• Title/Summary/Keyword: 안전 압력

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A Numerical Study to Analyze Safety of Pressure Leakage Monitoring System of Gas Extinguishing Agent (가스소화약제 압력누기감시장치의 안전성 분석을 위한 수치적 연구)

  • Go, A-Ra;Lim, Dong-Oh;Son, Bong-Sei
    • Fire Science and Engineering
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    • v.30 no.4
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    • pp.103-110
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    • 2016
  • While the demand for the gas system fire extinguishers increases every year, there are insufficient safety measures for assessing the extinguishing performance, such as system safety and reliability in the preparation of increasing demand, which has emerged as a social problem. One of the most critical causes of accidents occurring with the gas extinguishing system is pressure leakage from the extinguishing agent storage container. This is considered to be one of the critical factors on which the success of fire suppression depends. In this study, its safety measure was studied, Because it was deemed urgently necessary. The newly developed pressure leakage monitoring system is a system monitoring storage condition, pressure, leakage and discharge of the storage container related to agent concentration, which is one of the critical factors for fire suppression. This was developed to be applicable to the $CO_2$ and HFC-23 systems. Therefore, for structural safety analysis, the safety performance was verified by the fluid structure coupling analysis of the safety problems that may occur when the pressure leakage monitoring system is applied to the gas fire extinguisher. For analysis programs, the FloEFD program from Mentor Graphics was used for computational fluid dynamics analysis and ABAQUS from Dassault Systems was used for structural analysis. From the result of numerical analysis, the structure of $CO_2$ did not develop plastic deformation and its safety was verified. However, plastic deformation and deviation issue occurred with the HFC-23 monitoring system and therefore verified the structural safety of pressure leakage monitoring system by data obtained from redesigning and adjusting the condition of numerical interpretation three times.

Strength Safety Study on the Stress Characteristics of a Composite Pressure Cylinder for 35MPa Hydrogen Gas Vehicle (35MPa 수소가스 자동차용 복합소재 압력용기의 응력특성에 관한 강도안전성 연구)

  • Kim, Chung-Kyun;Kim, Do-Hyun
    • Journal of the Korean Institute of Gas
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    • v.16 no.2
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    • pp.25-30
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    • 2012
  • This paper presents a stress safety of a composite pressure cylinder in which is composed of an aluminum liner and composite layers with carbon fiber/epoxy and glass fiber/epoxy resigns. The composite pressure cylinder for a hydrogen gas vehicle contains 9.2 liter hydrogen gas, and hydrogen gases are compressed by a filling pressure of 35MPa. The FEM computed results are analyzed based on the US DOT-CFFC basic requirement for a hydrogen gas cylinder and KS B ISO specification. The FEM results indicate that the stress, 247MPa of an aluminum liner is sufficiently low compared with that of 272MPa, which is 95% level of a yield stress for aluminum. And, the carbon fiber composite layers in which are wound on the surface of an aluminum cylinder are safe because the maximum carbon fiber stresses from 29.43% to 28.87% in hoop and helical directions are below 30% for a given minimum required burst pressure level, respectively. The carbon fiber composite layers are also safe because the stress ratios from 3.40 to 3.46 in hoop and helical directions are above 2.4 for a minimum safety level, respectively.

Blowdown Prediction of Safety Relief Valve and FSI Analysis (안전릴리프밸브의 블로우 다운 예측 및 유체-구조 연성해석)

  • Choi, Ji-Won;Jang, Si-Hwan;Lee, Kwon-Hee
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.12
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    • pp.729-734
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    • 2017
  • A safety relief valve is a device that relieves excessive pressure in piping lines or tanks and maintains pressure at the appropriate pressure level for use. The (pressure in the) safety valve is directly influenced by the change in the back pressure, depending on whether the vents in the spring bonnet are vented to the atmosphere or to the outlet. The back pressure is divided into the built-up back pressure and the superimposed back pressure, and the back pressure characteristics vary according to the usage conditions. The safety valve used in this study is a Conventional Safety Relief Valve. The blowdown of the safety valve is predicted by establishing the equilibrium equation between the opening force and spring force considering the back pressure characteristics. Its reliability is secured by using CFX17.1. In addition, the safety of the safety valve trim was examined through fluid-structure interaction analysis.

Structural Safety Evaluation of Multi-Pressure Integrated Chamber for Sport-Multi-Artificial Environment System (스포츠 멀티 인공환경 시스템을 위한 다중압력 일체형 챔버의 구조안전성 평가)

  • Lee, Joon-Ho;Kang, Sang-Mo;Chae, Jae-Ick
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.20 no.3
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    • pp.324-328
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    • 2019
  • There are several dedicated individual chambers for sports that are supplied and used, but none of them are multi-pressured all-in-one chambers that can provide a sport-multi environment simultaneously. In this study, we design a multi-pressure (positive / atmospheric / negative pressure) integrated chamber that can be used for the sport-multi-artificial environment system. We presented new chamber designs with enlarged space for the tall users and then carried out structural analysis with maximum stress and structural safety. Under the targeted allowable pressure conditions, maximum stresses occurred at the joint of the shell and the entrance, the structural safety of the chamber was evaluated with the allowable stress of its material. As a result of the structural analysis of the multi-pressure integrated chamber, the maximum stress for the positive pressure and negative pressure conditions was much smaller than the allowable stress of its material. And as a result of the structural safety evaluation, it was confirmed that the design of the final prototype for the chamber was structurally safe by satisfying the safety factor of 2 or more.

