PUKYONG

정전기 화재‧폭발 관련 인화성 액체 도전율 측정 및 비교실험 연구

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Abstract
The flammable Liquid Conductivity is an important factor in determining the generation of electrostatic in fire and explosion hazardous areas, so it is necessary to study the physical properties of flammable liquids. In particular, the relevant liquid conductivity in the process of handling flammable liquids in relation to the risk assessment and risk control in fire and explosion hazard areas, such as chemical plants, is classified as a main evaluation item according to the IEC standard, and it is necessary to have flammable liquid conductivity measuring devices and related data are required depending on the handling conditions of the material, such as temperature and mixing ratio for preventing the fire and explosion related to electrostatic. In addition, IEC 60079-32-2 [Explosive Atmospheres-Part 32-2 (Electrostatic hazards-Tests)] refers to the measuring device standard and the conductivity of a single substance. It was concluded that there is no measurement data according to the handling conditions such as mixing ratio of flammable liquid and temperature together with the use and measurement examples. We have developed the measurement reliability by improving the structure, material and measurement method of measuring device by referring to the IEC standard. We have developed a measurement device that is developed and manufactured by itself. The test results of Flammable Liquid Conductivity Measurement and the data of the NFPA 77 (Recommended Practice on Static Electricity) Annex B Table B.2 Static Electric Characteristic of Liquids were compared and verified by conducting the conductivity measurement of the flammable liquid handled in the fire and explosion hazardous place by using Measuring / Data Acquisition / Processing / PC Communication. It will contribute to the prevention of static electricity related disaster by taking preliminary measures for fire and explosion prevention by providing technical guidance for static electricity risk assessment and risk control through flammable liquid conductivity measurement experiment. In addition, based on the experimental results, it is possible to create a big data base by constructing static physical physical characteristic data of flammable liquids by process and material. Also, it is analyzed that it will contribute to the foundation composition for adding the specific information of conductivity of flammable liquid to the physical and chemical characteristics of MSDS.
Author(s)
변정환
Issued Date
2019
Awarded Date
2019. 2
Type
Dissertation
Keyword
정전기 화재/폭발 도전율
Publisher
부경대학교
URI
https://repository.pknu.ac.kr:8443/handle/2021.oak/23369
http://pknu.dcollection.net/common/orgView/200000186166
Affiliation
부경대학교 산업대학원
Department
산업대학원 안전공학과
Advisor
이동훈
Table Of Contents
제 1 장 서 론 1
1.1 연구 배경 1
1.2 연구 목적 4

제 2 장 연구 내용 및 방법 7
2.1 화재·폭발 위험장소에서의 정전기 위험성 평가 기준 7
2.1.1 일반사항 7
2.1.2 고체 절연재료 크기 제한 7
2.1.3 정전기 위험성 평가 관련 시험 9
2.2 인화성 액체 도전율 측정장치 고안 15
2.2.1 배경 15
2.2.2 IEC 제안 규격 15
2.2.3 도전율 측정용 개선 셀 제안 18
2.3 인화성 액체 도전율 측정 시스템 구성 22

제 3 장 인화성 액체 도전율 측정 및 NFPA77과 비교 실험 25
3.1 실험대상 물질 25
3.2 실험조건 및 방법 27
3.2.1 액체 도전율 측정조건 27
3.2.2 액체 도전율 측정절차 30
3.2.3 액체 도전율 측정방법 38
3.3 실험결과 고찰 48
3.3.1 물질별 도전율 측정 데이터 정리 48
3.3.2 인화성 액체의 전압인가에 따른 도전율 변화특성 분석 51
3.3.3 실험결과 분석 53

제 4 장 결 론 62
참고문헌 65
부록 1. 물질별 전류 측정값과 도전율 환산값 67
부록 2. 물질별 전압인가에 따른 도전율 변화특성 113
Degree
Master
Appears in Collections:
산업대학원 > 안전공학과
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