Organising Committee а
|
7 |
|
|
|
Organisers and sponsors of
the conference а
|
11 |
|
|
|
а а
|
а |
|
|
|
Part 1. Key problems of debris
flow science and practiceа
(keynote presentations)
а
|
13 |
|
|
|
Yu.B. Vinogradovа |
15 |
|
|
|
Debris flows and similar
phenomena: main fundamental and applied problems
of the first quarter of the 21st century а
|
а |
|
|
|
K-F. Liu, Y.-C. Hsu |
19 |
|
|
|
Study on the sensitivity of
parameters relating to debris flow spread а
|
а |
|
|
|
F. Wei, K. Hu , Y. Zhang, S.
Jia |
23 |
|
|
|
Numerical simulation of
debris flow movement and its application in
debris flow risk zoning а
|
а |
|
|
|
J. Hubl, J. Suda |
27 |
|
|
|
Debris flow mitigation
measures in Austria а
|
а |
|
|
|
а а
|
а |
|
|
|
Part 2. Debris flow disasters
а
|
31 |
|
|
|
A.M. Aleynikova |
33 |
|
|
|
Periglacial landscapes of
the Mt. Elbrus region as a zone of catastrophic
debris flow formation а
|
а |
|
|
|
P. Valderrama, L. Fidel, B.
Zavala, L. Medina |
37 |
|
|
|
Dynamic of the 17th
January 1945 debris flow in Chavin de Huantar,
Ancash, Peru а
|
а |
|
|
|
V.A. Droznin, V.N. Dvigalo,
Y.D. Muravyev |
41 |
|
|
|
The landslide of 3 June
2007 in the Valley of Geysers on Kamchatka
Peninsula а
|
а |
|
|
|
N.A. Kazakov, Y.V.
Gensiorovskiy |
45 |
|
|
|
The debris flows of
catastrophic volume in low mountains of Sakhalin
Island а
|
а |
|
|
|
A.A. Lukashov |
49 |
|
|
|
Phenomenon of debris flows
of erosional-tectonic genesis in the Baikal Rift
Zone а
|
а |
|
|
|
Xie H., Li Y. |
53 |
|
|
|
Landslide-induced debris
flow disaster in Biaoshuiyan Gully, Sichuan, China а
|
а |
|
|
|
а
а
|
а |
|
|
|
Part 3. Assessment of debris flow
risk
а
|
а |
|
|
|
A.Y. Barinov, E.V. Ash |
59 |
|
|
|
Geomorphological analysis
of debris flow hazard due to torrential rainfalls:
case study of coastal morphosystems at the Black
Sea coast а
|
а |
|
|
|
P.-S. Lin, J.-H. Lee |
62 |
|
|
|
Risk assessment of
potential debris flows in the watershed of Chen-Yu-Lan
River |
а |
|
|
|
D. Ma, H. Huang, H. Xie, D.
Zhong |
66 |
|
|
|
Some characteristics of
debris flow hazards in mountain urban areas, China а
|
а |
|
|
|
T.Ye. Mirtskhulava а |
70 |
|
|
|
Forecast of vulnerability
of objects to debris flow impact and perspective
directions of research а
|
а |
|
|
|
E.A. Talanov |
74 |
|
|
|
Debris flow risk:
theoretical basis and practical significance а
|
а |
|
|
|
R.O. Ter-Minasyan |
78 |
|
|
|
Forecasting of risk of
debris flow watercourses in Armenia а
|
а |
|
|
|
а
а
|
а |
|
|
|
Part 4. Debris flow
activity and climate change
а
|
81 |
|
|
|
M. Bollschweiler, M.
Stoffel, D.M. Schneuwly |
83 |
|
|
|
Assessing the last moment
of debris-flow activity on a cone using tree-ring
data а
|
а |
|
|
|
Y.Y. Wang, B. Tian, C.-D.
