首页> 外文会议>Annual North American Waste to Energy Conference(ANWTEC 12); 20040517-20040519; Savannah,GA; US >An Innovative Boiler Cleaning Method Using a Rotary Cable Swivel Tool
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An Innovative Boiler Cleaning Method Using a Rotary Cable Swivel Tool

机译:使用旋转电缆旋转工具的新型锅炉清洁方法

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The boiler generating bank (convective) sections of waste to energy boilers are commonly found to be very limited in regards to personnel access. The Miami-Dade County Resources Recovery Facility has had a challenge in the past to effectively clean this section of the boiler either on line or within a timely manner during outages. In 2003 the company used a new innovative method for cleaning this section off line. The boilers were 100% clean in 1/2 to 1/3 the usual time. The new method involved high-pressure industrial water blasting as typically used, with the exception of the water delivery device/system. Normally the water delivery method involves personnel placed in the boiler with hand held high-pressure water lances. They require confined space monitoring, lighting, scaffolding, proper air supply, frequent breaks, rain suits, full face shields and other PPE for safety inside the boiler. These factors combined with the limited space severely constrain the personnel and their effectiveness when using the water lances. Cleaning is compromised and has led to poor effectiveness and long duration cleanings. Explosives have also been tried to help augment cleaning. The new method used in 2003 involved no personnel in the boiler. Instead, for the water delivery system, a support cable is erected across the boiler upon which a rotary cable swivel tool (CST) is mounted. The tool has connections for high-pressure water and plant air and a simple winch for traversing the tool across the furnace. Very effective cleaning was accomplished from drum to drum, a distance of 20 feet (6.1 m). Depending on the application, the water pressure can be adjusted for maximum effectiveness. The air pressure is also adjusted to control the speed at which the rotary nozzles spin to best match the fouled conditions. The orientation and number of nozzles is also optimized for each application. This paper details the results of using the rotary Cable Swivel Tool (CST) in the generating bank section of the boilers and discusses related operational and maintenance benefits.
机译:人们发现,进入能源锅炉的废物的锅炉产生库(对流)部分在人员通道方面非常有限。过去,迈阿密-戴德县资源回收设施一直面临着一个挑战,即在停电期间在线或及时地有效清洁锅炉的这一部分。 2003年,该公司采用了一种新的创新方法来离线清洁此部分。锅炉在通常时间的1/2到1/3中100%清洁。新方法涉及通常使用的高压工业喷水,但输水装置/系统除外。通常,水的输送方法是用手持高压水枪将人员安置在锅炉中。他们需要密闭空间监控,照明,脚手架,适当的空气供应,经常休息,雨衣,全面罩和其他PPE,以确保锅炉内部的安全。这些因素加上有限的空间在使用喷水枪时严重限制了人员及其效率。清洁受到损害,并导致效果不佳和长时间清洁。还尝试使用炸药来增强清洁效果。 2003年使用的新方法不涉及锅炉人员。取而代之的是,对于输水系统,在锅炉上竖起一条支撑电缆,并在其上安装了旋转电缆旋转工具(CST)。该工具具有用于高压水和植物空气的连接件,以及用于将工具横穿炉子的简单绞盘。滚筒之间的距离为20英尺(6.1 m),清洁效果非常好。根据应用情况,可以调节水压以获得最大的效果。还要调节气压,以控制旋转喷嘴旋转的速度,以最好地匹配污染情况。喷嘴的方向和数量也针对每种应用进行了优化。本文详细介绍了在锅炉的发电机组部分使用旋转电缆旋转工具(CST)的结果,并讨论了相关的运行和维护优势。

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