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학술논문한국기계가공학회지2016.08 발행KCI 피인용 4

2000m 단일 시추공에서 밀폐동축방식 지중열교환기의 취득온도 성능평가

Performance Evaluation of Closed Co-axial Ground Heat Exchanger in the case of 2000m-Depth Single Well

류연수(한국 농어촌공사 농어촌연구원); 김재혁(조선대학교 기계공학과); 정상화(조선대학교)

15권 4호, 83~92쪽

초록

The Korean government has been making efforts to use renewable energy to reduce the consumption of fossil fuels for the heating system in greenhouses. The number of greenhouses that installed a geothermal heat pump system is 201 EA with the volume of 132.8 ha and 108,467 ㎾ from 2010–2014. The geothermal system, called a shallow geothermal system, with the temperature of 10–20°C has accessories composed of a BHE and heat pump. Moreover, it is necessary to have a wide area to install the BHE and to drill to the depth of 200 m. On the other hand, even though the deep geothermal system needs a high drilling cost to obtain the temperature of 40–150°C , the system has the advantages of the small area required for the BHE and operation without a heat pump. In this study, the temperature of the return water and heat capacity were measured to obtain the geothermal energy efficiently on the condition of the water flow being changed in the BHE. The temperature according to the return water changes through the heat conduction based on the increase of ground temperature up to the underground depth has been calculated to conduct a simulation and is compared with the field experiment test results.

Abstract

The Korean government has been making efforts to use renewable energy to reduce the consumption of fossil fuels for the heating system in greenhouses. The number of greenhouses that installed a geothermal heat pump system is 201 EA with the volume of 132.8 ha and 108,467 ㎾ from 2010–2014. The geothermal system, called a shallow geothermal system, with the temperature of 10–20°C has accessories composed of a BHE and heat pump. Moreover, it is necessary to have a wide area to install the BHE and to drill to the depth of 200 m. On the other hand, even though the deep geothermal system needs a high drilling cost to obtain the temperature of 40–150°C , the system has the advantages of the small area required for the BHE and operation without a heat pump. In this study, the temperature of the return water and heat capacity were measured to obtain the geothermal energy efficiently on the condition of the water flow being changed in the BHE. The temperature according to the return water changes through the heat conduction based on the increase of ground temperature up to the underground depth has been calculated to conduct a simulation and is compared with the field experiment test results.

발행기관:
한국기계가공학회
DOI:
http://dx.doi.org/10.14775/ksmpe.2016.15.4.083
분류:
기계공학

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