锅炉吹灰器运用技术在行业迅速的崛起


  近些年来燃煤锅炉供暖一直存在的一个难以解决的问题,那就是锅炉积灰问题。在过去的供暖过程中,我们深刻的休会到水暖锅炉内置烟管和气暖锅炉对流管束积灰比较严重,它直接影响锅炉的效率和正常供暖,积灰严重时,只有停炉进行人工清理,有时用12mm粗的钢筋都捅不过去,每台炉每个月都要清灰一次,否则就不能正常运转。每次处理,每台炉需要4个人3天的时间。既消耗了人力,也浪费了燃料,供暖效果也得不到保障。 
  In recent years, there has been a difficult problem to solve in coal-fired boiler heating, which is the problem of boiler ash accumulation. In the past heating process, we deeply noticed that the built-in smoke pipes of water heating boilers and the convection tube bundles of air heating boilers have serious dust accumulation, which directly affects the efficiency and normal heating of the boiler. When the dust accumulation is severe, only the boiler is shut down for manual cleaning, sometimes it cannot be pierced with 12mm thick steel bars. Each boiler needs to be cleaned once a month, otherwise it cannot operate normally. Each furnace requires 4 people and 3 days for each treatment. It consumes both manpower and fuel, and the heating effect cannot be guaranteed.
锅炉吹灰器运用技术在行业迅速的崛起
  锅炉吹灰器主要对锅炉烟道受热面进行吹扫,以很大限度地减少受热面上的积灰,发挥增加经济效益的重要作用。锅炉吹灰器为了提高系统的可靠性,简化管路布置,减少漏气隐患,提高系统的安全性能,减少管路系统的维修量;锅炉吹灰系统布置形式为分散式树枝状管路分布;乙炔管路由乙炔瓶输送至集器箱,由集气箱输送至乙炔主管路,乙炔主管路由下至上布置,然后树枝状分散输送至每一受热层面的配气装置;每两个脉冲发生器配置一套配气点火装置,配气和混合点火系统与脉冲发生器的爆燃气管路距离不超过6米,大大缩短了爆燃气输送距离,提升了爆燃气威力。爆燃气管短路,节约可燃气体30%以上,本吹灰系统配气点火控制柜和混合点火罐布置在两个脉冲发生器的中间位置。
  The boiler soot blower mainly blows the heating surface of the boiler flue to greatly reduce the accumulation of ash on the heating surface and play an important role in increasing economic benefits. The boiler soot blower aims to improve the reliability of the system, simplify pipeline layout, reduce potential air leakage, improve the safety performance of the system, and reduce the maintenance volume of the pipeline system; The layout of the boiler soot blowing system is distributed in a dispersed dendritic pipeline; The acetylene pipe is transported from the acetylene bottle to the collector box, and then from the gas collection box to the acetylene main pipeline. The acetylene main pipe is arranged from bottom to top, and then dispersed in branches to the gas distribution device at each heated layer; Each two pulse generators are equipped with a set of gas distribution ignition devices. The distance between the gas distribution and mixed ignition system and the explosive gas pipeline of the pulse generator is not more than 6 meters, greatly shortening the conveying distance of explosive gas and improving its power. The short circuit of the deflagration gas pipe saves more than 30% of combustible gas. The gas ignition control cabinet and mixed ignition tank of this soot blowing system are arranged in the middle of two pulse generators.
  锅炉吹灰器在行业迅速的崛起,为促进国民的经济发展起到了极大的促进作用,根据市场发展的形势,锅炉吹灰器始终坚持科技创新的发展原则。锅炉吹灰器先进的生产工艺,不仅满足了当前社会对生产工业的绿色环保要求,还大幅度的节约成本,给企业带来更多的经济效益,着实是企业发展和社会进步的双赢局面。锅炉吹灰器是经过安全部门检测合格的生产设备,并且,其所具备的灵活性和实用性也是众多企业所以只追求和看重的。因此,锅炉吹灰器能为企业的发展带去一定的便利,锅炉吹灰器也即将成为今后企业发展的方向,为企业提供不竭的动力。
  The rapid rise of boiler soot blowers in the industry has played a significant role in promoting national economic development. According to the market development situation, boiler soot blowers have always adhered to the development principle of technological innovation. The advanced production process of boiler soot blowers not only meets the current green and environmental requirements of society for the production industry, but also significantly saves costs and brings more economic benefits to enterprises. It is truly a win-win situation for enterprise development and social progress. The boiler soot blower is a production equipment that has been tested and qualified by the safety department, and its flexibility and practicality are only pursued and valued by many enterprises. Therefore, boiler soot blowers can bring certain convenience to the development of enterprises, and boiler soot blowers will soon become the direction of future enterprise development, providing inexhaustible power for enterprises.

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在技术领域的支持下,总结出锅炉吹灰器除灰内燃的技术及原理,锅炉的内燃过程实际上是一种极其复杂的物理化学反应过程,但是由于受燃煤的特性、受热面上的结构、炉内的温度场水平就越来越高及空气动力工况等物质因素,造成整个受热面积的灰与结渣,使锅炉设备出力也不断的下降。而国内的动力用煤多使用的是低品劣质煤,锅炉的燃煤多存在变且灰份也非常的大、热值也在不断的降低的趋势,这就自然的加剧着受热面的积灰结焦的过程形成。
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