Simulation-Based Assessment of Subsurface Drip Irrigation Efficiency for Crops Grown in Raised Beds

Eng Pub Date : 2024-03-05 DOI:10.3390/eng5010024
Vsevolod Bohaienko, M. Romashchenko, Andrii Shatkovskyi, Maksym Scherbatiuk
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引用次数: 0

Abstract

This paper considers the application of a scenario simulation technique to assess subsurface drip irrigation system efficiency while using it to irrigate crops grown under raised bed technology. For simulating purposes, we use a model based on the two-dimensional Richards equation stated in terms of water head in a curvilinear domain. Solutions to problems are obtained using a finite-difference scheme with dynamic time step change. Using the data from pressure measurements obtained while growing potatoes on sandy loess soil in production conditions, we performed a calibration of the model using the particle swarm optimization algorithm. Further, the accuracy of the model was tested and average absolute errors in the range from 3.16 to 5.29 kPa were obtained. Having a calibrated model, we performed a series of simulations with different irrigation pipeline placements determining the configuration under which water losses are minimal. The simulated configuration, under which infiltration losses were minimal, was the installation of pipelines under the raised bed at the depth of 10 cm below the soil surface. The results confirm that the applied technique can be used for decision-making support while designing subsurface drip irrigation systems combined with raised bed growing technology.
基于模拟的高床作物地下滴灌效率评估
本文考虑应用情景模拟技术来评估地下滴灌系统的效率,同时利用该系统对高床技术下种植的作物进行灌溉。为了模拟目的,我们使用了一个基于二维理查兹方程的模型,该方程以曲线域中的水头为单位。问题的解决方案采用动态时间步长变化的有限差分方案。利用在生产条件下黄土沙质土壤上种植马铃薯时获得的压力测量数据,我们使用粒子群优化算法对模型进行了校准。此外,我们还对模型的准确性进行了测试,得出的平均绝对误差在 3.16 至 5.29 千帕之间。在校准模型后,我们对不同的灌溉管道位置进行了一系列模拟,以确定水量损失最小的配置。渗漏损失最小的模拟配置是在高床下土壤表面以下 10 厘米处安装管道。结果证实,应用该技术可为设计结合高床种植技术的地下滴灌系统提供决策支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Eng
Eng
CiteScore
2.10
自引率
0.00%
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0
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