Validity evaluation on temperature correction methods by thermocouples with different bead diameters and application of corrected temperature
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Validity evaluation on temperature correction methods by thermocouples with different bead diameters and application of corrected temperature

机译:具有不同珠直径的热电偶温度校正方法的有效性评价及校正温度的应用

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AbstractAccurate measurement of flame temperature by using bare thermocouples is a traditional and still a challenging problem. Three measurement methods, including the double- and triple-thermocouple correction methods and extrapolation method, have been developed to seek accurate gas temperatures, but the validity of these methods has been rarely evaluated for application in fire experiments. All the three methods use the temperature readings of multiple thermocouples with different bead diameters. This paper presents a systematic evaluation of validity for these methods by conducting fire temperature measurements. A turbulent propane pool fire was used. The temperatures along the fire plume centreline were measured at ten vertical heights of 10–55?cm, for which four thermocouples with different bead diameters were used at each height. Analysis shows that the flame turbulence imposes a significantly negative effect on the double- and triple-thermocouple correction methods. However, the extrapolation method can correct the fire gas temperature regardless of temperature pulsation related to flame turbulence. In addition, a new radiation model that incorporates the corrected flame temperature is proposed well against the radiant heat flux measurement. Moreover, it is found that the flame pulsation frequency can be roughly estimated by the temporal derivation of the corrected flame temperature.Highlights?Validity of three temperature correction methods is evaluated in fire experiments.?The extrapolation method can well correct the bare thermocouple temperature readings.?The corrected temperature is useful for calculating the radiant heat flux from fires.?The corrected temperature can also help to estimate the flame pulsation frequency.]]>
机译:<![CDATA [ 抽象 通过使用裸机测量火焰温度的测量是一种传统且仍然是一个具有挑战性的问题。已经开发出三种测量方法,包括双热电偶校正方法和外推方法,以寻求精确的气体温度,但这些方法的有效性很少被评估在消防实验中的应用。所有三种方法都使用多个热电偶的温度读数,具有不同的珠子直径。本文通过进行火热温度测量,提供了对这些方法的有效性的系统评估。使用湍流丙烷池火。在10-55Ωcm的十个垂直高度下测量沿着火羽毛线的温度,每个高度使用具有不同珠子直径的四个热电偶。分析表明,火焰湍流对双热电偶校正方法施加了显着的负面影响。然而,外推方法可以校正火气温度,而不管与火焰湍流有关的温度脉动。另外,提出了一种结合校正的火焰温度的新辐射模型,符合辐射热通量测量。此外,发现火焰脉动频率可以通过校正的火焰温度的时间推导来粗略地估计。 突出显示 在消防实验中评估了三种温度校正方法的有效性。 外推方法才能校正裸锁温温度读数。 克CTED温度可用于计算来自火灾的辐射热量。 校正的温度也有助于估计火焰脉动频率。 < / ce:简单 - 段落> ]]>

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