• 제목/요약/키워드: ambient air pressure

검색결과 164건 처리시간 0.025초

이동통신 기지국 직접대기냉각용 에어필터의 성능평가실험 (An Experiment on Performance Evaluation of a Direct Ambient Cooling Air Filter for Wireless Telecommunication Base Transceiver Stations)

  • 여국현;유경훈;차호진;김용우;최동규;이홍규
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2006년도 하계학술발표대회 논문집
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    • pp.436-441
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    • 2006
  • In recent European telecommunication base transceiver stations(BTS) a membrane laminated air filter is reported to replace a heat exchanger in order to cool internal digital units of BTS. The concept of using the air filter is for the direct ambient cooling(DAC) of BTSs without heat loss generally found ill the heat exchanger type BTS. In the present study, a performance evaluation experiment was conducted to investigate the pressure drop characteristics with dust loading and the particle collection efficiency of the air filter for the DAC of BTS.

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대기온도 변화에 따른 150 MW 화력발전소용 공랭식 복수기 송풍기수 선정 (Selection of Number of Fans in an Air-Cooled Condenser of a 150 MW Thermal Power Plant according to Ambient Air Temperature)

  • 황용훈;허기무;윤성훈;문윤재;이재헌;문승재
    • 플랜트 저널
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    • 제10권4호
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    • pp.24-28
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    • 2014
  • 본 연구에서는 150 MW 화력발전소를 기준하여 발전소 건설지역의 최저 대기온도 $-17.1^{\circ}C$부터 최대 대기온도 $36.7^{\circ}C$까지를 $3^{\circ}C$의 일정한 간격으로 구분하여 복수기 압력이 증기터빈의 배압조건을 만족하는 대기온도별 송풍기 수량을 검토하였다. 공랭식 복수기는 대기온도 및 송풍기 운전수량 변화에 따른 냉각공기 순환량에 영향을 받아 운전조건이 변경이 되므로, 대기온도가 복수기 설계기준온도 이상의 경우에는 공랭식 복수기 송풍기의 운전수량을 최대로 해야 하고, 대기온도가 복수기 설계기준온도 미만의 경우에는 증기터빈 배압 운전조건을 만족하는 범위 내에서 송풍기 운전수량을 변화시켜 공랭식 복수기에 가해지는 공기 순환량을 감소시키는 것이 안정적인 발전소 운영을 하는 것임을 확인하였다.

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분위기 조건 변화에 따른 저압 직접분사식 LPG의 점화성 및 연소특성 연구 (A Study on Ignition Probability and Combustion Characteristics of Low Pressure Direct Injection LPG according to a Function of Ambient Condition)

  • 정성식;황성일;염정국;전병열
    • 동력기계공학회지
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    • 제20권2호
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    • pp.32-42
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    • 2016
  • Under part load condition of spark-ignition engine, pumping loss had great effect on engine efficiency. To reduce pumping loss, the study designed spark-ignited engines to make direct spray of gasoline to combustion chamber. In spark-ignited direct-injection engines, ignition probability is important for successful combustion and flame propagation characteristics are also different from pre-mixed combustion. This study designed a visualization testing device to study ignition probability of spark-ignited direct-injection LPG fuel and combustion flame characteristics. This visualization device consists of combustion chamber, fuel supply system, air supply system, electronic control system and data acquisition system. Ambient pressure, ambient temperature and ambient air flow velocity are important parameters on ignition probability of LPG-air mixture and flame propagation characteristics, and the study also found that sprayed LPG fuel can be directly ignited by spark-plug under proper ambient conditions. To all successful cases of ignition, the study recorded flame propagation image in digital method through ICCD camera and its flame propagation characteristics were analyzed.

분위기 조건이 직접분사식 인젝터의 미립화에 미치는 영향 (Effects of Ambient Conditions on the Atomization of Direct Injection Injector)

  • 이중순
    • 한국분무공학회지
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    • 제6권1호
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    • pp.25-34
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    • 2001
  • Several efforts to meet the exhaust gas regulation have been undertaken by many researchers in recent years. Main researches are on development of design techniques of intake port and combustion chamber, atomisation of fuel and precise control of air-fuel ratio, post-treatment of exhaust gas and so on. Engine technology is changed from PFI to GDI to correspond with exhaust gas regulation. GDI technique makes it possible to preserve lean air-fuel ratio and control accurate air-fuel ratio. Nevertheless, It is not cleared that information of spray characteristics and atomization process are very dependent on fluctuation of pressure and change of temperature in intake stroke. In this study, a constant volume combustion chamber is manufactured to investigate various fluctuations of in-cylinder pressure for injection duration. It is taken photographs of injection process of conventional GDI injector using PMAS. Then, it was verified experimently that ambient conditions as temperature and pressure of combustion chamber have effects on process of spray growth and atomization of fuel.

