Effect of Greenhouse Cooling and Transplant Quality Using Geothermal Heat Pump System

지열-열펌프 시스템의 온실냉방 및 육묘 효과

  • Published : 2006.09.01

Abstract

This study was carried out to investigate the effect of greenhouse cooling by a geothermal heat pump system on greenhouse temperature and growth of vegetable transplants in summer season. Greenhouse air temperature in day time was $3-4^{\circ}C$ lower in fog plus shading system than in shading, while in night time that was $5-7^{\circ}C$ lower in geothermal heat pump (GHP) plus shading system compared to shading or fogplus shading. system. Plant height of cucumber, tomato and hot pepper transplants was shortened in GHP plus shading compared to shading or fog plus shading system. And Leaf area and dry weight were slightly decreased in GHP plus shading compared to the other systems. Therefore, healthy transplant index on cucumber, tomato and hot pepper was higher in GHP plusshading than in shading or fogplusshading system.

지열을 이용한 열펌프 시스템이 온실의 냉방과 과채류의 묘소질에 미치는 영향을 구명하였다. 온실 내 기온은 주간에는 차광구에 비해서 포그+차광구가 $3{\sim}4^{\circ}C$ 낮았고, 야간에는 지열-펌프+차광구가 차광 및 포그+차광구에 비해 $5{\sim}7^{\circ}C$ 낮았다. 오이, 고추 및 토마토 묘의 초장은 차광이나 차광+포그구에 비해 지열-열펌프+차광구가 가장 짧았고, 엽면적과 건물중은 지열-열펌프+차광구가 다른 처리에 비해 약간 작았다. 결과적으로 건묘지수는 지열을 이용하여 냉방을 한 지열+차광구는 포그+차광구 및 차광구에 비해 모두 높게 나타났다.

Keywords

References

  1. Ahmadi, A.B. and M.A. Stevens. 1979. Reproductive responses of heat-tolerant tomatoes to high temperatures. J. Amer. Soc. Hort. Sci. 104:692-694
  2. Barrett, H.E. and T.A. Nell. 1992. Efficacy of paclobutrazol and uniconazole on bedding plant species. HortScience 27:896-897
  3. Choi Y.H., J.W. Cheong, G.B. Kwon, and K.Y. Kwang. 1996. Effects of low night time temperature in the nursery on growth of seedlings, field-grown plants and yield of tomatoes in late raising. RDA J. Agri. Sci. 38(2):421-426
  4. Choi Y.H., J.L. Cho, H.C. Rhee, D.K. Park, J.K. Kwon, and J.H. Lee. 2002. Effects of summer grown seedling quality on growth and yield of tomato. J. Kor Soc. Hort. Sci. 43:395-398
  5. Choi Y.H., H.C. Rhee, D.K. Park, J.K. Kwon, and J.H. Lee. 2001. Effects of mechanical stimulation and chemical treatments on growth of seedlings and yield of tomato. J. Kor Hort. Sci. and Tech. 19:320-324
  6. Kozai, T., Z. Quan, M. Hayashi, I. Watanabe, T. Shinko, and H. Higuchi. 1986. Cooling load of a greenhouse (2). Reduction of the cooling load in night time. J. Agr. Met. 41:351-357 https://doi.org/10.2480/agrmet.41.351
  7. Kwon, J.K., J.C. Park, J.H. Lee, D.K. Park, and Y.H. Choi. 2003. Effect of UV-B irradiation on overgrowth retardation of plug-grown fruit vegetable transplants. J. Kor Soc. Hort. Sci. 44:458-463
  8. Kwon, J.K., Y.C. Um, D.K. Park, J.H. Lee, and K.W. Kang. 1998. Effect of automatic shading during summer season on growth and yield of fruit vegetables in plastic film house. RDA J. Hort. Sci. 40:1-7
  9. Puri, V.M. 1986. Feasibility and performance curves for intermittent earth-tube heat exchangers. Trans. of the ASAE. 29:525-532
  10. Puri, V.M. 1987. Earth-tube heat exchanger performance correlation using boundary element method. Trans. of the ASAE. 30:514-520 https://doi.org/10.13031/2013.31980
  11. Reddy, K.R., R.R. Robana, H.F. Hodges, X.J. Liu, and J.M. Mckinion. 1998. Interactions of $CO_{2}$ enrichment and temperature on cotton growth and leaf characteristics. Environ. Exp. Bot. 39:117-129 https://doi.org/10.1016/S0098-8472(97)00028-2
  12. Rylski, I., B. Aloni, L. Karni, and Z. Zaidman. 1993. Flowering, fruit set, fruit development and fruit quality under different environmental conditions in tomato and pepper crops. International Soc. Hort. Sci. 32:45-55
  13. Quan, Z. and T. Takakura. 1988. Estimation of the seasonal cooling or heating load using a simulation model. J. Agr. Met. 44:187-194 https://doi.org/10.1016/0168-1923(88)90017-2
  14. Scott, J.W. and W.L. George. 1984. Influence of pollination treatments on fruit set and development in parthenocarpic tomato. HortScience 19:874-876