• Title/Summary/Keyword: 유입속도

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Lateral inflow velocity computation procedure using a hydraulic flood routing (수리학적 홍수추적을 이용한 측방유입속도 산정)

  • Lee, Gi-Ha;Kim, Jae-Han;Jung, Kwan-Sue
    • Proceedings of the Korea Water Resources Association Conference
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    • 2005.05b
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    • pp.1088-1092
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    • 2005
  • 하도에서의 홍수추적시 유역내의 지류 혹은 지표 및 지하수등은 추적대상이 되는 하도구간내에서 측방유입량의 되어 유출수문곡선의 첨두유량, 첨두시간, 수문곡선의 형태등에 영향을 주므로 정확한 산정이 필요하며, 직접유출수문곡선에서 측방유입량은 지표유출에 의해 발생하므로 강우발생시 유역에서 하도까지 걸리는 도달시간의 산정이나 측방유입속도의 결정이 필요하다. 기존의 강우-유출 수문모형은 지표수흐름의 복잡한 메카니즘 및 수리특성을 규명하는데 어려움이 있다. 본 연구에서는 관측유입수문곡선 및 유출수문곡선을 이용하여 측방유입량을 산정하고, 하도구간으로 유입되는 기지의 측방유입량으로부터 수리학적 홍수추적을 위한 지배방정식인 Saint-Venant방정식의 수치해법중 하나인 양해법에 diffusing scheme을 적용하였다. 또한 하도 전구간에 동일한 측방유입속도로 유입될 경우와 하도중심을 기점으로 상류부와 하류부로 구분하여 두 구간의 측방유입속도가 다른 두가지 경우에 대해 측방유입속도를 역추정하였으며, 계산 유출 수문곡선과 관측 유출수문곡선을 비교$\cdot$분석함으로써 구성한 홍수추적모형에 대한 정확성과 타당성, 적용 가능성등을 검증하고자 하였다.

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Mass Loss and Air Entrainment Rate of Whirl Fire by Height of Fire Source (화점높이 변화에 따른 Whirl Fire의 질량감소 및 공기유입속도)

  • Park, Hyung-Ju
    • Fire Science and Engineering
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    • v.25 no.2
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    • pp.126-131
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    • 2011
  • This study is intended to understand mass loss rate and air entrainment rate of the whirl fire by height of fire source. Liquid fuels were methanol and n-Heptane which are used in many studies of whirl fire. Size of vessel was 100 mm ${\times}$ 100 mm ${\times}$ 50 mm and the vessel was made by stainless steel. When height of fire source changed from 0 cm to 30 cm, air entrainment rate showed the fastest in case of 0 cm. And in the same height of fire source, average and maximum air entrainment rate showed the fastest in 30 cm of anemometer. From the results of whirl fire for methanol and n-Heptane, mass loss rate and air entrainment rate of n-Heptane was found to faster 1.33 to 1.58 times and 4.38 to 5.44 times compared with methanol, respectively. Consequently, mass loss rate and air entrainment rate in whirl fire was able to identified decrease as height of fire source increases and the higher the heating value, increases the that's value.

A Study of Flame Visualization of the APU Gas Turbine Engine Sector Combustor (APU용 가스터빈 엔진 분할연소기의 화염가시화 연구)

  • Kim, Bo-Ra-Mi;Choi, Chea-Hong;Choi, Seong-Man
    • Journal of the Korean Society of Propulsion Engineers
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    • v.15 no.4
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    • pp.11-17
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    • 2011
  • In order to see flame behavior in the annular reverse gas turbine combustor, sector combustion test was performed. Ignition test by using torch ignition system was carried out at various combustor inlet velocity and air fuel ratio. Also, flame blow out limit was measured by changing fuel flow rate with constant air mass flow rate. In test results, stable ignition is possible at air excess ratio of 6 and this limit is gradually increased with combustor inlet velocity. The minimum blow out limit is about 4 at 40 m/s of combustor inlet velocity. This blow out limit is also increased up to about 10 with increasing combustor inlet velocity. Test result shows that lean blow out limits are increased with air velocity. The highest blow out limit was found at the combustor inlet velocity of 65 m/s.

