All Issue

2026 Vol.46, Issue 4 Preview Page
30 August 2026. pp. 43-56
Abstract
References
1

Commercializations Promotion Agency for R&D Outcomes, Smart Farm Technology and Market Trends Reports, S&T Market Report, Vol. 69, Seoul, Republic of Korea, 2019.

2

Ministry of Agriculture, Food and Rural Affairs, The 1st Basic Plan for Smart Agriculture Promotion (2025-2029), Sejong, Republic of Korea, 2025.

3

Rural Development Administration, Smart Farm Facilities and Environmental Management, Jeonju, Republic of Korea, 2021.

4

Elad, Y., Malathrakis, N. E., and Dik, A. J., Biological Control of Botrytis-Incited Diseases and Powdery Mildews in Greenhouse Crops, Crop Protection, Vol. 15, No. 3, pp. 229-240, 1996, https://doi.org/10.1016/0261-2194(95)00129-8.

10.1016/0261-2194(95)00129-8
5

Kang, G. C., Yon, K. S., Ryou, Y. S., Kim, Y. J., Kang, Y. K., and Paek, Y., Development of a Refrigeratory-Based Dehumidifier for Humidity Environment Control in Greenhouse, Journal of Biosystems Engineering, Vol. 32, No. 4, pp. 247-255, 2007, https://doi.org/10.5307/JBE.2007.32.4.247.

10.5307/JBE.2007.32.4.247
6

Kang, S. H., Min, D. H., Yum, S. H., and Won, Y. S., Numerical Study on Ventilation Performance for a Venlo-Typed Greenhouse, Journal of Computational Fluid Engineering, Vol. 26, No. 3, pp. 125-131, 2021, http://doi.org/10.6112/kscfe.2021.26.3.125.

10.6112/kscfe.2021.26.3.125
7

Baeza, J. E., Perez-Parra, J. J., Montero, J. I., Bailey, B. J., Lopez, J. C., and Gazquez, J. C., Analysis of the Role of Sidewall Vents on Buoyancy-Driven Natural Ventilation in Parral-Type Greenhouses With and Without Insect Screens Using Computational Fluid Dynamics, Biosystems Engineering, Vol. 104, No. 1, pp. 86-96, 2009, https://doi.org/10.1016/j.biosystemseng.2009.04.008.

10.1016/j.biosystemseng.2009.04.008
8

Kittas, C., Katsoulas, N., and Baille, A., SE—Structures and Environment: Influence of Greenhouse Ventilation Regime on the Microclimate and Energy Partitioning of a Rose Canopy during Summer Conditions, Journal of Agricultural Engineering Research, Vol. 79, No. 3, pp. 349-360, 2001, https://doi.org/10.1006/jaer.2000.0653.

10.1006/jaer.2000.0653
9

Lyu, X., Xu, Y., Wei, M., Wang, C., Zhang, G., and Wang, S., Effects of Vent Opening, Wind Speed, and Crop Height on Microenvironment in Three-Span Arched Greenhouse Under Natural Ventilation, Computers and Electronics in Agriculture, Vol. 201, 107326, 2022, https://doi.org/10.1016/j.compag.2022.107326.

10.1016/j.compag.2022.107326
10

Senhaji, A., Mouqallid, M., and Majdoubi, H., CFD Assisted Study of Multi-Chapels Greenhouse Vents Opening Effect on Inside Airflow Circulation and Microclimate Patterns, Open Journal of Fluid Dynamics, Vol. 9, pp. 119-139, 2019, https://doi.org/10.4236/ojfd.2019.92009.

10.4236/ojfd.2019.92009
11

Lee, T., Kang, G., Jang, J., Paek, Y., and Lim, R., Analysis on the Effect of Greenhouse Humidity Control by Counter-Flow Ventilator in Winter, Protected Horticulture and Plant Factory, Vol. 29, No. 3, pp. 259-264, 2020, http://doi.org/10.12791/KSBEC.2020.29.3.259.

10.12791/KSBEC.2020.29.3.259
12

Lalonde, T., Monfet, D., and Haillot, D., Proposition of a Humidity Control Strategy for a Calibrated Greenhouse Model with Realistic Controls in TRNSYS, In Proceedings from eSim 2020: Biennial Conference of IBPSA-Canada, pp. 1-8, June 2020, Vancouver, Canada.

13

Rahman, M. S., Han, J., Ge, G., Ahamed, M. S., and Guo, H., Experimental Evaluation of Three Different Dehumidifiers for Greenhouses in Cold Regions, Applied Thermal Engineering, Vol. 234, 121324, 2023, http://doi.org/10.1016/j.applthermaleng.2023.121324.

