• Title/Summary/Keyword: Boil-off Mass

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소형발사체 공통격벽 추진제 탱크의 단열재 두께 변화에 따른 과도 열전달 해석 (Transient Heat Transfer Analysis of Small Launch Vehicle Common Bulkhead Propellant Tank with Different Insulation Thickness)

  • 양지윤;이경한;김상우;이수용
    • 항공우주시스템공학회지
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    • 제18권3호
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    • pp.70-75
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    • 2024
  • 본 연구에서는 단열재 두께에 따른 소형발사체 공통격벽 추진제 탱크의 단열 성능을 분석하였다. 단일 파트로 이루어진 공통격벽 추진제 탱크는 탱크 연결부가 불필요하여 추진제 탱크의 경량화 설계가 가능하다. 그러나 산화제와 연료의 온도차로 인한 열전달에 의하여 추진제의 손실과 점화 지연 등의 문제가 발생할 수 있다. 따라서 산화제 탱크와 연료 탱크를 구분하는 공통격벽 구조의 단열 성능 확인이 필수적이다. 본 연구에서는 기화 질량(boil- off mass)을 이용한 단열 성능 분석을 위하여 단열재 두께가 50, 55, 60, 65, 70 mm인 추진제 탱크에 대해 과도 열전달 해석을 수행하였다. 이어서 추진제 탱크의 1단 비행시간 동안 발생하는 산화제의 기화 질량을 도출하였다. 그 결과, 단열재 두께가 증가할수록 기화 질량이 감소하여 단열 성능이 향상되었다.

5 L급 액체수소 저장용기의 성능특성 연구 (Performance of a 5 L Liquid Hydrogen Storage Vessel)

  • 강상우;나다니엘 가르소;임창무;백종훈;김서영;오인환
    • 한국수소및신에너지학회논문집
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    • 제26권3호
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    • pp.234-240
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    • 2015
  • In the face of the world's growing energy storage needs, liquid hydrogen offers a high energy density solution for the storage and transport of energy throughout society. A 5 L liquid hydrogen storage tank has been designed, fabricated and tested to investigate boil-off rate of liquid hydrogen. As the insulation plays a key role on the cryogenic vessels, various insulation methods have been employed. To reduce heat conduction loss, the epoxy resin-based insulation supports G-10 were used. To minimize radiation heat loss, vapor cooled radiation shield, multi-layer insulation, and high vacuum were adopted. Mass flow meter was used to measure boil-off rate of the 5 L cryogenic vessel. A series of performance tests were done for liquid nitrogen and liquid hydrogen to compare with design parameters, resulting in the boil-off rate of 1.7%/day for liquid nitrogen and 16.8%/day for liquid hydrogen at maximum.

냉열을 이용한 LNG 증발기체 BOG 재액화 신공정과 기존공정에 관한 비교연구 (Study on the Comparison of New and Used Reliquefaction System of Boil-Off-Gas by LNG Cold Energy)

  • 이동혁;장창봉;정상용;김정환;이헌석;김범수;고재욱
    • 한국가스학회지
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    • 제14권1호
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    • pp.42-46
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    • 2010
  • LNG (Liquefied Natural Gas)기지의 LNG 저장탱크에서 BOG (Boil Off Gas)가 약 0.5 vol%/day로 자연적으로 생성된다. 이를 회수하기 위해서 기존에는 LNG와 BOG를 1:12의 질량비로 직접 접촉시켜 액화시켰다. 이 공정은 단순하지만 하절기에는 LNG 사용량 저하로 인해 공정운영의 어려움이 있다. 이러한 단점을 보완하기 위해 대안된 LNG 냉열을 사용하는 간접접촉방식을 HYSYS를 이용하여 분석해보고 직접접촉방식과 BOG 재액화 효율비교를 통해 분석하여 유리한 공정을 도출하였다.

암반동굴식 지하 LNG 저장 시스템 설계를 위한 기화율의 산정 (Determination of Boil-Off gas Ratio for the Design of Underground LNG Storage System in Rock Cavern)

  • 정소걸;이희석;정우철;박의섭
    • 터널과지하공간
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    • 제17권1호
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    • pp.56-65
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    • 2007
  • 기존의 단열 시스템, 지하동굴 건설기술과 새로운 동결링 방벽기술을 결합하여 암반동굴식 지하 LNG 저장시스템이 개발되었다. 이 저장시스템의 기술적 적합성은 파일럿 동굴 실증시설의 건설과 운영을 통해 검증된 바 있으며, 조만간 실규모 프로젝트가 시작될 예정이다. LNG 저장시스템에서 중요한 사항 중의 하나는 극저온 열전달을 통해 장기간의 운영 기간동안 열손실을 최소화하는 것이다. 이 논문은 지하 LNG 저장 시스템의 설계를 위한 몇 가지 중요한 열전달 해석 결과를 제시하며, 기화율, 단열재 두께와 같은 설계 변수를 결정하기 위해 일련의 실규모 동굴에 대한 열전달 및 열-수리 해석을 실시하였다. 열-수리 연계해석결과 LNG 저장시설의 기화율은 초기 단계에서 0.04 %/day로 떨어져 유지되는 것으로 나타났다. 이 값은 암반내 존재하는 불연속면을 고려할 때 더욱 낮아질 수 있을 것으로 판단된다.