Jan, Y. Hong, R.Y. Zou |
87 |
|
|
|
Analysis of relations
between the rainfall trends and eroded sediment
transport of debris flows in the 1990s: case
study of the Xiaojiang River basin in the upper
reach of the Yangtze River а
|
а |
|
|
|
B. Tian, Y.Y. Wang, C.-D.
Jan, Y. Hong, R.Y. Zou |
91 |
|
|
|
Impacts of rainfall on
eroded sediment transport of debris flows: case
study of the Xiaojiang River basin in the upper
reach of the Yangtze River а
|
а |
|
|
|
Y.V. Gensiorovskiy, N.A.
Kazakov, S.V. Rybalchenko |
95 |
|
|
|
Hydrometeorological
conditions of the periods of mass debris-flow
occurrence on Sakhalin Island а
|
а |
|
|
|
P.G. Davtyan, R.Kh.
Gaginyan |
99 |
|
|
|
Connection of debris flow
forming processes with droughts (case study of
the Republic of Armenia) а
|
а |
|
|
|
M.D. Dokukin, A.M. Bagov, E.A.
Savernyuk, S.V. Tolstel |
102 |
|
|
|
About the problem of the
estimation of mudflow hazards during an epoch of
glacial recession (case study of the mudflow
basin of the left inflow of the Haznidon River in
Kabardino-Balkaria) а
|
а |
|
|
|
E.V. Zaporozhchenko |
106 |
|
|
|
Mountain glaciation retreat
in the Caucasus region of Russia as a factor of
increase of the glacial debris flow activity а
|
а |
|
|
|
E.V. Zaporozhchenko, N.S.
Kamenev, K.V. Korikov, N.Yu. Krasnyh, A.S.
Nikulin |
110 |
|
|
|
Debris flow situation in
the Bulungu-Su River basin as a reflection of
hazards and threats, caused by the climatic
changes in the high mountains а
|
а |
|
|
|
N.S. Kamenev, I.V.
Galushkin, R.A. Tavasiyev |
114 |
|
|
|
Activisation of debris flow
origination sites of the Northern Caucasus in
connection with climate change: case study of the
Tsey Gorge (Republic of North Ossetia - Alania,
Russia) а
|
а |
|
|
|
N.K. Kononova, I.V. Malneva,
I.B. Seynova |
117 |
|
|
|
Role of atmospheric
processes in formation of debris flows in various
areas of Russia а
|
а |
|
|
|
I.B. Seynova |
121 |
|
|
|
Climatic and glaciological
conditions of debris flow formation in the
Central Caucasus at a stage of regress of the
Little Ice Age а
|
а |
|
|
|
M. Stoffel |
125 |
|
|
|
On the evolution of debris-flow
occurrence in space and time Ц results from
tree-ring analyses |
а |
|
|
|
L.K. Chen, F.C. Yu, S.C.
Lin, C.H. Chang, Y.C. Lin, Y.T. Wang |
129 |
|
|
|
Characterization of typhoon
rainfall and slopeland disaster in Taiwan а
|
а |
|
|
|
а
а
|
а |
|
|
|
Part 5. Debris flow
formation in different geographic environments
а
|
133 |
|
|
|
I.V. Bondyrev |
135 |
|
|
|
Analysis of the cryogenic
formations as an instrument of mudflow
forecasting and risk mitigation in the Caucasus а
|
а |
|
|
|
I.V. Bondyrev, E.D.
Tsereteli, D.A. Kharitonashvili, T.T. Chaladze |
139 |
|
|
|
Debris flow processes in
the northern part of Shida Kartli region (Georgia) а
|
а |
|
|
|
V.R. Boynagryan |
143 |
|
|
|
Debris flows in Armenia а
|
а |
|
|
|
Yu.V. Efremov, A.S.
Chernyavskiy, A.V. Nicolaichuk, D,Yu. Schulyakov |
147 |
|
|
|
Debris flows in the Western
and North-Western Caucasus а
|
а |
|
|
|
Yu.V. Efremov, A.V.
