首页> 外文会议>Spring Technical Meeting of the Eastern States Section of the Combustion Institute >Fuel Bum Rate, Emissions and Gas Temperature from a Domestic Two-Stage Wood-Fired Hydronic Heater
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Fuel Bum Rate, Emissions and Gas Temperature from a Domestic Two-Stage Wood-Fired Hydronic Heater

机译:家用两级木材燃烧液体加热器的燃油速率,排放量和气体温度

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An experimental study is conducted of a two-stage wood-fired hydronic heater (WFHH). The WFHH contains two combustion chambers. The first is associated primarily with wood pyrolysis while the second, located down-stream, is designed for secondary burning of undesirable emissions while generating more heat. A piezo-electric based load cell apparatus is developed to obtain direct measurements of fuel burn rate (FBR) - avoiding possible inaccuracies of standardized (full appliance weighing) approaches used for certification. In order to check the internal consistency of the experimental measurement, a theoretical mass loss relation is developed and used for reducing data and to explain the physical mechanism responsible for the existence of the experimentally observed global maximum burn rate. A system level numerical model is also developed based on a combination of well-stirred reactor theory to provide estimates of emissions products and gas temperature. Overall agreement between experiments and model predictions are reasonable for temperature and major combustion species. As the first known reported measurements of a domestic WFHH, the experimental measurements are found to be internally self-consistent and provide guidance for more complete theoretical studies.
机译:实验研究是通过两级木材燃烧的氢化加热器(WFHH)进行的。 WFHH含有两个燃烧室。首先主要与木质热解相关,而第二次,位于下游,设计用于在产生更多热量的同时进行不良发射的二次燃烧。开发了一种压电基载荷电池设备以获得燃料燃烧速率(FBR)的直接测量 - 避免用于认证的标准化(全电电器称重)方法的可能不准确。为了检查实验测量的内部一致性,开发了理论上的质量损失关系,用于减少数据,并解释负责实验观察到的全局最大烧伤率的存在的物理机制。还基于漂亮的反应堆理论的组合开发了系统级数值模型,以提供排放产品和气体温度的估计。实验与模型预测之间的总体协议是温度和主要燃烧物种的合理性。作为第一个已知的报告的国内WFHH测量,发现实验测量是内部自我一致的,并为更完整的理论研究提供指导。

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