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The Selection of Parameters in Debris Flow Modeling

The Selection of Parameters in Debris Flow Modeling
Author:
Publisher:
Total Pages: 19
Release: 2019
Genre: Coarse woody debris
ISBN:

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Many studies have examined runout behavior of debris flows on various slopes and in different environments, but few have explicitly modeled their coarse woody debris component. Simulating a coarse-grained debris flow snout including coarse woody debris can be achieved using discrete element modeling. Before modeling the entire system, each parameter that influences the model must be determined and analyzed. Using 5 m resolution IfSAR data from Sitka, Alaska as the control topography, I conducted a sensitivity analysis of the behavior of a single particle as it travels downslope. Parameters of relevance are normal and tangential contact stiffness, viscous damping coefficient, and friction coefficient. Each parameter influences the amount of time that the particle spends in the air (i.e., making no contact with the topography), with stiffness and damping parameter being the most influential parameters on time spent in the air. For future work, using parameter values of 9.5e8 N/m for normal contact stiffness, 4.8e11 N/m for shear contact stiffness, a viscous damping coefficient of 0.8, and a friction coefficient of 0.6 to simulate boulders with a density of 2600 kg/m3 and radius of 5.0 meters should be optimal for simulating debris flow dynamics of the coarse-grained snout. Finally, with appropriately behaving sediment, coarse woody debris may be included in the model and the system can be observed.


Debris Flow

Debris Flow
Author: G. Lorenzini
Publisher: WIT Press
Total Pages: 221
Release: 2004-02-05
Genre: Science
ISBN: 1853128023

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Debris flows are among the most frequent and destructive of all geomorphic processes, mainly affecting mountainous areas in a range of morphoclimatic environments, and the damage they cause is often devastating. Increased anthropisation calls for improvements in the criteria used to identify debris-flow risk areas and the prevention measures adopted. One of the main difficulties encountered by the approaches illustrated in previous literature is linked to their possible validation either in the field or in a laboratory environment. The choice of a rheological model is extremely important. This book provides methodological details, which can be applied to investigations on debris-flow mechanics, capable of providing an accurate representation of the phenomenology.


Landslide Science and Practice

Landslide Science and Practice
Author: Claudio Margottini
Publisher: Springer Science & Business Media
Total Pages: 423
Release: 2013-08-13
Genre: Nature
ISBN: 3642313108

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This book contains peer-reviewed papers from the Second World Landslide Forum, organised by the International Consortium on Landslides (ICL), that took place in September 2011. The entire material from the conference has been split into seven volumes, this one is the seventh: 1. Landslide Inventory and Susceptibility and Hazard Zoning, 2. Early Warning, Instrumentation and Monitoring, 3. Spatial Analysis and Modelling, 4. Global Environmental Change, 5. Complex Environment, 6. Risk Assessment, Management and Mitigation, 7. Social and Economic Impact and Policies.


Monitoring, Simulation, Prevention and Remediation of Dense Debris Flows II

Monitoring, Simulation, Prevention and Remediation of Dense Debris Flows II
Author: D. De Wrachien
Publisher: WIT Press
Total Pages: 241
Release: 2008
Genre: Science
ISBN: 1845641183

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This book contains papers presented at Second International Conference on Debris Flow including all aspects of Debris Flow Monitoring, Modelling, Hazard Assessment, Mitigation Measures, Case Studies and Extreme Events, Erosion, Slope Instability and Sediment Transport, held in the New Forest, UK in 2008 and organised by the Wessex Institute of Technology, with the co-sponsorship of EurAgEng (European Society of Agricultural Engineers) and CIGR (International Commission of Agricultural Engineering). Due to the increased frequency with which debris and hyper-concentrated flows occur and the impact they have on both the environment and human life, in recent years these extreme events and related processes have attracted increasing attention from research groups, land planning and management professionals The objective of the Meeting was to provide a forum for engineers, scientists and managers from laboratories, industry, government and academia to interchange knowledge and expertise in the field of dense and hyper-concentrated flows. A full understanding of these phenomena leads to a new integrated risk management approach which provides measures for preventing a hazard turning into a natural disaster.


