Abstract Rainfall-induced debris flows frequently cause disruption to the Scottish road network. A regional assessment of debris flow hazard and risk allows risk reduction actions to be targeted effectively. To this end a strategic approach to landslide risk reduction, which incorporates a classification scheme for landslide management and mitigation has been developed, in order to provide a common lexicon (or group of words) that can be used to describe goals, outcomes, approaches and processes related to risk reduction, and to allow a clear focus on those goals, outcomes and approaches. The focus is thus first on the desired outcome from risk reduction: whether the exposure, or vulnerability, of the at-risk infrastructure and people (and their associated socio-economic activities, which may be impacted over significant areas) is to be targeted for reduction or whether the hazard itself is to be reduced (either directly or by affecting the physical elements at risk). This paper describes the strategic approach in the context of perhaps Scotland's most active debris flow site, the Rest and be Thankful on the A83 strategic road.
[1]
Mike G. Winter,et al.
Landslide hazard and risk assessment on the Scottish road network
,
2013
.
[2]
E. N. Bromhead,et al.
Landslide risk: some issues that determine societal acceptance
,
2012,
Natural Hazards.
[3]
Michael Brown,et al.
A recent debris flow event and implications for hazard management
,
2009
.
[4]
N. Coppin,et al.
Use of Vegetation in Civil Engineering
,
1990
.
[5]
Mike G. Winter,et al.
A Strategic Approach to Landslide Risk Reduction
,
2014
.
[6]
Mike G. Winter,et al.
Scottish road network landslides study
,
2005
.
[7]
Edward N. Bromhead,et al.
The ruined town of Campomaggiore Vecchio, Basilicata, Italy
,
2009
.
[8]
E N Bromhead,et al.
THE TREATMENT OF LANDSLIDES
,
1997
.
[9]
Mike G. Winter,et al.
Scottish debris flow events of August 2004
,
2006,
Quarterly Journal of Engineering Geology and Hydrogeology.
[10]
P. Dempsey,et al.
Debris flow, rainfall and climate change in Scotland
,
2010
.