• 제목/요약/키워드: Flow and mass transfer

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토양내 저휘발성 유류오염물 제거를 위한 고온공기 주입/추출기술 연구 (Hot Air Injection/Extraction Method for the Removal of Semi-Volatile Organic Contaminants from Soils)

  • 구청완;고석오
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제10권1호
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    • pp.6-12
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    • 2005
  • 급격한 경제성장의 결과로서 최근까지 각종 유류관련 시설의 누출로 인한 토양 오염에 대한 관심이 고조되고 있다. 토양복원을 위하여 재래식 토양가스추출법(SVE)과 같은 공법이 사용되고 있으나 휘발성 유류성분의 제거에 적합하며 디젤, 방향족화합물 등과 같은 저휘발성 오염물의 제거에는 부적합한 결과를 보이고 있다. 본 연구에서는 디젤과 같이 저휘발성 유류성분을 제거하기 위한 효율적인 공기주입 및 SVE 공정 개발을 위해 디젤유의 개별성분들의 온도와 유량에 따른 제거효율, 수분함량에 따른 영향 평가를 실시하였다. 디젤범위의 오염성분(DROs)들은 온도의 증가에 따라 휘발성의 순서대로 제거되는 경향을 보이고 있다. 실험결과, $90\%$ 이상의 DROs 범위 내 오염물은 온도를 $100^{\circ}C$ 이상으로 유지할 경우 효과적으로 SVE 방법에 의하여 제거할 수 있다고 판단된다. 유량이 증가함에 따라 오염물이 토양 내 잔류하는 비율이 빠르게 감소하지만 유량이 40cc/min를 초과하면 감소 폭이 크지 않았으며 이는 큰 유량에 대하여 오염물이 휘발되는 속도에 있어서 물질전달상의 제한에 기인한다고 판단된다. 수분함량에 영향은 DROs성분 중 n-decane은 적은 것으로 나타났으나 다른 오염성분들은 수분이 존재함에 따라 제거효율이 좋아지는 결과를 나타내었다.

이유체 벤츄리형 선회 노즐이 장착된 제트 루프 반응기에서 합성폐수 중의 암모니아 제거특성 (Characteristics of Ammonia Removal from a Synthetic Wastewater in a Jet Loop Reactor with a Two-fluid Venturi-type Swirl Nozzle)

  • 노다지;윤찬수;임준혁;원용선;이태윤;이제근
    • 청정기술
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    • 제23권2호
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    • pp.205-212
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    • 2017
  • 본 연구에서는 합성폐수로부터 암모니아 탈기 시 이유체 벤츄리형 선회 노즐이 장착된 제트 루프 반응기의 성능을 평가하고자 하였다. 이를 위해 이유체 벤츄리형 선회 노즐과 일반 노즐이 장착된 각각의 제트 루프 반응기를 이용하여 조업조건 변화에 따른 암모니아 제거효율과 총괄물질전달계수($K_La$)를 각각 얻은 후, 이를 통해 성능을 비교하였다. 운전변수로는 pH(pH = 10-12), 액체순환유량($Q_L=25-35L\;min^{-1}$), 공기유입량($Q_G=5-20L\;min^{-1}$)을 변화시키며 실험하였다. 실험결과, 동일한 조업조건에서 이유체 벤츄리형 선회 노즐(two-fluid venturi-type swirl nozzle, TVSN)이 장착된 제트 루프 반응기가 이유체 벤츄리형 일반 노즐(two-fluid venturi-type conventional nozzle, TVCN)이 장착된 제트 루프 반응기보다 암모니아 제거효율과 $K_La$가 높게 나타났다. 이와 같은 결과는 이유체 벤츄리형 선회 노즐이 장착된 제트 루프 반응기에서 형성된 선회류 흐름에 의해 난류강도가 이유체 벤츄리형 일반 노즐이 장착된 제트 루프 반응기에 비해 높기 때문이라 판단된다. 또한, 실험조건 범위에서 $K_La$는 pH, 공기유입량 및 액체순환유량이 증가할수록 증가하는 경향을 보였으며, 특히, 실험변수 중 공기유입량이 pH나 액체순환유량에 비해 $K_La$에 미치는 영향이 큰 것으로 나타났다.

