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Indoor simulation on dew formation on plant leaves.

GAO Zhi-yong1, WANG You-ke1,2, WEI Xin-guang1, LIU Shou-yang1, HE Zi-li1, ZHOU Yu-hong1   

  1. (1College of Water Resources and Architectural Engineering, Northwest A&F University, Yangling 712100, Shaanxi, China; 2Institute of Soil and Water Conservation, Chinese Academy of Sciences and Ministry of Water Resources, Yangling 712100, Shaanxi, China)
  • Online:2014-03-18 Published:2014-03-18

Abstract: Dew forming on plant leaves through water condensation plays a significant ecological role in arid and semi- arid areas as an ignorable fraction of water resources. In this study, an artificial intelligent climate chamber and an automatic temperature-control system for leaves were implemented to regulate the ambient temperature, the leaf surface temperature and the leaf inclination for dew formation. The impact of leaf inclination, ambient temperature and dew point-leaf temperature depression on the rate and quantity of dew accumulation on leaf surface were analyzed. The results indicated that the accumulation rate and the maximum volume of dew on leaves decreased with increasing the leaf inclination while increased with the increment of dew point-leaf temperature depression, ambient temperature and relative humidity. Under the horizontal configuration, dew accumulated linearly on leaf surface over time until the maximum volume (0.80 mm) was reached. However, dew would fall down after reaching the maximum volume when the leaf inclination existed (45° or 90°), significantly slowing down the accumulative rate, and the zigzag pattern for the dynamic of dew accumulation appeared.