• Title/Summary/Keyword: 증기유동

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Local Mean Water Layer Thickness in Countercurrent Stratified Two -Phase Fllow (물-증기 역류 성층이상유동에서의 국부 평균 액체층 두께)

  • Kim, Hho-Jung;Kim, Kap
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.10 no.6
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    • pp.947-958
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    • 1986
  • 물-증기 역류 성층이상유동에서의 평균 액체층 두께가 여러가지 경사각과 종횡비에 따라 측정되었다. 난류유동에 있어서 전단응력분포의 선형화와 von Karman의 혼합길이 이론을 근거로 평균 액체층의 두께에 대한 관계식이 제시되었으며 실험결과와 잘 일치하였음을 보였다. 접촉면에서의 조파저항이 고려되지 않은 해석결과는, 수평 성층유동의 경우에, 평균 액체층 두께보다는 오히려 파곡까지의 액체층 두께를 예측하고 있는 것으로 나타났다. 또한 평균 액체층 두께에 대한 실험 상관관계식이 계산시 편의를 위해 쉽게 인지할 수 있는 매개변수들의 항들롤 제시되었다.

An Analysis on the Temperature Safety of a Boiler Desuperheater (보일러 과열증기 냉각기의 온도 안전성에 관한 연구)

  • Ha, Ji-Soo;Kim, Tae-Kwon;Chang, Hyuk-Sang
    • Journal of the Korean Institute of Gas
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    • v.16 no.2
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    • pp.9-13
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    • 2012
  • The present study has been carried out to diagnose the temperature safety of a boiler desuperheater which decreases abnormally higher temperature of superheated steam in a reheater of a power plant. The liquid water in the desuperheater stays in a closed space. It becomes heated by the high temperature superheated steam and boiling could occur. Boiling might increase internal pressure and it could destroy the desuperheater if the internal pressure exceeds the allowable pressure of the desuperheater. The present study modeled reasonably the desuperheater and four cases of heat transfer analysis are executed with the consideration of insulator and natural convective fluid flow of the inside cooling water. For the case excluded the natural convective fluid flow, the temperature exceeds the allowable temperature and pressure. On the other hand, for the real case included natural convective fluid flow and insulator, the active heat transfer from higher temperature region to lower temperature region occurs and it makes the temperature in the cooling water below the allowable temperature and pressure. From this fact, it could be thought that the desuperheater in the reheater is safe from destroy or back flow.

Reduction of the Flow Accelerated Corrosion within Low Pressure Evaporator Connection Pipe by Interception of Hydrazine for Water Treatment (탈산소제 차단 수처리에 의한 배열회수보일러 저압증기발생기 연결배관내의 유동가속부식 저감)

  • Son, Byung-Gwan;Lee, Jae-Heon
    • Plant Journal
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    • v.9 no.4
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    • pp.26-30
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    • 2013
  • Based on case that HRSG low pressure steam generator tube was damaged by FAC in 500 MW A CCPP. This case analyzed the effect of application about the block of hydrazine water treatment which is applied for increasing dissolved oxygen. And also try to deduce the major factor of FAC Which is caused by lacking of dissolved oxygen of boiler feed system. After 1 year of water treatment, the figure of dissolved oxygen in the boiler feed water has increased from 0.15 ppb to 3~5 ppb and the figure of oxidation reduction potential has increased from -245 mV to 170 mV. And Iron content, the corrosion products by FAC has decreased from 18.5 ppb to 5~7 ppb. According to the result of experiment, we could able to confirm that the interception of hydrazine of water treatment is effective to reduce FAC.

