• 제목/요약/키워드: Evaporation Phenomena

검색결과 87건 처리시간 0.021초

가열과 비가열 상황에서 증발과 끓음 개념에 대한 초등교사들의 분류 기준에 대한 생각 (The Elementary School Teachers' Thoughts of the Classification Criteria for Evaporation and Boiling Concept in the Heating and Non- Heating Conditions)

  • 백성혜;김양아
    • 대한화학회지
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    • 제59권4호
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    • pp.289-295
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    • 2015
  • 이 연구의 목적은 가열과 비가열 상황에서 증발과 끓음 개념을 분류하는 기준에 대한 초등학교 교사들의 생각을 알아보는 것이다. 이를 위하여 초등학교 교사 37명을 대상으로 설문 및 면담을 실시하였다. 가열 상황을 제시하였을 때, 많은 교사들은 증발 현상을 끓음으로 생각하였으며, 그 반대 상황에서는 끓음 현상을 증발로 생각하였다. 이것은 교사들이 가열 상황과 끓음을 연결하고 사고하고, 비가열상황도 증발현상을 연결하여 사고함을 의미한다. 또한 가열과 비가열 상황에 따라 교사들이 증발과 끓음을 구분하는 분류 기준이 달랐다. 이 연구에서는 증발과 끓음 개념에 대한 생각의 혼란을 방지하기 위하여 전형적인 사례를 벗어난 다양한 사례를 교과서과 교수방식에 제시할 필요성을 제안하였다.

레이저 용접시 분광학적 수법에 의한 증발입자의 거동과 플라즈마 물성의 계측 (Evaporating Particle Behaviors and plasma Parameters by Spectroscopic Method in laser Welding)

  • 김윤해
    • Journal of Advanced Marine Engineering and Technology
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    • 제23권4호
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    • pp.514-522
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    • 1999
  • The laser-induced plasma affects greatly on the results of welding process. moreover selective evaporation loss of alloying elements leads to change in chemical composition of weld metal as well as the mechanical properties of welded joint. this study was undertaken to obtain a fundamental knowledge of pulsed laser welding phenomena especially evaporation mechanism of different aluminum alloys. The intensities of molecular spectra of AlO and MgO were different each other depeding on the power density of a laser beam Under the low power density condition the MgO band spectrum was predominant in intensity while the AlO spectra became much stronger with an increase in the power density. These behaviors have been attributed to the difference in evaporation phenomena of Al and Mg metals with different boiling points and latent heats of vaporization. The time-averaged plasma temperature and electron number density were determined by spectroscopic methods and consequently the obtained temperature was $3,280{\pm}150K$ and the electron number density was $1.85{\times}10^{19}\;l/m^3$.

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화제 억제제가 첨가된 수용액 액적의 증발냉각 현상 (Evaporation Cooling Phenomena of Droplets Containing Fire Suppression Agents)

  • 유갑종;방창훈;김현우
    • 설비공학논문집
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    • 제13권9호
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    • pp.895-903
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    • 2001
  • Evaporation cooling phenomena of droplets containing fire suppression agents on a hot metal surface were experimentally investigated. Solution of water containing potassium acetate (30-50% by weight) and sodium bromide (10-30% by weight) were used in the experiments, and surface temperatures were ranged from 70-116$^{\circ}C$. The evaporation time of the droplet on the heated surface was determined by using frame-by-frame analysis of the video records. It is found that the apparent evaporation time is shorter in turns of pure water, sodium bromide solution and potassium acetate solution. However, the time averaged heat flux is higher in turns of pure water, sodium bromide solution and potassium acetate solution. In-depth temperature variation of the hot metal does not occur significantly by the kinds of additive.

