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In this case, the closed collecting and drainage network is a key element of the drainage system, which can operate in the drainage and soil moisture regime. \nAim of the study is to reveal new approaches to improving the methods of dimensioning the closed collecting and drainage network of drainage systems operating in the regime of drainage and soil moisture, based on justifying the relationship and considering the impact of network efficiency on the efficiency of water regulation on drained lands. \nResearch methods. The analysis and generalization of the existing researches and methods on justification of the type, design, and parameters of the closed collecting and drainage network in the regime of drainage and soil moisture of the drained lands is executed. Systems approach and systems analyses were used to determine the existence of a structural relationship between the operation regime of the closed collecting and drainage network and the water regime of the drained lands. In performing the theoretical research, methods of mathematical modeling of the hydrodynamic structure of turbulent flow in pressure pipes using Navier-Stokes differential equations were applied. To confirm the adequacy of the obtained analytical models, the methods of statistical processing of experimental research results by Nikuradze I., Shevelyov F.O., and Altshul A.D. were used. \nResearch findings and main conclusions. Thus, based on the performed theoretical and experimental research, we have proposed relatively new scientific positions in contrast to the semi-empirical theories for determining the hydrodynamic structure of the flow in the pressure pipe. This allows for dimensioning the entire hydrodynamic structure for all areas of the turbulent flow based on the application of the obtained universal equations. 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引用次数: 1

摘要

相关性的研究。气候变化决定了需要通过使用适当的适应性措施来调节和积累土壤中的水分,以确保排干土地的高生产力。因此,改变在排水土地上建立和运作水回收设施的方法的问题具有相关性。与此相关的还有封闭收集和排水网络中排水系统建设和重建项目方法的变化及其最佳设计解决方案(类型、设计、系统参数及其技术要素的组成部分)。在这种情况下,封闭的收集和排水网络是排水系统的关键要素,它可以在排水和土壤湿度条件下运行。该研究的目的是揭示新的方法,以改进在排水和土壤湿度制度下运行的排水系统的封闭收集和排水网络的方法,基于证明关系并考虑网络效率对排水土地水调节效率的影响。研究方法。分析和概括了在排水和土壤湿度条件下,对封闭集排水网的类型、设计和参数论证的现有研究和方法。系统方法和系统分析用于确定封闭收集和排水网络的运行制度与排水土地的水制度之间存在结构关系。在理论研究中,采用了基于Navier-Stokes微分方程的压力管道湍流水动力结构数学建模方法。为了验证所得分析模型的充分性,采用了Nikuradze I.、Shevelyov f.o.和Altshul A.D.对实验研究结果进行统计处理的方法。研究结果及主要结论。因此,在进行理论和实验研究的基础上,我们提出了相对于半经验理论确定压力管内流体动力结构的较新的科学立场。这允许在应用得到的通用方程的基础上对湍流的所有区域的整个水动力结构进行量纲化。也就是说,我们可以建立一个总的湍流运动粘度、平均速度、切向应力和流体颗粒角速度的分布剖面。前景。所提出的方法将使确定排水管道和封闭的收集和排水网络中的流量效率成为可能。此外,该方法将进一步有助于改进管网技术和结构参数的设计和尺寸确定方法,并确保排水系统的整体技术、工艺、经济和环境效率。
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Improving the dimensioning of closed collecting and drainage network of drainage systems
Research relevance. Climatic changes determine the need to ensure a high productivity of drained lands through the use of appropriate adaptive measures for regulating and accumulating moisture in the soil. Therefore, the issue of changing approaches to the creation and operation of water reclamation facilities on drained lands gains relevance. Relevant are also changes in the methodology of projects for drainage systems construction and reconstruction and their optimal design solutions (type, design, systems parameters, and components of their technical elements) in the closed collecting and drainage network. In this case, the closed collecting and drainage network is a key element of the drainage system, which can operate in the drainage and soil moisture regime. Aim of the study is to reveal new approaches to improving the methods of dimensioning the closed collecting and drainage network of drainage systems operating in the regime of drainage and soil moisture, based on justifying the relationship and considering the impact of network efficiency on the efficiency of water regulation on drained lands. Research methods. The analysis and generalization of the existing researches and methods on justification of the type, design, and parameters of the closed collecting and drainage network in the regime of drainage and soil moisture of the drained lands is executed. Systems approach and systems analyses were used to determine the existence of a structural relationship between the operation regime of the closed collecting and drainage network and the water regime of the drained lands. In performing the theoretical research, methods of mathematical modeling of the hydrodynamic structure of turbulent flow in pressure pipes using Navier-Stokes differential equations were applied. To confirm the adequacy of the obtained analytical models, the methods of statistical processing of experimental research results by Nikuradze I., Shevelyov F.O., and Altshul A.D. were used. Research findings and main conclusions. Thus, based on the performed theoretical and experimental research, we have proposed relatively new scientific positions in contrast to the semi-empirical theories for determining the hydrodynamic structure of the flow in the pressure pipe. This allows for dimensioning the entire hydrodynamic structure for all areas of the turbulent flow based on the application of the obtained universal equations. That is, we can construct a distribution profile of the total turbulent kinematic viscosity, averaged velocity, tangential stresses, and angular velocities of fluid particles. Prospects. The presented approach will make it possible to determine the efficiency of flow in drainage pipes and in a closed collecting and drainage network. Also, this approach will further be helpful in improving the methods of designing and dimensioning technological and structural parameters of the network and ensuring the overall technical, technological, economic, and environmental efficiency of drainage systems.
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