A Study of Flame Visualization of the APU Gas Turbine Engine Sector Combustor (APU용 가스터빈 엔진 분할연소기의 화염가시화 연구)

  • Kim, Bo-Ra-Mi;Choi, Chea-Hong;Choi, Seong-Man
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2010.11a
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    • pp.153-159
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    • 2010
  • In order to see the flame behavior in the annular reverse gas turbine combustor, sector combustion test was performed. Ignition test by using torch ignition system was carried out at the various combustor inlet velocity and air fuel ratio. Also, flame blow out limit was measured by changing fuel flow rate with constant air mass flow rate. In the test results, stable ignition is possible at air excess ratio of 6 and this limit is gradually increased with combustor inlet velocity. The minimum blow out limit is about 4 at 40 m/s of combustor inlet velocity. This blow out limit is also increased up to about 10 with increasing combustor inlet velocity. Test result shows that lean blow out limits are increased with air velocity. The highest blow out limit was found at the combustor inlet velocity of 65m/s.

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Kinetics of the Biofilter Treating Gasoline Vapor (가솔린 휘발가스의 바이오필터 처리에 관한 동력학적 연구)

  • Park, Joon-Seok;Namkoong, Wan
    • Journal of the Korea Organic Resources Recycling Association
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    • v.9 no.3
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    • pp.70-76
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    • 2001
  • Proper design and improvement of the biofiltration process depend upon quantitative understanding of the kinetic behavior in the biofilter. This study was conducted to evaluate kinetics of biofiltration of gasoline vapor. Filling material of the biofilter was compost. Gas inlet concentration ranged from about $300mg/m^3$ to $7,000mg/m^3$. Gas velocities were 6m/hr and 15m/hr, respectively. At 6m/hr gas velocity, about 60% of gasoline TPH below $3,000mg/m^3$ was removed in the lower quarter part of the biofilter. First order kinetics described well the degradation rate of gasoline TPH with high correlation. First order kinetic removal constant at the gas velocity of 6m/hr was higher than that of 15m/hr from about $300mg/m^3$ to $7,000mg/m^3$. When the inlet concentration was over $3,000mg/m^3$, first order kinetic removal constant at the gas velocity of 6m/hr was over twice that at 15m/hr. In order to obtain over 80% of removal efficiency, gasoline vapor should be injected into the biofilter at concentration below about $2,000mg/m^3$, 100cm filling height and the gas velocity of 6m/hr.

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Flmae Visualization of the sector combustor (분할연소기의 화염 가시화 연구)

  • Kim, Bo-Ra-Mi;Choi, Chea-Hong;Kim, Chun-Taek;Choi, Seong-Man
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2009.11a
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    • pp.213-216
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    • 2009
  • In order to see the flame behavior in the gas turbine combustor, combustion test was performed by using sector combustor. Ignition test with torch ignition system was carried out at the various combustor inlet velocity and air fuel ratio. Also, flame blow out limit was measured by changing fuel flow rate with fixed air mass flow rate. In the test results, stable ignition is possible at air excess ratio of 6 and this limit is gradually increased with combustor inlet air velocity. The minimum blow out limit is about 4 at 40 m/s of combustor inlet velocity. This blow out limit is also increased up to about 10 with increasing combustor inlet velocity.

