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Evaluation of a Pulse Width Modulated Bypass Nozzle for the Development of a Variable Load Residential Oil Burner

机译:用于可变负荷住宅燃油燃烧器开发的脉宽调制旁路喷嘴的评估

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摘要

Due to the need for energy conservation in buildings and the simultaneous benefit of cost savings, the development of a low firing rate load modulating residential oil burner is very desirable. One of the two main requirements of such a burner is the development of a burner nozzle that is able to maintain the particle size distribution of the fuel spray in the desirable (small) size range for efficient and stable combustion. The other being the ability to vary the air flow rate and air distribution around the fuel nozzle in the burner for optimal combustion at the current fuel firing rate. In this paper, which deals with the first requirement, we show that by using pulse width modulation in the bypass channel of a commercial off-the-shelf bypass nozzle, this objective can be met. Here we present results of spray patterns and particle size distribution for a range of fuel firing rates. The results show that a desirable fuel spray pattern can be maintained over a fuel firing rate turndown ratio (Maximum Fuel Flow Rate/Minimum Fuel Flow Rate) of 3.7. Thus here we successfully demonstrate the ability to electronically vary the fuel firing rate by more than a factor of 3 while simultaneously maintaining good atomization.
机译:由于建筑物中需要节约能源并同时节省成本,因此非常需要开发一种低燃速负载调节型家用燃油炉。这种燃烧器的两个主要要求之一是燃烧器喷嘴的开发,该喷嘴能够将燃料喷雾的粒度分布保持在期望的(小)尺寸范围内,以进行有效和稳定的燃烧。另一个是改变燃烧器中燃料喷嘴周围的空气流量和空气分布的能力,以便以当前的燃料燃烧速率实现最佳燃烧。在满足第一个要求的本文中,我们表明,通过在商用现货旁路喷嘴的旁路通道中使用脉冲宽度调制,可以实现此目标。在这里,我们介绍了一系列燃料燃烧速率下喷雾模式和粒度分布的结果。结果表明,在3.7的燃料点火速率调低比(最大燃料流量/最小燃料流量)上可以保持理想的燃料喷雾模式。因此,在这里,我们成功地证明了在保持良好雾化的同时,以电子方式将燃料燃烧速率改变3倍以上的能力。

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