• Title/Summary/Keyword: 가스냉각기

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액체로켓엔진 단일추진제 가스발생기 설계에 관한 고찰

  • 김명철;윤덕진;김승우
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2000.04a
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    • pp.30-30
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    • 2000
  • 액체로켓엔진의 단일추진제 가스발생기는 연료공급 시스템의 터보펌프를 구동시키기 위한 작동가스 생성을 목적으로 사용된다. 고체추진제 가스발생기와 비교할 경우 작동시간이 보다 길고 연소생성물에 의한 터빈 블레이드의 삭마가 없으며 제어가 용이하므로 초기 액체로켓엔진 개발시부터 사용되어 왔다. 80년대 이후 개발된 액체로켓엔진은 이원추진제 가스발생기 또는 연소가스 FEEDBACK 시스템을 채용하고 있지만 단일추진제 가스발생기는 과산화수소수 또는 하이드라진과 같은 별도의 추진제 공급 시스템을 필요로 하는 단점에도 불구하고 상대적으로 낮은 온도의 무연 작동 가스를 발생하므로 가스발생기 자체를 위한 냉각시스템을 제거 또는 최소화 시켜 간단한 구조로 전체 시스템 설계를 가능하게 하므로 중소형 액체로켓엔진에 사용되고 있다.

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Heat Transfer Characteristics of Carbon Dioxide in a Inclined Helical Coil Type Heat Exchanger with Inner Diameter Tube of 4.55 mm (내경 4.55 mm의 경사진 헬리컬 코일형 열교환기내 이산화탄소의 열전달 특성에 관한 연구)

  • Son, Chang-Hyo
    • Journal of the Korean Institute of Gas
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    • v.11 no.3
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    • pp.1-6
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    • 2007
  • The heat transfer coefficient and pressure drop during gas cooling process of $CO_2$ (R-744) in inclined helical coil copper tubes were investigated experimentally. The main components of the refrigerant loop are a receiver, a variable-speed pump, a mass flow meter, a pre-heater and a inclined helical coil type gas cooler (test section). The test section consists of a smooth copper tube, which is specified as the inner diameter of 4.55 mm. The refrigerant mass fluxes were varied from 200 to $600kg/m^2s$ and the inlet pressures of gas cooler were done 7.5 to 10.0 (MPa). The heat transfer coefficients of $CO_2$ in the inclined helical coil tubes increase with the increase of mass flux and gas cooling pressure of $CO_2$. The pressure drop of $CO_2$ in the gas cooler shows relatively good coincidence with those predicted by Ito's correlation developed for single-phase in a helical coil tube. The local heat transfer coefficient of $CO_2$ is well coincident with the correlation by Pitla et al. However, at the region near pseudo-critical temperature, the experiments indicate higher values than the Pitla et al. correlation.

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An Analysis on the Temperature Safety of a Boiler Desuperheater (보일러 과열증기 냉각기의 온도 안전성에 관한 연구)

  • Ha, Ji-Soo;Kim, Tae-Kwon;Chang, Hyuk-Sang
    • Journal of the Korean Institute of Gas
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    • v.16 no.2
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    • pp.9-13
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    • 2012
  • The present study has been carried out to diagnose the temperature safety of a boiler desuperheater which decreases abnormally higher temperature of superheated steam in a reheater of a power plant. The liquid water in the desuperheater stays in a closed space. It becomes heated by the high temperature superheated steam and boiling could occur. Boiling might increase internal pressure and it could destroy the desuperheater if the internal pressure exceeds the allowable pressure of the desuperheater. The present study modeled reasonably the desuperheater and four cases of heat transfer analysis are executed with the consideration of insulator and natural convective fluid flow of the inside cooling water. For the case excluded the natural convective fluid flow, the temperature exceeds the allowable temperature and pressure. On the other hand, for the real case included natural convective fluid flow and insulator, the active heat transfer from higher temperature region to lower temperature region occurs and it makes the temperature in the cooling water below the allowable temperature and pressure. From this fact, it could be thought that the desuperheater in the reheater is safe from destroy or back flow.

Specific Impulse Variation of a Liquid Rocket Engine by Film Cooling (막냉각에 의한 액체로켓엔진의 비추력 변화)

  • Cho, Won-Kook;Park, Soon-Young;Seol, Woo-Seok
    • Aerospace Engineering and Technology
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    • v.8 no.2
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    • pp.133-139
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    • 2009
  • An analysis has been performed on the specific impulse for a liquid rocket engine of gas generator cycle. The present analysis method has been validated through the comparison of the optimal specific impulse for the 300t thrust conceptual engine against the published data. The engine specific impulse can be increased by applying film coolant decreasing the fuel pump head for regenerative cooling despite the decrease of specific impulse of the combustion chamber when the film coolant participates combustion more than the critical amount. The improved condition shows that higher combustion chamber pressure is achieved with less fuel pump head rise by additional film cooling.

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The Study of Comparison of Cooling System for H2 Discharge Station (수소충전용 직접 및 간접 냉각시스템 비교 평가 연구)

  • LEE, HYENCHAN;YI, JONGYEOL;BAE, CHANHYO;HEO, JEONGHO;JEON, JAEYOUNG
    • Transactions of the Korean hydrogen and new energy society
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    • v.30 no.2
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    • pp.163-169
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    • 2019
  • This study is a research to compare efficiency of new cooling system (chiller, pre-cooler) to that of the conventional system at the hydrogen refueling station (HRS). This study includes contents for thermodynamic comparison of cooling system for HRS and comparison of pros and cons of its components. So It is to establish design concept of cooling system of HRS supplying with fuel cell electric vehicle (FCEV). HRS is charging high pressure H2 (700 bar) to FCEV. However cooling system is need to prevent temperature rise in tank. This cooling system consists of pre-cooler and chiller system.