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The Application of the Induction Heating Technology for the food dryness (식품건조를 위한 유도가열 기술 응용 연구)

  • Ryu M.H.;Baek J.W.;Kim J.H.;Yoo D.W.;Rim G.H.
    • Proceedings of the KIEE Conference
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    • summer
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    • pp.1148-1150
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    • 2004
  • 본 논문에서는 $400^{\circ}C$ 이상의 과열 증기발생을 위하여 6kW급 유도가열장치를 개발하여 식품건조 시스템에 적용한 예를 보인다. 유도가열장치는 과열 증기의 온도를 제어하기 위하여 인버터 입력 전압을 $100\sim200V$로 가변제어가 가능하게 하였고, 인버터 입력 전압은 벅컨버터를 사용하여 기준 전압을 과열증기의 온도에 대한 전압 값을 사용하여 제어하였으며, LC 공진에 의해 발생한 전류로 증기 가열 챔버를 유도 가열하여 과열 증기를 발생하게 하였다. 발생한 과열 증기는 식품 건조를 위하여 건조로에 투입되어 고온 건조에서 식품의 건조시간을 단축시킬 수 있었으며, 식품의 손상을 줄일 수 있었다. 이의 검증을 위하여 유도 가열 장치를 설계/제작하여 실험하였으며, 식품 건조 테스트를 행하였다.

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Flame Standing of Magnesium-Steam in Swirl Combustor (와류 연소기에 의한 Mg-Steam 화염 안정화)

  • Ko, Tae-Ho;Lee, Sang-Hyup;Yoon, Woong-Sup
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2011.04a
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    • pp.139-143
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    • 2011
  • 금속분말을 청정 에너지원으로 이용하기 위해 금속분말 소형 연소기의 구현이 필요하다. 이를 위한 기초 연구로서 점화성이 뛰어나면서도 경제적인 수십 마이크로 크기의 마그네슘(Mg) 분말을 대상으로 고온 증기(steam)와의 연소 현상 대해 연구하였다. 본 연구에서는 연소실 내 체류시간 및 혼합 효율을 증가시키기 위해 와류 유동을 연소기에 적용하였고 아르곤(Ar) 이송가스를 이용해 마그네슘 분말을 공급하였다. 안정한 화염을 유지시키기 위하여 이송가스의 유량을 변화시켜 공급되는 마그네슘의 양을 조절하였고, 고온 증기의 공급량은 니들 밸브의 개도를 조정하거나 우회시킨 관로로 증기의 일부를 배출함으로써 조절하였다. 고온의 점화원을 사용하여 증기 분위기 내 마그네슘 분말을 점화시켜, 대기압 환경에서 마그네슘/증기/아르곤의 지속적인 화염을 구현하였다.

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증기폭발의 개관

  • 김병주
    • Journal of the KSME
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    • v.28 no.3
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    • pp.270-280
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    • 1988
  • 증기폭발현상에 대한 기존의 연구내용들이 개괄적으로 소개되었다. 지난 30여년간 대규모 및 소규모 증기폭발에 대해 수많은 이론 및 실험적 연구가 진행되어 왔으나 아직 많은 과제들이 미해결의 상태로 남아 있다. 이들은 (1) 연료-냉각수 접촉양식의 영향 (2) 초기 혼합과정에 대한 에너지 전달 및 유동해석 (3) 연료파괴 과정에 대한 정량적 해석 (4) 폭발과정의 전파에 대한 제인자의 영향 (5) 팽창과정 중 슬러그(slug)의 영향 등이며 현상 자체의 난이성과 위 험성에 비추어 볼 때 해석에 많은 문제점을 안고 있다. 그러나 과학적인 호기심과 더불어 산 업재해 방지 및 현상의 생산적 이용이라는 최종목표에 도달하기 위해서는 체계적으로 집중적인 연구가 꾸준히 계속되어야 할 것이다.

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Multiphase Simulation of a Liquid Jet in a Lab-scale Ramjet Combustor (모형 램젯 연소기에서 액체제트의 다상유동 해석)

  • Oh, Jeong-Seog;Lee, Won-Nam;Lee, Jong-Geun;Santavicca, Dominique A.
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2010.11a
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    • pp.386-392
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    • 2010
  • The multiphase simulation of a liquid jet in a lab-scale ramjet combustor with a plain orifice type injector was studied with a commercial CFD tool, a FLUENT program. The objectives of the current study are to analysis the breakup characteristics of a hexane liquid jet in a cross flow and to derive the correlation between flow conditions and drag force coefficients in a test section. From the result of a numerical simulation, we concluded that a DPM and Realizable $k-{\varepsilon}$ model with an enhanced wall treatment were available to simulate the multiphase flow simulation. And the calculated distribution of a hexane vapor concentration was well-matched with experimental results.

