北莱茵-威斯特法伦州农业-霍尔蒂-光伏研究系统,包括光伏跟踪器和集成雨水收集系统

Matthias Meier-Grüll, C. Jedmowski, Kathrin Hoelscher, Christin Müller, Leonard Raumann, Bart Pieters, Andreas Gerber, Maximilian Trommsdorff, Matthew Berwind, Onno Muller
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引用次数: 0

摘要

我们介绍了 2021 年底在德国尤利希附近的北莱茵-威斯特法伦州褐煤地区安装的新型 Agri-Horti-PV 系统。该系统包含不同的光伏装置:带雨水收集装置的标准南向光伏组件和东西向跟踪组件,其中一个组件还配备了雨水收集装置。为了研究光伏板下和未安装光伏装置的参照区域的植物生长情况,Agri-Horti-PV 公园中集成了一个新颖的轨道系统,可以自动移动摄像头。利用该摄像装置可以进行高时空分辨率的植物生长测量。对作物生长以及由跟踪系统控制的可变遮阳条件的影响的科学研究始于 2022 年的生长季节。在此,我们将介绍该系统的技术细节,以及用蚕豆进行的实验的初步结果,评估 Horti-PV 系统对生长动态和叶片形态的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Agri-Horti-PV Research System in North Rhine-Westphalia Including PV Trackers and Integrated Rainwater Harvesting
We present a new Agri-Horti-PV system installed at the end of 2021 in the brown coal area of North Rhine-Westphalia near Jülich, Germany. The system contains different PV installations: Standard south oriented PV modules with a rainwater harvesting set up and east-west tracker modules, of which one is equipped with a rainwater harvesting setup. For the investigation of plant growth under the PV panels and on the reference areas without PV installations a novel rail system allowing for automatic camera movement is integrated in the Agri-Horti-PV park. Using the camera setup plant growth measurements with high spatio-temporal resolution will be possible. The scientific investigations of crop growth and the influence of variable shading conditions controlled by the tracking system started in the growth season of 2022. Here we present the technical details of the system as well as first results of an experiment carried out with faba beans, assessing impact of the Horti-PV system on growth dynamics and leaf morphology.
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