979 resultados para fire spread simulation


Relevância:

100.00% 100.00%

Publicador:

Resumo:

An integrated fire spread model is presented in this study including several sub-models representing different phenomena of gaseous and solid combustion. The integrated model comprises of the following sub-models: a gaseous combustion model, a thermal radiation model that includes the effects of soot, and a pyrolysis model for charring combustible solids. The interaction of the gaseous and solid phases are linked together through the boundary conditions of the governing equations for the flow domain and the solid region respectively. The integrated model is used to simulate a fire spread experiment conducted in a half-scale test compartment. Good qualitative and reasonable quantitative agreement is achieved between the experiment and numerical predictions.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

In 1998, Swissair Flight I I I (SR111) developed an in-flight fire shortly after take-off which resulted in the loss of the aircraft, a McDonnell Douglas MD-I 1, and all passengers and crew. The Transportation Safety Board (TSB) of Canada, Fire and Explosion Group launched a four year investigation into the incident in an attempt to understand the cause and subsequent mechanisms which lead to the rapid spread of the in-flight fire. As part of this investigation, the SMARTFIRE Computational Fluid Dynamics (CFD) software was used to predict the 'possible' development of the fire and associated smoke movement. In this paper the CFD fire simulations are presented and model predictions compared with key findings from the investigation. The model predictions are shown to be consistent with a number of the investigation findings associated with the early stages of the fire development. The analysis makes use of simulated pre-fire airflow conditions within the MD-11 cockpit and above ceiling region presented in an earlier publication (Part 1) which was published in The Aeronautical Journal in January 2006(4).

Relevância:

100.00% 100.00%

Publicador:

Resumo:

A process-based fire regime model (SPITFIRE) has been developed, coupled with ecosystem dynamics in the LPJ Dynamic Global Vegetation Model, and used to explore fire regimes and the current impact of fire on the terrestrial carbon cycle and associated emissions of trace atmospheric constituents. The model estimates an average release of 2.24 Pg C yr−1 as CO2 from biomass burning during the 1980s and 1990s. Comparison with observed active fire counts shows that the model reproduces where fire occurs and can mimic broad geographic patterns in the peak fire season, although the predicted peak is 1–2 months late in some regions. Modelled fire season length is generally overestimated by about one month, but shows a realistic pattern of differences among biomes. Comparisons with remotely sensed burnt-area products indicate that the model reproduces broad geographic patterns of annual fractional burnt area over most regions, including the boreal forest, although interannual variability in the boreal zone is underestimated.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

La formación de los bomberos es un proceso que incluye contenidos prácticos sobre cómo actuar ante incendios forestales y urbanos. La utilización de simuladores físicos tiene limitaciones impuestas por las condiciones de seguridad requeridas. Realizar prácticas controladas en condiciones reales está también altamente limitado por razones de factibilidad y de seguridad. Por tanto, la utilización de sistemas de entrenamiento de Realidad Virtual tiene especial relevancia.Las aportaciones de esta tesis están centradas en tres aspectos. El primero es el desarrollo de un entorno virtual para la simulación del entrenamiento e bomberos. Los escenarios considerados incluyen entornos forestales urbanos y mixtos. El entorno virtual puede ser accedido por bomberos que asumen distintos roles.El segundo es la generación de los algoritmos necesarios de la propagación y extinción de incendios dentro de los parámetros de interactividad del simulador. Para cumplir estos requisitos, se ha reducido la complejidad algorítmica a los elementos más fundamentales, entre ellos, la pendiente del terreno y la velocidad y dirección del viento. Además, se han añadido diversos efectos que aportan realismo a la propagación del fuego y su extinción: Spotting Fires, evaporación, modelo WaterJet.La definición de los escenarios incluye la clasificación del terreno o uso del suelo, los edificios y las barreras. La reconstrucción de escenarios reales a partir de información existente plantea problemas de heterogeneidad entre las distintas fuentes. La tercera aportación de esta tesis presenta las tecnologías semánticas como herramientas para solucionar los problemas de heterogeneidad de los datos y los distintos roles de los usuarios del sistema.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