LNG냉열이용 BOG 재액화긍정 해석연구 (New reliquefaction system of Boil-Off-Gas by LNG cold energy)

  • 윤상국;최형식
    • Journal of Advanced Marine Engineering and Technology
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    • 제26권2호
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    • pp.256-263
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    • 2002
  • The Boil-Off-Gases(BOG) in the LNG production terminal are continuously generated during the unloading, storage and supply processes by the heat penetration. In order to use these gases as useful fuel, the reliquefaction process should be installed to put the reliquefied BOG in the main LNG supply line before the secondary pump in terminal. The current reliquefaction method of BOG in LNG terminal is the direct contact one between LNG and BOG in the absorption column. But the system has severe disadvantage, which is the 10 times of LNG circulation needed for unit mass of BOG reliquefaction. It causes, therefore, high power consumption of LNG circulation pump and excessive city-gas supply, even if short demand of NG is needed in the summer time. In this paper, the new reliquefaction system of BOG by using LNG cold energy with indirect contact in precooler was suggested and analysed. The result showed new indirect contact method of BOG reliquefaction system between LNG cold energy and BOG is much more effective than the current direct contact one because of only about 1.3 times of LNG circulation needed and higher energy saving by pump power reduction.

A design study of a 4.7 T 85 mm low temperature superconductor magnet for a nuclear magnetic resonance spectrometer

  • Bae, Ryunjun;Lee, Jung Tae;Park, Jeonghwan;Choi, Kibum;Hahn, Seungyong
    • 한국초전도ㆍ저온공학회논문지
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    • 제24권3호
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    • pp.24-29
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    • 2022
  • One of the recent proposals with nuclear magnetic resonance (NMR) is a multi-bore NMR which consists of array of magnets which could present possibilities to quickly cope with pandemic virus by multiple inspection of virus samples. Low temperature superconductor (LTS) can be a candidate for mass production of the magnet due to its low price in fabrication as well as operation by applying the helium zero boil-off technology. However, training feature of LTS magnet still hinders the low cost operation due to multiple boil-offs during premature quenches. Thus in this paper, LTS magnet with low mechanical stress is designed targeting the "training-free" LTS magnet for mass production of magnet array for multi-bore NMR. A thorough process of an LTS magnet design is conducted, including the analyses as the followings: electromagnetics, mechanical stress, cryogenics, stability, and protection. The magnet specification was set to 4.7 T in a winding bore of 85 mm, corresponding to the MR frequency of 200 MHz. The stress level is tolerable with respect to the wire yield strength and epoxy crack where mechanical disturbance is less than the minimum quench energy.

대용량 액체 수소 저장탱크를 위한 다층단열재의 단열성능 분석 (Adiabatic Performance of Layered Insulating Materials for Bulk LH2 Storage Tanks)

  • 김경호;신동환;김용찬;강상우
    • 한국수소및신에너지학회논문집
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    • 제27권6호
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    • pp.642-650
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    • 2016
  • One of the most feasible solution for reducing the excessive energy consumption and carbon dioxide emission is usage of more efficient fuel such as hydrogen. As is well known, there are three viable technologies for storing hydrogen fuel: compressed gas, metal hydride absorption, and cryogenic liquid. In these technologies, the storage for liquid hydrogen has better energy density by weight than other storage methods. However, the cryogenic liquid storage has a significant disadvantage of boiling losses. That is, high performance of thermal insulation systems must be studied for reducing the boiling losses. This paper presents an experimental study on the effective thermal conductivities of the composite layered insulation with aerogel blankets($Cryogel^{(R)}$ Z and $Pyrogel^{(R)}$ XT-E) and Multi-layer insulation(MLI). The aerogel blankets are known as high porous materials and the good insulators within a soft vacuum range($10^{-3}{\sim}1$ Torr). Also, MLI is known as the best insulator within a high vacuum range(<$10^{-6}{\sim}10^{-3}$ Torr). A vertical axial cryogenic experimental apparatus was designed to investigate the thermal performance of the composite layered insulators under cryogenic conditions as well as consist of a cold mass tank, a heat absorber, annular vacuum space, and an insulators space. The composite insulators were laminated in the insulator space that height was 50 mm. In this study, the effective thermal conductivities of the materials were evaluated by measuring boil-off rate of liquid nitrogen and liquid argon in the cold mass tank.

