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中试规模的冷却塔,用于评估冷却系统补充水的腐蚀、结垢和生物污垢控制策略。

Pilot-scale cooling tower to evaluate corrosion, scaling, and biofouling control strategies for cooling system makeup water.

作者信息

Chien S H, Hsieh M K, Li H, Monnell J, Dzombak D, Vidic R

机构信息

Department of Civil and Environmental Engineering, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.

出版信息

Rev Sci Instrum. 2012 Feb;83(2):024101. doi: 10.1063/1.3680563.

Abstract

Pilot-scale cooling towers can be used to evaluate corrosion, scaling, and biofouling control strategies when using particular cooling system makeup water and particular operating conditions. To study the potential for using a number of different impaired waters as makeup water, a pilot-scale system capable of generating 27,000 kJ∕h heat load and maintaining recirculating water flow with a Reynolds number of 1.92 × 10(4) was designed to study these critical processes under conditions that are similar to full-scale systems. The pilot-scale cooling tower was equipped with an automatic makeup water control system, automatic blowdown control system, semi-automatic biocide feeding system, and corrosion, scaling, and biofouling monitoring systems. Observed operational data revealed that the major operating parameters, including temperature change (6.6 °C), cycles of concentration (N = 4.6), water flow velocity (0.66 m∕s), and air mass velocity (3660 kg∕h m(2)), were controlled quite well for an extended period of time (up to 2 months). Overall, the performance of the pilot-scale cooling towers using treated municipal wastewater was shown to be suitable to study critical processes (corrosion, scaling, biofouling) and evaluate cooling water management strategies for makeup waters of complex quality.

摘要

中试规模的冷却塔可用于在使用特定的冷却系统补充水和特定运行条件时评估腐蚀、结垢和生物污垢控制策略。为了研究使用多种不同的劣质水作为补充水的可能性,设计了一个能够产生27,000 kJ∕h热负荷并保持雷诺数为1.92×10(4)的循环水流的中试规模系统,以便在与全尺寸系统相似的条件下研究这些关键过程。中试规模的冷却塔配备了自动补充水控制系统、自动排污控制系统、半自动杀生剂投加系统以及腐蚀、结垢和生物污垢监测系统。观察到的运行数据表明,主要运行参数,包括温度变化(6.6°C)、浓缩倍数(N = 4.6)、水流速度(0.66 m∕s)和空气质量流速(3660 kg∕h m(2)),在很长一段时间内(长达2个月)都得到了很好的控制。总体而言,使用经处理的城市废水的中试规模冷却塔的性能表明,其适合于研究关键过程(腐蚀、结垢、生物污垢)并评估复杂水质补充水的冷却水管理策略。

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