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단열 다심관의 열전달 특성에 관한 연구

A Study on the Heat Transfer Characteristic of Insulated Multi Core Tube

  • Park, Sang-Kyun (Division of Marine Information Technology, Korea Maritime and Ocean University) ;
  • Lee, Tae-Ho (Department of Power System Engineering, Kunsan National University) ;
  • Kim, Myoung-Jun (Department of Power System Engineering, Kunsan National University)
  • 투고 : 2015.02.11
  • 심사 : 2015.05.30
  • 발행 : 2015.07.31

초록

본 연구에서는 다심관(Multi Core Tube)에 단열재로 글라스울(Glass wool)을 사용한 단열 다심관(Insulated Multi Core Tube)의 열전달 특성에 관하여 검토하였다. 제작된 단열 다심관에 대하여 외기온도, 유압 오일 공급온도, 유압 오일 공급유량에 따른 단열 다심관 내부의 유압 오일의 온도특성에 관하여 실험 및 모델링을 통하여 검토하였다. 그 결과 본 연구의 범위 내에서 최소 유압 오일 공급유량인 0.29(l/min)인 경우 실험결과와 수치해석 결과의 온도차이가 최대 약 $3^{\circ}C$정도 발생하였다. 외기온도가 일정한 경우 유압 오일 공급온도가 높을수록 유압 오일의 공급유량에 관계없이 유압 오일 출구온도가 높아지고, 유압 오일 공급유량이 1.01(l/min)이상일 경우에는 유압 오일의 온도강하에 외기온도의 영향이 적음을 알 수 있었다.

In this paper, we study the characteristics of heat transfer for an insulated multi-core tube using glass wool as an insulator for the multi-core tube. By performing experiments and modeling, we examine the variations in the temperature characteristics of hydraulic oil inside the multi-core tube with atmosphere temperature, inlet temperature, and the flow rate of hydraulic oil for the insulated multi-core tube that we developed. When the minimum inlet flow rate of hydraulic oil employed within the scope of the research is 0.29 l/min, the temperature difference obtained in the experiments and numerical analysis was a maximum of $3^{\circ}C$. For a constant atmospheric temperature, as the inlet temperature of the hydraulic oil increases, the outlet temperature of the hydraulic oil will also increase, regardless of its inlet flow rate. Further, when the inlet flow rate of the hydraulic oil is more than 1.01 l/min, the effect of the atmospheric temperature on the temperature drop of the hydraulic oil is low.

키워드

참고문헌

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피인용 문헌

  1. A Study on the Analysis and Experiment of Insulation Performance of Multi Core Tubes Using Glass Wool as Insulation Material vol.31, pp.3, 2015, https://doi.org/10.13000/jfmse.2019.6.31.3.756