• 제목/요약/키워드: Hydrogen Compression

검색결과 137건 처리시간 0.024초

왕복동식 수소 압축 시스템에서의 스너비 내부 압력변화의 영향 (Influence of Pressure Variation Inside the Snubber on Reciprocating Hydrogen Compression System)

  • 라흐만;이경환;우주식;토니;정한식;정효민
    • 동력기계공학회지
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    • 제13권2호
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    • pp.42-48
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    • 2009
  • 본 실험에서는 왕복동식 수소 압축 시스템에서 다양한 스너버 압력변화와 스너버 효과를 조사가 수행되었다. 압력값은 실험적인 방법으로 스너버 시스템에서 각각 6군데에서 압력 값을 측정하였다. 그리고 아크릴 스너버에서의 입, 출구의 압력진폭은 FFT로 얻어진다. 맥동압 감소는 결과의 입, 출구의 진폭으로써 계산되어진다. 이는 각각의 모터 주파수 30, 40, 50Hz에서 각각 58.248%, 57.026%, 56.871%의 맥동압 감소가 일어난다. 압력 손실은 각각의 모터주파수 30, 40, 50Hz에서 0.960%, 1.533%, 1.965% 손실값이 발생한다. 수치해석은 스너버 내부 모든 구역에의 압력 정보를 보여준다. 실험과 수치해석의 결과를 비교하면 좋은 일치성을 보인다. 그렇기 때문에 수치해석으로 구한 압력 예측값은 왕복등식 수소 압축 시스템의 스너버 성능을 포함하는 다양한 수학적 식에 적용가능하다.

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메탄, 에틸렌 및 프로판 냉매를 활용한 다원 냉동 사이클에서 LNG 냉열을 활용한 동력 절감 방안에 대한 연구 (A Study on the Power Saving with the Use of LNG Cold Heat in a Cascade Refrigeration Cycle using Methane, Ethylene and Propylene as Refrigerants)

  • 조정호
    • 한국수소및신에너지학회논문집
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    • 제31권3호
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    • pp.302-306
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    • 2020
  • In this study, computer simulation works using PRO/II with PROVISION V10.2 have been performed for a cascade refrigeration cycle using methane, ethylene and propane as refrigerants. LNG cold heat was also utilized in order to save the compression powers for the ethylene and propane refrigeration cycles. It was concluded that about 77% of compression power can be saved by using LNG cold heat through the exchanging heat with refrigerants. We could also know that the cold heat price contained in 1 ton of LNG is 16,155 won.

EGR 성층화급기에 의한 DME HCCI 연소시의 압력 상승률 저감에 관한 연구 (A Study about the Effects of EGR Stratification on Reducing the Pressure RIse Rate of DME HCCI Combustion)

  • 임옥택
    • 한국수소및신에너지학회논문집
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    • 제22권6호
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    • pp.895-904
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    • 2011
  • Stratified charge has been thought as one of the ways to avoid a sharp pressure rise on HCCI combustion. The purpose of this study is to evaluate the potential of stratified charge for reducing PRR on HCCI combustion. The pre-mixture with thermal, mixing and EGR stratifications is charged in Rapid Compression Machine. After that, the pre-mixture is compressed and in that process, in-cylinder gas pressure and temperature are analyzed. Additionally numerical calculation with multi-zones modeling is run to know the potential of stratified charge for reducing PRR.

Linde, Claude 및 Advanced 사이클을 이용한 질소액화공정 연구 (A Study on the Nitrogen Liquefaction Using Linde, Claude and Advanced Cycle)

  • 노상균
    • 한국수소및신에너지학회논문집
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    • 제33권3호
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    • pp.261-265
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    • 2022
  • In this paper, comparative studies between Linde, Claude and advanced cycle for the liquefaction of nitrogen have been completed. PRO/II with PROVISION release 2021. 1 from AVEVA company (Cambridge, UK) was used, and Peng-Robinson equation of the state model with Twu's alpha function was selected for the modeling of the condensation of nitrogen. When using Claude liquefaction, we can reduce the total compression power by 49.25% for the comparison of Linde cycle. And finally, we could conclude that 90.41% of total compression power was saved when using an advanced cycle being compared to Linde liquefaction cycle.

유기 랭킨 사이클로 구동되는 증기압축 냉동사이클의 성능 해석 (Performance Analysis of a Vapor Compression Cycle Driven by Organic Rankine Cycle)

  • 김경훈;진재영;고형종
    • 한국수소및신에너지학회논문집
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    • 제23권5호
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    • pp.521-529
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    • 2012
  • Since the energy demand for refrigeration and air-conditioning has greatly increased all over the world, thermally activated refrigeration cycle has attracted much attention. This study carries out a performance analysis of a vapor compression cycle (VCC) driven by organic Rankine cycle (ORC) utilizing low-temperature heat source in the form of sensible heat. The ORC is assumed to produce minimum net work which is required to drive the VCC without generating an excess electricity. Effects of important system parameters such as turbine inlet pressure, condensing temperature, and evaporating temperature on the system variables such as mass flow ratio, net work production, and coefficient of performance (COP) are thoroughly investigated. The effect of choice of working fluid on COP is also considered. Results show that net work production and COP increase with increasing turbine inlet pressure or decreasing condensing temperature. Out of the five kinds of organic fluids considered $C_4H_{10}$ gives a relatively high COP in the range of low turbine inlet pressure.

