TRNOPT를 이용한 수직 지중열교환기 길이 산정 방법에 관한 연구

Ground-coupled heat pump systems have been widely used, as they are regarded as a renewable energy source and ensure a high annual efficiency. Among the system components, borehole heat exchangers (BHE) play an important role in decreasing the entering water temperature (EWT) to heat pumps in the co...

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Published in설비공학 논문집, 28(10) Vol. 28; no. 10; pp. 402 - 407
Main Authors 박승훈(Seung-Hoon Park), 이현수(Hyun-Soo Lee), 장용성(Young-Sung Jang), 김의종(Eui-Jong Kim)
Format Journal Article
LanguageKorean
Published 대한설비공학회 2016
Subjects
Online AccessGet full text
ISSN1229-6422
2465-7611
DOI10.6110/KJACR.2016.28.10.402

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Abstract Ground-coupled heat pump systems have been widely used, as they are regarded as a renewable energy source and ensure a high annual efficiency. Among the system components, borehole heat exchangers (BHE) play an important role in decreasing the entering water temperature (EWT) to heat pumps in the cooling season, and consequently improve the COP. The optimal sizing of the BHEs is crucial for a successful project. Other than the existing sizing methods, a simulation-based design tool is more applicable for modern complex geothermal systems, and it may also be useful since design and engineering works operate on the same platform. A simulation-based sizing method is proposed in this study using the well-known Duct STorage (DST) model in Trnsys. TRNOPT, the Trnsys optimization tool, is used to search for an optimal value of the length of BHEs under given ground loads and ground properties. The result shows that a maximum EWT of BHEs during a design period (10 years) successfully approaches the design EWT while providing an optimal BHE length. Compared to the existing design tool, very similar lengths are calculated by both methods with a small error of 1.07%.
AbstractList Ground-coupled heat pump systems have been widely used, as they are regarded as a renewable energy source and ensure a high annual efficiency. Among the system components, borehole heat exchangers (BHE) play an important role in decreasing the entering water temperature (EWT) to heat pumps in the cooling season, and consequently improve the COP. The optimal sizing of the BHEs is crucial for a successful project. Other than the existing sizing methods, a simulation-based design tool is more applicable for modern complex geothermal systems, and it may also be useful since design and engineering works operate on the same platform. A simulation-based sizing method is proposed in this study using the well-known Duct STorage (DST) model in Trnsys. TRNOPT, the Trnsys optimization tool, is used to search for an optimal value of the length of BHEs under given ground loads and ground properties. The result shows that a maximum EWT of BHEs during a design period (10 years) successfully approaches the design EWT while providing an optimal BHE length. Compared to the existing design tool, very similar lengths are calculated by both methods with a small error of 1.07%. KCI Citation Count: 2
Ground-coupled heat pump systems have been widely used, as they are regarded as a renewable energy source and ensure a high annual efficiency. Among the system components, borehole heat exchangers (BHE) play an important role in decreasing the entering water temperature (EWT) to heat pumps in the cooling season, and consequently improve the COP. The optimal sizing of the BHEs is crucial for a successful project. Other than the existing sizing methods, a simulation-based design tool is more applicable for modern complex geothermal systems, and it may also be useful since design and engineering works operate on the same platform. A simulation-based sizing method is proposed in this study using the well-known Duct STorage (DST) model in Trnsys. TRNOPT, the Trnsys optimization tool, is used to search for an optimal value of the length of BHEs under given ground loads and ground properties. The result shows that a maximum EWT of BHEs during a design period (10 years) successfully approaches the design EWT while providing an optimal BHE length. Compared to the existing design tool, very similar lengths are calculated by both methods with a small error of 1.07%.
Author 이현수(Hyun-Soo Lee)
장용성(Young-Sung Jang)
박승훈(Seung-Hoon Park)
김의종(Eui-Jong Kim)
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DocumentTitleAlternate Sizing of Vertical Borehole Heat Exchangers using TRNOPT
DocumentTitle_FL Sizing of Vertical Borehole Heat Exchangers using TRNOPT
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Keywords BHE-Borehole heat exchanger(지중열 교환기)
EWT-Entering Water Temperature(보어홀 출구온도)
DST-Duct STorage(DST 모델)
TRNSYS(트랜시스)
Optimization algorithm(최적화 알고리즘)
DST
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Title TRNOPT를 이용한 수직 지중열교환기 길이 산정 방법에 관한 연구
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