• 제목/요약/키워드: Fuel characteristics

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차세대 발사체용 연료선정에 관한 연구 (A Study on Fuel Selection for Next-Generation Launch Vehicles)

  • 김철웅;임병직;이기주;박재성
    • 한국추진공학회지
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    • 제25권3호
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    • pp.62-80
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    • 2021
  • 차세대 추진기관에 대한 요구조건과 좋은 추진제의 조건을 정리하였다. 국내외에서 주로 관심을 받고 있는 연료인 케로신, 수소, 메탄의 특성과 효용성을 상호비교하였다. 비교 결과 메탄이 신뢰성, 비용, 재사용성, 유지보수, 친환경, 안전성, 수명, 기술적 난이도, 엔진 사이클 선택, 공통격벽, 무분해 조립 납품 등에서 다른 연료보다 더 유리한 것으로 평가되었다. 그리고 성능 면에서도 케로신보다 비추력이 높아서 발사체의 효율을 증가시킬 수 있다. 메탄은 친환경, 낮은 연소온도, 긴수명, 유지보수의 편의성을 가지고 있어서 재사용과 다목적 엔진 개발에 장점이 있다.

수소 저장용 탱크의 튜브 형상에 따른 온도분포 특성에 대한 수치해석 연구 (A Study on the Characteristics of Temperature Distribution Related to Geometry of Tube in Hydrogen Storage Vessel)

  • 오승준;윤정환;전경숙;김재규;박준홍;최정주
    • 한국수소및신에너지학회논문집
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    • 제32권4호
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    • pp.205-211
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    • 2021
  • Recently, it is necessary for study on renewable energy due to environmental pollution and fossil fuel depletion. Therefore, in this study, the filling temperature according to the nozzle geometry was evaluated based on the limit temperature specified in SAEJ2601 for charging hydrogen, a new energy. There are three types of nozzles, normal, angle and round, fixed the average pressure ramp rate at 52.5 MPa/min, and the injection temperature was set at 293.4 K. As a result, the lowest temperature distribution was found in the round type, although the final temperature did not differ significantly in the three types of nozzles. In addition, Pearson's coefficient was calculated to correlate the mass flow rate with the heat transfer rate at the inner liner wall, which resulted in a strong linear relationship of 0.98 or higher.

단일 가열봉의 재관수 시 2상유동 및 벽면 열전달에 관한 실험적 연구 (Experimental investigation of two-phase flow and wall heat transfer during reflood of single rod heater)

  • 박영재;김형대
    • 한국가시화정보학회지
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    • 제18권3호
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    • pp.23-34
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    • 2020
  • Two-phase flow and heat transfer characteristics during the reflood phase of a single heated rod in the KHU reflood experimental facility were examined. Two-phase flow behavior during the reflooding experiment was carefully visualized along with transient temperature measurement at a point inside the heated rod. By numerically solving one-dimensional inverse heat conduction equation using the measured temperature data, time-resolved wall heat flux and temperature histories at the interface of the heated rod and coolant were obtained. Once water coolant was injected into the test section from the bottom to reflood the heated rod of >700℃, vast vapor bubbles and droplets were generated near the reflood front and dispersed flow film boiling consisted of continuous vapor flow and tiny liquid droplets appeared in the upper part. Following the dispersed flow film boiling, inverted annular/slug/churn flow film boiling regimes were sequentially observed and the wall temperature gradually decreased. When so-called minimum film boiling temperature reached, the stable vapor film between the heated rod and coolant was suddenly collapsed, resulting in the quenching transition from film boiling into nucleate boiling. The moving speed of the quench front measured in the present study showed a good agreement with prediction by a correlation in literature. The obtained results revealed that typical two-phase flow and heat transfer behaviors during the reflood phase of overheated fuel rods in light water nuclear reactors are well reproduced in the KHU facility. Thus, the verified reflood experimental facility can be used to explore the effects of other affecting parameters, such as CRUD, on the reflood heat transfer behaviors in practical nuclear reactors.

2단 감압 수소레귤레이터의 연성해석 및 도금특성에 관한 연구 (A Study of Fluid Structure Interaction Analysis and Coating Characteristics of a Two-stage Pressure Reduction Hydrogen Regulator)

  • 송재욱;김승모
    • 한국산학기술학회논문지
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    • 제22권1호
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    • pp.37-44
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    • 2021
  • 수소연료전지차(FCEV)는 전기를 자체 생산하는 연료전지를 동력원으로 하고 있으며 기존 기계식 레귤레이터의 출구압은 시스템 사양에 의해 제작 시점에서 고정되며 순간적인 수소 공급량에 의한 출구압 강하가 발생하는 경우 수소의 공급유량이 부정확해지는 문제가 있다. 본 연구에서는 기존에 존재하는 1단 기계식 감압 레귤레이터를 보완하기 위한 2단 감압 레귤레이터의 형상 설계 및 재질 선정을 수행하였다. 2단계 감압을 통한 맥동과 느린 응답을 보상하고 고압 편차 문제를 해결하기 위해 감압 유닛의 접촉면 형상을 가공성을 고려하여 설계하였다. 기밀성 측면에서 TPU의 변형량은 최대 15.82% 작은 변위량을 보였으며, 재질 선정에서는 2단 감압에 보편성을 확보하고 다양한 수소 연료 공급시스템에 적용 가능한 전자식 솔레노이드를 고려하여 자성체를 선정하고 적절한 도금 종류를 검증하기 위한 수소 취성 및 내식성 평가를 실시하였다. 시편의 표면 부식은 Cr 도금의 경우에서만 발생되지 않았으며, 인장 시험을 통해 부식과정간 연신율을 비교하였을 때, 2% 이내의 차이를 확인하였다.

