Construction of a Cultivation Simulator Considering Heat Insulation Film Characteristics and Fruit Cracking in the Asian Monsoon Region
Author:
Affiliation:
1. School of Engineering, The University of Tokyo
2. School of Agriculture, Meiji University
3. The Institute of Vegetable and Floriculture Science, National Agricultural Food Research Organization
Publisher
Asian Agricultural and Biological Engineering Association
Subject
Industrial and Manufacturing Engineering,General Chemical Engineering,Food Science
Link
https://www.jstage.jst.go.jp/article/eaef/14/4/14_103/_pdf
Reference13 articles.
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2. Hiei, K., M. Ito, Y. Ban and T. Oyabu. 2015. Effects of super-micro-fog spraying combined with shading on suppressing atmospheric temperature increase in greenhouse tomato cultivation under natural ventilation. Research bulletin of the Aichi-ken Agricultural Research Center. 47: 41–49. (In Japanese).
3. Jones, J. W., E. Dayan, L. H. Allen, H. Van Keulen and H. Challa. 1991. A dynamic tomato growth and yield model. Transactions of the American Society of Agricultural Engineers. 34 (2): 0663– 0672. https://doi.org/10.13031/2013.31715, (Accessed 21 Apr. 2022).
4. Kawashima, H., M. Takaichi and K. Yasuba. 2011. Performance of air-to-air heat pump for tomato greenhouse cooling and reduction of night-time cooling load by mulch to control soil heat flux. Bulletin of the National Institute of Vegetable and Tea Science. 10: 95–104. https://doi.org/10.24514/00001714, (Accessed 21 Apr. 2022). (In Japanese).
5. Kim, S.-H. and J. H. Lieth. 2003. A coupled model of photosynthesis, stomatal conductance and transpiration for a rose leaf (Rosa hybrida L.). Annals of Botany. 91 (7): 771–781. https://doi.org/10.1093/aob/mcg080, (Accessed 21 Apr. 2022).
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