• 제목/요약/키워드: hot spring water

검색결과 91건 처리시간 0.028초

한국의 지열 연구와 개발 (Geothermal Research and Development in Korea)

  • 송윤호;김형찬;이상규
    • 자원환경지질
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    • 제39권4호
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    • pp.485-494
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    • 2006
  • 1920년대의 온천조사에서부터 현재에 이르기까지 우리나라 지열연구의 역사를 간략히 요약하고, 우리나라의 지열류량 연구 결과 및 추세, 지열의 근원 연구, 그리고 지열에너지 개발 및 활용분야에 대한 연구활동을 정리하였다. 우리나라에서의 지열연구는 1970년대까지 주로 온천조사와 관련되어 있다. 1980년대에 들어서 연구소와 학계에서 온천조사 뿐만 아니라, 지열류량에 대한 연구도 많이 수행하게 되었으며 1996년도에는 우리나라 전국적인 지온경사 분포도와 지열류량 분포도를 발간하게 되었다. 또한 우리나라 온천수에 대한 지화학적 동위원소 분석과 화강암 지대의 열생산율 측정도 1990년대에 주로 이루어졌다. 지열개발과 활용에 대한 시도는 1990년대 초반부터 시도되었으나 실제 개발을 위한 시추로 이어지게 된 것은 2000년대에 들어와서 가능해졌다. 최근의 활발한 심부 지열수 자원 개발이나 천부 지중열을 활용한 냉난방 수요의 증가 등 주변여건이 호전됨에 따라 우리나라 지열연구개발의 전망은 밝다고 판단된다.

자동 캡 세척장치 개발에 관한 연구 (A Study on the Development of Automatic Cap-Washing M/C)

  • 신성우;김대성;이춘만
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 춘계학술대회 논문집
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    • pp.1849-1852
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    • 2005
  • An automatic cap-washing machine is developed for rinse and dry of synthetic resin cap which is used in spring water bottle. This machine should be achieved all processes washing and drying, array, transfer automatically. A cap is washed by an ozonized water and pure water first. Next, a cap is dried by a hot wind drying equipment. In this paper, structural and modal analysis for the cap-washing machine is carried out to check the design criterion of the machine. The analysis is carried out by FEM simulation using the commercial software, CATIA V5. And a fictitious mass properties was used for the analysis of the machine. Finally, the machine performance is shown to be satisfactory.

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사기오미론(四氣五味論)의 구조적 해석 (Structural Interpretation of Properties and Flavors of Drugs)

  • 조용주;김진주
    • 한국한의학연구원논문집
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    • 제11권2호
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    • pp.23-33
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    • 2005
  • Four Properties and five Flavors of Drugs is interpreted by adaptation of human body to the environmental theory(天人相應). The Structural model of the body is compared with sky, earth, sun and moon (天, 地, 日, 月). The natural changes of the four seasons give rise to that of Four Properties and five Flavors of Drugs. On equal terms it is happened in our body. On this study we can draw an analogy between sky, earth, sun & moon (天, 地, 日, 月) and the body. The six bu(六腑) is related to the earth, the five ju(五主) to the sky, the five jang(五臟) to the sun, the meridians system (經絡) to the moon. When spring, the air is warm, the water element of the earth is ascending, and the earth gives birth to the sour flavor. Like this, the water element is absorbed by six bu and then is ascended to the meridian system. When summer, the air is hot and the water element of the earth is floated, the earth make the bitter flavor. In the same way, the six bu absorbed the hot air from the five ju and the water element is quickly absorbed by six bu and then the water element is ascended to the meridian system. When rainy season (長夏), the earth creates the sweet flavor The sweet flavor give warmer energy to the five jang and the six bu. When autumn, the earth change the sweet flavor into pungent. The earth gives warmer energy to the sky, because of cool weather According to same process, the pungent flavor give warmer energy to the five jang and the six bu, and the meridian system gets back the water element from the five ju. When winter, the air is cold and the water element of the earth is hidden. The sky and the earth are not interchangeable. At that time, the earth produce the salty flavor and the water element is keeping in the meridian system.

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단독주택용 태양열/지열 융복합시스템의 태양열 급탕성능 평가 (An Evaluation of the Solar Thermal Performance of the Solar/Geo Thermal Hybrid Hot Water System for a Detached House)

  • 백남춘;한승현;이왕제;신우철
    • 설비공학논문집
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    • 제27권11호
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    • pp.581-586
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    • 2015
  • In this study, an analysis was performed on the performance of the solar water heating system with geo-thermal heat pump for a detached house. This system has a flat plate solar collector ($8\;m^2$) and a 3 RT heat pump. The heat pump acts as an auxiliary heater of the solar water heating system. These systems were installed at four individual houses with the same area of $100\;m^2$. The monitoring results for one year are as follows. (1) The average daily operating time of the solar system appeared to be 313 minutes in spring (intermediate season), and 135 minutes and 76 minutes in winter and summer respectively. The reason for the short operating time in summer is the high storage temperature due to low water heating load. The high storage temperature is caused by a decrease in collecting efficiency as well as by overheating. (2) The geothermal heat pump as an auxiliary heater mainly operates on days of poor insolation during the winter season. (3) Despite controlling for total house area, hot water consumption varies greatly according to the number of people in the family, hot water usage habits, etc. (4) The yearly solar fraction was 69.8 to 91.5 percent, which exceeds the maximum value of 80% as recommended by ASHRAE. So the solar collector area of $8\;m^2$ appeared to be somewhat greater for the house with an area of $100\;m^2$. (5) The observed annual efficiency of solar systems was relatively low at 13.5 to 23.6%, which was analyzed to be due to the decrease in thermal efficiency and the overheating caused by a high solar fraction.