BIM 기반 에너지성능분석을 통한 공동주택의 주동 설계 전략개발 - 주동타입 및 층수 변화를 중심으로 - (Multi-Family Housing Block Design Strategy Development by BIM-based Energy Performance Analysis - focusing on the Block Types and the Variations in Stories -)

  • 전재홍;박혜진;이권형;추승연
    • 대한건축학회논문집:계획계
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    • 제34권2호
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    • pp.3-11
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    • 2018
  • Korea has achieved a rapid economic development and with the increase in population and national income and the expansion of social and economic activities, energy consumption has rapidly increased too. Energy consumption per head has constantly increased and currently, power consumption per head is 7.5 times bigger than in 1985. Buildings occupy 25% of total energy consumption and especially, 50% of total energy is consumed for heating and cooling. In this situation, multi-family housing, which has constantly been increased, has an energy saving rate of 1.9%, which is the lowest level and this makes the government's energy policy for sustainable energy system development useless. Besides, energy consumption leads to secondary problems, such as air, water and marine pollution and heat pollution and wastewater/drainage and the increased use of fossil fuel is a fundamental reason for ozone layer destruction and global warming. Therefore, efficient energy consumption plans are required. This study aims to analyze energy performance in each block type of high-rise and diversified multi-family housing that accounts for 60% of all the housing forms, depending on the variations in stories through BIM-based energy simulation. For this study, four representative block types were selected, based on the multi-family floor plan, which is certified for energy performance evaluation and they were applied to the floor plan of a multi-family house that is scheduled to be built. Then BIM modeling was conducted from the fifth story to the 40th story at an intervals of 5 stories and based on the finding, energy characteristics of each block type and energy performance depending on the variations in stories were analyzed. It is considered that this would serve as objective data for block type and block story decision of energy performance-based multi-family housing.

Parameter Study of Boiling Model for CFD Simulation of Multiphase-Thermal Flow in a Pipe

  • Chung, Soh-Myung;Seo, Yong-Seok;Jeon, Gyu-Mok;Kim, Jae-Won;Park, Jong-Chun
    • 한국해양공학회지
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    • 제35권1호
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    • pp.50-58
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    • 2021
  • The demand for eco-friendly energy is expected to increase due to the recently strengthened environmental regulations. In particular, the flow inside the pipe used in a cargo handling system (CHS) or fuel gas supply system (FGSS) of hydrogen transport ships and hydrogen-powered ships exhibits a very complex pattern of multiphase-thermal flow, including the boiling phenomenon and high accuracy analysis is required concerning safety. In this study, a feasibility study applying the boiling model was conducted to analyze the multiphase-thermal flow in the pipe considering the phase change. Two types of boiling models were employed and compared to implement the subcooled boiling phenomenon in nucleate boiling numerically. One was the "Rohsenow boiling model", which is the most commonly used one among the VOF (Volume-of-Fluid) boiling models under the Eulerian-Eulerian framework. The other was the "wall boiling model", which is suitable for nucleate boiling among the Eulerian multiphase models. Moreover, a comparative study was conducted by combining the nucleate site density and bubble departure diameter model that could influence the accuracy of the wall boiling model. A comparison of the Rohsenow boiling and the wall boiling models showed that the wall boiling model relatively well represented the process of bubble formation and development, even though more computation time was consumed. Among the combination of models used in the wall boiling model, the simulation results were affected significantly by the bubble departure diameter model, which had a very close relationship with the grid size. The present results are expected to provide useful information for identifying the characteristics of various parameters of the boiling model used in CFD simulations of multiphase-thermalflow, including phase change and selecting the appropriate parameters.

Study on a Fully Electrified Car Ferry Design Powered by Removable Battery Systems Considering Domestic Coastal Environment

  • Hong, Jang Pyo;Kim, Young-Shik;Shim, Hyung-Won;Kang, Hee-Jin;Kim, YunHo;Kim, Gyu Bum;Cho, Seongpil
    • 한국해양공학회지
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    • 제35권1호
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    • pp.1-12
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    • 2021
  • As increasing the international community's awareness of greenhouse gas reduction, the demand for eco-friendly ship fuel has accelerated recently. The fundamental aim of this study is to develop a new type of fully electrified ferry for passengers and cars considering Korean domestic coastal environmental conditions. Several technical difficulties are encountered in applying a fully electric propulsion system based on removable battery systems into a ship due to limitations imposed by the batteries' size and capacity. This paper reviews and analyzes marine environment regulations strengthened recently, technology trends related to fully electric propulsion vessels in each country, and Korean domestic coastal environments. We propose a new fully electrified car ferry design with a displacement of 400 t applied in Korea. It is powered by removable battery systems pre-charged in a safe inland charging station. The mobile battery system is developed to enable roll-on and roll-off using wheels. The characteristics of the ship motion are analyzed based on the weight and location of the battery systems. We expect our battery systems to be applicable to larger ships in the future.