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고압에서의 액적의 증발현상에 관한 연구 (Investigation of Droplet Vaporizatio Phenomena in High Pressure Environments)

  • 이현창;백승욱
    • 한국연소학회지
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    • 제13권3호
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    • pp.17-23
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    • 2008
  • The spray combustion and spray cooling depends on droplet evaporation. So, evaporation model for spray has been requested and lots of investigation has been done and various reliable models have been developed also for last few decades. In the present study, One dimensional quasi-steady spherically symmetric droplet evaporation model for micro-gravity is developed. The gas phase was assumed as steady state and the thermophysical properties are calculated as a function of temperature, pressure and composition and the properties used in the model was validated by NIST web data and overall evaporation history results was compared with experimental results by Nomura and Qasim and gave satisfactory agreements. Through this model, diverse phenomenon was investigated, especially regarding the effects of ambient pressure and temperature. The effects of pressure for the droplet evaporation time were studied. The high pressure increased the droplet surface temperature and made effect on the evaporation time depend on atmospheric temperature. The role of the ambient temperature was investigated and explained. The basic investigation for the evaporation process according to variation of droplet diameter and surface temperature were also investigated and the well-known phenomena, like D-square-law, were reported, too.

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단일액적어류의 증발 , 착화에 관한 실험적 연구 - 가열 표면상에 적하할 경우 - (An Experimental Study on Evaporation and Ignition of the Single Droplet on Hot Surface)

  • 장재은;안수길
    • 수산해양기술연구
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    • 제28권4호
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    • pp.418-429
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    • 1992
  • Recently, many researchers make a great effort to develop high efficient marine diesel engines using low grade heavy oil, and also study substitution fuel oil for engines and boilers. In case of Fisheries Vessels, we need to know that fish oil can be substituted for fuel oil. Therefore, it is studied that evaporation, ignition and combustion phenomena of the single droplet of fish oils (i.e., Sardine fish oil, File fish oil and Alaska pollac oil) on heated plane surface to evaluate appropriateness as substitution oil. Methanol and light oil are tested simultaneously to help the evaluation on these Fish oils. The results are summarized as follows: 1. The type of evaporation and combustion is spherical evaporation in case of methanol and light oil. And fish oil blended with light oil was finished after spherical evaporation happen when high temperature. 2. Ignition of Pure fish oil was shorter than that of fish oil blended with light oil. 3. Heat transferred to droplet could make qualitative comparison by contact diameter of droplet with hot surface as time changes. Life time of droplet according to the change of heated surface temperature was greatly influenced by droplet contact condition on the heated surface. 4. As far as combustion phenomena was concerned, apparent diameter of the fish oil droplet increased after ignition and decreased suddenly by internal boiling of droplet. 5. Three fish oils had similar phenomena on the evaporation, ignition and combustion. 6. Evaporation and combustion feature of fish oil could not be shown by coefficient of evaporation velocity of droplet and coefficient of combustion velocity of droplet.

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천연냉매인 이산화탄소의 세관 유동시 발생하는 증발 유동 현상에 대한 수치해석 연구 (Numerical Study on the Evaporation Flow Phenomena of Natural Refrigerant CO2 through Small Diameter Tubes)

  • 최인수;박병덕
    • 한국산업융합학회 논문집
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    • 제10권2호
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    • pp.89-96
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    • 2007
  • For the environment protection, carbon dioxide as a natural refrigerant has been studied to use in an automotive air conditioning system. Hence, a numerical model has been developed to describe the evaporation phenomena of carbon dioxide flowing through very small diameter tubes. The two dimensional low-Reynolds $k-{\varepsilon}$ model was used to predict the flow phenomena of carbon dioxide in the two phase during its evaporation. Furthermore, the results obtained from the model were compared with the experiments for the validation. The heat transfer coefficient is lower, as the tube inner diameter becomes smaller. However, the amount of heat absorbed by a unit mass of carbon dioxide is greater due to more surface area. Therefore, the small diameter tube has advantage in terms of compact design of evaporator. When the inlet condition of pressure and temperature is low, the heat transfer coefficient is slightly high at the same size of tube because of the thermal properties of carbon dioxide.

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중등 과학교과서에서 증발, 끓음의 설명에 제시된 개념간의 관련 정도 분석 (Analysis of Concepts Related to Explanations of Evaporation and Boiling in Secondary School Science Textbooks)

  • 백성혜;정애경;고영환
    • 한국과학교육학회지
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    • 제24권3호
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    • pp.429-441
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    • 2004
  • 이 연구에서는 6차와 7차 교육과정에서 개발한 중 고등학교 과학 교과서에 제시된 증발과 끓음의 설명과 관련된 개념들을 분석하였다. 교과서의 설명 유형은 중학교과 고등학교, 6차와 7차 교육과정, 그리고 과목이나 단원에 따라 구분하여 설명의 다양성을 확인해 보고, 설명에 사용된 개념간의 관계를 표현한 맵을 중심으로 특징을 비교하였다. 증발과 끓음에 관련된 설명의 차이는 주로 중학교과 고등학교 사이, 그리고 화학과 지구과학 분야 사이에서 발견되었다. 증발과 끓음 현상을 설명하기 위한 주요 개념들 사이의 관련성은 부족산 것으로 나타났다.

