• 제목/요약/키워드: geothermometers

검색결과 11건 처리시간 0.018초

부산 해운대지역 지하수와 지열수의 수리화학적 특성 (Hydrochemical characteristics of ground and geothermal waters in the Haeundae hot-spring area, Pusan, Korea)

  • 심형수;함세영;성익환;이병대;조병욱;황진연
    • 한국환경과학회지
    • /
    • 제9권3호
    • /
    • pp.241-252
    • /
    • 2000
  • Twenty-two water samples(fifteen groundwater and seven geothermal water samples) were collected to elucidate chemical characteristics of the ground and geothermal waters in the Haeundae hot spring area and its vicinity. Major and honor elements were analyzed for ground and geothermal water samples. The concentrations of $K^+$, Na+$, $Ca^{2+}$, $SO_4^{2-}$, $Cl^-$, ^F^-$ and $SiO_2$ were higher in the geothermal water samples than the groundwater samples except $HCO_3^- and Mg^{2+}$ ions. Based on the contents of Fe, Zn, Cu, Al, Mn and Pb, some of the ground and geothermal water samples are contaminated by anthropogenic sources. The ground waters shown on the Piper diagram belong to $Ca-HCO_3$ type, while the geothermal waters Na-Cl type. The graphs of $Cl^-$ versus $Na^+$, $Ca^{2+}, Mg^{2+}, K^+, SO_4^{2-} and HCO_3^-$ indicate that the groundwater is related partly with mineral-water reaction and partly with anthropogenic contamination, while the geothermal water is related with saline water. On the phase stability diagram, groundwater and thermal water mostly fall in the field of stability of kaolinite. This indicates that the ground and geothermal waters proceed with forming kaolinite. Factor and correlation analyses were carried out to simplify the physicochemical data into grouping some factors and to find interaction between them. Based on the Na-K, Na-K-Ca and Na-K-Ca-Mg geothermometers and silica geothermometers, the geothermal reservoir is estimated to have equilibrium temperature between 125${$\mid$circ}C$ and 160${$\mid$circ}C$.

  • PDF

Estimation of deep reservoir temperature of thermal groundwaters in Bugok and Magumsan areas, South Korea

  • Park, Seong-Sook;Yun, Seong-Taek;So, Chil-Sup
    • 한국지하수토양환경학회:학술대회논문집
    • /
    • 한국지하수토양환경학회 2004년도 총회 및 춘계학술발표회
    • /
    • pp.473-476
    • /
    • 2004
  • In this study, hydrochemical studies of thermal waters in the Bugok and Magumsan areas showing geothermal anomalies were carried, and the applicability of ion seothermometers and multiple mineral equilibrium approach was examined to estimate their potential deep reservoir temperatures. Typical thermal waters of the two areas are clearly grouped into two major types, according to water chemistry: Na-Cl type (group A) and Na-SO4 type (group D). Compared to group A, group B and C waters show some modifications in chemistry. Group E waters show the modified chemistry from group D. Geothermal waters from the two areas showed some different chemical characteristics. The thermal waters of group A and B in Magumsan area are typically neutral to alkaline (pH=6.7 to 8.1) and Cl-rich (up to 446.1 mg/L), while the waters of group D and E in Bugok area are alkaline (pH=7.6 to 10.0) and SO$_4$-rich (up to 188.0 mg/L). The group A (Na-Cl type) and group D (Na-SO$_4$ type) waters correspond to mature or partially immature water, whereas the other types are immature water. The genesis of geothermal waters are considered as follows: group A and B waters were formed by seawater infiltration into reservoir rocks along faults and fracture zones and possibly affected by fossil connate waters in lithologic units through which deep hot waters circulate; on the other hand, group D and E waters were formed by the oxidation of sulfide minerals (mainly pyrite) in surrounding sedimentary rocks and/or hydrothermal veins occurring along restricted fracture channels and were possibly affected by the input and subsequent oxidation of S-bearing gases (e.g. H2S) from deep thermal reservoir (probably, cooling pluton). The application of quartz, Na-K, K-Mg geothermometers to the chemistry of representative group A and D waters yielded a reasonable temperature estimate (99-147$^{\circ}C$ and 90-142$^{\circ}C$) for deep geothermal reservoir. Aqueous liquid-rich fluid inclusions in fracture calcites obtained from drillcores in Bugok area have an average homogenization temperature of 128$^{\circ}C$, which corresponds to the results from ion geothermometers. The multiple mineral equilibrium approach yielded a similar temperature estimate (105-135$^{\circ}C$ and 100-14$0^{\circ}C$). We consider that deep reservoir temperatures of thermal waters in the Magumsan and Bugok areas can be estimated by the chemistry of typical Na-Cl and Na-SO$_4$ type waters and possibly approach 105-135$^{\circ}C$ and 100-14$0^{\circ}C$.