La única forma que tienen los profesionales de aprender los procedimientos de extinción de incendios y gestión de los recursos es a través de maquetas o simulacros controlados. Este proyecto hace énfasis en la verificación de un conjunto de algoritmos de simulación y propagación de incendios facilitando la validación de los mismos por expertos. Los algoritmos validados se integrarán en un simulador interactivo dirigido al entrenamiento e instrucción del uso de los recursos para la extinción de incendios.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

O presente trabalho pretende mostrar o desenvolvimento de um sistema de apoio à decisão no combate aos fogos florestais que assenta fundamentalmente em tecnologias da informação, em contraste com a dinâmica utilizada atualmente. O sistema é composto por três componentes: uma componente WebSig que disponibiliza a informação necessária à tomada de decisão no teatro de operações; uma componente para apoio às equipas terrestres; e, uma componente que serve de suporte aos meios de combate aéreos. Este sistema permite ainda a leitura dos dados provenientes da simulação de propagação de fogo proveniente do Farsite. Estas simulações são visualizados na aplicação WebSig. Uma das maiores preocupações em relação ao sistema é que todos os dados utilizados sejam certos e atualizados, mas também que as principais funcionalidades da aplicação sejam utilizadas em tempo real pelos principais agentes da proteção civil. Pelas validações efetuadas, conclui-se que a aplicação funciona conforme projetada tendo sido desenvolvido um sistema que se espera ser considerado uma mais-valia para a área de estudo e para a proteção civil.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

In this paper, we present some early work concerned with the development of a simple solid fuel combustion model incorporated within a Computational Fluid Dynamics (CFD) framework. The model is intended for use in engineering applications of fire field modeling and represents an extension of this technique to situations involving the combustion of solid cellulosic fuels. A simple solid fuel combustion model consisting of a thermal pyrolysis model, a six flux radiation model and an eddy-dissipation model for gaseous combustion have been developed and implemented within the CFD code CFDS-FLOW3D. The model is briefly described and demonstrated through two applications involving fire spread in a compartment with a plywood lined ceiling. The two scenarios considered involve a fire in an open and closed compartment. The model is shown to be able to qualitatively predict behaviors similar to "flashover"—in the case of the open room—and "backdraft"— in the case of the initially closed room.

Relevância:

90.00% 90.00%

Publicador:

Resumo:

In this paper we present some early work concerned with the development of a simple solid fuel combustion model incorporated within a Computational Fluid Dynamics (CFD) framework. The model is intended for use in engineering applications of fire field modelling and represents an extension of this technique to situations involving the combustion of solid cellulosic hels A simple solid &el combustion model consisting of a thermal pyrolysis model, a six flux radiation model and an eddydissipation model for gaseous combustion have been developed and implemented within the CFD code CFDS-FLOW3D The model is briefly described and demonstrated through two applications involving fire spread in a compartment with a plywood lined ceiling. The two scenarios considered involve a fire in an open and closed compartment The model is shown to be able to qualitatively predict behaviours similar to flashover - in the case of the open room - and backdrafl - in the case of the initially closed room.

Relevância:

90.00% 90.00%

Publicador:

Resumo:

Wildland fire spread and behaviour are complex phenomena owing to both the number of involved physico-chemical factors, and the non-linear relationship between variables. Spain is plagued by forest and brush fires every summer, when the extremely dry weather sets in along with high temperatures. The use of fire behaviour models requires the availability of high resolution environmental and fuel data; in the absence of real data, errors on the simulated fire spread can be compounded to affect the spatial and temporal accuracy of predicted data. The effect of input values on the accuracy of WRF-FIRE simulations was evaluated to assess the capabilities of the new system for wildland fire in accurately forecasting fire behaviour. The results confirm that the use of accurate meteorological data and a custom fuel moisture content model is crucial to obtain precise simulations of fire behaviour.

