首页> 外文期刊>Journal of Hydraulic Engineering >Buoyant Surface Discharges into Water Bodies. Ⅰ: Flow Classification and Prediction Methodology
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Buoyant Surface Discharges into Water Bodies. Ⅰ: Flow Classification and Prediction Methodology

机译:浮力表面排入水体。 Ⅰ:流量分类与预测方法

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摘要

Buoyant surface discharges into ambient water bodies can exhibit multiple complex flow processes, which cover the spatial range from the near field with initial jet mixing to the far field with passive ambient diffusion. Multiple flow phenomena can occur, such as buoyant collapse motions, bottom attachment, deflection by the ambient current, and dynamic shoreline interaction, in the near field, and lateral and/or upstream spreading motions and turbulent diffusion processes, in the far field. Efficient and reliable predictive techniques covering the whole range of these processes are needed for the design and prediction of wastewater effluents that are subject to water quality regulations that can apply in either near and/or far field. A new comprehensive classification framework distinguishes among ten hydrodynamically distinct flow classes within four major flow categories: free jets, shoreline-attached jets, wall jets, and upstream intruding plumes. A prediction methodology for these discharges has been presented that covers the entire spatial domain from the near to the far field. It is based on the linkage of separate predictive modules in form of the expert system CORMIX3. These hydrodynamic modules are implemented by specific flow protocols and transition criteria determine their spatial extent. The methodology, corroborated by numerous detailed laboratory and some field data sources, constitutes a simple and efficient, yet accurate and robust, tool with few data requirements for surface discharge design and mixing analysis.
机译:进入环境水体的浮力表面排泄物可能表现出多种复杂的流动过程,这些过程涵盖了从初始喷射混合的近场到具有被动环境扩散的远场的空间范围。在近场中会发生多种流动现象,例如浮力塌陷运动,底部附着,环境电流偏转以及动态海岸线相互作用,而在远场中会发生横向和/或上游扩展运动和湍流扩散过程。对于设计和预测废水的废水而言,需要有效,可靠的预测技术来覆盖这些过程的整个范围,这些废水必须遵守可在近场和/或远场应用的水质法规。一个新的综合分类框架在四个主要流类别中区分了十个流体动力学上不同的流类别:自由射流,附有海岸线的射流,壁射流和上游侵入羽流。已经提出了这些放电的预测方法,该方法涵盖了从近场到远场的整个空间域。它基于专家系统CORMIX3形式的独立预测模块的链接。这些流体动力模块通过特定的流量协议实现,过渡标准确定其空间范围。该方法学得到了众多详细实验室和一些现场数据来源的支持,构成了一种简单,有效,准确而又健壮的工具,几乎不需要表面排放设计和混合分析的数据。

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