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基于熵权评价法的温室条件下地下排水埋深优化

Optimization on theBuried Depth of Subsurface Drainage under Greenhouse Condition Based on Entropy Evaluation Method.

作者信息

Hou Maomao, Lin Zhiyuan, Chen Jingnan, Zhai Yaming, Jin Qiu, Zhong Fenglin

机构信息

College of Horticulture, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

College of Horticulture and Landscape Architecture, Fujian Vocational College of Agriculture, Fuzhou 350002, China.

出版信息

Entropy (Basel). 2018 Nov 8;20(11):859. doi: 10.3390/e20110859.

Abstract

Numerous indicators under the plant-soil system should be taken into consideration when developing an appropriate agricultural water conservancy project. Entropy evaluation method offers excellent prospects in optimizing agricultural management schemes. To investigate the impact of different buried depths (30, 45, 60, 75, 90, and 105 cm) of subsurface drainage pipes on greenhouse plant-soil systems, the tomato was employed as plant material, and the marketable yield, fruit sugar to acid ratio, soil electrical conductivity, nitrogen loss rate, as well as crop water and fertilizer use efficiency were observed. Based on these indicators, the entropy evaluation method was used to select the optimal buried depth of subsurface drainage pipes. Both the calculation results of objective and subjective weights indicated that tomato yield and soil electrical conductivity were relatively more crucial than other indexes, and their comprehensive weights were 0.43 and 0.34, respectively. The 45 cm buried depth possessed the optimal comprehensive benefits, with entropy evaluation value of 0.94. Under 45 cm buried depth, the loss rate of soil available nitrogen was 13.9%, the decrease rate of soil salinity was 49.2%, and the tomato yield, sugar to acid ratio, nitrogen use efficiency, and water use efficiency were 112 kg·ha, 8.3, 39.7%, and 42.0%, respectively.

摘要

在制定合适的农业水利项目时,应考虑植物 - 土壤系统下的众多指标。熵评价方法在优化农业管理方案方面前景广阔。为了研究地下排水管道不同埋设深度(30、45、60、75、90和105厘米)对温室植物 - 土壤系统的影响,以番茄作为植物材料,观测了其商品产量、果实糖酸比、土壤电导率、氮素损失率以及作物水肥利用效率。基于这些指标,采用熵评价方法来选择地下排水管道的最佳埋设深度。客观权重和主观权重的计算结果均表明,番茄产量和土壤电导率相对比其他指标更为关键,其综合权重分别为0.43和0.34。埋设深度为45厘米时具有最佳综合效益,熵评价值为0.94。在45厘米埋设深度下,土壤有效氮损失率为13.9%,土壤盐分降低率为49.2%,番茄产量、糖酸比、氮素利用效率和水分利用效率分别为112千克·公顷、8.3、39.7%和42.0%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ae6/7512420/7b1b9c86e9d1/entropy-20-00859-g001.jpg

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