Landslides Management in Rural Roads of Pauri District (Uttarakhand): Challenges & Opportunities

Similar documents
Landslide Disasters in Uttarakhand: A Case of Landslide Susceptibility Zonation of Alaknanda Valley in Garhwal Himalaya

Geo-Environmental Study of Kaliasaur Landslide in District Rudraprayag of Garhwal Himalaya, Uttarakhand, India

3/8/17. #20 - Landslides: Mitigation and Case Histories. Questions for Thought. Questions for Thought

LandslideHazardZonationusingQuantitativeMethodsinGISPauriGarhwalDistrictUttarakhandIndia

Yoshinori KAWAMURA, Oriental Consultants Global Co., Ltd.

Need of Proper Development in Hilly Urban Areas to Avoid

Debris flow: categories, characteristics, hazard assessment, mitigation measures. Hariklia D. SKILODIMOU, George D. BATHRELLOS

Landslide Hazard Zonation Methods: A Critical Review

Mass Wasting. Revisit: Erosion, Transportation, and Deposition

INTERNATIONAL JOURNAL OF GEOMATICS AND GEOSCIENCES Volume 1, No 1, 2010

CHAPTER FIVE 5.0 STABILITY OF CUT SLOPES IN THE STUDY AREA. them limited by a thick canopy of vegetation and steep slope angles.

LANDSLIDE SUSCEPTIBILITY MAPPING USING INFO VALUE METHOD BASED ON GIS

International Journal of Modern Trends in Engineering and Research e-issn No.: , Date: April, 2016

Chapter 11 10/30/2013. Mass Wasting. Introduction. Factors That Influence Mass Wasting. Introduction. Factors That Influence Mass Wasting

Using Weather and Climate Information for Landslide Prevention and Mitigation

WATERCOURSE HARNESSING BANK EROSION AND CONSOLIDATION

INTRODUCTION. Climate

Practical reliability approach to urban slope stability

Landslide FE Stability Analysis

Preparing Landslide Inventory Maps using Virtual Globes

Mass Movements. Rock Weathering. Accumulation of Debris on Slopes. Landslides 12/8/2014

STUDY AND SUGGESTIVE MEASURES OF LANDSLIDES ON PUNE MUMBAI ROUTE

Chapter 2: Landslides and Debris Flows

Landslide Hazard Assessment Methodologies in Romania

BASIC DETAILS. Morphometric features for landslide zonation A case study for Ooty Mettupalayam highway

Geotechnical damage in rural areas caused by the 2015 Gorkha Nepal Earthquake

IDENTIFICATION OF LANDSLIDE-PRONE AREAS USING REMOTE SENSING TECHNIQUES

3D Slope Stability Analysis for Slope Failure Probability in Sangun mountainous, Fukuoka Prefecture, Japan

CHAPTER GEOLOGICALLY HAZARDOUS AREAS Applicability Regulations.

International Symposium on Natural Disaster Mitigation. Local vulnerability assessment of landslides and debris flows

LANDSLIDE HAZARD ZONATION MAPPING IN GOPESHWAR, PIPALKOTI AND NANDPRAYAG AREAS OF UTTARAKHAND

PEACE RIVER EAST HILL - HWY 2:60 (PH2) SELECT PHOTOGRAPHS August 22, 2007 File: Photo E003. Station May 2007

Monitoring and Characterization of the Meadowview Lane Landslide: Boyd County, KY

Geology 101. Reading Guides for Chapters 5 and 14 Weathering: the Breakdown of Rocks (p. 142)

RISK ASSESSMENT OF HYDROCARBON PIPELINES FACING NATURAL HAZARDS

Assessing Spatial Vulnerability for Landslide Threat in Hilly Areas of The Nilgiris, Tamil Nadu, India

Important Concepts. Earthquake hazards can be categorized as:

A new design approach for highway rock slope cuts based on ecological environment protection

Disaster RISK Management : Bhutanese Scenario

International Journal of IT, Engineering and Applied Sciences Research (IJIEASR) ISSN: Volume 2, No. 11, November 2013