  • PDF

Assessment of geothermal potential in an area of sulfate-rich hot springs, Bugok, southern Korea

  • 박성숙;윤성택;채기택;소칠섭;고영권;최현수
    • 한국지하수토양환경학회:학술대회논문집
    • /
    • 한국지하수토양환경학회 2006년도 총회 및 춘계학술발표회
    • /
    • pp.303-306
    • /
    • 2006
  • Using a variety of chemical geothermometers we estimate the temperature of a deep geothermal reservoir in relation to thermal groundwater in the Bugok area, southern Korea, in order to assess the potential use of geothermal energy in South Korea. Thermal water at Bugok has been exploited down to about 400 m below the land surface and shows the highest outflow temperatures (up to $78{\circ}C$) in South Korea. Based on the hydrochemical data and occurrence, groundwater in Bugok can be classified into three groups: $Na-SO_4$ type thermal groundwater (CTGW) occurring in the central part (about 0.24 $km^2$) $Ca-HCO_3$ type cold groundwater (SCGW) occurring in shallow peripheral parts of CTGW; and the intermediate type groundwater (STGW). CTGW waters are typical of thermal water in the area, because they have the highest outflow temperatures and contain very high concentrations of Na, K and $SiO_2$ due to the sufficient reaction with silicate minerals in deep reservoir. Their enriched $SO_4$ was likely formed by gypsum dissolution. The major ion composition of CTGW shows the general approach to a partial equilibrium state with rocks at depth. The application of various alkali ion geothermometers yields temperature estimates in the range of 88 to $198{\circ}C$ for the thermal reservoir. Multiple mineral equilibrium calculation indicates asimilar but narrower temperature range between about 100 and $155{\circ}C$. These temperature estimates are not significantly higher than the measured outflow temperatures for CTGW Considering the heat loss during the ascent- of thermal waters, this fact may suggest that a thermal reservoir in the study area is likely located at relatively shallow depths (possibly close to the depth of preexisting wells). Therefore, we suggest a high potential for geothermal energy development around the Bugok area in southern Korea.

  • PDF

장군광산 주변의 변성이질암에서의 누진변성반응 계열 (Prograde Reaction Series in Metapelites around the Janggun Mine)

  • 안건상;정현희;이현구
    • 자원환경지질
    • /
    • 제26권4호
    • /
    • pp.473-487
    • /
    • 1993
  • The Janggun mine area is occupied by the Proterzoic and the Paleozoic meta-pelites, which are intruded by the Jurassic Chunyang granite. The metamorphic terrain is divided into four zones of progressive metamorphism on the basis of mineral assemblages. The zones are chlorite zone, staurolite zone, andalusite zone, sillimanite zone ascending order. Boundary lines between the zones resemble outline of the Chunyang granite mass. Isograd reactions are chlorite+chloritoid+muscovite=staurolite+biotite+quartz+water, staurolite+chlorite+muscovite+quartz=andalusite+biotite+water, and staurolite+muscovite+quartz=andalusite+biotite+garnet+water between the chlorite zone and the staurolite zone, the staurolite zone and the andalusite zone, and the andalusite zone and the sillimanite zone, repectively. They are univariant reactions in KFMASH component system. Metamorphic conditions estimated from garnet-biotite geothermometers and phase equlibria are $530^{\circ}C$ and lower than 4 kb.