저온 폐열 회수를 위한 제1종 흡수식 열펌프의 컴퓨터 시뮬레이션 (Computer Simulation of an Absorption Heat Pump for Recovering Low Grade Waste Heat)

  • 강상우;강병하;정시영;이춘식
    • 설비공학논문집
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    • 제8권2호
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    • pp.187-197
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    • 1996
  • A computer program for thermal design analysis has been developed to predict the operating characteristics and performance of an absorption heat pump to recover $30{\sim}40^{\circ}C$ of waste hot water. The effects of heat transfer area of the system components, temperature and mass flow rate of heat transfer medium, and solution circulation rate on the system performance are investigated in detail. The results obtained indicate that the COP is increased with a decrease in the temperature of driving steam and with an increase in the temperature of waste hot water while the COP is little affected by the variation of a hot water temperature. It is also found that the heating output is increased with an increase in the temperature of waste hot water and driving steam as well as with a decrease in the temperature of hot water. The simulation results are also compared with the experimental results for a periodic operation of the system and obtained a satisfactory agreement.

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급속 충전에서 탱크 내부의 수소 온도 변화에 관한 이론 연구 (A Theoretical Study on the Hydrogen Temperature Evolution Inside the Tank under Fast Filling Process)

  • 이길초;이길강;허항;최병철;권정태
    • 한국수소및신에너지학회논문집
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    • 제34권6호
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    • pp.608-614
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    • 2023
  • The fast filling process of high-pressure hydrogen has an important impact on the filling efficiency and safety. In this paper, a specific study is carried out on the thermophysical phenomena during the fast filling process. Starting from the gas state equation of hydrogen, the change law of the hydrogen storage temperature is obtained, and then the temperature rise prediction is constructed. The model can clarify the relationship between the filling parameters and the temperature rise during the fast filling process, thereby revealing the flow and heat transfer laws of the fast charging process. To improve the theoretical research basis for the evaluation of vehicle-mounted hydrogen fast charging capacity, temperature prediction and optimization of hydrogenation methods.

Assessment of Two Wall Film Condensation Models of RELAP5/MOD3.2 in the Presence of Noncondensable Gas in a Vertical Tube

  • Park, Hyun-Sik;No, Hee-Cheon;Bang, Young-Seok
    • Nuclear Engineering and Technology
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    • 제31권5호
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    • pp.465-475
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    • 1999
  • The objective of the present work is to assess the analysis capability of two wall film condensation models, the default and the alternative models, of RELAP5/MOD3.2 on condensation experiments in the presence of noncondensable gas in a vertical tube of PCCS of CP-1300. In the calculation of a base case the default model of RELAP5/MOD3.2 under-predicts the heat transfer coefficients, and Its alternative model over-predicts them throughout the condensing tube, Also, both models over-predict the void fractions. The nodalization study shows that the variation of the node number does not change both modeling results of RELAP5/MOD3.2 Sensitivity study for varying input parameters shows that the inlet steam-air mixture flow rate, the inlet air mass fraction, and the inlet saturated steam temperature give significant changes of their heat transfer coefficients Run statistics show that the grind time of the default model is always higher than that of the alternative model by about 23%.

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습증기를 포함한 연소가스의 폐열회수를 위한 열교환기 성능 예측 (Performance Prediction of Heat Exchanger for Waste Heat Recovery from Humid Flue Gases)

  • 정동운;이상용;이한주
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2000년도 춘계학술대회논문집B
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    • pp.276-281
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    • 2000
  • A simulation program using the mass transfer correlation was constructed to analyze 1-D simplified condensing flow across the tube bank. Higher efficiency was anticipated by reducing the flue gas temperature down below the dew point where the water vapor in the flue gas is condensed at the surface of the heat exchanger; that is, the heat transfer by the latent heat is added to that by the sensible heat. Thus, there can be an optimum operating condition to maximize the heat recovery from the flue gas. The temperature rises of the flue gas and the cooling water between the inlet and the outlet of the tube bank were compared with the experimental data reported previously. The predicted results agree well with the experimental data. Using this simulation program, the parametric studies have been conducted fur various operating conditions, such as the velocities and temperatures of the vapor/gas mixture and the cooling water, the number of the rows, and the conductivity of the wall material.

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가열된 표면에 고착된 액적의 증발 특성에 관한 수치해석 연구 (Numerical Analysis of the Sessile Droplet Evaporation on Heated Surfaces)

  • 정찬호;이형주;윤국현;이성혁
    • 한국분무공학회지
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    • 제26권1호
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    • pp.1-8
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    • 2021
  • Droplet evaporation has been known as a common phenomenon in daily life, and it has been widely used for many applications. In particular, the influence of the different heated substrates on evaporation flux and flow characteristics is essential in understanding heat and mass transfer of evaporating droplets. This study aims to simulate the droplet evaporation process by considering variation of thermal property depending on the substrates and the surface temperature. The commercial program of ANSYS Fluent (V.17.2) is used for simulating the conjugated heat transfer in the solid-liquid-vapor domains. Moreover, we adopt the diffusion-limited model to predict the evaporation flux on the different heated substrates. It is found that the evaporation rate significantly changes with the increase in substrate temperature. The evaporation rate substantially varies with different substrates because of variation of thermal property. Also, the droplet evaporates more rapidly as the surface temperature increases owing to an increase in saturation vapor pressure as well as the free convection effect caused by the density gradient.

