Application of closed-loop oscillating heat-pipe with check valves (CLOHP/CV) air-preheater for reduced relative-humidity in drying systems

被引:36
|
作者
Meena, P.
Rittidech, S.
Poomsa-ad, N.
机构
[1] Faculty of Engineering, Mahasarakham University
关键词
closed-loop oscillating heat-pipe; check valves; air-preheater; relative humidity; heat recovery; drying system;
D O I
10.1016/j.apenergy.2006.09.006
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This paper aims to design, construct, and test the CLOHP/CV air-preheater for reduced relative humidity in drying systems for recovering the waste heat from the drying cycle. The CLOHP/CV heat-exchanger consisted of 3.58 m long copper tubes, with an internal diameter of 0.002 m. The evaporator and condenser sections were 0.19 m long, the adiabatic sections were 0.08 m long, the hot-air velocities were 0.5, 0.75 and 1 m/s with the hot-air temperatures being 50, 60 and 70 degrees C, and the relative humidity was 100%. The working fluid was R134a with the filling ratio of 50%. It can be concluded that, with an increase in the hot-air temperature from 50 to 70 degrees C, the heat-transfer rate slightly increases. The velocity increases from 0.5, 0.75 to 1 m/s and the heat-transfer rate slightly decreases. The velocity increases from 0.5, 0.75 to 1 m/s and the effectiveness slightly decreases. The hot-air temperature increases from 50 to 70 degrees C and the effectiveness slightly increases. The relative humidity reduced to the range 54-72% from 89% to 100%. The CLOHP/CV air-preheater can reduce the relative humidity and achieve energy thrift. (c) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:553 / 564
页数:12
相关论文
共 24 条
  • [1] Closed-loop oscillating heat-pipe with check valves (CLOHP/CVs) air-preheater for reducing relative humidity in drying systems
    Meena, P.
    Rittidech, S.
    Poomsa-ad, N.
    APPLIED ENERGY, 2007, 84 (04) : 363 - 373
  • [2] Corrosion mechanism in a closed-loop oscillating heat-pipe with check valves (CLOHP/CV)
    Sangiamsuk, S.
    Bubphachot, B.
    Watanabe, O.
    Rittidech, S.
    ANTI-CORROSION METHODS AND MATERIALS, 2014, 61 (05) : 293 - 299
  • [3] Measurement of internal pressure and thermal performance in a closed-loop oscillating heat-pipe with check valves (CLOHP/CV)
    Sangiamsuk, S.
    Bubphachot, B.
    Watanabe, O.
    Rittidech, S.
    INDIAN JOURNAL OF PURE & APPLIED PHYSICS, 2014, 52 (08) : 531 - 540
  • [4] Application of a closed-loop oscillating heat pipe with check valves (CLOHP/CV) on performance enhancement in air conditioning system
    Supirattanakul, P.
    Rittidech, S.
    Bubphachot, B.
    ENERGY AND BUILDINGS, 2011, 43 (07) : 1531 - 1535
  • [5] Thermal performance of horizontal closed-loop oscillating heat-pipe with check valves
    S. Rittidech
    N. Pipatpaiboon
    S. Thongdaeng
    Journal of Mechanical Science and Technology, 2010, 24 : 545 - 550
  • [6] Thermal performance of horizontal closed-loop oscillating heat-pipe with check valves
    Rittidech, S.
    Pipatpaiboon, N.
    Thongdaeng, S.
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2010, 24 (02) : 545 - 550
  • [7] Heat-transfer characteristics of a closed-loop oscillating heat-pipe with check valves
    Rittidech, S.
    Pipatpaiboon, N.
    Terdtoon, P.
    APPLIED ENERGY, 2007, 84 (05) : 565 - 577
  • [8] Experimental study of the performance of a circular tube solar collector with closed-loop oscillating heat-pipe with check valve (CLOHP/CV)
    Rittidech, S.
    Donmaung, A.
    Kumsombut, K.
    RENEWABLE ENERGY, 2009, 34 (10) : 2234 - 2238
  • [9] Design and construction of an oven for drying palm bunch using glycerin as fuel together with using closed-loop oscillating heat-pipe with check valves (CLOHP/CV) heat exchanger for waste heat recovery
    Sangiamsuk, S.
    Rittidech, S.
    Pattiya, A.
    Pipatpaiboon, N.
    JOURNAL OF SCIENTIFIC & INDUSTRIAL RESEARCH, 2012, 71 (02): : 138 - 143
  • [10] Closed-ended oscillating heat-pipe (CEOHP) air-preheater for energy thrift in a dryer
    Rittidech, S
    Dangeton, W
    Soponronnarit, S
    APPLIED ENERGY, 2005, 81 (02) : 198 - 208