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Story of the double poly greenhouse

Story of the double poly greenhouse. The 43 rd ASAE Landmark Dedication to the Air-inflated Double Poly Greenhouse. 2004/6/5. History started. Developed In 1964

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Story of the double poly greenhouse

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  1. Story of the double poly greenhouse

  2. The 43rd ASAE Landmark Dedication to the Air-inflated Double Poly Greenhouse 2004/6/5

  3. History started • Developed In 1964 • Roberts, W.J. and D.R. Mears. 1968.Double Covering a Film Greenhouse Using Air to Separate Film Layers. ASAE paper 68-402. Presented at Logan, Utah. • Published in Transactions of the ASAE V12, No.1 pp.32, 33, 38.1969.

  4. Professors William J. Robertsand David R. Mears

  5. Advantages of Air-Inflated Double Poly • Low costs • Easy installation • Great energy conservation • Sturdy structure • Proper light transmission

  6. Current Status • More than 65% of plastic greenhouse in US is air-inflated double Poly • More than half of the plastic greenhouse in the world is air-inflated double Poly • Getting more attention in tropical and subtropical regions in some greenhouse for specific applications

  7. First Prototype

  8. Trox House

  9. The 43rd Landmark of ASAE

  10. First installed in a commercial greenhouse (Kube Pak, Inc.)

  11. Later development

  12. Air-inflated Cable House

  13. Air-inflated side curtain for a sawtooth greenhouse

  14. Triple layer

  15. Air-inflated Open top greenhouse

  16. Air-inflated Double Poly in Japan

  17. Typhoon attacked greenhouses, but no damage on double-poly 2nd generation Prof. Roberts prepares the display of thermal curtain model First double-poly in 1978

  18. Covered with Agron 2nd generation in Tsukuba Okada, M. and Hayashi, I., 1983: Trial construction of an air-inflated greenhouse and its features, Agric. and Hortic., 58(1), 57-60. (in Japanese) AgraTech introduced in Tohoku

  19. Current Double-PO Greenhouse Courtesty Mr. Matsuoka, Kochi Agric Exp Station

  20. Development of a New Air-inflated Greenhouse Design Project leader: Dr. Shimaji, National Institute of Floricultural Sciences, Tsukuba • Three-layer covering (fluorine film, F-Clean) for insulation • Collection of solar energy on the roof and storing heated water under the floor • Large roof ventilators for natural ventilation • Beam string structure Prototype greenhouse

  21. P P P Collecting Solar Energy into Water • To keep the night temperature diffrence between inside and outside at 18 C, additional heating energy was reduced up to 20%. Sunlight Water Ventilation Heat transfer

  22. Prototype Greenhouse of New design Air-inflated roof panel with fluorine film Beam string structure Water tub Panel for roof ventilator 2.3 m 3 m 3 m 4 m

  23. Air-inflated Double Poly in India

  24. 1986 India

  25. Air-inflated Double Poly in Taiwan

  26. 1989 National Taiwan Univ.

  27. 1990 Taichung, Taiwan

  28. No damage on air-inflated double Poly after one major Typhoon

  29. Phalaenopsis flower forcing required Day/Night Temperature at 25/18 oCAir conditioner is used in Taiwan

  30. Air-inflated double poly has been used in Flower forcing greenhouse 22oC, 78% 18oC 18oC Reduce condensed water and conserved energy

  31. To prevent flower stake emerge, day/night temperature need to keep no less than 28 oC • Outdoor T < 28 oC: 72 ~ 84% in plain area of Taiwan • Air-Inflated Double Poly can be very helpful in energy conservation • as the thermal blanket of an existing greenhouse (glass or poly). • as the glazing.

  32. Air-Inflated double Poly can be used in Phalaenopsis greenhouse to conserve energy for the prevention of flower stalk emerging Cold blower Warm

  33. Air-inflated Double Poly in China

  34. 1989 China

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