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CFD Simulation of Pd-Ag Membrane Process for $CO_2$ Separation (이산화탄소 분리를 위한 Pd-Ag 분리막 공정의 CFD 모사)

  • Oh, Min;Park, Junyong;Noh, Seunghyo;Hong, Seong Uk
    • Applied Chemistry for Engineering
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    • v.20 no.1
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    • pp.104-108
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    • 2009
  • In this study, for the flow of carbon dioxide/hydrogen mixture through a tubular type Pd-Ag membrane, hydrogen partial pressure, velocity profile, and concentration profile were simulated as a function of inlet flow rate using computational fluid dynamics (CFD) technique. The simulation results indicated that the mole fraction of carbon dioxide increased slowly in the longitudinal direction as the flow rate increased. In addition, the effects of inlet flow rate and the length of membrane on hydrogen recovery were investigated. At lower flow rate and for longer membrane, the hydrogen recovery was larger.

A Study on the Properties of Produced Powder by Spray Pyrolysis Process from Waste Copper Chloride Solution. (폐구리염화물용액의 분무열분해반응에 의한 생성분말의 특성에 관한 연구)

  • 박희범;최재권;한진아;유재근
    • Proceedings of the KAIS Fall Conference
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    • 2001.05a
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    • pp.47-48
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    • 2001
  • 본 연구의 목적은 폐 구리염화물 용액을 원료로 사용하여 분무열분해 공정에 의해 평균입도가 1㎛이하이며 입도분포가 균일하고 치밀한 조직을 나타내는 미립의 구리산화물 분말을 제조하는데 있다. 또한 본 연구에서는 분무열분해 공정에 의해 생성되는 분말의 특성에 영향을 미치는 반응 온도, 원료용액의 유입속도, 분위기 기체 및 공기의 유입속도, nezzle tip 크기 및 원료용액의 농도 등의 반응인자들의 영향을 검토하였다.

A Study on the Heat Flow Characteristics and High Efficiency Thermal Storage of Inflowing Warm Air in the Room (실내유입온기의 열유동특성과 고효율 축열에 관한 연구)

  • Pak, Ee-Tong;Jeong, Un-Chul;Lee, Do-Young
    • Solar Energy
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    • v.17 no.2
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    • pp.13-22
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    • 1997
  • A study on the distribution characteristics of inflowed warm air is important to analyze warm air storage in a room. Also, in point of energy saving during heating, warm air flow characteristics occurred by circulation and distribution of inflowed warm air should be analyzed, and the storage efficiency should be considered in order to increase efficiency of heating system. For this study, in the real-sized model room, the temperature differences between inflowing warm air and inner room air are 10, 20, $30^{\circ}C$(3steps), and the flow rates of inflowing warm air are 0.5, 1, 2, 3m/s(4steps) respectively as dynamic parameters. Also, anemos and vane diffuser are used as inlet geometric condition. Consequently, on geometric conditions, high thermal storage efficiency can be obtained with the vane diffuser, and heat flow characteristics depend on the inflowing velocity more than reference temperature difference.

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Effects of Operating Parameters on the Removal Performance of Nitrate-nitrogen by Electrodialysis (전기투석을 이용한 질산성 질소의 제거 시 운전인자의 영향)

  • Lee, Gwan-Ho;Lee, Gang-Choon
    • Clean Technology
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    • v.15 no.4
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    • pp.280-286
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    • 2009
  • To evaluate the feasibility of electrodialysis for nitrate-nitrogen removal from wastewater, the effect of operating parameters on the removal of nitrate-nitrogen was experimentally estimated. The limiting current density (LCD) linearly increased with the nitrate concentration and the flow rate. The time when the nitrate concentration of diluate reached at 20 mg/L was linearly proportional to concentration of diluate, and the concentration of concentrate did not affect the removal rate. Increase in the flow rate gave a positive effect on the removal rate and became insignificant at How rates greater than 1.6 L/min. The removal rate increased with the applied voltage, but the increment in the removal rate decreased as the applied voltage approached the LCD. From the operation of the electrodialysis module used in this research, the flow rate of 1.6 L/min and the voltage corresponding to the 80~90% of LCD were found be the optimum operating condition for the nitrate removal from highly concentrated nitrate-nitrogen solutions.