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- W3027916918 abstract "Abstract This research study spots the light on the possibility of approximating the Fourier series solutions, of the partial differential equations that are used for the design and control of different water table management practices, by a single quadratic vector equation which can very simply take into consideration all various soil hydrological and boundary conditions of any water table management design. To achieve this task, an educational interactive LabView program is designed for the quadratic vector simulation of the water table control (WTC) designs. The program is mathematically based on two types of equations, the linearized form of the Boussinesq equation and the “approximate” quadratic interpolation function vector equation. The program enabled the ease of use, offered an interesting interactive graphical visualization, and provided a high degree of accuracy of the results, which made the program very suitable for teaching and learning. All WTC designs are included in one single LabView graphical user interface representing a typical cross‐section design of a pipe drainage field between irrigation and drainage canals. The WTC designs performed in this virtual cross‐sectional field and simulated in the interface are activated by using LabView digital controllers simulating switches, pumps, valves, a water table sensor, a tensiometer for checking soil‐water stress, and (irrigation/drainage) field pipes. Several numerical design examples solved by the program indicated the exactness and suitability of using the parametric vector simulation for the design of WTC designs." @default.
- W3027916918 created "2020-05-29" @default.
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- W3027916918 date "2020-05-20" @default.
- W3027916918 modified "2023-09-27" @default.
- W3027916918 title "Educational interactive vector simulation of water table control designs using LabView" @default.
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- W3027916918 doi "https://doi.org/10.1002/cae.22257" @default.
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