  • PDF

Temperature and Timing of the Mylonitization of the Leucocratic Granite in the Northeastern Flank of the Taebaeksan Basin

  • Kim, Hyeong-Soo
    • 한국지구과학회지
    • /
    • 제33권5호
    • /
    • pp.434-449
    • /
    • 2012
  • The Mesozoic leucocratic granite in the northeastern margin of the Taebaeksan Basin was transformed to protomylonite and mylonite. Mylonitic foliations generally strike to NWWNW and dip to NE with the development of a sinistral strike-slip (top-to-the-northwest) shear sense. Grain-size reduction of feldspar in the mylonitized leucocratic granite occurred due to fracturing, myrmekite formation and neocrystallization of albitic plagioclase along the shear fractures of K-feldspar porphyroclasts. As the deformation proceeded, compositional layering consisting of feldspar-, quartz- and/or muscovite-rich layers developed in the mylonite. In the feldspar-rich layer, fine-grained albitic plagioclase and interstitial K-feldspar were deformed dominantly by granular flow. On the other hand, quartz-rich layers containing core-mantle and quartz ribbons structures were deformed by dislocation creep. Based on calculations from conventional two-feldspar and ternary feldspar geothermometers, mylonitization temperatures of the leucocratic granite range from 360 to $450^{\circ}C$. It thus indicates that the mylonitization has occurred under greenschist-facies conditions. Based on the geochemical features and previous chronological data, the leucocratic granite was emplaced during the Middle Jurassic at volcanic arc setting associated with crustal thickening. And then the mylonitization of the granite occurred during the late Middle to Late Jurassic (150-165 Ma). Therefore, the mylonitization of the Jurassic granitoids in the Taebaeksan Basin was closely related to the development of the Honam shear zone.

문경지역 심부지하수의 수리화학 및 환경동위원소 연구 (Hydrochemistry and Environmental Isotope Studies of the Deep Groundwater in the Munkyeong Area)

  • 고용권;김천수;배대석;이동익
    • 자원환경지질
    • /
    • 제33권6호
    • /
    • pp.469-489
    • /
    • 2000
  • The hydrogeochemical and isotopic studies on deep groundwater (below a 550 m depth from the ground surface) in the Munkyeong area, Kyeongbuk province were carried out. Two types of deep groundwater (${CO_2}$-rich groundwater and alkali groundwater) occur together in the Munkywong area. ${CO_2}$-rich groundwater (Ca-${HCO_3}$ type) is characterized by low pH (5.8~6.5) and high TDS (up to 2,682 mg/L.), while alkali groundwater (Na-${HCO_3}$ type) shows a high pH (9.1~10.4) and relatively low TDS (72~116 mg/L). ${CO_2}$-rich water may have evolved by ${CO_2}$ added at depth during groundwater circulation. This process leads to the dissolution of surrounding rocks and Ca, Na, Mg, K and ${HCO_3}$ concentrations are eniched. The low $Pco_2$ ($10^{-6.4}$atm) of alkali groundwaters seems to result from the dissolution of silicate minerals without a supply of ${CO_2}$. The ${\delta}^{18}O$ and ${\delta}^D$values and tritium data indicate that two types of deep groundwater were both derived from pre-thermonuclear meteoric water and have evolved through prolonged water-rock interaction. The carbon isotope data show that dissolved carbon in the ${CO_2}$-rich water was possibly derived from deep-seated ${CO_2}$ gas, although further studies are needed. The ${\delta}^{34}S$ values of dissolved sulfate show that sulfate reduction occurred at great depths. The application of various chemical geothermometers on ${CO_2}$-rich groundwater shows that the calculated deep reservoir temperature is about 130~$l75^{\circ}C$. Based on the geological setting, water chemistry and environmental isotope data, each of the two types of deep groundwater represent distinct hydrologic and hydrogeochemical evolution at depth and their movement is controlled by the local fracture system.

