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AN INTEGRATED COOLING WATER INTAKE SYSTEM ENHANCEMENT STRATEGY

机译:集成式冷却水进水系统增强策略

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摘要

Cooling water intake problems come in many forms. These problems can include large schools of fish or jellyfish, seaweed, lake grass, sand, and silt buildup or carryover in the cooling water intake and screen house. Lower lake levels and higher average temperatures, zebra mussel infestation, and non-uniform flow rates between traveling water screen (TWS) bays and circulating water pump bays due to under-sized intake structures can also affect cooling water intake. Downstream of the cooling water intake, flow imbalances caused by entrained debris challenge heat exchanger designs and aging equipment. One Midwestern plant developed an integrated approach to improve the overall performance of the cooling water intake which will result in increased operating efficiency. For the subject plant, this paper will discuss specific modifications planned or undertaken and their benefits and limitations, flow modeling and design margin analyses completed and in process, anticipated reduction in debris carryover, impingement, and entrainment, and suggested further improvements. The majority of modifications undertaken or planned at the subject plant are generally intended to minimize debris carryover and to reduce problems associated with system blockages and heat exchanger tube fouling. Specific modifications to be discussed include: an acoustic fish deterrent system at the inlet tunnel entrance, replacement of the flow-through TWS's with an industry first-of-a-kind design screen technology, screen wash, and debris transport and removal system modifications, service water system strainer basket modifications, service water system heat exchanger repairs and modifications, and installation of a sodium hypochlorite system.
机译:冷却水的摄入问题有多种形式。这些问题可能包括大批鱼或水母,海藻,湖草,沙子以及冷却水进水口和筛房中淤积物或残留物。较低的湖泊水位和较高的平均温度,斑马贻贝的侵扰以及行进水滤网(TWS)舱和循环水泵舱之间的流量不均匀(由于进水口结构不足)也会影响冷却水的进水量。在冷却水进口的下游,由夹杂物引起的流量不平衡对热交换器的设计和设备的老化提出了挑战。中西部的一家工厂开发了一种集成方法来改善冷却水进水口的整体性能,从而提高运行效率。对于主题工厂,本文将讨论计划或进行的特定修改及其好处和局限性,已完成并在过程中进行的流模型和设计裕度分析,预期减少的碎屑残留,撞击和夹带,并提出进一步的改进建议。通常在主题工厂进行或计划进行的大多数改装旨在最大程度地减少碎屑残留并减少与系统堵塞和热交换器管道结垢有关的问题。将要讨论的具体修改包括:在进口隧道入口处使用声波鱼阻系统,用行业首创的设计滤网技术代替流通式TWS,滤网清洗以及碎屑运输和清除系统的修改,维修供水系统滤网篮,进行维修,改造供水系统热交换器,以及安装次氯酸钠系统。

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