Molecular Dynamics Study on Evaporation Process of Adherent Molecules on Surface by High Temperature Gas

  • Yang, Young-Joon;Osamu Kadosaka;Masahiko Shibahara;Masashi Katsuki;Kim, Si-Pom
    • Journal of Mechanical Science and Technology
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    • 제18권12호
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    • pp.2104-2113
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    • 2004
  • Surface degreasing method with premixed flame is proposed as the removal method of adherent impurities on materials. Effects of adherent molecular thickness and surface potential energy on evaporation rate of adherent molecules and molecular evaporation mechanism were investigated and discussed in the present study. Evaporation processes of adherent molecules on surface molecules were simulated by the molecular dynamics method to understand thermal phenomena on evaporation processes of adherent molecules by using high temperature gas like burnt gas. The calculation system was composed of a high temperature gas region, an adherent molecular region and a surface molecular region. Both the thickness of adherent molecules and potential parameters affceted the evaporation rate of adherent molecules and evaporation mechanism in molecular scale.

SPACE 수업 전략이 국민 학교 아동들의 증발과 응결 개념 변화에 미치는 영향 (Effectiveness of SPACE Instructional Strategies for the Conceptual Change of the Elementary School children on Evaporation and Condensation)

  • 최병순;김효남;강순희;김영준
    • 한국과학교육학회지
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    • 제14권3호
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    • pp.272-284
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    • 1994
  • The aim of this research was to compare and analyze the children's ideas on evaporation and condensation between pre- and post-intervention. Forty-eight children from six elementary schools in Seoul and Kyung Ki provinces were sampled by stratified random sampling. A set of structured activities was then provided which allow children to explore evaporation and condensation phenomena. All of these activities had a preliminary phase which required the child to predict or speculate on evaporation and condensation using their existing knowledge. These structured activities on evaporation and condensation were reviewed by three professors and eigth primary school teachers. Their comments were used to revise the original contents of the structured activities. The data analysed were gathered by the questionaire and the interview. Pre- and post-intervention data related to evaporation and condensation were collected by the same teacher, and analysed into the same category scheme. Data coding was carried out several times by the researcher to ensure reliablity. Data collected were then classified and analyzed according to the types of children's ideas. The findings of this study were as follows: Results of this study showed that the the vocabulary used to describe the evaporation phenomena varied according to the context, and the scientific term "evaporated" was more frequently used by the older children after post-intervention. But everyday terms such as"dried up","disappered", "gone up" were also used by children as much as the level of pre-intervention. Scientific conception on the location of evaporated water, the factor of evaporation, the ideas about getting the water back and assumption about the physical state of the missing water has been increased for the most of the children after intervention. It was found that the intervention using was effective SPACE strategies regardless of the grade level of the children.

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Simulation of transport phenomena in porous membrane evaporators using computational fluid dynamics

  • Mohammadi, Mehrnoush;Marjani, Azam;Asadollahzadeh, Mehdi;Hemmati, Alireza;Kazemi, Seyyed Masoud
    • Membrane and Water Treatment
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    • 제7권2호
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    • pp.87-100
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    • 2016
  • A numerical simulation of membrane evaporation process was carried out in this work. The aim of simulation is to describe transport of water through porous membranes applicable to the concentration of aqueous solutions. A three-dimensional mathematical model was developed which considers transport phenomena including mass, heat, and momentum transfer in membrane evaporation process. The equations of model were then solved numerically using finite element method. The results of simulation in terms of evaporation flux were compared with experimental data, and confirmed the accuracy of model. Moreover, profile of pressure, concentration, and heat flux were obtained and analyzed. The results revealed that developed 3D model is capable of predicting performance of membrane evaporators in concentration of aqueous solutions.