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보조 공기 압력 변화에 따른 인젝터의 분무 특성에 관한 연구 (A Study of Spray Characteristics of Injector on the Air-assisted Pressure Variation)

  • 윤수한
    • 한국분무공학회지
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    • 제3권4호
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    • pp.58-64
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    • 1998
  • In the gasoline engine of fuel injection type, atomization of fuel droplet and its distribution has directly influenced the performance of engine and harmful emission. To investigate atomization characteristics of fuel spray, in this paper fuel spray of air-assisted injector is observed at the various initial conditions of ambient air temperature and air assisted pressure. Behavior of fuel spray is photographed with microscopic visualization system. The SMD of fuel droplet is measured with PMAS (Particle Motion Analysis System). The effect of air-assisted pressure and temperature of ambient air resulted in the decrement of SMD and its variation. Finally, It was found that It was found that from spray angle at the two-hole injector had measured $20{\pm}4$ degree the result of photographs by shadow graphy. The mean diameter of suns decreased and the of droplets increased with increasing the temperature in the spray fields by the results of PMAS measurement. It was found that the characteristics of sprays became finer by increasing the temperature of spray fields about 373K without the delivery of air-assistance.

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탄화수소 연료 액적의 연소 특성에 관한 수치해석 (A Numerical Study of Combustion Characteristics of Hydrocarbon Fuel Droplet)

  • 이봉수;이경재;김종현;구자예
    • 대한기계학회논문집B
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    • 제27권11호
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    • pp.1595-1603
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    • 2003
  • Droplet combustion at high ambient pressures is studied numerically by formulating one dimensional combustion model in the mixture of n-heptane fuel and air. The ambient pressure is supercritical conditions. The modified Soave-Redlich-Kwong state equation is used in the evaluation of thermophysical properties to account for the real gas effect on fluid p-v-T properties in high pressure conditions. Non-ideal thermodynamic and transport property at near critical and supercritical conditions are also considered. Several parametric studies are performed by changing ambient pressure and initial droplet diameter. Droplet lifetime decreased with increasing pressure. Surface temperature increased with increasing pressure. Ignition time increased with increasing initial droplet diameter. Temporal or spatial distribution of mass fraction, mass diffusivity, Lewis number, thermal conductivity, and specific heat were presented.

내압방폭구조에서 수소-공기와 아세틸렌-공기 혼합가스의 폭발압력과 상대습도의 상관관계 분석 (Relationship Analysis between Relative Humidity and Explosion Pressure of Hydrogen-Air and Acetylene-Air Mixtures in Flameproof Enclosure )

  • 김용태;정기효
    • 대한안전경영과학회지
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    • 제24권4호
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    • pp.101-107
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    • 2022
  • To test a flameproof enclosure for the safety certificate, a reference pressure of explosion needs to be determined. However, the explosion pressure may be changed according to relative humidity of explosive gases. Therefore, the guideline on relative humidity should be recommended for measuring the explosion pressure for accurate and reproducible testings. This study examined the relationship of explosion pressure with relative humidity of hydrogen (31 vol %)-air and acetylene (14 vol %)-air mixture gases. The explosion pressures were measured by increasing the relative humidity of the gases by 10 % from dry state to 80 % in a cylindrical explosion enclosure of 2.3 L. on ambient temperature and atmospheric pressure (1 atm). The maximum explosive pressures were remained almost constant until the relative humidity reached 10 % for the hydrogen-air mixture and 20 % for the acetylene-air mixture. However, the maximum explosive pressures linearly decreased as the relative humidity increased. Based on the results of the study, it would be recommended to use 10 % relative humidity for the hydrogen-air mixture and 20 % for the acetylene-air mixture as the critical value in testing a flameproof enclosure.