  • PDF

문경지역 탄산온천수의 지구화학적 및 동위원소적 특성연구

  • 배대석;최현수;고용권;박맹언;정율필
    • 한국지하수토양환경학회:학술대회논문집
    • /
    • 한국지하수토양환경학회 2000년도 추계학술대회
    • /
    • pp.87-90
    • /
    • 2000
  • The hydrogeochemical and isotopic studies on deep groundwater in the Munkyeong area, Kyeongbuk province were carried out. $CO_2$-rich groundwater (Ca-HC $O_3$ type) is characterized by low pH (5.8~6.5) and high TDS (up to 2,682 mg/L), while alkali groundwater (Na-HC $O_3$ type) shows a high pH (9.I~10.4) and relatively low TBS (72~116 mg/L). $CO_2$-rich water may have evolved by $CO_2$ added at depth during groundwater circulation. This process leads to the dissolution of surrounding rocks and Ca, Na, Mg, K and HC $O_3$ concentrations are enriched. The low Pc $o_2$ (10$^{-6.4}$atm) of alkali groundwaters seems to result from the dissolution of silicate minerals without a supply of $CO_2$. The $\delta$$^{18}$ O and $\delta$D values and tritium data indicate that two types of deep groundwater were both derived from pre-thermonuclear meteoric water. The carbon Isotope data show that dissolved carbon in the $CO_2$-rich water was possibly derived from deep-seated $CO_2$ gas. The $\delta$$^{18}$ S values of dissolved sulfate show that sulfate reduction occurred at great depths. The application of various chemical geothermometers on $CO_2$-rich groundwater shows that the calculated deep reservoir temperature is about 130~175$^{\circ}C$. Based on the geological setting, water chemistry and environmental isotope data, each of the two types of deep groundwater represent distinct hydrologic and hydrogeochemical evolution at depth and their movement is controlled by the local fracture system.m.

  • PDF

포항 흥해지역 지열대의 지화학 (Geochemistry of the Heunghae, Pohang Geothermal Fields, Korea)

  • 윤욱;조병욱
    • 한국지하수토양환경학회지:지하수토양환경
    • /
    • 제10권6호
    • /
    • pp.45-55
    • /
    • 2005
  • 한반도의 고 지열류량 지대에 속하는 포항시 흥해지역 일대에 대한 지열수 조사를 수행하였다. 그 결과 이 지역 지열수는 지열수대 연변부로서 저류암과 완전평형을 이루지 못하는 것으로 나타났다. 동위원소분석 결과 심부 지하수(평균: ${\delta}^{18}O=-10.1\%_{\circ},\;{\delta}D=-65.8\%_{\circ}$), 중간심도(평균: ${\delta}^{18}O=-8.9\%_{\circ},\;{\delta}D=-59.6\%_{\circ}$), 천부지하수(평균: ${\delta}^{18}O=-8.0\%_{\circ},\;{\delta}D=-53.6\%_{\circ}$), 지표수(평균: ${\delta}^{18}O=-7.9\%_{\circ},\;{\delta}D=-53.3\%_{\circ}$)를 보여 심부지하수는 강우에서 기원하였고, 지형적으로 고도가 높은 지역에서 함양되었으며, 해수의 영향을 받지 않았음이 밝혀졌다. 물 지질온도계를 이용한 결과 D-2, D-5, D-6, I-04부근에서 이상 고온대가 추정된다. 실리카-엔탈피 혼합모델 추정결과 저류대 온도는 410 kJ/kg으로서 $98^{\circ}C$에 해당하여 Na-K 및 K-Mg온도계에 의한 추정결과와 일치한다.

