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Control of mussel Mytilus galloprovincialis Lamarck fouling in water-cooling systems using plasma discharge

机译:使用等离子放电控制水冷却系统中贻贝·米蒂斯·骆驼inclovincialis拉马克污染

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摘要

To prevent marine macrofouling, the anti-fouling effect of liquid discharge on mussels Mytilus galloprovincialis Lamarck was investigated in a simulated water-cooling system. The effects of input energy, mussel distance from discharge center, continuous discharge time, and discharge energy distribution mode on mussel response (death or detachment) were systematically studied. The results showed that excellent anti-fouling effects could be achieved by increasing input energy, but the detachment rate and mortality of mussels decreased sharply when the mussels were farther away from the discharge center. Low frequency discharge for a long, continuous time and multiple stimuli at long intervals improved the anti-fouling effect. Shock waves are the most likely cause of mussel eradication, and the threshold values of peak pressure to prevent mussel settlement and to cause death were 0.02 MPa and 0.05 MPa, respectively.
机译:为防止海洋大型摩梭,在模拟水冷系统中研究了贻贝贻贝肉豆蔻池吞咽动植物的防污效果。 系统地研究了输入能量,从放电中心,连续放电时间和放电能量分布模式对贻贝响应(死亡或脱离)的影响,淡出贻贝距离。 结果表明,通过增加输入能量,可以实现优异的防污效果,但是当贻贝远离排放中心时,贻贝的分离率和死亡率急剧下降。 低频放电长,连续时间和多个刺激长时间的刺激改善了防污效果。 冲击波是贻贝根除的最可能原因,峰值压力的阈值分别为贻贝沉降和死亡的阈值分别为0.02MPa和0.05MPa。

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