7 research outputs found
INNOVATIONS in earthquake risk reduction for resilience: RECENT advances and challenges
The Sendai Framework for Disaster Risk Reduction 2015-2030 (SFDRR) highlights the importance of scientific research, supporting the ‘availability and application of science and technology to decision making’ in disaster risk reduction (DRR). Science and technology can play a crucial role in the world’s ability to reduce casualties, physical damage, and interruption to critical infrastructure due to natural hazards and their complex interactions. The SFDRR encourages better access to technological innovations combined with increased DRR investments in developing cost-effective approaches and tackling global challenges. To this aim, it is essential to link multi- and interdisciplinary research and technological innovations with policy and engineering/DRR practice. To share knowledge and promote discussion on recent advances, challenges, and future directions on ‘Innovations in Earthquake Risk Reduction for Resilience’, a group of experts from academia and industry met in London, UK, in July 2019. The workshop focused on both cutting-edge ‘soft’ (e.g., novel modelling methods/frameworks, early warning systems, disaster financing and parametric insurance) and ‘hard’ (e.g., novel structural systems/devices for new structures and retrofitting of existing structures, sensors) risk-reduction strategies for the enhancement of structural and infrastructural earthquake safety and resilience. The workshop highlighted emerging trends and lessons from recent earthquake events and pinpointed critical issues for future research and policy interventions. This paper summarises some of the key aspects identified and discussed during the workshop to inform other researchers worldwide and extend the conversation to a broader audience, with the ultimate aim of driving change in how seismic risk is quantified and mitigated
Applying different equations to evaluate the level of mismatch between students and school furniture
The mismatch between students and school furniture is likely to result in a number of negative effects, such as uncomfortable body posture, pain, and ultimately, it may also affect the learning process. This study's main aim is to review the literature describing the criteria equations for defining the mismatch between students and school furniture, to apply these equations to a specific sample and, based on the results, to propose a methodology to evaluate school furniture suitability. The literature review comprises one publications database, which was used to identify the studies carried out in the field of the abovementioned mismatch. The sample used for testing the different equations was composed of 2261 volunteer subjects from 14 schools. Fifteen studies were found to meet the criteria of this review and 21 equations to test 6 furniture dimensions were identified. Regarding seat height, there are considerable differences between the two most frequently used equations. Although seat to desk clearance was evaluated by knee height, this condition seems to be based on the false assumption that students are sitting on a chair with a proper seat height. Finally, the proposed methodology for suitability evaluation of school furniture should allow for a more reliable analysis of school furniture.This research was funded by the Fondo Nacional de Investigacion y Desarrollo en Salud (FONIS) No SA1112105, Gobierno de Chile (National Fund for Health Research and Development, Chilean Government)
Equations for defining the mismatch between students and school furniture: A systematic review
The present study reviews the scientific literature that describes the criteria equations for defining the
mismatch between students and school furniture. This mismatch may negatively affect students' performance
and comfort. Seventeen studies met the criteria of this review and twenty-one equations to
test six furniture dimensions were identified. There was substantial mismatch between the relative
heights of chairs and tables. Some systematic errors have been found during the application of the
different equations, such as the assumption that students are sitting on chairs with a proper seat height.
Only one study considered the cumulative fit. Finally, some equations are based on contradictory criteria
and need to develop and evaluate new equations for these cases.
Relevance to industry: Ultimately, the present work is a contribution toward improving the evaluation of
school furniture and could be used to design ergonomic-oriented classroom furniture.This research was funded by the Fondo Nacional de Investigacion y Desarrollo en Salud (FONIS) No SA11I2105, Gobierno de Chile (National Fund for Health Research and Development, Chilean Government)