Design and Performance Evaluation of Dimpled EGR Cooler (딤플형 EGR 냉각기의 설계 및 성능평가)

  • Seo, Young-Ho;Lee, Hyun-Min;Heo, Seong-Chan;Ku, Tae-Wan;Song, Woo-Jin;Kang, Beom-Soo;Kim, Jeong
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.34 no.3
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    • pp.291-298
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    • 2010
  • A conventional EGR cooler, which is used in an EGR system of an automobile diesel engine, has a low heat-exchange efficiency. To maximize the heat transfer between the exhaust gas and coolant, dimples are formed on the surface of heat exchange tubes. When designing the dimpled EGR cooler, the net heat transfer areas in the conventional and dimpled tube-type EGR coolers are compared. Structural integrity evaluations are also performed by combining finite element analysis with a homogenization method. Subsequently, the process of manufacturing the dimpled tube, i.e., the formation of dimples, edge bending, center v-notch bending, compression, and plasma welding, is established and carried out. Thus, the dimpled EGR cooler is developed, and its performance is verified.

Process Model for the Coal Gasification System (석탄가스화 시스템 공정모델에 관한 연구)

  • Kim, Su-Wan;Kim, Hyung-Taek;Lee, Chan
    • Journal of Energy Engineering
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    • v.4 no.2
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    • pp.253-260
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    • 1995
  • 본 연구는 현재 아주대학교 구내에 건설중인 3T/D 석탄가스화 실증실험장치의 엔지니어링 설계자료 및 실험장치 각 부분의 사양을 종합화하여 최적의 설계조건을 도출하고 향후 스케일 업에 따른 장치변화 및 관련변수를 예측할 수 있는 공정모델을 개발하는데 그 목적이 있다. 모델은 3T/D 석탄가스화 장치와 같이 가스화기부분, 산화제 및 연료의 주입부분, 생성가스의 냉각부, 가스화기 예열부분 및 회분처리부로 구성된다. 개발된 모델에 의해 부분별 대체가능성을 평가하여 최적 조합형태를 제시하였고 결과의 타당성을 입증하기 위해 실제 플랜트의 설계자료와 프로그램에 의한 결과를 비교하였다. 또한 스케일 업 결과 변화폭이 가장 큰 부분은 냉각기의 길이가 냉각수 유입량 증대에 따라 급겨히 변화되어 냉각수 유입을 위한 냉각수 분산장치의 교체가 필요한 것으로 판단되었다.

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Fuel methanol as an alternative fuels (대체연료로서의 메타놀)

  • 장병주
    • Journal of the korean Society of Automotive Engineers
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    • v.6 no.1
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    • pp.11-20
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    • 1984
  • 이글에서는 메타놀의 성상과 재래의 내연기관에 메타놀을 사용하였을 때의 특성을 몇 가지 관 점에서 살펴보았다. 유리한 점으로 판단되는 사실은, 1)옥탄가가 높아 고압축비의채용으로 열 효율을 높일 수 있다. 2)기화참열이 크고 물과의 친화성이 좋다. 이러한 점은 내부냉각방식의 채용으로 이상적인 충상혼합기를 형성할 수가 있을 것이며, 현재의 내연기관의 냉각계통, 즉 방 열기, 물펌프, 냉각휜 등을 줄일 수 있을 것으로 본다. 또 NO.chi.의 배출을 저하시키는 이점도 있다. 3)단일성분 연료이므로 배기가스 조성이 단순하며 깨끗하다. 이는 배기공해상 메타놀연료가 석유계연료보다 유리하다. 그러나 메타놀기관은 앞으로 기술적 연구, 개선을 필요로 하는 점도 있다. 1) 메타놀의 가솔린과 비교하여 인화점이 높고 기화잠열이 커서 시동성이 나쁘고 2) 메타놀은 어느 종류의 금속, 프라스택, 도료 등을 부식시킨다. 3) 메타놀은 세탄가가 낮아, 압축점화는 무리이며 4) 발열량은 석유계 연료의 약 절반이다. 따라서 시동성, 재료, 착화방법, 개질 가스의 이용법, 내부냉각 등의 기술적인 문제가 개발된다면 질, 량, 가격적인 면에서도 내연기관용에는 메타놀이 유리하다고 본다. 그러나 현시점에서는 기관측으로 보아 자동차용연료로는 가솔린에 혼합하는 방법이고 그렇게 된다면 20-30%의 연료가 절감되리라고 믿는다.

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Conceptual Design of Coolant Channel for Sub-scale Combustion Chamber (소형 연소기 냉각 유로 개념 설계)

  • 정용현;조원국;한상엽;류철성
    • Journal of the Korean Society of Propulsion Engineers
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    • v.6 no.4
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    • pp.1-6
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    • 2002
  • A numerical heat transfer analysis and the structural analysis were performed for the design of sub-scale combustion chamber's coolant passage. The heat flux through the combustion chamber wall was estimated by 2-D heat transfer analysis of compressible hot gas and the result was applied as a thermal boundary condition of 3-D analysis. The heat flux estimated by the present method agreed well with the experimental correlation and proved to be insensitive to cooling condition. So the same thermal boundary condition was applied for various operating conditions. The maximum temperature of combustion chamber wall was predicted by 3-D analysis for single coolant passage and the result will be used for the development of a regeneratively cooled combustion chamber. Also estimated were the stress distribution and structural safety of coolant passage through the static structural analysis.