Nicolaichuk, A.S. Chernyavskiy, D.Yu. Schulyakov |
151 |
|
|
|
Landslides and rock
avalanches as triggers of debris flows in the
North-Western Caucasus а
|
а |
|
|
|
B.G. Gaydarov |
155 |
|
|
|
Formation and distribution
of debris flows on the territory of Dagestan а
|
а |
|
|
|
E.N. Kazakova, D.A. Bobrova
а |
158 |
|
|
|
Role of debris-flow
processes in the formation of beaches on south-east
coast of Sakhalin Island а
|
а |
|
|
|
V.K. Laperdin |
162 |
|
|
|
Factors of debris flow
formation in the south of East Siberia а
|
а |
|
|
|
V.A. Lobkina, M.V. Mikhalev |
166 |
|
|
|
Formation and development
of natural-anthropogenic debris flows and
protection against them (case study of
Makarovskiy district, Sakhalin) а
|
а |
|
|
|
I.M. Mamuchiev, O.L.
Antonenko, R.A. Lyakhevich, K.A. Gegiev |
170 |
|
|
|
Debris flows in the
Republic of Dagestan а
|
а |
|
|
|
A.N. Oliferov |
174 |
|
|
|
Features of debris flow
formation in Crimea and the Carpathians а
|
а |
|
|
|
M.N. Petrushina, E.G.
Suslova |
177 |
|
|
|
Landscape dynamics in the
areas of debris flow impact in the Northern
Caucasus а
|
а |
|
|
|
V.F. Perov |
181 |
|
|
|
Debris flow corrasion а
|
а |
|
|
|
E.D. Salukvadze |
185 |
|
|
|
Debris flow processes in
the city of Tbilisi and its suburbs а
|
а |
|
|
|
R.S. Chalov, V.V. Surkov, N.N.
Vinogradova, I.V. Krylenko |
189 |
|
|
|
Influence of debris flows
on the formation of a mountain river channel and
floodplain (case study of the Baksan River) а
|
а |
|
|
|
T.C. Chen, C.Y. Shu |
192 |
|
|
|
Topographic factors of
debris flow stream induced by rainfall in Taiwan а
|
а |
|
|
|
а
а
а
а
|
а |
|
|
|
а
Part 6. Methods for study of
debris flows
а
|
а 197
|
|
|
|
A.H. Adzhiev, N.V.
Kondratjeva, O.A. Kumukova, A.A. Gekiev |
199 |
|
|
|
Interrelation between
debris flow activity and morphometric parameters
of a basin а
|
а |
|
|
|
A.Y. Barinov |
202 |
|
|
|
Application of high-resolution
remote sensing data for integrated study of
debris flows а
|
а |
|
|
|
S. Zhang, N. Yu |
206 |
|
|
|
Infrasonic behaviour of
debris flow and infrasonic warning device а
|
а |
|
|
|
H.M. Mashukov, V.H. Vorokov,
M.M. Kambiev, A.V. Malbakhov, P.A. Yuritsin |
210 |
|
|
|
Method and arrangement for
hazard identification of high-flood and torrent
flows on rivers а
|
а |
|
|
|
M.N. Petrushina, A.M.
Aleynikova, A.A. Aleynikov, ╬.I. Budarina |
214 |
|
|
|
Assessment of debris flow
formation factors in the Adylsu valley (Central
Caucasus) а
|
а |
|
|
|
T.L. Smoktunovich |
218 |
|
|
|
Underestimation of the
importance of debris-flow topics in Russian
school courses in the Geography а
|
а |
|
|
|
S.-Y. Chang, C.-P. Lin |
222 |
|
|
|
Debris flow characteristic
interpretation using image processing techniques а
|
а |
|
|
|
а
а
|
а |
|
|
|
Part 7. Debris flow modelling and
mechanics
а
|
227 |
|
|
|
T.A. Vinogradova, Yu.B.