Debris-flow Hazards and Related Phenomena

Debris-flow Hazards and Related Phenomena
Author: Matthias Jakob
Publisher: Springer Science & Business Media
Total Pages: 795
Release: 2007-12-26
Genre: Science
ISBN: 3540271295

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With climate change and deforestation, debris flows and debris avalanches have become the most significant landslide hazards in many countries. In recent years there have been numerous debris flow avalanches in Southern Europe, South America and the Indian Subcontinent, resulting in major catastrophes and large loss of life. This is therefore a major high-profile problem for the world's governments and for the engineers and scientists concerned. Matthias Jakob and Oldrich Hungr are ideally suited to edit this book. Matthias Jakob has worked on debris flow for over a decade and has had numerous papers published on the topic, as well as working as a consultant on debris flow for municipal and provincial governments. Oldrich Hungr has worked on site investigations on debris flow, avalanches and rockfall, with emphasis on slope stability analysis and evaluation of risks to roads in built-up areas. He has also developed mathematical models for landslide dynamic analysis. They have invited world-renowned experts to joint them in this book.


Advances in Debris-flow Science and Practice

Advances in Debris-flow Science and Practice
Author: Matthias Jakob
Publisher: Springer Nature
Total Pages: 645
Release: 2024
Genre: Debris avalanches
ISBN: 3031486919

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Zusammenfassung: This book provides a summary of the state of the art of all facets of debris-flow science and practice and is designed to be a comprehensive technical reference for practitioners and a state-of-the-art research overview for scientists. It is richly illustrated with equations, graphs, photos, and tables. The book allows students, practitioners, and regulators to get a sense of the current state of the art in this science. Currently, there are 2 to 3 papers published every week on some aspects of debris-flow science. This creates a bewildering amount of literature that cannot be captured by a single individual. This book provides a comprehensive overview of all facets to date, including initial hazard assessments, detailed quantitative risk assessments, debris-flow warning systems, debris-flow mitigation structure designs, and failures of mitigation works, as well as new topics such as climate change effects on debris flows


Assessing Debris-flow Hazard Focusing on Statistical Morpho-fluvial Susceptibility Models and Magnitude-frequency Relationships. Application to the Central-eastern Pyrenees

Assessing Debris-flow Hazard Focusing on Statistical Morpho-fluvial Susceptibility Models and Magnitude-frequency Relationships. Application to the Central-eastern Pyrenees
Author: Guillaume G. Chevalier
Publisher:
Total Pages: 351
Release: 2014
Genre:
ISBN:

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Occurrence of debris flows has received little attention in the Pyrenees, probably due to the small risk faced by most of the debris-flow prone sites in this mountain range. Nevertheless, the event of Biescas, which occurred in august 1996 and causing 87 casualties, demonstrates the existence of high-risk spots in the region and justifies the elaboration of the debris-flow hazard assessment presented in this thesis. Five debris flows, which occurred in 2008, are selected; and site-specific descriptions and analysis, regarding geology and morphology, were performed. The results are compared with worldwide data and some conclusions on hazard assessment are presented. The preliminary analysis of some major Eastern Pyrenean debris flows represents the background for this thesis. The necessity of possessing an inventory of past occurrences is of crucial importance when assessing debris-flow hazard. Criteria of reconnaissance were thought to be visible from aerial viewing. 691 tracks through which debris flows are thought to have travelled have been revealed. Based on debris-flow inventories and using a geographical information system, the debris-flow hazard assessment presented in this thesis takes into account fluvio-morphologic parameters, gathered for every 1st-order catchment as well as every 2nd-order catchment. Mountainous headwaters are a common subject in geomorphological studies. Often investigated at local scale, the geomorphological context in which headwaters evolve has been poorly reported in the Central-Eastern Pyrenees or worldwide. A series of parameters obtained for Central-Eastern Pyrenean headwaters catchments consisting of 3005 1st- and 655 2nd-order catchments are presented. Acquired from a digital elevation model, these catchments have been digitalised, identified and attributed a value for each parameter. Previously reported parameters¿ ranges agree with those presented in this study. For the first time, the ranges of values give details about the Central-Eastern Pyrenees headwater catchments. Data mining techniques are used on the morphometric parameters, to calculate and test three different models. The first model is a logistic regression. The other two are classification trees, which are rather novel susceptibility models associated with debris flows. Results related to the training dataset show that the optimized model¿s performance lies within existing reported range although closer to the lowest end (near 70%). When the models are applied to the test set, the logistic regression seems to offer the best prediction, as training and test set results are very similar in terms of performance. Trees are better at extracting laws from a training set, but validation through a test set gives poorer results for a prediction at regional scale. The determination of magnitude of a historic event can be done by distinguishing its deposits. However this is not a trivial task in debris fans that accumulate deposits, corresponding to consecutive debris flows, especially if only a conventional geomorphological analysis is carried out. The event deposits can be mapped and, subsequently, trees damaged by the flows sampled for dating events. A magnitude-frequency relationship was prepared for El Rebaixader site, at local scale, and is compared to that of the Tordó creek. Moreover, a debris-flow inventory was created in the "Aigüestortes i Estany de Sant Maurici" National Park in the Central Pyrenees, Spain, and this regional magnitude-frequency relationship is compared to that of Rebaixader. Both curves include a strong rollover effect at about 2000 m2, and events larger than this magnitude can be represented by a power law, with an exponent between -1.5 and -1.9. This thesis is a first step toward the assessment of debris-flow hazard in the Central-Eastern Pyrenees. Although a lot of information is provided, more work is still to be done, in order to fully capture debris-flow importance in landscape evolution.