Relevância:

90.00% 90.00%

Publicador:

Resumo:

The Chihuahua desert is one of the most biologically diverse ecosystems in the world, but suffers serious degradation because of changes in fire regimes resulting in large catastrophic fires. My study was conducted in the Sierra La Mojonera (SLM) natural protected area in Mexico. The purpose of this study was to implement the use of FARSITE fire modeling as a fire management tool to develop an integrated fire management plan at SLM. Firebreaks proved to detain 100% of wildfire outbreaks. The rosetophilous scrub experienced the fastest rate of fire spread and lowland creosote bush scrub experienced the slowest rate of fire spread. March experienced the fastest rate of fire spread, while September experienced the slowest rate of fire spread. The results of my study provide a tool for wildfire management through the use geospatial technologies and, in particular, FARSITE fire modeling in SLM and Mexico.

Relevância:

80.00% 80.00%

Publicador:

Resumo:

Fuel treatment is considered a suitable way to mitigate the hazard related to potential wildfires on a landscape. However, designing an optimal spatial layout of treatment units represents a difficult optimization problem. In fact, budget constraints, the probabilistic nature of fire spread and interactions among the different area units composing the whole treatment, give rise to challenging search spaces on typical landscapes. In this paper we formulate such optimization problem with the objective of minimizing the extension of land characterized by high fire hazard. Then, we propose a computational approach that leads to a spatially-optimized treatment layout exploiting Tabu Search and General-Purpose computing on Graphics Processing Units (GPGPU). Using an application example, we also show that the proposed methodology can provide high-quality design solutions in low computing time. © 2013 The Authors. Published by Elsevier B.V.

Relevância:

80.00% 80.00%

Publicador:

Resumo:

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

Relevância:

50.00% 50.00%

Publicador:

Resumo:

Quantifying the potential spread and density of an invading organism enables decision-makers to determine the most appropriate response to incursions. We present two linked models that estimate the spread of Solenopsis invicta Buren (red imported fire ant) in Australia based on limited data gathered after its discovery in Brisbane in 2001. A stochastic cellular automaton determines spread within a location (100 km by 100 km) and this is coupled with a model that simulates human-mediated movement of S. invicta to new locations. In the absence of any control measures, the models predict that S. invicta could cover 763 000–4 066 000 km2 by the year 2035 and be found at 200 separate locations around Australia by 2017–2027, depending on the rate of spread. These estimated rates of expansion (assuming no control efforts were in place) are higher than those experienced in the USA in the 1940s during the early invasion phases in that country. Active control efforts and quarantine controls in the USA (including a concerted eradication attempt in the 1960s) may have slowed spread. Further, milder winters, the presence of the polygynous social form, increased trade and human mobility in Australia in 2000s compared with the USA in 1940s could contribute to faster range expansion.

Relevância:

50.00% 50.00%

Publicador:

Resumo:

Fire and evacuation models with features such as the ability to realistically simulate the spread of heat and smoke and the human response to fire as well as the capability to model human performance in heeled orientations linked to a virtual reality environment that produces realistic visualisation of the modelled scenarios are now available and can be used to aid the engineer in assessing ship design and procedures. This paper describes the maritimeEXODUS ship evacuation and the SMARTFIRE fire simulation model and provides an example application demonstrating the use of the models used in pperforming fire and evacuation analysis for a large passenger ship partially based on the requirements of MSC circular 1033.

Relevância:

50.00% 50.00%

Publicador:

Resumo:

When designing a new passenger ship or modifying an existing design, how do we ensure that the proposed design and crew emergency procedures are safe from an evacuation resulting from fire or other incident? In the wake of major maritime disasters such as the Scandinavian Star, Herald of Free Enterprise, Estonia and in light of the growth in the number of high density, high-speed ferries and large capacity cruise ships, issues concerning the evacuation of passengers and crew at sea are receiving renewed interest. Fire and evacuation models with features such as the ability to realistically simulate the spread of heat and smoke and the human response to fire as well as the capability to model human performance in heeled orientations linked to a virtual reality environment that produces realistic visualisations of the modelled scenarios are now available and can be used to aid the engineer in assessing ship design and procedures. This paper describes the maritimeEXODUS ship evacuation and the SMARTFIRE fire simulation model and provides an example application demonstrating the use of the models in performing fire and evacuation analysis for a large passenger ship partially based on the requirements of MSC circular 1033