Does the shock of natural hazard-associated disasters affect the authority of regional governments?

2021 ◽  
Vol 134 ◽  
pp. 102520
Author(s):  
Vassilis Tselios
2017 ◽  
Vol 25 (3) ◽  
pp. 21-46 ◽  
Author(s):  
Hyungjun Park ◽  
Gyoungjun Ha ◽  
Dalbyul Lee ◽  
Juchul Jung

2012 ◽  
Vol 10 (1) ◽  
pp. 17-38 ◽  
Author(s):  
Muhammad Ali Hapsah ◽  
Wawan Mas’udi

East Kalimantan is a province full of paradoxes. This region has considerable economic potential measured in terms of its abundant endowments of natural resources, including oil, natural gas, gold, coal and forestry. Yet, East Kalimantan still lacks infrastructure, has poor human resources and high levels of unemployment, factors that condemn much of the population to a life of poverty and hardship. The new system of regional autonomy, which has been implemented since 2001, was expected to give more benefit to the regions, as regional governments have held relatively more power and fiscal capacity. Law 22/1999, which has been revised twice, has provided more authority to regional governments to manage their respective regions. The introduction of fiscal decentralisation through Law 25/1999, further revised in Law 33/2004, has favoured regions rich in natural resources such as East Kalimantan. As it has abundant natural resources, this region has received greatly increased funds from the central government due to the implementation of sharing revenue formula generated from the exploitation of natural resources. These supposed to give more opportunities for the rich regions such East Kalimantan to accelerate regional development and bring their people to greater prosperity. Nevertheless, East Kalimantan has realized neither the objectives of regional autonomy nor the community aspirations for a more prosperous society. This paper aims to examine the extent to which regional autonomy laws have impacted people's welfare in East Kalimantan.


Geosciences ◽  
2021 ◽  
Vol 11 (2) ◽  
pp. 75
Author(s):  
Dario Carrea ◽  
Antonio Abellan ◽  
Marc-Henri Derron ◽  
Neal Gauvin ◽  
Michel Jaboyedoff

The use of 3D point clouds to improve the understanding of natural phenomena is currently applied in natural hazard investigations, including the quantification of rockfall activity. However, 3D point cloud treatment is typically accomplished using nondedicated (and not optimal) software. To fill this gap, we present an open-source, specific rockfall package in an object-oriented toolbox developed in the MATLAB® environment. The proposed package offers a complete and semiautomatic 3D solution that spans from extraction to identification and volume estimations of rockfall sources using state-of-the-art methods and newly implemented algorithms. To illustrate the capabilities of this package, we acquired a series of high-quality point clouds in a pilot study area referred to as the La Cornalle cliff (West Switzerland), obtained robust volume estimations at different volumetric scales, and derived rockfall magnitude–frequency distributions, which assisted in the assessment of rockfall activity and long-term erosion rates. An outcome of the case study shows the influence of the volume computation on the magnitude–frequency distribution and ensuing erosion process interpretation.


2021 ◽  
pp. 251484862110198
Author(s):  
Jessica K Weir ◽  
Timothy Neale ◽  
Elizabeth A Clarke

Unrealistic expectations in society about science reducing and even eliminating the risk of natural hazards contrasts with the chaotic forces of these events, but such expectations persist nonetheless. Risk mitigation practitioners must grapple with them, including in the cycles of blame and inquiry that follow natural hazard events. We present a synthesis of such practitioner experiences from three consequential bushfire and flood risk landscapes in Australia in which science was being used to change policy and/or practice. We show how they chose to work with, counter and recalibrate unrealistic expectations of science, as well as embrace socionatural complexity and a consequential nature. The mismatch between the challenges faced by the sector and the unrealistic expectations of science, generated more stressful work conditions, less effective risk mitigation, and less effective use of research monies. In response, we argue for structural and procedural change to address legacy pathways that automatically privilege science, especially in relation to nature, with broader relevance for other environmental issues. This is not to dismiss or debase science, but to better understand its use and utility, including how facts and values relate.


Author(s):  
S. M. Amin Hosseini ◽  
Albert de la Fuente ◽  
Oriol Pons ◽  
Carmen Mendoza Arroyo

AbstractOne of the main challenges in assisting displaced persons who have lost their homes as a result of a natural hazard is the provision of adequate post-disaster accommodations, such as temporary housing. Although the need for temporary housing has increased around the world in recent years, it has been criticized on economic, environmental, and social grounds. A universal approach to post-disaster accommodations cannot successfully deal with this issue because each recovery process involves a unique set of conditions. Therefore, rather than defining a specific strategy, this study aims to present an approach capable of producing customized strategies based on contextual and social conditions. To this end, first, the main factors influencing the choice of post-disaster accommodations are identified through five case studies. It is concluded that all of the factors can be organized into three main vertices to simplify the highly complex issues involved in post-disaster accommodations. The case studies also show that the decision-making process consists of two main parts. To date, a recurring failure to distinguish between these two parts has led to unsuitable outcomes. Thus, this paper presents a new decision-making methodology, consisting of multiple steps, phases, and indicators based on the main vertices.


Sign in / Sign up

Export Citation Format

Share Document