• 제목/요약/키워드: helium pressure

검색결과 182건 처리시간 0.023초

확산동기 증발에 의한 극저온 액체 과냉각 (Subcooling of cryogenic liquid by diffusion-driven evaporation)

  • 조남경;정상권
    • 한국초전도ㆍ저온공학회논문지
    • /
    • 제9권3호
    • /
    • pp.72-82
    • /
    • 2007
  • This paper relates to reducing the temperature of a cryogenic liquid by contacting it with gas bubbles, which can be characterized by diffusion-driven evaporative cooling, The characteristic of diffusion-driven evaporative cooling is thoroughly examined by theoretical. analytical and experimental methods specifically for the case of helium injection into liquid oxygen. The results reveal that if the gaseous oxygen partial pressure in helium bubbles is lower than the liquid oxygen vapor pressure, cooling occurs autonomously due to diffusion mass transfer. The method of lowering the injected helium temperature turns out to be very effective for cooling purpose.

실제기체의 물성을 이용한 Stirling 냉동기 단열해석 (Adiabatic Analysis of Stirling Refrigerator with Real Gas Properties)

  • 백종훈;장호명
    • 설비공학논문집
    • /
    • 제7권1호
    • /
    • pp.150-160
    • /
    • 1995
  • A Finkelstein adiabatic analysis is performed for Stirling refrigerator with real gas properties of helium. The mass balance and the energy balance equations are formulated into the form that is convenient for incorporating an available computer code of the helium properties. The differential equations are solved numerically. The calculated coefficient of performance(COP) and the pressure variation are compared with the results obtained when helium is assumed to be an ideal gas. The relative errors in COP are presented as functions of the refrigeration temperature and the maximum cycle pressure.

  • PDF

비활성 기체의 증기압 예측 (Prediction of Vapor Pressure of the Inert Gases)

  • 정재관
    • 대한화학회지
    • /
    • 제47권6호
    • /
    • pp.541-546
    • /
    • 2003
  • 문헌에 보고된 기존의 비활성 기체의 증기압 측정값을 이용하여 환원증기압과 환원온도 형태의 아래와 같은 식의 상수 A, B, C, D와 지수 n을 구하는데 사용하였다: $InP_r=A+{\frac{B}{T_r}+CInT_r+DT_n^r}$ 오차분석법에 의해 위 식에 적용되는 비활성 기체의 각 기체 Ar, Kr, Xe, He과 Ne에 대한 가장 정확한 지수와 4개의 상수를 얻었다. 위 식을 통해 각 기체의 증기압을 계산하기 위해서 필요한 것은 정상 끓는점, 임계압력 및 임계온도뿐이며 5개의 비활성 기체의 406개 증기압 실험값에 적용하여 본 결과 전체 평균편차가 0.31% 였다. Ar, Kr, Xe에 대한 평균편차는 각각 0.24%, 0.09%, 0.22%였으며, Ne은 1.31%, He은 0.61%이다. 이러한 결과는 He과 연관된 큰 양자효과와 Ne에 대한 적은 양자효과 때문에 예상된 것이다.

Sterilization of Bacteria, Yeast, and Bacterial Endospores by Atmospheric-Pressure Cold Plasma using Helium and Oxygen

  • Lee Kye-Nam;Paek Kwang-Hyun;Ju Won-Tae;Lee Yeon-Hee
    • Journal of Microbiology
    • /
    • 제44권3호
    • /
    • pp.269-275
    • /
    • 2006
  • Atmospheric-pressure cold plasma (APCP) using helium/oxygen was developed and tested as a suitable sterilization method in a clinical environment. The sterilizing effect of this method is not due to UV light, which is known to be the major sterilization factor of APCP, but instead results from the action of reactive oxygen radicals. Escherichia coli, Staphylococcus aureus, and Saccharomyces cerevisiae deposited on a nitrocellulose filter membrane or Bacillus subtilis spores deposited on polypropylene plates were exposed to helium/oxygen plasma generated with AC input power at 10 kHz, 6 kV. After Plasma treatment, nitrocellulose filter membranes were overlaid on fresh solid media and CFUs were counted after incubation overnight. D-values were 18 sec for E. coli, 19 sec for S. aureus, 1 min 55 sec for S. cerevisiae, and 14 min for B. subtilis spores. D-values of bacteria and yeast were dependent on the initial inoculation concentration, while the D-value of B. subtilis spores showed no correlation. When treated cells were observed with a scanning electron microscope, E. coli was more heavily damaged than S. aureus, S. cevevisiae exhibited peeling, and B. subtilis spores exhibited shrunken morphology. Results showed that APCP using helium/oxygen has many advantages as a sterilization method, especially in a clinical environment with conditions such as stable temperature, unlimited sample size, and no harmful gas production.

대형 진공용기의 헬륨 누설검사 방법에 대한 고찰 (Consideration on the helium leak detection in a large vacuum chamber)

  • 인상렬
    • 한국진공학회지
    • /
    • 제16권4호
    • /
    • pp.235-243
    • /
    • 2007
  • 지금 국내에서는 토카막 핵융합실험장치, 대전류 중성입자빔 실험장치 및 우주 모의실험실 같은 거대시설의 건설과 운용이 활발하다. 이런 시설의 핵심설비인 대형 진공용기는 중소형 용기에 비해 누설 가능성은 높은 반면 기체누설을 검사하는 것은 까다롭다. 중소형 용기에서 널리 사용되는 헬륨누설검사 방법을 어떻게 효율적으로 이런 대형 용기에 적용할 수 있는가 알아보기 위해, 다양한 가상적인 누설검사 시스템들을 구성하고 압력분포 및 헬륨 분압을 계산하여 주어진 장치조건에서 적절한 검사 시스템을 찾는 방법에 대해 논한다.

