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MICRO BUBBLE FORMATION AND BUBBLE DISSOLUTION IN DOMESTIC WET CENTRAL HEATING SYSTEMS

机译:国内湿式中央加热系统中微泡形成与气泡溶解

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摘要

16 % of the carbon dioxide emissions in the UK are known to originate from wet domestic central heating systems. Contemporary systems make use of very efficient boilers known as condensing boilers that could result in efficiencies in the 90-100% range. However, research and development into the phenomenon of micro bubbles in such systems has been practically non-existent. In fact, such systems normally incorporate a passive deaerator that is installed as a ‘default’ feature with no real knowledge as to the micro bubble characteristics and their effect on such systems. High saturation ratios are known to occur due to the widespread use of untreated tap water in such systems and due to the inevitable leakage of air into the closed loop circulation system during the daily thermal cycling. The high temperatures at the boiler wall result in super saturation conditions which consequently lead to micro bubble nucleation and detachment, leading to bubbly two phase flow. Experiments have been done on a test rig incorporating a typical 19 kW domestic gas fired boiler to determine the expected saturation ratios and bubble production and dissolution rates in such systems.
机译:众所周知,英国16%的二氧化碳排放量来自潮湿的家用中央供暖系统。现代系统利用称为冷凝锅炉的非常高效的锅炉,其效率可能在90-100%的范围内。但是,实际上不存在对这种系统中的微气泡现象的研究和开发。实际上,此类系统通常包含一个被动除氧器,该除气器作为“默认”功能安装,对微气泡特性及其对此类系统的影响没有真正的了解。由于未处理的自来水在此类系统中的广泛使用以及在日常热循环过程中不可避免的空气泄漏到闭环循环系统中,已知会发生高饱和率。锅炉壁处的高温导致过饱和状态,从而导致微气泡成核和分离,从而产生气泡状的两相流。已经在测试设备上进行了试验,该设备结合了典型的19 kW家用燃气锅炉,以确定此类系统中的预期饱和比以及气泡产生和溶解速率。

著录项

  • 作者

    Fsadni Andrew M.; GE Yunting;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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