Avalanche Dynamics

Avalanche Dynamics
Author: S.P. Pudasaini
Publisher: Springer Science & Business Media
Total Pages: 614
Release: 2007-06-30
Genre: Science
ISBN: 3540326871

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Avalanches, mudflows and landslides are common and natural phenomena that occur in mountainous regions. With an emphasis on snow avalanches, this book provides a survey and discussion about the motion of avalanche-like flows from initiation to run out. An important aspect of this book is the formulation and investigation of a simple but appropriate continuum mechanical model for the realistic prediction of geophysical flows of granular material.


Landslides and Engineered Slopes. Experience, Theory and Practice

Landslides and Engineered Slopes. Experience, Theory and Practice
Author: Stefano Aversa
Publisher: CRC Press
Total Pages: 2224
Release: 2018-04-17
Genre: Science
ISBN: 1498788076

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Landslides and Engineered Slopes. Experience, Theory and Practice contains the invited lectures and all papers presented at the 12th International Symposium on Landslides, (Naples, Italy, 12-19 June 2016). The book aims to emphasize the relationship between landslides and other natural hazards. Hence, three of the main sessions focus on Volcanic-induced landslides, Earthquake-induced landslides and Weather-induced landslides respectively, while the fourth main session deals with Human-induced landslides. Some papers presented in a special session devoted to "Subareal and submarine landslide processes and hazard” and in a “Young Session” complete the books. Landslides and Engineered Slopes. Experience, Theory and Practice underlines the importance of the classic approach of modern science, which moves from experience to theory, as the basic instrument to study landslides. Experience is the key to understand the natural phenomena focusing on all the factors that play a major role. Theory is the instrument to manage the data provided by experience following a mathematical approach; this allows not only to clarify the nature and the deep causes of phenomena but mostly, to predict future and, if required, manage similar events. Practical benefits from the results of theory to protect people and man-made works. Landslides and Engineered Slopes. Experience, Theory and Practice is useful to scientists and practitioners working in the areas of rock and soil mechanics, geotechnical engineering, engineering geology and geology.


Monitoring, Simulation, Prevention and Remediation of Dense and Debris Flows IV

Monitoring, Simulation, Prevention and Remediation of Dense and Debris Flows IV
Author: C. A. Brebbia
Publisher: WIT Press
Total Pages: 265
Release: 2012
Genre: Science
ISBN: 1845645863

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The book contains papers presented at the fourth in a series of biennial International Conferences dealing with the Monitoring, Simulation, Prevention and Remediation of Dense and Debris Flow. The papers deal with erosion and slope instability, sediment transport, debris flow and debris flood data acquisition, debris flow phenomenology and laboratory tests, using the most advanced, state-of-the-art methodologies in monitoring, modelling, mechanics, hazard prediction and risk assessment of debris flow phenomena.