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Buoyancy considerations for integrated discharges

机译:综合排放的浮力考虑因素

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Marine discharges are either positively-, negatively- or neutrally-buoyant, depend-ing on factors such as discharge temperature and salinity in relation to those of the ambient receiving waters. When planning marine discharges, appropriate assessment of the dispersion and dilution of the effluent is important for both environmental and engineering reasons. HR Wallingford has wide experience of such assessments for all types of marine discharge. In cases of either strong positive or strong negative discharge buoyancy, the density is usually dominated by either a high temperature or high salinity, with the other parameter at a similar level to that of the receiving water. In such cases, assessment is relatively straightforward. Combined facilities, such as integrated power and water plants, are in increasing use worldwide. Discharges from such facilities are typically both significantly warmer and more saline than the receiving waters, which often results in marginal positive or negative buoyancy. This can complicate assessment in several ways, which are examined in this paper. Modelling techniques are recommended that can represent satisfactorily, for exam-ple, discharges of varying buoyancy from given locations, and plumes that change from positive to negative buoyancy during the far-field dispersion phase. The relevant issues are considered with reference to recent computational modelling studies undertaken at HR Wallingford.
机译:海洋排放是正面,否定或中性的浮力,取决于与环境接收水域的那些相对于环境的排出温度和盐度等因素。当规划海洋排放时,对污水的分散和稀释的适当评估对于环境和工程原因是重要的。 HR Wallingford对各种类型的海洋排放有广泛的经验。在强度或强的负排放浮力的情况下,密度通常由高温或高盐度主体,其它参数在相似水平与接收水的相似。在这种情况下,评估相对简单。组合设施,如集成电力和水厂,在全球范围内越来越多。来自这些设施的排出通常均比接收水域显着升温,盐水更多,这通常导致边缘正或负浮力。这可以以几种方式复杂化评估,这些方法是在本文中进行的。建议使用建模技术,其可以令人满意地代表考试 - PLE,从给定位置的不同浮力放电,并且在远场分散阶段期间从正到负浮力发生变化的羽毛。关于在HR Wallingford进行的最近进行的计算建模研究,考虑了相关问题。

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