集压排水管道水力计算的特殊性

O. Kravchuk
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引用次数: 0

摘要

考虑了流体在变流量管道中的运动和流体从周围土壤中通过排水管道壁进入管道的条件的两个微分方程组。结果表明,对于所研究的情况,可以忽略原方程中的第二项而不会产生明显的误差。通过引入原始变量,将系统简化为无量纲形式。该方程组的解以无因次形式给出。在分析中使用了两个主要参数:集排水管道阻力系数“ζ”和广义参数“A”,该参数考虑了所考虑流的结构和水力特性。同时,本文还引入了无限长排水管道的概念,即具有无限壁过滤能力的排水管道。值得注意的是,与相同直径但长度有限的管道相比,这种管道将具有最大的吞吐量。在进行分析的基础上,获得了足够简单方便的计算依赖关系,用于确定沿管道长度的流量变化和压降的性质。在给出的计算公式的基础上,对此类管道的重要特性进行了一系列计算。为实现可见性,构建了相应的图形依赖关系。特别是,根据“土壤排水”系统的设计和过滤特性,给出了收集器末端的流量变化图。图中显示了在周围土壤不同导水率值下,流量连接不均匀度随排水管道长度的变化关系,这对于理解排水管道的特殊性具有重要意义。文中指出,在计算实际排水管道时,为了得到可靠的结果,必须考虑流量连接沿长度不均匀的性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PARTICULARITIES OF HYDRAULIC CALCULATION OF COLLECTING PREASSURE DRAINAGE PIPELINES
A system of two differential equations, which describes the fluid motion in a pipe with a variable flow rate and the conditions for fluid entry through the drainage pipelines walls from the surrounding soil, is considered. It is shown that for the studied case the second term in the original equation can be neglected without a significant error. The system is reduced to a dimensionless form by introducing the original variables. The solution of this equations system is given in a dimensionless form. Two main parameters are used in the analysis: the coefficient of collecting drainage pipeline resistance "ζl" and the generalized parameter "A", which takes into account the structural and hydraulic characteristics of the considered flow. Also, the concept of an infinitely long drainage pipeline or, which is the same, a pipeline with an infinite walls filtration capacity of the drainage pipeline is introduced in the article. It is noted that such pipeline will have a maximum throughput compared to pipes of the same diameter but limited length. Sufficiently simple and convenient calculated dependencies for the determination of the nature of flow rate variation and pressure drop along the length of the pipeline were obtained on the basis of the conducted analysis. Series of calculations of important characteristics for such pipes were carried out on the basis of offered formulas. Corresponding graphical dependencies were built for visibility. In particular, graphs of the flow rate variations at the end of the collector, depending on the design and filtration characteristics of the “soil-drain” system, are presented. Graph, that shows the dependence of the change in the flow rate connection unevenness along the length of the drainage pipeline at various hydraulic conductivity values of the surrounding soil, is important for understanding the drainage pipes particularity. The necessity to take into account the nature of the flow rate connection unevenness along the length for obtaining reliable results when calculating real drainage pipelines is shown in the article.
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