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首页> 外文期刊>Environment control in biology >Analysis of Leaf Heat Balance Affected by Operation of a Frost Protective Fan in Tea Fields
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Analysis of Leaf Heat Balance Affected by Operation of a Frost Protective Fan in Tea Fields

机译:茶叶田防冻风扇运行对叶片热平衡的影响分析

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Under climate change, frosts in agricultural fields often bring serious damage to crops. Accordingly, it is keenly desired to improve frost protection methods based on the quantitative evaluation of their effects. The method for quantifying the thermal effect brought by operation of frost protection methods was newly developed based on analysis of leaf heat balance, where leaf boundary layer conductance was continuously determined in field conditions by applying artificial model leaves and a mathematical model. Reliability of the newly developed method was demonstrated in a tea field under the operation of a frost protective fan. The frost protective fan operating at the upper layer of a thermal inversion with strong radiative cooling enhanced convective heat transfer with increased the leaf boundary layer conductance and the ambient air temperature by supplying leaves with warm air. As a result, sensible and latent heat fluxes were significantly increased, which brought a rise of leaf temperature. This thermal effect brought by the fan operation was remarkably fluctuated due to the fan oscillation and advection from the surrounding field, while increasing gradually until just before sunrise when the lowest leaf temperature was observed. Thus, the newly developed method based on the heat balance analysis can be expected to contribute to the improvement of frost protection methods.
机译:在气候变化下,农田的霜冻常常严重损害农作物。因此,迫切希望基于对效果的定量评估来改进防霜方法。在分析叶片热平衡的基础上,新开发了量化防冻方法运行带来的热效应的方法,该方法通过应用人工模型叶片和数学模型在田间条件下连续确定叶片边界层电导率。在防冻风扇的作用下,在茶场中证明了新开发方法的可靠性。防冻风扇在热转化的上层运行,具有强大的辐射冷却功能,可通过向叶片提供暖风来增强对流换热,从而增加叶片边界层的电导率和周围空气温度。结果,显热通量和潜热通量显着增加,从而导致叶片温度升高。风扇运行带来的热效应由于风扇的振荡和来自周围环境的平流而显着波动,同时逐渐增加直到观察到最低叶片温度的日出。因此,可以预期基于热平衡分析的新开发的方法将有助于防霜方法的改进。

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