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Numerical Simulation of Highly Saline Wastewater Discharge into Water Objects to Improve Discharge Devices

机译:高盐水废水排放到水对象中的数值模拟改进放电装置

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The expansion of large-tonnage chemical production (primarily, of mineral fertilizers) calls for the development of new methods for discharging excess brines into surface water objects. This task is complicated by the fact that, due to the suppression of vertical turbulent pulsations, "heavy" brines may spread over considerable distances in the near-bottom region without any significant decrease in their concentration. Some suggestions for optimizing exhaust structures designed to discharge wastewater containing heavy impurities are proposed based on numerical modeling. The calculations based on solving the three-dimensional problem with different wastewater discharge conditions have shown the structures providing location of exhaust devices near the reservoir surface to be the most efficient ones. However, such structures are difficult to implement in a certain reservoir section. In this case, an easy-to-implement and quite efficient configuration is that including bottom arrangement of exhaust devices and selective intake of highly saline wastewater from sludge storage facilities. Irrespective of the chosen scheme for disposal of highly mineralized wastewater, their discharge must be carried out in strict coordination with the hydrological regime of water intake. This approach will provide the most efficient use of the assimilative capacity of water body and the best way to reduce the ecological impact on both the water body and the environment.
机译:大吨位化学生产(主要是矿物肥料)的扩展要求开发用于将过剩盐水排放到地表水物体中的新方法。这项任务的事实是,由于抑制了垂直湍流脉动,“重的”盐水可以在近底部区域的相当距离上铺展,而不会显着降低它们的浓度。基于数值建模,提出了一些关于优化设计成含有重杂质废水的排气结构的一些建议。基于求解不同废水放电条件的三维问题的计算已经示出了提供储存器表面附近的排气装置的位置,以成为最有效的结构。然而,这种结构难以在某个储存器部分中实现。在这种情况下,易于实现和非常有效的配置是包括排气装置的底部布置和来自污泥储存设施的高度盐水废水的选择性摄入。无论采用高矿化废水处理所选择的方案,都必须在与水学水文制度的严格协调中进行其排放。这种方法将提供最有效地利用水体的同化能力和降低水体和环境的生态影响的最佳方式。

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