Vinogradov |
229 |
|
|
|
Storm runoff in the
catchment areas of debris flow origination sites:
deterministic and deterministic-stochastic
modelling а
|
а |
|
|
|
C. Graf, B.W. McArdell |
233 |
|
|
|
Simulation of debris flow
runout before and after construction of
mitigation measures: an example from the Swiss
Alps а
|
а |
|
|
|
C.-D. Jan, J.S. Wang |
237 |
|
|
|
Empirical equations of
rheological parameters for mixtures of gravels
and mud slurries а
|
а |
|
|
|
R. Genevois, P.R. Tecca |
241 |
|
|
|
Debris flow hazard
assessment in Dolomites: a simulation model
approach а
|
а |
|
|
|
O.G. Natishvili, V.I.
Tevzadze а |
245 |
|
|
|
Hydraulic equations for
cohesive debris flows and their particular
solutions а
|
а |
|
|
|
O.G. Natishvili, V.I.
Tevzadze а |
249 |
|
|
|
Calculation of pressure,
non-pressure and wave motions caused by the
influence of debris flow on debris escapes а
|
а |
|
|
|
H.-T. Chou, Y.-Y. Chang а |
253 |
|
|
|
Experimental study of
landslide-induced debris flows and the
mobilization process а
|
а |
|
|
|
B. Yu, S. Wang |
257 |
|
|
|
Determination of the
density of a debris flow by its deposition а
|
а |
|
|
|
а
а
|
а |
|
|
|
Part 8. Debris flow forecast
а
|
261 |
|
|
|
A.H. Adzhiev, N.V.
Kondratjeva, O.A. Kumukova, I.B. Seynova, E.M.
Bogachenko |
263 |
|
|
|
Background forecasting for
debris flow hazard in the Central Caucasus:
method and application results |
а |
|
|
|
B.O. Baymagambetov, R.K.
Yafyazova |
267 |
|
|
|
The concept of super short-term
forecast of debris flows а
|
а |
|
|
|
G.V. Gavardashvili |
270 |
|
|
|
Forecast of erosion
processes in the Duruji River basin а
|
а |
|
|
|
G.V. Gavardashvili |
274 |
|
|
|
The specification of
maximum discharge of debris flow on the Duruji
River а
|
а |
|
|
|
I.V. Malneva |
278 |
|
|
|
Debris flow prediction
system at different temporal and spatial scales а
|
а |
|
|
|
J. Xu, C. Yang, G. Zhang |
282 |
|
|
|
A study on the integrated
regional meteorological forecast and warning
model for geological hazards а
|
а |
|
|
|
C. Scheidl, D. Rickenmann |
286 |
|
|
|
About the mobility of
debris flows using empirical runout prediction
methods а
|
а |
|
|
|
а
а
|
а |
|
|
|
Part 9. Debris flow hazard of
glacial lakes
а
|
291 |
|
|
|
A.M. Bagov, M.D. Dokukin, E.A.
Savernyuk, S.V. Tolstel |
293 |
|
|
|
Dynamics of glaciers and
proglacial lakes in the headwaters of Birdzhalysu
River and a possible design for protection
against debris flows in the Dzhilysu resort (north-east
flank of Mt. Elbrus) а
|
а |
|
|
|
Yu.A. Gnezdilov, N.Yu.
