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Investigation of sludge re-circulating clarifiers design and optimization through numerical simulation

机译:数值模拟研究污泥循环净化器的设计与优化

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In steam thermal power plants (TPP) with open re-circulating wet cooling towers, elimination of water hardness and suspended solids (SS) is performed in clarifiers. Most of these clarifiers are of high efficiency sludge re-circulating type (SRC) with capacity between 500-1,500 m(3)/hr. Improper design and/or mal-operation of clarifiers in TPPs results in working conditions below design capacity or production of soft water with improper quality (hardness and S.S.). This causes accumulation of deposits in heat exchangers, condenser tubes, cooling and service water pipes and boiler tubes as well as increasing the ionic load of water at the demineralizing system inlet. It also increases the amount of chemical consumptions and produces more liquid and solid waste. In this regard, a software program for optimal design and simulation of SRCs has been developed. Then design parameters of existing SRCs in four TPPs in Iran were used as inputs to developed software program and resulting technical specifications were compared with existing ones. In some cases improper design was the main cause of poor outlet water quality. In order to achieve proper efficiency, further investigations were made to obtain control parameters as well as design parameters for both mal-designed and/or mal-operated SRCs. [References: 13]
机译:在具有开放式循环湿式冷却塔的蒸汽热电厂(TPP)中,在澄清池中进行水硬度和悬浮物(SS)的消除。这些澄清池大多数是高效污泥再循环类型(SRC),容量在500-1,500 m(3)/ hr之间。 TPP中澄清器的设计不当和/或操作不当会导致工作条件低于设计能力或生产出质量不佳的软水(硬度和S.S.)。这导致沉积物积聚在热交换器,冷凝器管,冷却和非饮用水管道以及锅炉管中,并增加了脱盐系统入口处水的离子负荷。它还增加了化学消耗量,并产生了更多的液体和固体废物。在这方面,已经开发出用于SRC的最佳设计和仿真的软件程序。然后将伊朗四个TPP中现有SRC的设计参数用作已开发软件程序的输入,并将所得的技术规范与现有技术进行比较。在某些情况下,设计不当是导致出水水质差的主要原因。为了获得适当的效率,进行了进一步的研究以获得设计错误和/或操作错误的SRC的控制参数以及设计参数。 [参考:13]

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