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首页> 外文期刊>Journal of Water Resources Planning and Management >Inverse Flow Analysis for Multiple Controls in Pipeline Systems
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Inverse Flow Analysis for Multiple Controls in Pipeline Systems

机译:管道系统中多种控件的逆流量分析

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Pressure and flow variations are key components for comprehending the flow regime in pipeline systems. Although many types of measurement device monitor flow status in pressurized pipeline systems, no comprehensive method has yet been developed for predicting flow configuration in the presence of multiple control drivers. In this study, the relationships of flow rate with pressure head between multiple points were explored based on a linearly independent formulation mathematically developed in the frequency domain. The resulting pressure response at multiple designated points along the pipeline are expressed by the superpositioning of independent impacts from multiple boundary controls. An inverse flow analysis scheme is proposed for formulations of impedance and pressure head ratio, and a devolution scheme for pressure head and discharge control is developed to determine multiple relationships according to time marching. The predictor-corrector scheme solves the potential computational stability problem. Two hypothetical pipeline systems, four reservoir pipeline valves, and a complicated pipe network are introduced to test the applicability of the scheme. Successful predictions involving multiple controls demonstrate the potential of the proposed scheme as a platform for the data acquisition system and for supervisory control in various pipeline systems with multiple control boundaries.
机译:压力和流动变化是用于理解管道系统中的流动制度的关键部件。尽管在加压管道系统中许多类型的测量设备监控流动状态,但尚未开发综合方法,用于在多种控制驱动器存在下预测流量配置。在该研究中,基于在频域的数学上开发的线性独立的制定,探索了多个点之间的流速与压力头之间的关系。沿着管道的多个指定点处产生的压力响应由来自多个边界控制的独立冲击的叠加来表示。逆流分析方案提出用于阻抗和压力头比的制剂,并且开发了一种用于压力头和放电控制的偏差方案,以根据行进时间来确定多种关系。预测器校正器方案解决了潜在的计算稳定性问题。引入了两个假设管道系统,四个水库管道阀和复杂的管网以测试该方案的适用性。涉及多个控件的成功预测展示所提出的方案作为数据采集系统的平台以及具有多种控制边界的各种管道系统中的监督控制的潜力。

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