Visualization and quantification of peat substrate moisture by fully automated moisture controlling system (SMCS) in forest container nursery

Q4 Agricultural and Biological Sciences
G. Durlo, M. Kormanek, S. Małek, J. Banach
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引用次数: 1

Abstract

Abstract This study explores the use of fully automatic monitoring system of peat moss substrate moisture under pine seedlings at Rudy Raciborskie forest nursery in the Silesian Upland. A brand new multipoint system for this study was created. The multichannel electronic recorder MPI-DN Metronic was the main part of the project. Twelve HD3910.2 probes (three electrodes) for volumetric water content measurement were used in a distributed configuration. Modbus RTU protocols were used for data transmission and the results were archived into an internal memory. One probe delivers 1440 measurements a day. Based on the average substrate moisture data from the field, the recorder controls the watering system according to the precisely defined parameters. Proper placement of sensors in the field allows for accurate analysis of the temporal and spatial variability of peat moss substrate moisture. Results of the statistical analysis have confirmed that the peat moss moisture is significantly differentiated within the homogeneous production field of the forest seedlings. The study findings suggest that irrigation systems should be adapted to specific situation of substrate moisture at the nursery surfaces aimed at optimised water management.
基于全自动水分控制系统(SMCS)的森林容器苗圃泥炭基质水分可视化与定量研究
摘要/ Abstract摘要:本研究在西里西亚高地Rudy Raciborskie森林苗圃对松树苗下泥炭苔藓基质水分全自动监测系统进行了探索。为此研究创建了一个全新的多点系统。多通道电子记录器MPI-DN Metronic是该项目的主要部分。12个HD3910.2探针(三个电极)用于测量体积含水量,采用分布式配置。使用Modbus RTU协议进行数据传输,并将结果存档到内部存储器中。一个探测器每天可以进行1440次测量。根据现场的平均基质水分数据,记录仪根据精确定义的参数控制浇灌系统。在野外适当放置传感器,可以准确分析泥炭苔藓基质水分的时空变化。统计分析结果证实,在森林幼苗同质生产场内,泥炭苔藓水分具有显著的分化。研究结果表明,灌溉系统应适应苗圃表面基质水分的具体情况,以优化水管理。
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来源期刊
USDA Forest Service - Research Papers PNW-RP
USDA Forest Service - Research Papers PNW-RP Agricultural and Biological Sciences-Forestry
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