청평-양평 지역에 분포하는 근청석 편마암의 백립암상 변성작용과 P-T 진화 경로 (Granulite-facies metamorphism and P-T evolutionary path of cordierite gneisses in the Cheongpyeong-Yangpyeong area)

  • 조윤호;조문섭;이승렬
    • 암석학회지
    • /
    • 제5권1호
    • /
    • pp.52-65
    • /
    • 1996
  • 경기육괴 중앙부의 청평-양평 지역에 분포하는 선캠브링 변성암류는 편마암, 편암, 규암, 각섬암 등으로 이루어져 있다. 변성이질암류의 특징적인 광물조합은 백립암상을 지시하는 흑운모 + 근청색 + 석류석 + 규선석 + K장석 + 사장석 + 석영, 백운모, 스피넬, 강옥이 소량으로 산출한다. 특히 3개의 편마암 표품에서 남정석이 사장석내에 세립의잔류광물로 존재한다. 석류석-흑운모와 석류석-근청석 지온계 그리고 석류석-$Al_2SiO_5$-석영-사장석(GASP)과 석류석-금홍석-Al2SiO5-티티철석(GRAIL)지압계를 사용하여 추정한 변성조건은 석류석의 주심부 성분을 사용하였을 때 700-$850^{\circ}C$와 3.2-8.3 kbar이고 주변부 성분을 사용하였을 때 580-$690^{\circ}C$ 와 2.1-3.2 kbar이다. GASP 광물조합을 이루는 석류석은 중심부에서 주변부로 갈수록 Fe와 Mn양이 증가하고 Mg양은 감소하는 경향을 보이지만 Ca양은 거의 일정하다. 이러한 성분의 변화는 P-T계산 결과 및 남정석의 산출과 함께 시계방향의 변성진화경를 시사한다. 또한, 중앙형 백립암상의 고변성작용을 경험한 이후에도, 상대적으로 고압광물인 남정석이 사장석내에 포획되어 산출하는 조직상의 특징은 연구지역의 P-T조건이 비교적 빠르게 변화했음을 시사한다.

  • PDF

동래온천지역의 지열수와 지하수의 지화학적 특성 (Geochemical Characteristics of Geothermal Water and Groundwater in the Dongrae Hot-Spring Area)

  • Suck Jong Han;Se-Yeong Hamm;Ig Hwan Sung;Byeong Dae Lee;Byong Wook Cho;Myong Hee Cho
    • 지질공학
    • /
    • 제9권3호
    • /
    • pp.207-225
    • /
    • 1999
  • 동래온천지역 지열수 및 그 주변지역 지하수의 수리지구화학적 특성을 밝히기 위해서, 20개의 시료(11개 지하수 시료와 9개 온천수 시료)를 채수하여 화학성분을 분석하였다. 지하수와 온천수의 화학적 성질을 조사하고 이들의 화학 조성을 비교.분석하였다. 요인분석과 상관분석을 통하여 화학분석 자료를 몇 개의 요인으로 묶어서 요인들간의 상호연관성을 고찰하였다. 파이퍼 다이아그램에 도시한 결과, 지하수는 $Ca-HCO_3$형에 그리고 온천수는 Na-Cl 형에 속하는 것으로 나타났다. 동래온천수의 염소이온 함량은 우리나라의 다른 화강암지역의 온천수보다 높게 나타난다. 온천수의 Na/Cl 비는 0.7~l.3이다. 상평형도에 의하면, 지하수는 카오리나이트 안정 영역에 놓인다. 한편, 온천수는 미사장석이나 카오리나이트 안정영역에 놓인다. Na-K, Na-K-Ca 및 Na-K-Ca-Mg 지온계에 의하면, 지하 심부의 지열대수층의 온도는 $115~145^{\circ}C$로 추정된다.

  • PDF