A Study on the Revision of the National Fire Safety Codes of Sprinkler System (스프링클러설비 화재안전기준 개정에 대한 고찰)

  • Jeong, Keesin
    • Fire Science and Engineering
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    • v.27 no.5
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    • pp.32-37
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    • 2013
  • This paper suggested to revise unreasonable national fire safety codes of sprinkler system. Also proposed to modify the definition of "the gridded sprinkler system" and to add "the feed main" in terms of the definition of the pipes. In order to operate the regulations of discharge pressure of the sprinkler head efficiently, this paper checked the minimum criteria of pressure and flow for the pipe schedule sprinkler system of NFPA 13 and suggested to establish the similar minimum demand criteria. It proposed to be amended properly the pressure calculation formular in the pressure tank system and to use the correct K value due to change in pressure unit and to use the [bar] as a unit of pressure for the sake of using the existing K-factor etc.

A Study on the Integrated Control and Safety Management System for 9% Ni Steel LNG Storage Tank (9% 니켈강재식 LNG 저장탱크용 통합제어안전관리시스템에 관한 연구)

  • Kim, Chung-Kyun
    • Journal of the Korean Institute of Gas
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    • v.14 no.5
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    • pp.13-18
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    • 2010
  • This paper presents the development of an integrated control and safety management system for 9% nickel steel LNG storage tank. The new system added the measuring equipment of pressure, displacement and force compared to the conventional measurement and control system. The measured data has simultaneously been processed by integrating and analyzing with new control equipments and safety management systems. The integrated control and safety management system, which may increase a safety and efficiency of a super-large full containment LNG storage tank, added additional pressure gauges and new displacement/force sensors at the outer side wall and a welding zone of a stiffener and top girder of an inner tank, and the inner side wall of a corner protection tank. The displacement and force sensors may provide failure clues of 9% nickel steel structures such as an inner tank and a corner protection, and a LNG leakage from the inner tank. The conventional leak sensor may not provide proper information on 9% nickel steel tank fracture even though LNG is leaked until the leak detector, which is placed at the insulation area between an inner tank and a corner protection tank, sends a warning signal. Thus, the new integrated control and safety management system is to collect and analyze the temperature, pressure, displacement, force, and LNG density, which are related to the tank system safety and leakage control from the inner tank. The digital data are also measured from control systems such as displacement and force of 9% nickel steel tank safety, LNG level and density, cool-down process, leakage, and pressure controls.

A Study on the Design of decision logic for n Tire Pressure Monitoring System (타이어 공기압 모니터링 시스템의 판단 로직 설계에 관한 연구)

  • Kim Byeong-Woo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.7 no.3
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    • pp.285-290
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    • 2006
  • In a Vehicle, Safety is the most important factor for drivers. It is well known that tire pressure lower than normal reduces the safety of the vehicle. In a consideration of active safety, tire pressure monitoring system is absolutely required. Tire pressure monitoring using in-tire pressure sensors with an RE data link have proven to be best approach to measuring tire pressure over the widest range of operating conditions. In this paper, we describe the parameters of TPMS, the characteristic of tire pressure and temperature compensation. These are the main factors to design the decision logic. We will show the guidelines for TPMS logic development considering environment variables and vehicle conditions.

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Optimal design considering topological characteristics and residual chlorine concentration of water distribution systems (상수도시스템의 위상학적 특징과 잔류염소 농도를 고려한 최적설계)

  • Ko, Mun Jin;Kim, Min Jun;Kim, Ryul;Choi, Young Hwan
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.181-181
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    • 2022
  • 상수도 관망은 비정상상황에서도 안전한 물을 안정적으로 공급하는 것을 목표로 한다. 따라서 상수도 관망의 최적 설계는 수리학적 제약조건 (i.e., 절점의 압력, 관의 유속)을 만족하는 설계안을 제시한다. 하지만 점차 커지는 도시 규모에 따라 수질적으로 안전한 물을 공급하지 못하는 문제가 발생하고 있다. 또한, 상수도시스템의 형식 (i.e., 수지상식, 혼합식, 순환식)에 따라 용수의 체류 시간, 절점의 압력 등이 상이하다. 따라서, 본 연구에서는 도시 규모 및 형식과 잔류염소 농도를 고려한 상수도시스템 최적 설계를 진행하였다. 절점의 개수에 따라 도시의 규모를 분류하였으며, BI(BI; Branch Index) 지수를 통해 상수도시스템의 형식을 분류하였다. 또한, 수리학적 제약조건(i.e., 절점의 압력)과 수질적 제약조건 (i.e., 잔류염소 농도)을 설정하여 수리-수질을 동시에 만족하는 최적 설계안을 도출하였다. 비상시에도 물을 안정하게 공급하기 위하여 시스템의 탄력성과 설계비용을 목적함수로 설정하여 다목적 최적 설계를 진행하였다. 이러한 연구는 압력만을 고려한 기존 설계단계에서 수질적 측면을 동시에 고려하여 수질 측면의 안전성을 향상할 수 있다. 또한, 시스템의 탄력성을 고려하여 비정상상황에서도 물을 공급하여 사용성을 향상하는 설계안을 도출하여 수리학적 안정성을 만족하며, 경제적 측면도 향상할 수 있다.

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