Application of smart irrigation systems for water conservation in Italian farms

被引:0
作者
Stefano Casadei
Francesco Peppoloni
Flaminia Ventura
Razvan Teodorescu
Daniel Dunea
Nicolae Petrescu
机构
[1] University of Perugia,Department of Civil and Environmental Engineering
[2] University of Agronomic Sciences and Veterinary Medicine of Bucharest,Department of Land Reclamation and Environmental Engineering
[3] Valahia University of Targoviste,Department of Environmental Engineering
来源
Environmental Science and Pollution Research | 2021年 / 28卷
关键词
Irrigation; Internet of things; Water saving; Sustainability; Sensors; Evapotranspiration;
D O I
暂无
中图分类号
学科分类号
摘要
In many countries, water supplies are limited and must be managed for different uses. Providing additional resources for irrigation can be an expensive option, with an unsustainable impact on small farms and on the environment. Therefore, the main efforts should concentrate on the optimal management of existing water resources, paying particular attention to the adequate management of water demands. In Italy, the majority of scattered smallholder farmers are not provided with enough information on how to correctly manage water for irrigation. This paper presents the developing of a web-based irrigation decision support system adaptable and scalable to individual farms. The irrigation advisory service has been calibrated and validated for pomegranate trees, aubergine, and zucchini through 2 years of tests, in a farm in Southern Italy (Calabria). The results are very satisfactory, both in terms of water resources management for irrigation, and for the feedback provided by the farmers involved in the project. Future development regarding the application of wireless technology in smart irrigation is also evaluated.
引用
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页码:26488 / 26499
页数:11
相关论文
共 101 条
[1]  
Akhbari M(2013)A framework for an agent-based model to manage water resources conflicts Water Resour Manag 27 4039-4052
[2]  
Grigg NS(2017)Determining pomegranate water and nitrogen requirements with drip irrigation Agric Water Manag 187 11-23
[3]  
Ayars JE(2015)Support of irrigation water use and eco-friendly decision process in agricultural production planning Oper Res 15 289-306
[4]  
Phene CJ(2018)Sustainability of water withdrawals in the Tiber River Basin (Central Italy) Sustainability 10 1-18
[5]  
Phene RC(2018)The role of ICT in improving sequential decisions for water management in agriculture Water 10 1-20
[6]  
Gao S(2005)Web-based GIS and spatial decision support system for watershed management J Hydroinf 7 165-174
[7]  
Wang D(2017)An assessment of the water use efficiency in alfalfa canopy under the climate regime of Targoviste Piedmont Plain Sci Papers-Ser A-Agron 60 235-240
[8]  
Day KR(2020)Evaluation of water quality in Ialomita River Basin in relationship with land cover patterns Water 12 735-285
[9]  
Makus DJ(2019)Monitoring of the evapotranspiration processes in riparian grasslands Sci Pap-Ser A-Agron 62 278-82
[10]  
Bournaris T(2014)Water footprint scenarios for 2050: A global analysis Environ Int 64 71-18