해수냉난방용 판형 열교환기의 최적설계를 위한 수치적 연구Numerical Study for the Optimal Design of Plate Heat Exchanger Using at Seawater Air Conditioning
- Other Titles
- Numerical Study for the Optimal Design of Plate Heat Exchanger Using at Seawater Air Conditioning
- Authors
- 김현주; 정영권; 이호생; 윤정인; 손창효
- Issue Date
- 30-8월-2014
- Publisher
- 한국동력기계공학회
- Keywords
- plate heat exchanger; air conditioning system using seawater; j factor; f factor; numerical analysis
- Citation
- 한국동력기계공학회, v.18, no.4, pp 29 - 35
- Pages
- 7
- Journal Title
- 한국동력기계공학회
- Volume
- 18
- Number
- 4
- Start Page
- 29
- End Page
- 35
- URI
- https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/8000
- Abstract
- Plate heat exchanger are being applied in the field of OTEC (ocean thermal energy conversion) and SWAC (seawater air conditioning) system. This study is to analyze numerically the heat transfer and pressure drop characteristics by using solid works flow simulation in order to offer optimum design data of plate heat exchanger. Plater heat exchanger proposed in this study is four types. The geometric design parameters of plate heat exchanger are a channel space, a flow orientation, a plate array, the flowrate of working fluid and so on. The main results for numerical analysis of plate heat exchangers are summarized as follows. Heat transfer performance for the channel space of 2.4 mm shows the highest value compared to other spaces. And, the 4-type plate heat exchanger in Table 2 is the highest performance. From the pressure drop characteristics of plate heat exchanger, the channel space of 3.2 mm shows the lowest value. And 1-type plate heat exchanger in Table 2 is the lowest pressure drop.id works flow simulation in order to offer optimum design data of plate heat exchanger. Plater heat exchanger proposed in this study is four types. The geometric design parameters of plate heat exchanger are a channel space, a flow orientation, a plate array, the flowrate of working fluid and so on. The main results for numerical analysis of plate heat exchangers are summarized as follows. Heat transfer performance for the channel space of 2.4 mm shows the highest value compared to other spaces. And, the 4-type plate heat exchanger in Table 2 is the highest performance. From the pressure drop characteristics of plate heat exchanger, the channel space of 3.2 mm shows the lowest value. And 1-type plate heat exchanger in Table 2 is the lowest pressure drop.
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