Investigation, assessment and warning zonation for landslides in the mountainous regions of Vietnam

December 11, 2006 File:

Landslide Hazard Mapping of Nagadhunga-Naubise Section of the Tribhuvan Highway in Nepal with GIS Application

Natural Terrain Risk Management in Hong Kong


Mass Wasting: The Work of Gravity

Stability Analysis on Clay Slopes Impacting US Highway 45 near Military Hill, Ontonagon, MI

The Safeland Project General Overview and Monitoring Technology Development

Science EOG Review: Landforms

August 10, 2007 File:

Mass Wasting. Requirements for Mass Wasting. Slope Stability. Geol 104: mass wasting

GEOGRAPHY (029) CLASS XI ( ) Part A: Fundamentals of Physical Geography. Map and Diagram 5. Part B India-Physical Environment 35 Marks

Remote Sensing and GIS Applications for Hilly Watersheds SUBASHISA DUTTA DEPARTMENT OF CIVIL ENGINEERING IIT GUWAHATI

Landslide Mapping and Hazard Analysis for a Natural Gas Pipeline Project

DISASTER HAZARDS IN BHUTAN By Tshewang Rinzin January Reducing Disaster Risks for a Safe and Happy Bhutan

Team 09 Nguyen chau lan (Vietnam) Dilum Wannigasekara (Sri lanka)

Geotechnical Risks and Management Systems: An FHWA Perspective

GEOTECHNICAL ENGINEERING INVESTIGATION HANDBOOK Second Edition

Oktoberforum 2005: Case Histories in Engineering Geology and Geotechnical Engineering,, 4 th Oct. 2005, Petaling Jaya

Engineering Geological Evaluation of Siyan Gad Small Hydroelectric Project, Uttarakashi District, Uttarakhand

IDENTIFICATION OF LANDSLIDE-PRONE AREAS USING REMOTE SENSING TECHNIQUES IN SILLAHALLAWATERSHED, NILGIRIS DISTRICT,TAMILNADU,INDIA

Effects of climate change on landslide frequencies in landslide prone districts in Sri Lanka; Overview

GG101 Lecture 22: Mass Wasting. Soil, debris, sediment, and broken rock is called regolith.

A Homeowner s Guide to Landslides for Washington and Oregon

Section 5.1 Weathering This section describes different types of weathering in rocks.

Problems with Landslide Stabilization of Dukat in the Road Vlora Saranda

3/22/2014. Earth s subsystems or cycles. Outline for next couple weeks. Weathering (breakdown of rock) Erosion

AN APPROACH TO THE CLASSIFICATION OF SLOPE MOVEMENTS

Roadmap to Stability

CSIR-Central Building Research Institute, Roorkee (UK)

LANDSLIDE SUSCEPTIBILITY MAPPING USING WEIGHTS OF EVIDENCE METHOD IN COONOOR WATERSHED, NILIGIRIS DISTRICT, TAMILNADU, INDIA

Unsafe Ground: Landslides and Other Mass Movements

CHRACTERISTICS OF LANDSLIDE OCCURRED IN LOPARE, BOSNIA AND HERZEGOVINA

ENGINEERING HYDROLOGY

Landslide Hazard Investigation in Papua New Guinea-A Remote Sensing & GIS Approach

Geotechnical issues in seismic assessments: When do I need a geotechnical specialist?

