对LI-710蒸散发传感器与全涡动相关方差监测多年生和一年生作物能量通量的比较评价

IF 5.9 1区 农林科学 Q1 AGRONOMY
Srinivasa Rao Peddinti , Isaya Kisekka
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引用次数: 0

摘要

用于测量蒸散发和相关能量通量的可靠和低成本传感器对水文监测和水管理至关重要;然而,传统的方法,如涡流相关(EC)可能是昂贵和复杂的。本研究通过比较加州中央山谷气候条件下的每日ET、感热通量(H)和潜热通量(LE)与全EC系统的测量结果,评估了LI-710传感器在多年生作物(柑橘、杏仁、开心果)和一年生作物(加工番茄)上的性能。使用结合独立净辐射和土壤热通量数据的能量-平衡-剩余(EBR)方法,对LI-710的测量结果进行了校正,以获得未闭合的能量平衡。未校正的LI-710通量表现出一致的低估,反映在低或负纳什-苏特克利夫效率(NSE)值上。对于ET,经EBR校正后,加工番茄的NSE从0.35增加到0.94,柑橘从0.32增加到0.73,杏仁从- 2.09增加到0.79,开心果从0.72增加到0.95。H也有类似的改善(加工番茄:0.86-0.97;柑橘类:0.13 - -0.67;杏仁:−0.35至0.75;开心果:0.20-0.85),而加工番茄的LE准确度从0.44上升到0.95,柑橘从- 0.10上升到0.77,杏仁从- 1.51上升到0.76,开心果从0.71-0.93。相应的均方根误差(RMSE)的降低证实了ebr校正的LI-710测量结果与EC观测结果密切一致,有效地捕获了季节峰值和物候转变。这些结果突出了LI-710传感器作为常规通量监测全EC系统的低成本,用户友好的替代方案的潜力,前提是实现能量平衡调整。这种方法可以支持精确灌溉和可持续的水管理,特别是在淡水资源面临越来越大压力的区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the LI-710 evapotranspiration sensor in comparison to full eddy covariance for monitoring energy fluxes in perennial and annual crops
Reliable and low-cost sensors for measuring evapotranspiration (ET) and associated energy fluxes are crucial for hydrologic monitoring and water management; however, conventional methods such as eddy covariance (EC) can be prohibitively expensive and complex. This study evaluates the performance of the LI-710 sensor across perennial (citrus, almond, pistachio) and annual crops (processing tomatoes) by comparing daily ET, sensible heat flux (H), and latent heat flux (LE) measurements with those from full EC systems under California’s Central Valley climatic conditions. Measurements from the LI-710 were corrected for unclosed energy balance using an energy-balance-residual (EBR) method that incorporates independent net radiation and soil heat flux data. Uncorrected LI-710 fluxes exhibited a consistent underestimation, as reflected in low or negative Nash–Sutcliffe efficiency (NSE) values. For ET, processing tomato NSE increased from 0.35 to 0.94 with EBR correction, citrus from 0.32 to 0.73, almond from −2.09 to 0.79, and pistachio from 0.72 to 0.95. H improved similarly (processing tomato: 0.86–0.97; citrus: 0.13–0.67; almond: −0.35 to 0.75; pistachio: 0.20–0.85), while LE accuracy rose from 0.44 to 0.95 in processing tomatoes, −0.10 to 0.77 in citrus, −1.51 to 0.76 in almonds, and 0.71–0.93 in pistachios. Corresponding reductions in root mean square error (RMSE) confirmed that EBR-corrected LI-710 measurements closely aligned with EC observations, effectively capturing seasonal peaks and phenological transitions. These results highlight the LI-710 sensor’s potential as a lower-cost, user-friendly alternative to full EC systems for routine flux monitoring, provided that energy-balance adjustments are implemented. Such an approach can support precision irrigation and sustainable water management, particularly in regions facing increasing pressures on freshwater resources.
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来源期刊
Agricultural Water Management
Agricultural Water Management 农林科学-农艺学
CiteScore
12.10
自引率
14.90%
发文量
648
审稿时长
4.9 months
期刊介绍: Agricultural Water Management publishes papers of international significance relating to the science, economics, and policy of agricultural water management. In all cases, manuscripts must address implications and provide insight regarding agricultural water management.
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