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Numerical Limitations of 1D Hydraulic Models Using MIKE11 or HEC-RAS software - Case study of Baraolt River, Romania

机译:使用Mike11或HEC-RAS软件的1D液压模型的数值限制 - Baraolt River,Romania的案例研究

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MIKE 11 is an advanced hydroinformatic tool, a professional engineering software package for simulation of one-dimensional flows in estuaries, rivers, irrigation systems, channels and other water bodies. MIKE 11 is a 1-dimensional river model. It was developed by DHI Water · Environment · Health, Denmark. The basic computational procedure of HEC-RAS for steady flow is based on the solution of the one-dimensional energy equation. Energy losses are evaluated by friction and contraction / expansion. The momentum equation may be used in situations where the water surface profde is rapidly varied. These situations include hydraulic jumps, hydraulics of bridges, and evaluating profiles at river confluences. For unsteady flow, HEC-RAS solves the full, dynamic, 1-D Saint Venant Equation using an implicit, finite difference method. The unsteady flow equation solver was adapted from Dr. Robert L. Barkau's UNET package. Fluid motion is controlled by the basic principles of conservation of mass, energy and momentum, which form the basis of fluid mechanics and hydraulic engineering. Complex flow situations must be solved using empirical approximations and numerical models, which are based on derivations of the basic principles (backwater equation, Navier-Stokes equation etc.). All numerical models are required to make some form of approximation to solve these principles, and consequently all have their limitations. The study of hydraulics and fluid mechanics is founded on the three basic principles of conservation of mass, energy and momentum. Real-life situations are frequently too complex to solve without the aid of numerical models. There is a tendency among some engineers to discard the basic principles taught at university and blindly assume that the results produced by the model are correct. Regardless of the complexity of models and despite the claims of their developers, all numerical models are required to make approximations. These may be related to geometric limitations, numerical simplification, or the use of empirical correlations. Some are obvious: one-dimensional models must average properties over the two remaining directions. It is the less obvious and poorly advertised approximations that pose the greatest threat to the novice user. Some of these, such as the inability of one-dimensional unsteady models to simulate supercritical flow can cause significant inaccuracy in the model predictions.
机译:Mike 11是一种先进的水管信息工具,专业的工程软件包,用于宇宙,河流,灌溉系统,渠道和其他水体中的一维流动。迈克11是一维河流模型。它是由DHI Water·Engily·丹麦的健康制定的。用于稳定流动的HEC-RA的基本计算过程基于一维能量方程的解决方案。通过摩擦和收缩/扩张评估能量损失。动量方程可以用在水面专业产品迅速变化的情况下。这些情况包括液压跳跃,桥梁液压,以及评估河流汇合的曲线。对于不稳定的流量,HEC-RAS使用隐式的有限差分方法解决完整的动态,1-D Saint Venant方程。不稳定的流量方程求解器是从Robert L. Barkau博士的Unet包装。流体运动由质量,能量和动量守恒的基本原则来控制,这构成了流体力学和液压工程的基础。必须使用经验近似和数值模型来解决复杂的流动情况,这些模型基于基本原理(回水方程,Navier-Stokes等式等)的推导。所有数值模型都需要制作某种形式的近似来解决这些原则,因此所有这些原则都有其局限性。液压和流体力学的研究成立了质量,能源和动量守恒的三个基本原则。实际情况往往太复杂而无法在没有数值模型的帮助下解决。一些工程师之间存在倾向于丢弃大学教授的基本原则,并盲目地假设模型产生的结果是正确的。无论模型的复杂性,尽管他们的开发人员声称,但所有数值模型都需要近似。这些可能与几何限制,数值简化或经验相关性有关。有些很明显:一维模型必须在两个剩余方向上平均平均特性。它是对新手用户的最大威胁的明显和宽广般的近似。其中一些,例如模拟超临界流程的一维不稳定模型的无法无法模拟模型可能在模型预测中引起显着的不准确性。

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