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FIRE SIMULATION APPLICATION BASED ON WIND DIRECTION USING CELLULAR AUTOMATA METHOD FOR WEB BASED FIRE REPORTING SYSTEM.

Authors: Ruddy J Suhatril; Matrissya Hermita; Fikri., Muhammad;

FIRE SIMULATION APPLICATION BASED ON WIND DIRECTION USING CELLULAR AUTOMATA METHOD FOR WEB BASED FIRE REPORTING SYSTEM.

Abstract

The risk of fire can be decreased by following the fire occurrence and foreseeing the progress by time meaning. By simulated the extensive fire location using wind direction might help firefighters to managed and strategically made a decision in overcoming fires. Thus, there is an urge to provide reporting system to overcome the fire by using the website as an information receiver fire report which utilize downwind information simulation to locate fire as well as predict the extent fires location. This application creation phase starting from problem analysis, design, implementation and testing. This application uses cellular automata method for simulating the extent of fire by the wind. The testing process simulation using the home address location of the point the author is the area of East Jakarta with the simulation results of wind direction to the northwest with wind speeds at the location point of 7.7 KM/Hour. This application was built using software laravel for website creation and use programming languages php, javascript and html. This Web application can run properly in the browser. This application was built using software laravel for website creation and use programming languages php, javascript and html. This Web application can run properly in the browser. This application was built using software laravel for website creation and use programming languages php, javascript and html. This Web application can run properly in the browser.

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Keywords

Applications Simulation Fire Cellular Automata Web.

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This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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