Krasnykh а |
297 |
|
|
|
Assessment of a
hypothetical outburst of Lake Bashkara а
|
а |
|
|
|
V.G. Konovalov а |
301 |
|
|
|
Remote sensing monitoring
of the outburst-hazardous high mountain lakes in
Pamir а
|
а |
|
|
|
I.N. Krylenko, V.V. Surkov,
A.M. Tarbeeva, I.V. Krylenko |
305 |
|
|
|
Morphology of lake Syltran
(Baksan River basin) and its potential outburst
danger а
|
а |
|
|
|
D.A. Petrakov |
309 |
|
|
|
Debris flow hazard of
glacial lakes and assessment of their outburst
risk а
|
а |
|
|
|
A.N. Rudoy а |
313 |
|
|
|
Ice-dammed lakes and
glacial debris super-flows in the Altay and the
Sayan Mountains in late Wurm: a review а
|
а |
|
|
|
Z. Cheng, C. Dang, J. Liu |
317 |
|
|
|
Debris flows induced by
glacier lake bursts in southeastern Tibet, China а
|
а |
|
|
|
а
а
|
а |
|
|
|
Part 10. Ice-water-rock flows
а
|
321 |
|
|
|
H.M. Mashukov, V.H. Vorokov,
A.A. Bannikov, M.M. Kambiev, A.V. Malbakhov ╒.╠.
|
323 |
|
|
|
Results of annual
inspections of the most dangerous sites along the
path of the ice-rock mass after the Kolka Glacier
collapse in 2002 а
|
а |
|
|
|
V.L. Poznanin |
327 |
|
|
|
Failure of the Kolka
Glacier and gliding mechanism of the formation of
the ice-water-rock debris flow in 2002 а
|
а |
|
|
|
V.L. Poznanin а |
330 |
|
|
|
Inversion-functional
structure and the cumulative mechanism of the
catastrophic self-reproduction in the 2002
Genaldon debris flow а
|
а |
|
|
|
а
|
а |
|
|
|
Part 11. Debris flow mitigation:
design and application
а
|
333 |
|
|
|
C. Graf, B. Haller, R. Luis |
335 |
|
|
|
ROCCOо barrier systems for
debris flows control а
|
а |
|
|
|
C. Graf, B. Haller, R. Luis |
339 |
|
|
|
Field observations in
barrier systems against debris flows а
|
а |
|
|
|
R.V. Diakonidze,а N.A. Labartkava,а
I.T. Pirtskhalaishvili |
343 |
|
|
|
Debris flows and protection
of quality of water resources (case study of
Georgia) а
|
а |
|
|
|
A.S. Yeszhanova |
347 |
|
|
|
Assessment of debris flow
impact on environmental management in areas of
debris flow hazard in the Ile Alatau а
|
а |
|
|
|
D.V. Znamensky |
351 |
|
|
|
Debris flow control in
Brazilian tropical rain forest mountains а
|
а |
|
|
|
Stepanyan V.E., Boynagryan
V.R., Manukyan L.A., Gabrielyan V.V., Gyurgyan Y.G.,
Sngryan E.E. |
355 |
|
|
|
An integrated solution for
ecological and industrial protection of disused
tailings against debris flows in the Zangezur
region of the Syuniq marz area of Armenia а
|
а |
|
|
|
V.E. Stephanyan, V.R.
Bojnagryan, V.V. Gabrielyan, E.E. Sngryan |
359 |
|
|
|
Redevelopment of the anti
debris-flow engineering protection scheme for the
territory of Idjevan ╤ity and justification of
priority of construction of protection measures
on the basis of risk levels а
|
а |
|
|
|
G. Fiebiger |
363 |
|
|
|
The theory of the Chain of
Functions in debris flow control а
|
а |
|
|
|
G. Fiebiger |
367 |
|
|
|
Experiences with the Chain
of Functions in debris flow control а
|
а |
|
|
|
M.M. Khadzhiev |
371 |
|
|
|
Assessment of debris flow
hazard and protection measures for the federal
road Baksan-Azau and the gas pipeline from
Tegerek tala to Upper Baksan village а
|
а |
|
|
|
G.G. Chakhaia, L.N.
Tsulukidze, I.V. Khubulava, Kh.L. Kiknadze, F.N.
Lordkipanidze, M.R.аNavrozashviliа |
375 |
|
|
|
Research of
phytomeliorative actions to prevent soil erosion,
the provoking factor for the debris flow
phenomena а
|
а |
|
|
|
List of authors а
|
382 |
|
|
|
|
|
|
|
|
Table of
contents |
391 |
|
|
|