• 제목/요약/키워드: Geothermal water

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지열 발전정 시멘팅을 위한 G-class 시멘트 특성 평가에 관한 연구 (Evaluation of Characteristics of G-class Cement for Geothermal Well Cementing)

  • 원종묵;전종욱;박상우;최항석
    • 한국지반공학회논문집
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    • 제29권5호
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    • pp.29-38
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    • 2013
  • G-class 시멘트는 지열발전소 가동 시에 지열정에서 고온의 지열수나 증기를 심부에서 지표면까지 이동시키는 케이싱을 보호하는 시멘팅 재료로서 이용된다. 지열정을 통한 원활한 지열발전을 위해서는 시멘팅 재료의 물리적 특성들이 만족되어야 한다. 본 연구에서는 G-class 시멘트를 지열정 시멘팅 재료로서의 중요한 물리적 특성인 유동성, 일축압축강도, 열전도도, free fluid 함유율(Free fluid content) 등을 평가하기 위해, 다양한 물/시멘트 비 조건에서 실내실험을 수행하였다. G-class 시멘트에 대한 물리적 특성 평가를 통해 다음과 같은 결론을 도출하였다. (1) G-class 시멘트의 유동성은 소량의 응고지연제(retarder)를 첨가하여 증가 시킬 수 있다. (2) 유동성 확보를 위해 물/시멘트 비를 높일 경우, 일축압축강도가 감소하여 지열정의 구조적 문제를 야기할 수 있다. (3) G-class 시멘트의 열전도도는 지열정 가동 시에 지열정에서 외부 지반으로의 열손실이 거의 없을 정도로 낮게 평가되었다. (4) G-class 시멘트를 시멘팅 재료로 이용할 경우, 블리딩(bleeding) 가능성은 매우 낮은 것으로 판단된다. (5) 페놀프탈레인 지시약은 지열정 시공시 지표면에서 시추용 이수와 G-class 시멘트를 구분하기 위해 적합할 것으로 판단된다.

지열원과 수열원을 이용한 하이브리드 히트펌프 시스템의 에너지 성능 비교 분석 연구 (A Study on Comparative Analysis of Energy Performance of Hybrid Heat Pump Systems Using Ground Heat Source and Water Heat Source)

  • 박시훈;김종현;민준기
    • 한국지열·수열에너지학회논문집
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    • 제17권4호
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    • pp.59-67
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    • 2021
  • In this study, the performance of the single heat source system and the hybrid system was comparatively analyzed. Case 1 is a ground heat source system, and Case 2 is a water heat source system. Case 3, a hybrid system, reduced the capacity of the ground heat source and applied a water heat source as an auxiliary heat source, and Case 4 was composed of a system that applied a water heat source as an auxiliary heat source to the ground heat source system. As a result of the simulation, in case 3, energy consumption was reduced by up to 2.67% compared to ground sources for cooling. In Case 4, COP was improved by up to 10.02% compared to ground sources during cooling, and EST was calculated to be 2.42℃ lower. During heating, 0.83% was improved compared to the water heat source. At this time, the EST was calculated to be 2.25℃ higher than the water heat source.

지열히트펌프를 이용한 습식.건식 바닥난방 성능평가 연구 (A Study on Comparison of Capacity between Wet.Dry Floor Heating Systems Using Geothermal Heat Pump)

  • 이병두;이세진;이대우;오성해;남우동
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2009년도 추계학술대회 논문집
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    • pp.567-570
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    • 2009
  • The present study conducted comparative evaluation of wet dry floor heating systems using geothermal heat pump. Circulation hot water from geothermal heat pump which is $10{\sim}15^{\circ}C$ lower than that from boiler was used. In order to access indoor temperature ($25^{\circ}C$) it took 74 minutes for dry type and 247 minutes for wet type. Average floor temperature was $23.89^{\circ}C$ for wet type and $32.66^{\circ}C$ for dry type. Energy saving rate gradually increased by 66% after 138 minutes. In the results, for floor heating system using low temperature circulation water, wet type was not enough to meet stable and comfortable radiant floor heating due to low floor temperature and access time to indoor set temperature. While dry type was practicable for stable floor heating due to fast rise of indoor set temperature and comfortable floor temperature.

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2단 가열식 지열시스템의 경제성 분석 (An Economic Analysis of a Secondary Waste Heat Recovery Geothermal Heating System)

  • 신정수;김선혜
    • 설비공학논문집
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    • 제29권5호
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    • pp.249-258
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    • 2017
  • This paper provides an economic analysis of a new geothermal heat pump system that reuses condenser waste heat from a Ground Source Heat Pump ($GSHP_{ch}$) to provide energy for a hot water Ground Source heat pump ($GSHP_{hw}$). After conducting feasibility tests using GLD and TRNSYS simulations, the proposed system was effectively installed and thoroughly tested. We observe that 1) the Coefficient of Performance (COP) of the $GSHP_{hw}$ and the $GSHP_{ch}$ during cooling mode improves by up to 62% and 7%, respectively; 2) the number of bore holes can be reduced by two; and 3) the hot water supply temperature of the $GSHP_{hw}$ increases by up to $60^{\circ}C$. We further conclude that 1) the reduction of two bore holes can save approximately ten million Won from the initial cost investment; and 2) the increased COP of the $GSHP_{hw}$ can save approximately one million Won in annual electricity costs.