액화수소 운반선의 증발가스 재액화 비율에 따른 재액화 시스템의 설계 및 평가 (Design and Assessment of Reliquefaction System According to Boil Off Gas Reliquefaction Rate of Liquefied Hydrogen Carrier)

  • 조욱래;이현용;류보림;강호근
    • 한국항해항만학회지
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    • 제44권4호
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    • pp.283-290
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    • 2020
  • 액화 수소 운반선에서 증발가스의 발생은 불가피하며, 화물탱크 내부의 압력 문제를 피하기 위해 적절한 조치가 필요하다. 이 증발 가스는 선박의 추진연료로 사용 될 수 있으며, 추진에 사용되고 남은 나머지 부분은 재액화 또는 연소시키는 등 효과적으로 관리해야 한다. 본 연구에서는 수소 추진 시스템을 갖춘 160,000㎥ 액화 수소 운반선에 최적화된 증발 가스 재액화 시스템을 제안한다. 이 시스템은 수소 압축 및 헬륨 냉매 섹션으로 구성되고, 화물탱크로부터 배출되는 증발가스의 냉열을 효과적으로 활용하여 효율을 증가시켰다. 본 연구에서는 공급 온도 -220℃인 수소 증발가스가 재액화 시스템에 들어가는 상태에서 증발가스의 재액화 비율에 따른 엑서지 효율 및 에너지 소모율 (SEC, Specific Energy Consumption) 분석을 통해 시스템을 평가하였다. 그 결과 재액화 비율 20%에서 4.11kWh/kgLH2의 SEC와 60.1%의 엑서지 효율을 보여 주었다. 아울러, 수소 압축압력, 수소 팽창기의 입구온도, 공급 증발가스 온도변화에 따른 영향을 확인하였다.

CFD Analysis on the 2nd Cylinder Discharge line in Hydrogen Reciprocating Compressor

  • Lee, Gyeong-Hwan;Woo, Ju-Sik;Shin, Yong-Han;Jeong, Hyo-Min;Chung, Han-Shik
    • Journal of Advanced Marine Engineering and Technology
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    • 제34권5호
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    • pp.695-702
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    • 2010
  • Numerical analysis information will be very useful to improve fluid system. General information about an internal gas flow is presented by numerical analysis approach. Relating with hydrogen compressing system, which have an important role in hydrogen energy utilization, this should be a useful tool to observe the flow quickly and clearly. Flow characteristic analysis, including pressure and turbulence kinetic energy distribution of hydrogen gas coming to the cylinder of a reciprocating compressor are presented in this paper. Suction-passage model is designed based on real model of hydrogen compressor. Pressure boundary conditions are applied considering the real condition of operating system. The result shows pressure and turbulence kinetic energy are not distributed uniformly along the passage of the Hydrogen system. Path line or particles tracks help to demonstrate flow characteristics inside the passage. The existence of vortices and flow direction can be precisely predicted. Based on this result, the design improvement, such as reducing the varying flow parameters and flow reorientation should be done. Consequently, development of the better hydrogen compressing system will be achieved.

왕복동식 수소압축기의 2단 토출통로 유동해석 (Numerical Analysis on the $2^{nd}$ Discharae-passase In Reciprocating Compressor)

  • 이경환;라흐만;김철표;정태휘;정효민;정한식
    • 동력기계공학회지
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    • 제13권3호
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    • pp.27-32
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    • 2009
  • Numerical analysis information of a complex discharge-passage will be very useful to improve hydrogen compression system. General information about an internal gas flow is presented by numerical analysis approach. Relating with hydrogen compressing system, which have an important role in hydrogen energy utilization, this should be a useful tool to observe the flow quickly and clearly. Flow characteristic analysis, including pressure and turbulence kinetic energy distribution of hydrogen gas from cylinder going to the chamber of a reciprocating compressor are presented in this paper. Discharge-passage model is designed based on real model of hydrogen compressor. Pressure boundary conditions are applied considering the real condition of operating system. The result shows pressure and turbulence kinetic energy are not distributed uniformly along the passage of the hydrogen compressing system. Path line or particles tracks help to demonstrate flow characteristics inside the passage. The existence of vortices and flow direction can be precisely predicted. Based on this result, the design improvement should be done. Consequently, development of the better hydrogen compressing system will be achieved.

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Long Term Reliability of Fluroelastomer (FKM) O-ring after Exposure to High Pressure Hydrogen Gas

  • Choi, Myung-Chan;Lee, Jin-Hyok;Yoon, Yu-mi;Jeon, Sang-Koo;Bae, Jong-Woo
    • Elastomers and Composites
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    • 제55권4호
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    • pp.270-276
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    • 2020
  • The long-term durability of an FKM O-ring used as parts of a hydrogen station was investigated by exposing it to high-pressure gaseous hydrogen for 1, 3, and 7 days at room temperature. Changes in its sealing force were subsequently measured at 150℃ using intermittent compression stress relaxation (CSR). No changes in the tensile properties of FKM O-ring were observed, but its initial and overall sealing forces at 150℃ significantly decreased with increasing exposure time to hydrogen gas. Microvoid formation in the FKM O-ring upon exposure to high-pressure hydrogen was minimized over time after the ring was exposed to atmospheric pressure at room temperature, which prevented changes in its tensile properties. However, applying heat accelerated FKM O-ring oxidation, which decreased its sealing force. These results indicated that identifying changes in the sealing force of rubber materials using intermittent CSR is not sufficient for monitoring changes in mechanical properties under high-pressure hydrogen atmospheres; however, it is suitable for evaluating the long-term durability of sealing materials for hydrogen station applications under similar conditions.