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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Bubble nucleation on the surface of the primary heat exchanger in a domestic central heating system
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Bubble nucleation on the surface of the primary heat exchanger in a domestic central heating system

机译:家用中央供暖系统中主热交换器表面的气泡成核

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摘要

The theoretical and experimental aspects of heterogeneous bubble nucleation are reviewed in the context of the micro bubbles present in a domestic gas fired wet central heating system. Such systems are mostly operated through the circulation of heated standard tap water through a closed loop circuit which often results in water supersaturated with dissolved air leading to micro bubble nucleation at the primary heat exchanger wall. This study will report the micro bubble nucleation in a standard domestic central heating system at typical operating conditions. Bubble nucleation rates have been calculated in the range of 0.3-4 bubbles/cm~2 s with total system bubble production rates measured in the range of 784-6920 bubbles per second. Bubble nucleation rates have been calculated through the consideration of the heat exchanger surface under super saturation conditions. The lack of experimental research in this area is evident from the non-existence of experimental correlations developed for similar physical scenarios where low levels of super saturation predominate. Hence, the classical nucleation models are considered inadequate for adaptation to the present study. A correlation through the application of the model for non-classical heterogeneous nucleation is proposed, based on the experimental data of the present study.
机译:本文以家用燃气湿式集中供热系统中存在的微气泡为背景,综述了异相气泡成核的理论和实验方面。这样的系统主要通过加热的标准自来水通过闭环回路进行操作,这经常导致水被溶解的空气过饱和,从而导致主热交换器壁上的微气泡成核。这项研究将报告标准的家用中央供暖系统在典型运行条件下的微气泡成核情况。计算出的气泡成核速率为0.3-4气泡/ cm〜2 s,总的系统气泡产生速率为每秒784-6920气泡。通过考虑过饱和条件下的换热器表面来计算气泡成核率。从针对低饱和度水平较低的类似物理场景开发的实验相关性不存在,可以明显看出该领域缺乏实验研究。因此,经典的成核模型被认为不足以适应本研究。基于本研究的实验数据,提出了通过非经典异质形核模型应用的相关性。

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