The fire accidents having recently occurred are getting more and more larger and causing lots of damage in terms of property loss and casualties increase, so there is in need of technical fire safety development like comprehensive prevention solution in order to effectively prevent. In this study, we want to present an efficient method of fire safety design through FDS (Fire Dynamics Simulator) modelling techniques without full-scale fire test. So in this time, we should be developing optimization and test process to obtain fire pyrolysis properties for fire FDS firstly. Therefore, we want to find out on this paper how to analysis to predict the fire risk to fully understanding about fire phenomenon, real scale fire test should performed, but , because of cost and reproducibility, fire simulation usage has been increasing, and fire property of construction and living material during pyrolysis procedure is required for assure accuracy of fire simulation. However, those fire properties have difficulty about measurement of necessity data for reliability improvement fire simulation or fire properties during pyrolysis. Testing equipments for each properties occur a lots of cost and time. So to develop for, not the exist testing method, but the advanced fire properties computable All-in-one type testing equipment, reducing cost and reliability should be assured.
목차
Abstract 1. 서론 2. 본론 2.1 열방출률과 연기발생률의 상관성 2.2. 콘칼로리미터 시험을 통한 실재화재 시험결과 예상 2.3 화재물성 산출을 위한 All-in-one 시험장치의 개발 3. 결론 감사의 글 참고문헌
키워드
Heat releaseSmoke productionFire dynamic simulationConvective heat transfer
화재의 과학적 감식, 원인규명 및 예방을 위한 학문과 기술의 발전을 도모하고, 산, 학, 연, 정의 상호 교류를 통한 화재예방과 조사 및 감식의 전문화와 함께 소방관련 정책방향 발전에 공한하며, 회원 및 화재 관련 분야의 국.내외 인사들과의 정보 교류를 위하여 설립되었다.
간행물
간행물명
한국화재감식학회 학회지 [Magazine of Fire Investigation Socity of Korea]