지열-태양열원 복합시스템의 성능평가에 관한 연구 (A Study on the Performance Evaluation of Hybrid Energy System with Geothermal and Solar Heat Sources)

  • 황인주;우남섭;이홍철
    • 설비공학논문집
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    • 제18권3호
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    • pp.279-286
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    • 2006
  • The present study concerns the annual performance evaluation of a hybrid-renewable energy system with geothermal and solar heat sources for hot water, heating and cooling of the residential buildings. The hybrid energy system consists of ground source heat pump of 2 RT for cooling, solar collectors of $4.8m^2$, storage tank of 250 liters and gas fired backup boiler of 11.6 kW. The averaged coefficients of performance of geothermal heat pump system during cooling and heating seasons are measured as 4.1 and 3.5, respectively. Also solar fraction for hot water is measured as 35 percent. Overall, the results shows that the hybrid-renewable energy system satisfactorily operated under all climatic conditions.

HFC32 냉매를 사용한 지열원 히트펌프의 성능 특성 (Performance of the Geothermal Heat Pump Using HFC32 Refrigerant)

  • 박용정;박병덕
    • 한국수소및신에너지학회논문집
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    • 제30권4호
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    • pp.369-375
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    • 2019
  • Air conditioners adopting high energy efficiency and low global warming potential (GWP) refrigerant are being developed globally. In case of commercial air conditioner, R32 with lower GWP than R410A is attracting industrial attentions. In this study, the performance of water-to-water geothermal heat pump adopting R32 is compared with that of the heat pump using R410A. By using R32 instead of R410A, heating capacity and COP in heating standard condition can be increased by 8.8% and 6.3% respectively. Also, cooling capacity and COP in cooling standard condition can be increased by 5.3% and 3.1% respectively by using R32. But in case of using R32, systemic improvements are required to decrease discharge temperature of compressor since discharge temperature rises abnormally in heating operations.

Modified TOUGHREACT를 이용한 지중 열교환기 내 순환 유체의 온도 분포 추정 (A Study to Calculate Inlet Fluid Temperature of the Borehole Heat Exchanger (BHE) using Modified TOUGHREACT)

  • 김성균;배광옥;이강근;심병완;송윤호
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2007년도 추계학술대회 논문집
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    • pp.477-480
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    • 2007
  • Inlet fluid temperature of the BRE in the geothermal heat pump system depends on heat exchange rate between the refrigerant of the heat pump and the leaving fluid from the BRE. Because the outlet fluid temperature of the BHE varies with time, inlet fluid temperature has to vary with time. In this study, the module to calculate inlet fluid temperature is developed, which can consider the time-varying outlet fluid temperature and the heat exchange capacity of the heat pump. It is assumed that heat loss or gain of the leaving fluid from outlet to inlet of the BHE is negligible, except when the fluid contacts with the refrigerant of the heat pump. This module is combined with TOUGHREACT, a widely accepted three-dimensional numerical simulator for heat and water flow and geochemical reactions in geothermal systems and is applied to data analyses of the thermal response test.

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지중 열 교환기 운영 효율의 최적화를 위한 단순화 모델의 개발 (Development of a simplified model to maximize operating efficiency of heat exchanger)

  • 김경호;신지연;김성균;이강근
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2007년도 추계학술대회 논문집
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    • pp.481-484
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    • 2007
  • Efficiency of geothermal heat exchanger operation has close relation with temperature variation of the aquifer where the exchanger is installed. In the case of long-term operation, temperature distribution of the aquifer would be similar to that of water circulating in the exchanger, which causes the decrease of heat exchange rate. Therefore, the operation period of the heat exchanger should be controlled so that the temperature distribution of the aquifer is recovered. We developed a model to determine the operation period to acquire the optimal efficiency under the given aquifer condition. With this suggested method, when we use closed-loop heat exchanger, the operation efficiency of the geothermal heat exchanger is expected to be maximized by determining the optimal operation period.

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지열 냉난방 시스템을 위한 열전도도의 지역별 분포 (Regional Distribution of Thermal Conductivity of Ground Heat Exchanger for Geothermal Heat Pump System)

  • 임효재;손병후;정계훈
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2007년도 추계학술대회 논문집
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    • pp.511-514
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    • 2007
  • This study was performed to construct a geothermal data base about thermal conductivity of ground heat exchanger and thermal properties of grouting material which used to refill the borehole. We have acquired geothermal data sets from 39 sites over wide area of South Korea except to Jeju island. From data analysis, the range of thermal conductivity is $1.5{\sim}4.0$ W/mK. It means that thermal conductivity varies with grouting material as well as regional geology and ground water system.

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