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ANALYSIS ON STEAM CONDENSING FLOW USING NON-EQUILIBRIUM WET-STEAM MODEL (비평형 습증기 모델을 적용한 증기 응축 유동 해석)

  • Kim, C.H.;Park, J.H.;Ko, D.G.;Kim, D.I.;Kim, Y.S.;Baek, J.H.
    • Journal of computational fluids engineering
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    • v.20 no.3
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    • pp.1-7
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    • 2015
  • When the steam is used as working fluid in fluid machinery, different from other gases as air, phase transition (steam condensation) can occur and it affects not only the flow fields, but also machine performance & efficiency. Therefore, considering phase transition phenomena in CFD calculation is required to achieve accurate prediction of steam flow and non-equilibrium wet-steam model is needed to simulate realistic steam condensing flow. In this research, non-equilibrium wet-steam model is implemented on in-house code(T-Flow), the flow fields including phase transition phenomena in convergent-divergent nozzle are studied and compared to results of advance researches.

Solar-driven steam flow for effective removal of particulate matters (PM) (태양열 기반 증기 유동을 이용한 미세먼지 제거 연구)

  • Kim, Jeongju;Kim, Jeong Jae
    • Journal of the Korean Society of Visualization
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    • v.19 no.3
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    • pp.130-135
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    • 2021
  • Water vapor has received worldwide large attention due to its broad technological implications ranged from resource production and environmental remediation. Especially, one of the typical areas where the water vapor is important is the removal of PM (particulate matter) which causes a critical hazard to human health. However, most vapor-based PM removal methods are limited in removing PM2.5 by using relatively large water droplets and consume large energy. Here, we propose a superhydrophilic thermally-insulated macroporous membrane to generate steam flow. The water vapor directly captures PM with steam flow and hygroscopic characteristic of PM. The steam, the cluster of water vapor, from the membrane gives rise to high removal efficiencies compared to those of the control case without light illumination. To reveal PM removal mechanism, the steam flow and PM were quantitatively analyzed using PIV measurement. The proposed steam generator could be utilized as an economical and ecofriendly platform for effective PM removal at a fairly low cost in a sustainable, energy-free, and harmless-to-human manner.

A Study of Alkali Metal Vapor Adsorption Behavior by Using Pressurized Reactor (가압반응기를 이용한 알칼리금속증기 흡착특성에 관한 연구)

  • 전수한;최병철;김형택
    • Journal of Energy Engineering
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    • v.11 no.2
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    • pp.114-121
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    • 2002
  • Alkali metal compounds existed in original coal or sorbents are exhausted as vapor or small particle at the outlet of combustor when operating PFBC power plant. These compounds can be removed with dust removal equipment, but total generation efficiency will be decreased because of lower operating temperature of dust removal equipment. Alkali metal contained in vapor phase is initially deposited onto turbine blade results in serious corrosion. The concentration of alkali vapor in the PFBC flue gas is 20∼40 ppm which is dependent on mineral characteristics and composition as well as operating condition of PFBC. However, the allowance limit of alkali metal vapor is assigned as less than 50 ppb for gas turbine when coal or oil is used as fuel. Therefore, alkali metal vapor in PFBC or IGCC process should be removed by solid sorbents to prevent corrosion of turbine blade and improve plant efficiency. In the present investigation, powder of Bauxite, Kaolinite and Limestone is used in the preparation of cylinder-type pellet which is inserted into the pressurized alkali removal reactor for the alkali absorption experiment. Experimental results showed that the alkali removal efficiency in the order of Bauxite, Kaolinite and Limestone. Alkali vapor removal efficiency is related with reaction temperature, porosity of pellet and alkali vapor concentration of flue gas.