이원 추진 시스템 고압 시험시의 파열 안전성 고찰 (Rupture Safety Assesment of Bipropellant Propulsion System at High Pressure Testing)

  • 장세명;한조영
    • 한국항공우주학회지
    • /
    • 제38권6호
    • /
    • pp.605-611
    • /
    • 2010
  • 정지궤도위성인 통신해양기상위성은 2010년 발사 예정인데, 관련된 일련의 성능 시험중에는 수백 기압의 헬륨 가스로 채워진 추진계 탱크의 고압 내구 시험도 포함되어 있다. 이 논문에서는 시험 시스템에 최악의 사고가 일어날 경우를 대비하여 그 위험도를 계산하여 보았다. 두 가지 시나리오가 있는데, 첫째는 310 기압의 헬륨 탱크가 현재의 시험챔버에서 일시에 파열하는 경우, 둘째는 116 기압의 감압된 헬륨 탱크가 방탄유리로 보호되고 있는 방에서 파열하는 경우를 가정해 보았다. 폭발파 전파 이론과 전산 수치 모사를 통하여, 제한된 공간에서 반사되는 파동의 역학을 매우 복잡한 비정상 유동 물리에 대하여 분석하였다.

Helium guard system design for HIAF iLinac cryogenic distribution system

  • Xianjin Wang;Shuping Chen;Wen Jun;Dajun Fan;Liming Zhu;Yanan Lib;Xiaofei Niu;Junhui Zhang
    • 한국초전도ㆍ저온공학회논문지
    • /
    • 제25권1호
    • /
    • pp.6-10
    • /
    • 2023
  • 2 K superfluid helium cryogenic system is the crucial component of many large accelerators. When the cryogenic system is operating at 2K@3129Pa, many room-temperature parts are connected to superfluid helium via tubes. Air Leakage in these connections may lead to air contamination of the cryogenic system. Air contamination may cause equipment failure in cryogenic systems and, in extreme cases, render the entire accelerator system inoperable. Helium guard is a technique that guards against air contamination of these sub-atmospheric pressure connections in 2 K superfluid helium cryogenic system. This paper introduces a typical 2 K cryogenic distribution design for large accelerators, and make risk analysis of air contamination. Finally, the analysis of specific leakage points and detailed engineering design are presented, which may be used as a reference when designing of a 2 K superfluid helium cryogenic distribution system.

A spectroscopic study of the effect of humidity on the atmospheric pressure helium plasma jets

  • Han, Duksun
    • Current Applied Physics
    • /
    • 제18권11호
    • /
    • pp.1375-1380
    • /
    • 2018
  • Atmospheric-pressure plasma has a great potential in many applications due to its simplicity rather than low pressure plasmas. In material processing, biomedical applications, and many other applications, the input power, gas flow rate, and the geometry of electrode have been mainly considered and studied as important external parameters of atmospheric-pressure plasma control. Besides, since the atmospheric-pressure plasmas are typically generated in an open air, the relative humidity is difficult to control and can change day by day. Therefore, the relative humidity cannot be ignored for plasmas. Thus, in this work, the atmospheric-pressure plasma jet was characterized by changing relative humidity, and it was found that the increase in electron density and OH radicals are due to Penning ionization between helium metastable and water vapors at higher humidity condition.

헬륨$\cdot$공기흡합기농도분포에 관한 실험적 연구 (An experimental study on the concentration distribution of helium and air mixture in the direct injection type engine)

  • 김봉곤;하종률;권순석
    • 오토저널
    • /
    • 제12권1호
    • /
    • pp.33-39
    • /
    • 1990
  • This study has been conducted by experiments for distribution of concentration of helium gas, which is jetted into stationary atmosphere at the normal temperature and pressure. It is able to obtain the data for concentration of helium and air mixtures by the use of hot wire probe which has fast response. At an up stream, the concentration gradient which is attained is steep. At a down stream, the mixing time of helium and air is gradually shortened with the lapse of time in front of a jet. The arrival frequency of a jet in an unsteady area is mostly constant from 0% to 100% up to 80mm, but the time which is reaching to 100% is gradually to lengthen as a descending downstream. After starting a jet and the point of 90%, the mixing time is especially to lengthen. This reason comes from the turbulent intensity which causes for mixing of helium and air. This time difference which causes according to lengthen a jet should be considered in the design of combustion chamber.

  • PDF

Pressure-volume-temperature gauging method experiment using liquid nitrogen under microgravity condition of parabolic flight

  • Seo, Mansu;Park, Hana;Yoo, DonGyu;Jung, Youngsuk;Jeong, Sangkwon
    • 한국초전도ㆍ저온공학회논문지
    • /
    • 제16권2호
    • /
    • pp.64-69
    • /
    • 2014
  • Measuring an exact amount of remaining cryogenic liquid propellant under microgravity condition is one of the important issues of rocket vehicle. A Pressure-Volume-Temperature (PVT) gauging method is attractive due to its minimal additional hardware and simple gauging process. In this paper, PVT gauging method using liquid nitrogen is investigated under microgravity condition with parabolic flight. A 9.2 litre metal cryogenic liquid storage tank containing approximately 30% of liquid nitrogen is pressurized by ambient temperature helium gas. During microgravity condition, the inside of the liquid tank becomes near-isothermal condition within 1 K difference indicated by 6 silicon diode sensors vertically distributed in the middle of the liquid tank. Helium injection with higher mass flow rate after 10 seconds of the waiting time results in successful measurements of helium partial pressure in the tank. Average liquid volume measurement error is within 11% of the whole liquid tank volume and standard deviation of errors is 11.9. As a result, the applicability of PVT gauging method to liquid propellant stored in space is proven with good measurement accuracy.