LNG운반선의 증발기체 재액화 장치의 사이클 해석

  • 진영욱
    • 대한안전경영과학회:학술대회논문집
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    • 대한안전경영과학회 2012년 춘계학술대회
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    • pp.221-232
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    • 2012
  • Cycle analysis has been performed to find out the optimum design point of the BOG re-liquefaction plant. The cycle state, defined by three cycle variables, was mainly described by the three cold temperatures of the three-pass heat exchanger, on which the constraints by the heat exchanger are imposed. The cycle states which are confined within a domain limited by the temperature constraints were the primary issue of this study. The BOG mass within the domain was analyzed first and then the cycle performance was related to the BOG mass afterwards, which enabled us to explain the observed behavior of the cycle performance under the temperature constraints by the heat exchanger. A good cycle performance could be ensured if the two cold Nitrogen temperatures of the three temperatures were placed close together near $-140^{\circ}C$ while the BOG temperature is kept far above enough, but not too far, from $-140^{\circ}C$ such that it does not interfere in their optimum temperature range.

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포화상태에 놓인 C-Type 액체수소 탱크의 슬로싱이 열 유속과 BOG에 미치는 변화의 수치적 분석 (Numerical Study of Heat Flux and BOG in C-Type Liquefied Hydrogen Tank under Sloshing Excitation at the Saturated State)

  • 이진호;황세윤;이성제;이장현
    • 한국전산구조공학회논문집
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    • 제35권5호
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    • pp.299-308
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    • 2022
  • 본 논문은 슬로싱 상태에 놓인 포화 상태 액체수소탱크에서 열 유속 및 BOG(Boil-off gas)의 경향을 다루고 있다. 특히, 액체-기체간의 침투 및 혼합에 의한 열 교환에 관심을 두었다. 먼저, VOF(Volume of fluid)와 Eulerian 기반의 다상 유동모델로 모형 슬로싱 실험을 모사하여 압력을 예측하고 계측된 값과 비교하였다. 자유 수면 및 충격 압력 실험 결과와 해석 결과를 비교하였으며, 유체의 속도 예측에서 정확할 수 있음을 간접적으로 증명하였다. 그리고 2차원의 Type-C 원통형 수소탱크를 대상으로 다상열유동해석을 수행하였다. 이때 포화상태에 놓인 액체 및 기체수소를 가정하고, 해석을 통해 각 상간의 혼합에 의한 열 교환의 수준을 확인하고자 하였다. 단, 상간의 열 교환만을 관심으로 두고 있었으므로 질량전달 및 기화모델은 해석에서 제외하였다. 최종적으로 상의 혼합으로 인해 액체수소로 유입되는 열 유속의 기여도에 대하여 정리하였다. 또한 액체수소로 유입되는 열 유속과 집중 질량 기반의 간이식을 통해 BOG 발생량 및 경향을 예측하고 분석하였다.

Design of BOG re-liquefaction system of 20,000 m3 liquid hydrogen carrier

  • Byeongchang Byeon;Hwalong You;Dongmin Kim;Keun Tae Lee;Mo Se Kim;Gi Dock Kim;Jung Hun Kim;Sang Yoon Lee;Deuk Yong Koh
    • 한국초전도ㆍ저온공학회논문지
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    • 제25권3호
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    • pp.49-55
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    • 2023
  • This paper presents the design of a re-liquefaction system as a BOG (boil-off gas) handling process in liquid hydrogen transport vessels. The total capacity of the re-liquefaction system was assumed to be 3 ton/day, with a BOR (boil-off rate) of 0.2 %/day inside the cargo. The re-liquefaction cycle was devised using the He-Brayton Cycle, incorporating considerations of BOG capacity and operational stability. The primary components of the system, such as compressors, expanders, and heat exchangers, were selected to meet domestically available specifications. Case studies were conducted based on the specifications of the components to determine the optimal design parameters for the re-liquefaction system. This encompassed variables such as helium mass flow rate, the number of compressors, compressor inlet pressure and compression ratio, as well as the quantity and composition of expanders. Additionally, an analysis of exergy destruction and exergy efficiency was carried out for the components within the system. Remarkably, while previous design studies of BOG re-liquefaction systems for liquid hydrogen vessels were confined to theoretical and analytical realms, this research distinguishes itself by accounting for practical implementation through equipment and system design.