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Karstovo-suffozionnye failures

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Presentation on theme: "Karstovo-suffozionnye failures"— Presentation transcript:

1 Karstovo-suffozionnye failures
The intensive pumping of groundwater and changes in the steady hydrodynamic conditions in areas affected by the ancient karst may intensify karst-suffusion processes leading to the formation of technogenic and natural funnels genesis. In some areas these processes are so active that they are dangerous not only for buildings and structures, but also for people.

2 Technogenic physical fields

3 Natural accident because of technogenic factors
Rupture of pipeline on the land

4 In May, 2008 a crack appeared on the pipeline Krasnoyarsk – Irkutsk.
Length of the crack was about 380 millimeters. The crack appeared because of abrasion of pipeline (it`s a technogenic factor)

5 In result: There was emission of oil on the surface of the Earth, so it`s the pollution of environment Fortunately, there were not any nearby lakes or rivers. So it`s only pollution of the nearby land (but rather big pollution)

6 Emission of oil was about 25 cubic meters
Emission of oil was about 25 cubic meters. And about 20 cubic meters were removed The crack was liquidated by specialists and the pipe line continued to work in its normal manner

7 In general: Accidents connected with pipelines have terrible damaging effects, for example: Pollution of fertile layer of soil Disturbance of usual life of different animals and fish Influence on all parts of the environment (including hydrosphere, atmosphere, lithosphere and others)

8 natural risk analysis The process of natural risk analysis is ultimately aimed at decrease in social, economic, and ecological damages from dangerous natural impacts. An ideal procedure of such an analysis is a permanent cyclic process including:

9 identification and prediction of natural hazard development in time and space
vulnerability assessment of damaged objects for all stated genetic types and kinds of natural hazards natural risk management assessment of partial and integral risk and losses from hazards

10 identification and prediction of natural hazards
1. What natural hazards, where and in what circumstances could damage the territory involved? 2. What is their intensity, frequency and impact duration? 3. Mapping of natural hazard forecast

11 Vulnerability assessment of industrial objects and population
1. How is or will the territory used (be used)? 2. What object are there on the territory or are supposed to be built? 3. What is the number, composition, distribution in objects and motion of the population? 4. What is vulnerability of some objects and population under the impact of hazards of definite type and intensity?

12 Natural risk assessment
1. What scenarios of development and consequences of natural hazards are possible? 2. What is the probability of these scenarios development? 3. What would be the losses in case of separate hazards? 4. What would be the summary losses?

13 Natural risk management
1. What measures are supposed to be taken to decrease the risks? 2. What levels of risk are taken as acceptable ones? 3. How will the information exchange and natural hazard, risk and conditions management be performed? 4. What is the attitude of population to the stated hazards, risks, precaution measures and control? 5. What additional measures are necessary to be taken to decrease and control the risks?


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