Optimization and modification of PVDF dual-layer hollow fiber membrane for direct contact membrane distillation; application of response surface methodology and morphology study

  • Bahrami, Mehdi;Karimi-Sabet, Javad;Hatamnejad, Ali;Dastbaz, Abolfazl;Moosavian, Mohammad Ali
    • Korean Journal of Chemical Engineering
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    • 제35권11호
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    • pp.2241-2255
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    • 2018
  • RSM methodology was applied to present mathematical models for the fabrication of polyvinylidene fluoride (PVDF) dual-layer hollow fibers in membrane distillation process. The design of experiments was used to investigate three main parameters in terms of polymer concentration in both outer and inner layers and the flow rate of dope solutions by the Box-Behnken method. According to obtained results, the optimization was done to present the proper membrane with desirable properties. The characteristics of the optimized membrane (named HF-O) suggested by the Box-Behnken (at the predicted point) showed that the proposed models are strongly valid. Then, a morphology study was done to modify the fiber by a combination of three types of a structure such as macro-void, sponge-like and sharp finger-like. It also improved the hydrophobicity of outer surface from 87 to $113^{\circ}$ and the mean pore size of the inner surface from 108.12 to 560.14 nm. The DCMD flux of modified fiber (named HF-M) enhanced 62% more than HF-O when it was fabricated by considering both of RSM and morphology study results. Finally, HF-M was conducted for long-term desalination process up to 100 hr and showed stable flux and wetting resistance during the test. These stepwise approaches are proposed to easily predict the main properties of PVDF dual-layer hollow fibers by valid models and to effectively modify its structure.

저 Sn 함유 Zr-Nb-Sn-Fe 합금 튜브 제조 및 최종 열처리 온도에 따른 기계적/부식특성 변화 (Processing of Low Tin Zr-1Nb-0.69Sn-0.11Fe Alloy Tubes and Effect of Final Heat Treatment on Their Mechanical and Corrosion Properties)

  • 조남찬;이종민;홍순익
    • 대한금속재료학회지
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    • 제49권1호
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    • pp.17-24
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    • 2011
  • To investigate the relationship between heat treatment in zirconium alloy tubing process and metallurgical characteristics of Zr-1Nb-0.69Sn-0.11Fe alloy tubes, mechanical and oxidation behaviors of tubes heat treated at different temperatures after the final pilgering were investigated. The stress strain curves exhibited the saturation behaviors in all heat treatment conditions ($460{\sim}600^{\circ}C$) in this study with the onset strain of saturation increased with increase of post-pilgering annealing temperature. The strength fell off rapidly with increasing annealing temperature. The ultimate strength of the low tin Zr-1Nb-0.69Sn-0.11Fe alloy with slightly higher iron and oxygen contents in this study was found to be higher than Zr-1Nb-1Sn-0.1Fe alloy. The oxidation experiments in steam condition revealed that the corrosion resistance of low tin Zr-1Nb-0.69Sn-0.11Fe alloy was better than the Zr-1Nb-1Sn-0.1Fe alloy with a higher Sn content. The weight gain of low tin Zr-1Nb-0.69Sn-0.11Fe alloy tubes gradually increased with the increasing annealing temperature possibly due to the decreased Nb content in the matrix because of the formation of ${\beta}-Nb$ particles.

GUDN/BTATz를 적용한 친환경추진제 특성 연구 (A Study on Characteristic of Eco-friendly Propellant Using GUDN/BTATz)

  • 전수아;원종웅;박성준;박정호;최성한
    • 한국추진공학회지
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    • 제24권4호
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    • pp.41-47
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    • 2020
  • 본 연구에서는 염소가스 등 유해가스의 발생을 줄이고 질소가스 방출을 증가시키는 친환경 추진제 조성개발을 목표로 한다. 이에 고체 추진제에 일반적으로 사용되는 AP(Ammonium Perchlorate)와 Al(Aluminium)를 대신하여 저탄소 고질소 물질인 GUDN(N-Guanylurea dinitramide)과 BTATz(3,6-bis(1H-1,2,3,4-tetrazol-5-ylamino)-1,2,4,5-tetrazine)를 사용하였다. 제조된 추진제는 기계적 및 연소 특성, 성능 그리고 AGARD 연기등급을 분석하였다. AP/Al 추진제에 비해 GUDN/BTATz추진제는 기계적 성질과 연소 속도가 감소하는 경향을 나타내었다. 또한, 4인치표준모타 제작 후 지상연소 시험 결과 GUDN/BTATz추진제 연소 시 성능은 감소하였으나, 염소가스 등의 유해 가스를 줄여 2차 연기 등급도 개선됨을 확인할 수 있었다.