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Modeling Apple Surface Temperature Dynamics Based on Weather Data

机译:基于天气数据的苹果表面温度动力学建模

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摘要

The exposure of fruit surfaces to direct sunlight during the summer months can result in sunburn damage. Losses due to sunburn damage are a major economic problem when marketing fresh apples. The objective of this study was to develop and validate a model for simulating fruit surface temperature (FST) dynamics based on energy balance and measured weather data. A series of weather data (air temperature, humidity, solar radiation, and wind speed) was recorded for seven hours between 11:00–18:00 for two months at fifteen minute intervals. To validate the model, the FSTs of “Fuji” apples were monitored using an infrared camera in a natural orchard environment. The FST dynamics were measured using a series of thermal images. For the apples that were completely exposed to the sun, the RMSE of the model for estimating FST was less than 2.0 °C. A sensitivity analysis of the emissivity of the apple surface and the conductance of the fruit surface to water vapour showed that accurate estimations of the apple surface emissivity were important for the model. The validation results showed that the model was capable of accurately describing the thermal performances of apples under different solar radiation intensities. Thus, this model could be used to more accurately estimate the FST relative to estimates that only consider the air temperature. In addition, this model provides useful information for sunburn protection management.
机译:在夏季,水果表面暴露在直射的阳光下可能会导致晒伤。在销售新鲜苹果时,因晒伤造成的损失是主要的经济问题。这项研究的目的是开发和验证基于能量平衡和实测气象数据的模拟水果表面温度(FST)动态的模型。在11:00-18:00之间以15分钟为间隔的两个月记录了七个小时的一系列天气数据(气温,湿度,太阳辐射和风速)。为了验证该模型,在自然果园环境中使用红外摄像机监控了“富士”苹果的FST。使用一系列热图像测量FST动力学。对于完全暴露在阳光下的苹果,用于估算FST的模型的均方根误差(RMSE)小于2.0°C。对苹果表面的发射率和水果表面对水蒸气的电导率的敏感性分析表明,准确估计苹果表面的发射率对该模型很重要。验证结果表明,该模型能够准确描述苹果在不同太阳辐射强度下的热性能。因此,相对于仅考虑空气温度的估计,该模型可用于更准确地估计FST。此外,该模型为晒斑防护管理提供了有用的信息。

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