고자기장용 자석을 위한 밀폐순환형 냉각장치 (Closed-Loop Cooling System for High Field Mangets)

  • 최연석;김동락;이병섭;양형석
    • 한국초전도ㆍ저온공학회논문지
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    • 제8권1호
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    • pp.59-64
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    • 2006
  • A closed-loop cryogenic cooling system for high field magnets is presented. This design is motivated by our recent development of cooling system for 21 tesla Fourier Transform ion Cyclotron Resonance (FT-ICR) superconducting magnets without any replenishment of cryogen. The low temperature superconducting magnets are immersed in a subcooled 1.8 K bath, which is connected hydraulically to the 4.2 K reservoir through a narrow channel. Saturated liquid helium is cooled by Joule-Thomson heat exchanger and flows through the JT valve, isenthalpically dropping its pressure to approximately 1 6 kPa, corresponding saturation temperature of 1.8 K. Helium gas exhausted from pump is now recondensed by two-stage cryocooler located after vapor purify system. The amount of cryogenic Heat loads and required mass flow rate through closed-loop are estimated by a relevant heat transfer analysis, from which dimensions of JT heat exchanger and He II heat exchanger are determined. The detailed design of cryocooler heat exchanger for helium recondensing is performed. The effect of cryogenic loads, especially superfluid heat leak through the gap of weight load relief valve, on the dimensions of cryogenic system is also investigated.

1열 원형 충돌수분류군에 의한 열전달의 실험적 연구 (제1보, 노즐형상의 영향) (Impingement heat transfer within 1 row of circular water jets : Part 1-Effects of nozzle configuration)

  • 엄기찬;김상필
    • 설비공학논문집
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    • 제12권1호
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    • pp.50-58
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    • 2000
  • Experiments were carried out to obtain the effects of nozzle configuration and jet to jet spacing on the heat transfer characteristics of single line of circular water jets impinging on a constant heat flux plane surface. The nozzle configurations are Cone type, Reverse cone type and Vertical circular type, and the nozzle arrays are single jet(nozzle dia. 8 mm), 1 row of 3 jets and 1 row of 5 jets. Jet velocities ranging from 3m/s to 8m/s were investigated for the nozzle to target plate spacing of 80 mm. For the Cone and Reverse cone type nozzle arrays, the average Nusselt number of 1 row of 5 jets was larger than that of 1 row of 3 jets at Re$_{D}$<45000, but that of 1 row of 3 jets was larger than that of 1 row of 5 jets at $Reo\le45000$. For the Vertical circular type nozzle, however, the average Nusselt number of 1 row of 3 jets was larger than that of 1 row of 5 jets at all jet velocities. In the condition of fixed mass flow rates, the maximum heat transfer augmentation was obtained for 1 row of 5 jets and was over 2 times larger than that of the single jet for all nozzle configurations. The nozzle configurations that produce the maximum average Nusselt number are as follows: For 1 row of 3 jets, the Vertical circular type at $Reo\le45000$ and the Reverse cone type at $Reo\le45000$. But, they are the Reverse cone type at Re$_{D}$<55000 and the Vertical circular type at$Reo\le55000$ for 1 row of 5 jets.

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수정된 화학증착공정에서 다종 성분 입자 생성 및 성장 해석 (An Analysis of Generation and Growth of Multicomponent Particles in the Modified Chemical Vapor Deposition)

  • 이방원;박경순;최만수
    • 대한기계학회논문집B
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    • 제23권5호
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    • pp.670-677
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    • 1999
  • An analysis of generation and growth of multicomponent particles has been carried out to predict the size and composition distributions of particles generated in the Modified Chemical Vapor Deposition(MCVD) process. In MCVD process. scale-up of sintering and micro-control of refractive index may need the Information about the size and composition distributions of $SiO_2-GeO_2$ particles that are generated and deposited. The present work solved coupled steady equations (axi-symmetric two dimensions) for mass conservation, momentum balance. energy and species(such as $SiCl_4$, $GeCl_4$, $O_2$, $Cl_2$) conservations describing fluid flow. heat and mass transfer in a tube. Sectional method has been applied to obtain multi-modal distributions of multicomponent aerosols which vary in both radial and axial directions. Chemical reactions of $SiCl_4$ and $GeCl_4$ were included and the effects of variable properties have also been considered.