Computer Science Department, University of California, Santa Barbara, CA 93106, USA.
Geography and Environmental Science Department, Liverpool Hope University, Liverpool L16 9JD, UK.
Sensors (Basel). 2024 Sep 25;24(19):6200. doi: 10.3390/s24196200.
This study explores the development and validation of an airflow model to support climate prediction for Citrus Under Protective Screens (CUPS) in California. CUPS is a permeable screen structure designed to protect a field of citrus trees from large insects including the vector that causes the devastating citrus greening disease. Because screen structures modify the environmental conditions (e.g., temperature, relative humidity, airflow), farm management and treatment strategies (e.g., pesticide spraying events) must be modified to account for these differences. Toward this end, we develop a model for predicting wind speed and direction in a commercial-scale research CUPS, using a computational fluid dynamics (CFD) model. We describe the model and validate it in two ways. In the first, we model a small-scale replica CUPS under controlled conditions and compare modeled and measured airflow in and around the replica structure. In the second, we model the full-scale CUPS and use historical measurements to "back test" the model's accuracy. In both settings, the modeled airflow values fall within statistical confidence intervals generated from the corresponding measurements of the conditions being modeled. These findings suggest that the model can aid decision support and smart agriculture solutions for farmers as they adapt their farm management practices for CUPS structures.
本研究旨在开发和验证气流模型,以支持加利福尼亚柑橘掩蔽栽培(Citrus Under Protective Screens,CUPS)的气候预测。CUPS 是一种透气的屏幕结构,旨在保护柑橘树免受包括引起毁灭性柑橘黄龙病的传播媒介在内的大型昆虫侵害。由于屏幕结构改变了环境条件(例如温度、相对湿度、气流),因此必须修改农场管理和治疗策略(例如,农药喷洒事件)以适应这些差异。为此,我们使用计算流体动力学(CFD)模型开发了一种预测商业规模研究用 CUPS 风速和风向的模型。我们描述了该模型,并通过两种方式对其进行了验证。在第一种方法中,我们在受控条件下对小规模的 CUPS 复制品进行建模,并比较复制品结构内外的模型化和测量的气流。在第二种方法中,我们对全尺寸的 CUPS 进行建模,并使用历史测量数据对模型的准确性进行“回溯测试”。在这两种情况下,模型化的气流值都落在对应模型化条件的相应测量值生成的统计置信区间内。这些发现表明,该模型可以为农民提供决策支持和智能农业解决方案,帮助他们适应 CUPS 结构的农场管理实践。