10.1016/j.applthermaleng.2023.121324
14

Stanghellini, C., Transpiration of Greenhouse Crops: An Aid to Climate Management, Ph.D. dissertation, Wageningen Agricultural University, 1987.

15

Ministry of Agriculture, Food and Rural Affairs, Performance Analysis by Cooling Unit Technology, Establishment of Modularity and Tool Development, Sejong, Republic of Korea, 2021.

16

Park, D. Y., Lee, H. J., Jeong, Y., and Ryu, S. W., Evaluation and Simulation of Daylight Environment through Test of Single Covering Materials Applied to Smart Farm, KIEAE Journal, Vol. 21, No. 4, pp. 111-116, 2021, http://doi.org/10.12813/kieae.2021.21.4.111.

10.12813/kieae.2021.21.4.111
17

Watanabe, T., Urano, Y., and Hayashi, T., Procedures for Separating Direct and Diffuse Insolation on a Horizontal Surface and Estimating Solar Radiation on Tilted Surfaces, Transactions of the Architectural Institute of Japan, Vol. 330, pp. 96-108, 1983, https://doi.org/10.3130/aijsaxx.330.0_96.

10.3130/aijsaxx.330.0_96
18

ASHRAE, Measurement of Energy and Demand Savings (Guideline 14), American Society of Heating Refrigerating and Air-Conditioning Engineers, Atlanta, GA, USA, 2002.

19

Prenger, J., Fynn, R., and Hansen, R., A Comparison of Four Evapotranspiration Models in a Greenhouse Environment, Transactions of the ASAE, Vol. 45, No. 6, pp. 1779-1788, 2002, http://doi.org/10.13031/2013.11429.

10.13031/2013.11429
20

Lopez-Cruz, I., Olivera-Cruz, M., and Herrera-Ruiz, G., Simulation of Greenhouse Tomato Crop Transpiration by Two Theoretical Models, Acta Hortic, Vol. 797, pp. 145-150, 2008, https://doi.org/10.17660/ActaHortic.2008.797.18.

10.17660/ActaHortic.2008.797.18
21

Nongsaro, Energy-Saving Technology for Greenhouse Horticulture. https://www.nongsaro.go.kr/. last accessed on the 6th March 2026.

22

Dongkun Industrial Co., Ltd., Ventilator for Agriculture and Livestock Farming. http://www.dongkun.com/. last accessed on the 6th March 2026.

23

National Institute of Agricultural Sciences, Development of Thermal Storage Greenhouse and Environment Control System for Protected Cultivation of Strawberry, Wanju, Republic of Korea, 2016, https://doi.org/10.23000/TRKO201600003122.

10.23000/TRKO201600003122
24

Lyons, J. M., Chilling Injury in Plants, Annual Review of Plant Physiology, Vol. 24, pp. 445-466, 1973, https://doi.org/10.1146/annurev.pp.24.060173.002305.

10.1146/annurev.pp.24.060173.002305
25

Saltveit, M. E. and Morris, L. L., Overview on Chilling Injury of Horticultural Crops, In: Wang, C.Y. (ed.), Chilling Injury of Horticultural Crops, CRC Press, Boca Raton, FL, USA, pp. 3-15, 1990.

26

FAO, Crop and Afforestation Methods for Frost Protection: Fundamentals, Practice and Economics, Environment and Natural Resources Service, FAO, Rome, Italy, 2005.

27

Choi, H. G., Moon, B. Y., and Kang, N. J., Correlation between Strawberry (Fragaria ananassa Duch.) Productivity and Photosynthesis-Related Parameters under Various Growth Conditions, Frontiers in Plant Science, Vol. 7, 1607, 2016, https://doi.org/10.3389/fpls.2016.01607.

10.3389/fpls.2016.0160727833628PMC5080357
28

National Center for Appropriate Technology (NCAT), High Tunnel Winter Growing Using Heat Recovery Ventilation, Butte, MT, USA, 2014.

Information
  • Publisher :Korean Solar Energy Society
  • Publisher(Ko) :한국태양에너지학회
  • Journal Title :Journal of the Korean Solar Energy Society
  • Journal Title(Ko) :한국태양에너지학회 논문집
  • Volume : 46
  • No :4
  • Pages :43-56
  • Received Date : 2026-03-23
  • Revised Date : 2026-06-19
  • Accepted Date : 2026-07-13