still the best scientific idea for its age.
A new study has found that coral reefs in Palau are showing few of the predicted responses to low pH caused by ocean acidification. Instead, these reefs exhibit increased bio-erosion, but also host more species and have greater coral cover than in other naturally low pH reef systems.
A new study in Geophysical Research Letters warns of increased coastal erosion and flooding risks in the Gulf of Mexico due to rising waves. Meanwhile, annual floods in the Grand Canyon are rebuilding sandbars, while scientists analyze historic rainfall data from Padua, Italy, revealing long-term oscillations and extreme weather patterns.
A new study reveals that soil erosion during rainy seasons contributes substantially to global carbon emissions. Organic carbon losses from soils account for approximately one-sixth of annual fossil fuel-induced carbon emissions, with the highest rates found in semi-arid soils.
New study reveals lag time between rock uplift and river erosion in the Tibetan Plateau was just 2 million years, making them relatively synchronous events. Scientists used fission track dating to measure temperature-sensitive events in rocks and found increased erosion rates fourfold to eightfold in the late Miocene.
A promising new solution for improving water quality is the Agricultural Conservation Planning Framework (ACPF), a systematic approach to identifying best options for reducing nutrient losses and erosion within a watershed. The framework provides an inventory of conservation possibilities, allowing farmers and stakeholders to choose th...
Researchers found that climate-driven erosion influences the age and abundance of exposed copper porphyry deposits globally. The study used data on the age and number of exposed deposits to compare with climate patterns, revealing a strong connection between erosion rates and deposit distribution.
The world's soil resources are under threat from erosion, nutrient exhaustion, urbanization, and climate change, which could lead to disruptions in food production and geopolitical conflicts. Experts call for better management of Earth's soils to address this issue.
Soil erosion and nutrient removal, exacerbated by climate change and farming practices, pose a significant risk to global food security. The authors propose recycling nutrients from waste treatment facilities and improving soil management to mitigate losses.
Large landslides in the Himalaya-Karakoram ranges predominantly occur in the lower portions of the landscape, whereas glaciers and rock glaciers occupy the higher elevations almost exclusively. The study also introduces a new method called excess topography (ZE) to identify potentially unstable rock-mass volumes.
A recent study by Kristin Morell and colleagues reveals the Himalayan Front's central seismic gap is overdue for a major earthquake. The researchers used geomorphic and erosion rate data to define the active detachment fault likely to host a large earthquake, pinpointing a distinctive physiographic transition in Uttarakhand, India.
Scientists found that sediment size in Himalayan river is larger during summer monsoon, revealing relationship between landslides and erosion. The study suggests that coarse material may be lost en route to the ocean, raising questions about sediment origins.
A LiDAR study documents the impact of a 2013 Colorado Front Range flood on the landscape, revealing unprecedented hillslope failures and landslides. The research highlights the role of rare events in shaping landscapes over time scales that greatly exceed historical records.
A new study by Duke University researchers suggests that ending federal beach nourishment subsidies could lead to a rapid and dramatic adjustment in coastal property values. Values could erode by up to 17 percent in towns with high property values and almost 34 percent in towns with low property values.
A team of researchers found that the success of marine diatoms over the last 40 million years is linked to increased continental erosion. Diatoms consume massive amounts of carbon from oceans daily, producing organic matter that helps reduce atmospheric carbon dioxide levels.