Fluorometric Quantitative Analysis of Al(III) Ion Using 5-Methoxy-2-phenyliminomethylphenol

  • Kim, Sun-Deuk;Lee, Hye-Won
    • Bulletin of the Korean Chemical Society
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    • 제30권5호
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    • pp.1026-1030
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    • 2009
  • A novel Schiff base ligand (N, O system) 5-methoxy-2-phenyliminomethylphenol ($5-CH_3O-PMP$) was synthesized. Using the synthesized ligand as a fluorescent reagent, a fluorometric method was developed for the quantitative analysis of Al(III) ion. The quantitative analysis of Al(III) ion was performed by making the complex compound between Al(III) ion and $5-CH_3O-PMP$ in ethanol-water solution (85/15, v/v, pH 6.2). The excitation wavelength (${\lambda}em$) of the complex compound was 397 nm while the emmision wavelength (${\lambda}em$) was 498 nm. The quantitative analysis of Al(III) ion was carried out by estimating the fluorescence intensity. The various calibration curves were used for the quantitative analysis in the range of 0.27$\sim$27 ng/mL Al(III) ion concentrations. The detection limit was 0.027 ng/mL. Using the fluorometric method developed in this study, satisfying results were obtained from various samples such as tap water, hot spring water, river water, sea water and waste water, which contained considerable amounts of interfering ions.

강원도형 녹색건강산업 특화분야의 발전 방안 (A Study on Development Strategy of Green Health Industry Specialized fields in Gangwon-do Privince)

  • 최은미;지계웅;한진영
    • 한국병원경영학회지
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    • 제16권4호
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    • pp.85-110
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    • 2011
  • As Gangwon-do Province needs an environmental-friendly alternative tourism according to low carbon green growth, this study analyzes specialized fields in green health industry, selects seven specialized fields in green health industry that is fit to Gangwon-do Province, and suggests a development strategy by conducting recognition surveys on preference and impotence of the specialized fields. Surveys and interviews are conducted of 106 students at Green Health Industry Education Center which is operating by Kwandong University and 84 persons who work at medical institutions and tourism related companies in Ganwondo. The surveys and interviews were completed from November 5 to November 19 in 2010, determined factors through a factor analysis when they have many questions, and analyzed by using SPSS 14.0. Out of the seven specialized fields, rest & recuperation field is highly recognized. In order to have competitive edge compared to other self-governing provinces, Ganwon-do Province should prioritize rest and recuperation field. A healthcare program in the green health industry specific to Ganwon-do Province includes hot springs and spa programs as a priority. Gangwon-do's hot springs are deemed to be competitive resources as global medical tourists prefer spa and sauna healthcare programs, while the province promotes its spring resources and builds medical tourism infrastructures. Gangwon-do Province can promote a medical tourism industry that is well suitable for the strength and characteristics of the province. It might pursue oriental medicine therapy tourism, which is related to a recuperating medical service that uses both oriental and western medicine. It can also run such programs as forest bathing (oxygen road), spring and spa, and sea water treatment, which are the specialized fields in green health industry with respect to recreation and healthcare.

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Selective Plugging Strategy Based Microbial Enhanced Oil Recovery Using Bacillus licheniformis TT33

  • Suthar, Harish;Hingurao, Krushi;Desai, Anjana;Nerurkar, Anuradha
    • Journal of Microbiology and Biotechnology
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    • 제19권10호
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    • pp.1230-1237
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    • 2009
  • The selective plugging strategy of Microbial Enhanced Oil Recovery (MEOR) involves the use of microbes that grow and produce exopolymeric substances, which block the high permeability zones of an oil reservoir, thus allowing the water to flow through the low permeability zones leading to increase in oil recovery. Bacillus licheniformis TT33, a hot water spring isolate, is facultatively anaerobic, halotolerant, and thermotolerant. It produces EPS as well as biosurfactant and has a biofilm-forming ability. The viscosity of its cell-free supernatant is $120\;mPa{\cdot}s$ at $28^{\circ}C$. Its purified EPS contained 26% carbohydrate and 3% protein. Its biosurfactant reduced the surface tension of water from 72 to 34 mN/m. This strain gave $27.7{\pm}3.5%$ oil recovery in a sand pack column. Environmental scanning electron microscopy analysis showed bacterial growth and biofilm formation in the sand pack. Biochemical tests and Amplified Ribosomal DNA Restriction Analysis confirmed that the oil recovery obtained in the sand pack column was due to Bacillus licheniformis TT33.

