Title :
The application of WinSRFR software in the modern system of drought-enduring crop surface irrigation design and water quality evaluation
Author :
Rui, Zheng ; Yongxiang, Zhang ; Shifeng, Zhou
Author_Institution :
Coll. of Civil Eng. & Archit., Beijing Univ. of Technol., Beijing, China
Abstract :
Surface irrigation is the most widely used cropland irrigation method in the world. In the arid and semi-arid regions of our country, the border irrigation and furrow irrigation of surface irrigation techniques are used widely. The major factors which influence the effect of surface irrigation are found by quantizing observation in the different periods of the entire surface irrigation, which provide the scientific evidence for improving the water quality of surface irrigation. It is a trend that surface irrigation system is evaluated and designed properly by making a numerical simulation toward the process of surface irrigation. It is the SRFR software, which is created by the Arid Agriculture Research Centre of American Agriculture Department, that is used the most widely and representatively in the present surface irrigation simulation software. This article mainly focused on the application of the WinSRFR software in surface irrigation evaluation and design system, which is on the basis of introducing the relevant factors and its field test briefly in the surface irrigation evaluation and design.
Keywords :
irrigation; numerical analysis; water quality; American Agriculture Department; WinSRFR software; border irrigation; cropland irrigation method; drought-enduring crop surface irrigation design; furrow irrigation; numerical simulation; water quality evaluation; Geometry; Irrigation; Software; Soil; Surface treatment; System-on-a-chip; arid and semi-arid regions; cropland; furrow; numerical simulation; surface irrigation;
Conference_Titel :
Electric Information and Control Engineering (ICEICE), 2011 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-8036-4
DOI :
10.1109/ICEICE.2011.5778314