利用电磁感应为沙顶高尔夫球场球道草坪精确管理策略提供信息

IF 1.3 Q3 AGRONOMY Agrosystems, Geosciences & Environment Pub Date : 2024-12-13 DOI:10.1002/agg2.70020
Dallas M. Williams, Chase M. Straw, A. Peyton Smith, Kathryn L. Watkins, Sarah G. Hong, Weston F. Floyd, Briana M. Wyatt
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引用次数: 0

摘要

为了达到球员期望的草坪标准,高尔夫球场管理者依靠大量的灌溉、施肥和种植计划。然而,过量施用灌溉用水和肥料已被证明对水质有负面影响。精确草坪管理(PTM)是一个新兴的领域,越来越多的高尔夫球场管理者希望提高投入效率,同时减少水和肥料的投入成本,以及对环境的影响。我们的目标是:(1)使用电磁感应(EMI)来确定沙覆盖球道中视电导率(EC)的空间变异性;(2)将电导率与测量的土壤和草坪草特征相关联,以确定电导率制图对PTM的适用性。土壤样本和EC数据于2021年春季在德克萨斯州东南部同一设施的两个高尔夫球场(一个杂交百慕大草和一个结结草)的四个沙顶球道上收集。表观EC与土壤体积含水量呈显著正相关(VWC, 0.40 <;r比;0.62)和草坪草归一化植被指数(NDVI;0.21 & lt;r比;0.46),而EC与穿透阻力呈显著负相关(PR, - 0.29 <;r比;−0.48)。当将EC的空间图与VWC、NDVI和PR的空间图进行比较时,这些关系的优势得到了强烈的视觉相似性的证实,这表明基于emi的EC数据有可能用于划定特定地点的水和肥料施用管理区域,以及目标通气。
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Using electromagnetic induction to inform precision turfgrass management strategies in sand-capped golf course fairways

To meet the turfgrass standards that players expect, golf course superintendents rely on intense irrigation, fertilization, and cultivation programs. However, the overapplication of irrigation water and fertilizer has been shown to have negative effects on water quality. Precision turfgrass management (PTM) is an emerging area of interest as more golf course superintendents are looking to increase input efficiency while simultaneously reducing water and fertilizer input costs, as well as environmental impacts. Our objectives were to (1) use electromagnetic induction (EMI) to determine the spatial variability of apparent electrical conductivity (EC) in sand-capped fairways and (2) correlate EC to measured soil and turfgrass characteristics to determine the applicability of mapping EC for PTM. Soil samples and EC data were collected in spring 2021 on four sand-capped fairways from two golf courses (one hybrid bermudagrass and one zoysiagrass) belonging to the same facility in southeast Texas. Apparent EC was found to be positively and significantly correlated with soil volumetric water content (VWC, 0.40 < r > 0.62) and turfgrass normalized difference vegetation index (NDVI; 0.21 < r > 0.46) in three of four fairways, while EC was negatively and significantly correlated with penetration resistance (PR, −0.29 < r > −0.48) in two of four fairways studied. The strengths of these relationships were corroborated by strong visual similarities when comparing spatial maps of EC with those of VWC, NDVI, and PR, indicating that EMI-based EC data have potential for use in delineating site-specific management zones for water and fertilizer applications, as well as targeted aeration.

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来源期刊
Agrosystems, Geosciences & Environment
Agrosystems, Geosciences & Environment Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
2.60
自引率
0.00%
发文量
80
审稿时长
24 weeks
期刊最新文献
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