Geotechnical Risks and Slope Management Systems: An FHWA Perspective

Landslide Mitigation (BYUI)

Geospatial Approach for Delineation of Landslide Susceptible Areas in Karnaprayag, Chamoli district, Uttrakhand, India

How to manage risk through integrated geohazard assessment. Prof. John M. Reynolds Reynolds International Ltd, Mold, UK

CONTROLLING FACTORS BASIC ISSUES SAFETY IN OPENCAST MINING WITH SPECIAL REFERENCE TO SLOPE STABILITY

TABLE OF CONTENTS LIST OF TABLES. Page

LANDSLIDE HAZARD ZONATION IN AND AROUND KEDARNATH REGION AND ITS VALIDATION BASED ON REAL TIME KEDARNATH DISASTER USING GEOSPATIAL TECHNIQUES

Report. Developing a course component on disaster management

FOREST RESEARCH INSTITUTE, DEHRADUN

August 31, 2006 Embankment Failure Debris Flow at the Cascades Development Haywood County, North Carolina. Introduction. Findings

Gully erosion and associated risks in the Tutova basin Moldavian Plateau

A Presentation By: Dr. G. M. Dar Centre for Disaster Management & Env. Studies, J&K IMPA, Srinagar

Community Erosion Assessment Napakiak, Alaska 15 January 2008

Virtual Reality Modeling of Landslide for Alerting in Chiang Rai Area Banphot Nobaew 1 and Worasak Reangsirarak 2

Lyme Regis. Environmental Improvements Phase 2. Securing the future of Lyme Regis

CHAPTER 3 LANDSLIDE HAZARD ZONATION

Which map shows the stream drainage pattern that most likely formed on the surface of this volcano? A) B)

Risk analyses and risk management slope instabilities in alpine environments

LANDSLIDE HAZARDS. presented during the. TRAINING-WORKSHOP ON DISASTER RISK MANAGEMENT Rakdell Inn Virac, Catanduanes 03 July 2008

Investigation of the 2013 Hadari Debris Flow in Korea Through Field Survey and Numerical Analysis

SESSION 6: FLUVIAL LANDFORMS

MANAGEMENT OF LARGE MUDSLIDES

UGRC 144 Science and Technology in Our Lives/Geohazards

What the Science Tells Us & How Practitioners Can Use the Science

Transcription:

Landslides Management in Rural Roads of Pauri District (Uttarakhand): Challenges & Opportunities Shakti Prakash 1 & V.V.S. Gulati 2 1 Corrosponding author, Environment Specialist, 2 Team Leader (Uttarakhand State Roads Improvement Project in Haridwar & Pauri Districts), URS-Scottwilson India Pvt.Ltd Email:envshaktiprakash@gmail.com, Abstract Landslides are one of major geohazards in mountainous regions, often leading to severe damage to life & property, state of Uttarakhand is not exception. Causes associated are both, natural as well as anthropogenic. Under normal climatic conditions, a majority of the valley slopes are in the state of geomorphic equilibrium. Rain normally triggers the landslide by raising the water table and water pressure, which ultimately leads to slope failure, often get accelerated due to ongoing road constructions activities. An effective management of aforementioned geohazaard along rural roads in Pauri district or elsewhere requires understanding of spatial & temporal aspects related with the hazard scenario across the road networks. Assessment, Quantification of landslides, Mapping,Hazard Zonation, Development of adequate institutional capacities along road networks are main challenges due to in-adequately documented inventories & mapping about the spatial probability of hazard (susceptibility), temporal probability, and magnitude-frequency analysis The project area consist of sub-projects i.e. total number of 18 roads for a total length of 286.20 Km. The proposed improvement roads falls in Pauri Garhwal, a district of Uttaranchal state. It encompasses an area of 5440 sq. km and situated between 29 45 to 30 15 Latitude and 78 24 to 79 23 E Longitude and at 1650 meters above the Mean Sea Level...The District is administratively divided into six tehsils, viz., Pauri, Lansdown,