가사도 화산성 천열수 금은광상의 열수변질대 분포 및 성인: 탐사에의 적용 (Hydrothermal Alteration and Its Cenetic Implication in the Casado Volcanic-hosted Epithermal Cold-Silver Deposit: Use in Exploration)

  • 김창성;최선규;최상훈;이인우
    • 한국광물학회지
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    • 제15권3호
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    • pp.205-220
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    • 2002
  • 가사도 지역 금은광상은 후기 백악기 화산활동에 의해 형성된 화산쇄설암을 모암으로 하여 판상(sheeted) 및 망상(stockwork) 석영맥으로 산출되며, 빗살, 호상 및 깃털조직 등을 보이고 있다 금은광화작용과 관련된 열수변질대는 광물 조합에 따라 고점토대(딕카이트-명반석-석영), 점토대(딕카이트-석영), 견운모대(석영-견운모-황철석) 및 프로필리틱대(녹니석-탄산염광물-석 영-장석-휘석)로 구분된다 고점토대는 등대맥 최상부인 노인봉을 중심으로 분포하고 있으며, 그 외각부에서 견운모대 및 프로필리틱대가 산출되고 있다. 석영맥은 석영, 옥수질석영, 아듈라리아, 탄산염광물등의 맥석광물과 함께 미립의 황철석, 섬아연석, 황동석, 방연석, 함은광물, 에렉트럼 등 광석광물로 구성되며, 에렉트럼의 금함량은 14.6~53.7 atomic % Au이다. 유체포유물 및 에렉트럼-섬아연석 지질온도계로부터 추정된 광화작용 온도는 $158^{\circ}C$~285$^{\circ}C$범위로 전형적인 천열수광응의 온도범위를 보이고 있으며, 산소.수소 안정동위원소 연구 결과($\delta^{18}$ /$O_{water}$ =-10.1~8.0$\textperthousand$, $\delta$D=-68~64$\textperthousand$) 동위원소 교환이 적게 진행된 천수로부터 유래된 광화유체로 추정된다. 이러한 변질대의 분포특성, 열수유체의 기원 및 생성환경을 종합해 볼 때, 현재 지표에 노출된 가사도 지역의 광화대는 온천형 저유황성 천열수 금은광상의 최상부에 해당하는 것으로 추정된다.

극저준위 액체섬광계수기와 파형분석법을 이용한 지하수 및 온천수중 $^{222}Rn$의 신속측정법 (A Rapid Method for the Measurement of $^{222}Rn$ in Groundwater and Hot Spring Water using Ultra Low-Level Liquid Scintillation Counter and Pulse Shape Analysis)

  • 김창규;김철수
    • Journal of Radiation Protection and Research
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    • 제20권2호
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    • pp.103-115
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    • 1995
  • 계측이 간단하며 화학적 분리가 필요 없는 액체섬광계수법을 이용하여 일부 지하수 및 온천수중 $^{222}Rn$의 최적 분석조건을 검토하였다. $^{222}Rn$의 분석을 위한 최적 파형분석(PSA) 준위는 Optiphase HiSafe3 형광체 (Cocktail)에서 110, 그리고 톨루엔계열 형광체 (Toluene-based cocktail)에서는 90이었다. $^{222}Rn$의 계측효율은 Optiphase HiSafe3 형광체를 이용한 경우 ${\alpha}$영역에서의 계수효율은 유리용기는 282.2%, 테프론용기에서는 271.6%였으며, 톨루엔계열 형광체를 이용한 경우에는 유리용기와 테프론 용기에서 각각 262.3%, 247,5%였다. Optiphase HiSafe3 형광체와 테프론용기를 사용하여 60분간 계측하는 경우 ${\alpha}$-선 피크영역에서 $^{222}Rn$의 검출하한치는 $0.30Bq/{\iota}$였다. 또한, 본 연구에서 검토한 분석법은 일부 지하수 및 온천수중 $^{222}Rn$의 분석에도 응용되었다.

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지열자료 정보 D/B 구축 요소 (Geothermal properties for Database)

  • 김형찬;박정민
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 추계학술대회
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    • pp.28-31
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    • 2006
  • It is require to construct geothermal database to develop geothermal energy as renewable energy policy. It must be consist of geologic data, borehole data and geophysical data for geothermal database. In aspect of geology, there are included the distribution of geology, structural geology, geological time, rock name, density of rock, porosity, thermal diffusivity, specific capacity and thermal conductivity In order to calculate the heat general ion, it is needed to analysis the radioactivity elements as U, Th and K of rock. In aspect of borehole data, there are included temperature of depth, surface temperature and geothermal gradient And also there is geotherrnornetry using chemical components of groundwater as Na Ca, K and $SiO_2$. In aspect of geophysical data, there are some thematic map as booger gravity anomaly data and magnetic survey data and etc. In addition, it is important to descript the distribution of hot spring and water temperature.

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