가스터빈 저온/저압 점화장치 구성 및 운영조건 확인 시험 (Performance Test of a Small Simulated High-Altitude Test Facility for a Gas-turbine Combustor)

  • 김태완;이양석;고영성;임병준;김형모;김선진
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2008년도 제31회 추계학술대회논문집
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    • pp.153-156
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    • 2008
  • 고공 환경에서의 점화 연소 특성을 확인하기 위해 선행되어야 할 저압/저온 환경 모사 및 연료 유량 제어 실험을 수행하였다. 저압 환경을 모사하기 위하여 초음속 디퓨저를 이용하였고, 공기 유량 공급 및 디퓨저 1차 전단 노즐 압력에 따라 다양한 고도의 저압 환경을 조성할 수 있음을 확인하였다. 또한 저온 환경을 모사하기 위해 액체 질소를 이용한 열교환기를 활용하였고, 혼합 탱크로 유입되는 극저온/상온 공기 온도 조건을 일정하게 유지할 경우 다양한 공기 유량 조건에서 혼합 공기의 온도는 극저온/상온 공기의 혼합비에 의해 결정됨을 알 수 있었다. 이에 따라 본 연구에서 구축한 고고도 환경 모사 시스템을 활용하여 다양한 고도 조건에서의 점화 및 연소 특성 실험 수행이 가능함을 입증하였다.

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분무열분해 공정에 의한 평균입도 50 nm 이하의 코발트 산화물 분체 제조에 미치는 공기압력의 영향 (Effect of Ambient Air Pressure on the Preparation of Cobalt Oxide Powder with Average Particle Size below 50 nm by Spray Pyrolysis Process)

  • 김동희;유재근
    • 자원리싸이클링
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    • 제26권1호
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    • pp.22-29
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    • 2017
  • 본 연구에서는 코발트 염화물($CoCl_2$) 용액을 원료로 하여 분무열분해 반응에 의하여 평균입도 50 nm 이하의 코발트 산화물($Co_3O_4$) 분말을 제조하였으며 분위기 기체인 공기의 압력 변화에 따른 입자들의 특성 변화를 파악하였다. 공기압력이 $0.1kg/cm^2$인 경우에는 형성된 액적형태들은 구형이 거의 없었으며 매우 심하게 분열된 상태를 나타내고 있었다. 액적형태를 구성하는 나노 입자들의 평균입도는 약 40 nm이었다. 공기압력이 $0.5kg/cm^2$으로 증가된 경우에는 액적형태를 구성하는 나노 입자들의 평균입도는 약 35 nm로 감소되었다. 공기압력이 $3kg/cm^2$으로 증가된 경우에는 액적형태에서 구형의 비율이 현저하게 증가하였고 분열된 정도는 감소하였으며 나노 입자들의 평균입도는 약 30 nm로 감소하였다. 공기압력이 $0.1kg/cm^2$로부터 $1kg/cm^2$로 증가하는 경우에는 XRD 피크들의 강도가 거의 변화가 없는 반면 비표면적은 감소함을 나타내었다. 공기압력이 $3kg/cm^2$로 증가하는 경우에는 XRD 피크들의 강도는 약간 감소하는 반면 비표면적은 증가하고 있었다.

일본 요코하마 대기 중 PCBs의 가스-입자 분배 (Gas-Particle Partitioning of PCBs in Ambient Air, Yokohama Japan)

  • 김경수
    • 한국대기환경학회지
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    • 제21권3호
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    • pp.285-293
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    • 2005
  • This study was aimed at estimation of gas-particle partitioning of polychlorinated biphenyls (PCBs) in ambient air. The samples were collected at urban site in Japan from March 2002 to January 2003. The concentration of total PCBs (from 4 CB to 10 CB) and TEQ (Toxic equivalent) ranged from 62 to $247\;pg/m^3$ and from 2 to $14\;fgTEQ/m^3 $, respectively. The average contribution $(\%)$ of gas phase to total PCBs concentration was above $80\%$, which suggests that in the atmosphere PCBs predominantly existed in the gas phase. The weak correlations between total PCBs concentration and temperature was found. However this result was due to a typhoon during summer and raining during sampling period. The gas-particle partition coefficient (Kp) was obtained as a function of temperature. The partition ratio of gaseous and particulate phase PCBs can be estimated for an arbitrary temperature. The plot of gas/particle partition coefficient (log Kp) vs. sub-cooled liquid vapor pressure $(log\;P_L)$ had reasonable correlations for individual samples but the slope varied among the samples (coefficients of determination for log Kp versus log $P_L$ plot were> 0.76 $(p<0.0001)$, except for 3 samples). As a result, the variations in the slope among the sampling period may be due to change of temperature, raining during sampling period and wind in this study.