根区蓄水能力与不确定性:影响农业生态系统抗旱能力的内在因素

IF 4.6 1区 地球科学 Q2 ENVIRONMENTAL SCIENCES Water Resources Research Pub Date : 2025-01-04 DOI:10.1029/2024wr037719
Nunzio Romano, Caterina Mazzitelli, Paolo Nasta
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引用次数: 0

摘要

绘制生态系统功能指标有助于确定易受干旱、热胁迫和农业减产影响的地区。这些信息可用于确定有针对性干预措施的优先领域,以应对不利的气候条件和土地利用变化。根区储水能力(SR)是农业生态系统功能的一个常用变量,代表了根区储水的最大值,植被可获得的水量用于其生产生长。在大空间尺度上映射SR只有通过对现实世界条件的过度简化才可行。在这种情况下,我们建议采用土壤-水能指标,即积分平均容水量(IMWC)、积分能量(IE)和有效根区深度(zR)。因此,尽管仍然过于简单,但根区蓄水能力的计算方法更有效、更环保,计算公式为SR,IMWC = zR × IMWC,并根据沿样带进行的土壤水分测量进行验证。随后,在意大利南部13700平方公里的坎帕尼亚地区绘制了SR,IMWC指标。本研究还解决了输入土壤水力参数的认知不确定性对输出响应变量IMWC的传播问题。这是使用蒙特卡罗模拟技术完成的,该技术从多变量数据输入集生成了几个等概率随机实现。最后,我们评估了积分能力能量(ICE)复合指标的潜在效用,以IMWC/IE的百分比计算,作为评分参数,以确定优先干预地区(PIAs),在这些地区,对环境挑战(包括水资源短缺、干旱事件和火灾后条件)的恢复能力可以增强。
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Root-Zone Water-Storage Capacity and Uncertainty: An Intrinsic Factor Affecting Agroecosystem Resilience to Drought
Mapping ecosystem function indicators helps identify areas susceptible to drought, heat stress, and reduced agricultural production. This information can be used to prioritize areas for targeted interventions to tackle adverse climatic conditions and changes in land use. Root-zone water-storage capacity (SR) is a commonly used variable of agroecosystem functioning, representing the maximum value of water stored within the root zone and accessible to vegetation for its productive growth. Mapping SR over large spatial scales is only feasible through an oversimplification of real-world conditions. Under such circumstances, we propose to resort to soil-hydraulic-energy indices, namely the integral mean water capacity (IMWC) and the integral energy (IE) and an effective root-zone depth (zR). Accordingly, a more efficient and environmentally sensitive, albeit still simplistic, determination of the root-zone water-storage capacity is computed as SR,IMWC = zR × IMWC, and validated against soil moisture measurements carried out along a transect. Subsequently, the SR,IMWC indicator was mapped in Campania, a 13,700 km2 region in southern Italy. This study also addressed the issue of the propagation of epistemic uncertainty in input soil hydraulic parameters to the output response variable IMWC. This was accomplished using a Monte Carlo simulation technique that generated several equiprobable stochastic realizations from the multivariate set of data inputs. Finally, we assessed the potential utility of the integral capacity energy (ICE) composite indicator, computed as the ratio IMWC/IE in %, as a scoring parameter to identify Priority Intervention Areas (PIAs) where resilience to environmental challenges, including water scarcity, drought events, and post-fire conditions, could be enhanced.
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来源期刊
Water Resources Research
Water Resources Research 环境科学-湖沼学
CiteScore
8.80
自引率
13.00%
发文量
599
审稿时长
3.5 months
期刊介绍: Water Resources Research (WRR) is an interdisciplinary journal that focuses on hydrology and water resources. It publishes original research in the natural and social sciences of water. It emphasizes the role of water in the Earth system, including physical, chemical, biological, and ecological processes in water resources research and management, including social, policy, and public health implications. It encompasses observational, experimental, theoretical, analytical, numerical, and data-driven approaches that advance the science of water and its management. Submissions are evaluated for their novelty, accuracy, significance, and broader implications of the findings.
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