Kotdwar, Thalisain, Dhumakot & Srinagar, and fifteen developmental blocks, of which eleven blocks are coming under the project area viz. Pauri, Pabo, Thalisain, Bironkhal, Dwarikhal, Dugadda, Jaihrikhal, Ekeshwer, Rikhnikhal, Nainidanda & Khirsu. Highly significant numbers of landslides, approximately 25 in each ten kilometers of each road have been observed.treatments of all such slides depends upon the severity which is determined on the basis of degree of slopes. Majority of these slides belong to severe to moderate categories. Slope geometry correction, providing protection to the toe of slope by retaining structures, management of the surface and sub-surface water including the development of pore pressures, nailing, bolting, anchoring, micro piling, application of geo-grids and geo-textiles and afforestation, constitute powerful elements of most geotechnical packages commonly used for improving the stability of problematic slopes and landslide sites in India Landslides investigation & management activities were carried out for seventeen roads of four contract packages, as outlined in the table 1, given below: Table 1: Roads of Sub-contract Packages in Pauri districts S No. Contract Package Roads Current Length Width of proposed road + shoulders+ Drain+ parapets Carriageway Formation 1. 16. Sungarkhal- Jwalapadevi Motor Road Santodhar- Pabao Motor Road 2. 17. Banekh Thapla 30.100 km 3.75m + 0.5 m + 0.5 m 30.770 km 11.20 km 3.75m + 0.5 m + 0.5 m

3 19. 4. 20. Kanmothlia Jandadevi Satpuli- Dudharkhal Semkhal Sauli Bend Dudharkhal Tadkeshwar Chailusain- Devikhet Hanumanti- Fatehpur Matyali- Dwarikhal Kandakhal- Chailusain Dhumakot- Nainidanda Soparkhal- Lalitpur Khaludanda- Apolasera Rikhanikhal- Thailisain via Jaspurkhal Rikhanikhal- Thailisain via Bhagtalia Rikhanikhal- Thailisain via Panas village 16.00 km 25.00 km 8.00 km 6.00 km 10 km 3.75m + 0.5 m + 0.5 m 6.00 km 17.20 km 15.00 km 13.50 km 3.75m + 0.5 m + 0.5 m 13.50 km 13.00 5.50 km 7.00 km 7.00 km

Key observations regarding causes, severity & mitigations measures implemented for the management of landslides in rural roads as outlined in table 1 are as follows: Most of the slides observed belong to very severe to severe category. Majority of Landslides are Debris fall, Mudslides and Rock falls Season of frequent occurrence of these landslides in rainy season (Monsoon) Threats of damage to life & property exists in majority of slides Lithologies of slides are not very different; vary from weathered sedimentary & metamorphic rocks getting converted to clay due to years & years ex-situ & in-situ weathering. Slope instability becomes prominent due to delayed construction of civil mitigation measures after hill cuttings being done for road constructions. Road constructions related activities combination with natural causes i.e. soil saturation at highly weathered lithologies steeps slopes resulting in increased pore water pressures which get more severe due to the lack of appropriate drainage network, sudden cloud bursts induced floods and continuous & and unchecked deforestation are among major causes of frequent landslide activity. A mix of civil engineering & vegetative measures have been suggested in order to prevent & control risk to damages to life & property. Major mitigation measures suggested are: o Removal of unstable materials from slopes o Shifting of road alignments o Improvement of surface water drainage to avoid & prevent excess pore water pressure o Benching of slopes by dividing long slopes into smaller segments o Breast walls\check walls o Crete wire Structures o Retaining walls

o Protection walls o Geotextile with nails o Plantation of local species of plants, grasses & shrubs. Dimension of above mentioned mitigation measures varies from one slides to another depending upon the aerial extent, causes, severity. Similar is the case with cost of implementing suggested mitigation measure. Photographs 1 & 2 provide glimpses of two mitigation measures implemented widely in Contract Package-17 in rural roads of Pauri district. More photographic details about road & location specific measures will be provided in the detailed paper Photograph 1: Mitigation Measure Breast wall on the road of Contract Package-17

Photograph 2 : Mitigation Measure Gabion with Wirecrete on the road of Contract Package-17 The present paper intends to briefly describe, analyze & review the causes of landslides occurrence and mitigation measures implemented so far in rural roads of Pauri district, while identifying challenges & opportunities associated with required institutional capacities in assessing slope failure possibilities, hazard zonation & mapping along with innovative approaches to be followed for the management of landslides in the same region.