Manoliadis O G
Department of Geotechnology and Environmental Engineering, Technological Education Institute of Western Macedonia, Gr-50100 Koila, Kozani, Greece.
Environ Manage. 2001 Oct;28(4):497-504. doi: 10.1007/s002670010239.
Irrigation management calls for objective criteria capable of representing the economy, reliability, and productivity of irrigation systems. These criteria must be compatible with long-term sustainability and conservation goals. The criteria representing the above goals are the economic effect of management on yield reduction, economic effect, and reliability referring to plant growth and operation of the network. In this study environmental indices are introduced to express the above criteria in quantitative terms. The inclusion of these indices at the farm and network level create a multicriteria framework for decision-making based on composite programming. An experimental study was conducted during the irrigation periods of 1989 and 1990 in Chania, Greece, concerning water delivered to 40 experimental plots, soil moisture content at the rootzone, and irrigation system operational failures. The data collected in real time were used for the calculation of the corresponding environmental indices. The variation in time and space is high and resulted in up to 62% of yield loss and low system performance (up to 7% of system temporal reliability). The study indicated that environmental indices could be incorporated to select alternatives and also to develop policies on water delivery. The final decision involves a trade-off analysis between cost of application and desired system performance. Measures of both primary objectives can be obtained using environmental indices that represent system operation aggregation at its basic levels (on farm and network).
灌溉管理需要能够体现灌溉系统经济性、可靠性和生产力的客观标准。这些标准必须与长期可持续性和保护目标相兼容。代表上述目标的标准是管理对产量降低的经济影响、经济效应以及涉及作物生长和管网运行的可靠性。在本研究中,引入了环境指标来定量表达上述标准。在农场和管网层面纳入这些指标,基于复合规划创建了一个多标准决策框架。1989年和1990年灌溉期期间,在希腊克里特岛进行了一项实验研究,涉及输送到40个实验地块的水量、根区土壤湿度以及灌溉系统运行故障。实时收集的数据用于计算相应的环境指标。时间和空间上的变化很大,导致产量损失高达62%,系统性能较低(系统时间可靠性高达7%)。研究表明,环境指标可用于选择替代方案以及制定输水政策。最终决策涉及应用成本与期望系统性能之间的权衡分析。使用代表系统在其基本层面(农场和管网)运行汇总情况的环境指标,可以获得两个主要目标的衡量标准。