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Smoldering combustion spread on a thin layer of Papuan peat

机译:闷烧燃烧在一层薄薄的泥炭上传播

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Smoldering is the dominant mechanism of combustion in peat fires. It is represented by a slow burning, low temperature, and flameless types of combustion. The rate of spread of smoldering peat is generally considered as the main feature in relation to a rating of fire hazards. It is determined by the oxygen supply, the amount of heat generated and the amount of heat loss that is released into the environment. Since the heat balance of a smoldering combustion process is affected by the amount of heat generation and heat loss to the environment, therefore the size of the peat layer plays a great role. This study aims to observe the impact of the layer thickness on the smoldering spread of peat samples from Papua, Indonesia. The experimental works were carried out in an adjustable reactor equipped with insulation board to minimize the heat loss to the environment, a set of thermocouples spread evenly throughout the reactor, a data acquisition system, and a FLIR One infrared camera. The dry peat samples (MC 3-5 % wet base) was ignited using an electric coil heater which was powered by 100 watts of electricity, and the spread of the heat is observed using a thermocouple circuit and the infrared camera. Experiments were carried on thin peat layers of 3 cm and 4 cm. The results show that the average smoldering spread for 3 cm and 4 cm depth are 4.10 cm/h and 5.01 cm/h respectively. Higher peak temperature was observed for 4 cm depth than the 3 cm depth.
机译:闷烧是泥炭火灾中燃烧的主导机制。它由缓慢的燃烧,低温和无毛燃烧类型表示。闷烧泥炭的传播率通常被认为是与火灾危险等级相关的主要特征。它由氧气供应确定,产生的热量和释放到环境中的热量损失的量。由于闷燃燃烧过程的热平衡受到环境的热量和热量损失的影响,因此泥炭层的尺寸起到了很大的作用。本研究旨在观察层厚度对印度尼西亚巴布亚泥浆样品的闷烧扩散的影响。实验工程在配备有绝缘板的可调节电抗器中进行,以最大限度地减少对环境的热量损失,这一套热电偶在整个反应器中均匀地传播,数据采集系统和一个红外摄像头。使用电动线圈加热器点燃干泥浆样品(MC 3-5%湿碱),电动线圈加热器由100瓦电力供电,并且使用热电偶电路和红外相机观察热量的扩散。实验在3厘米和4cm的薄泥炭层上进行。结果表明,3厘米和4cm深度的平均闷烧扩散分别为4.10cm / h和5.01cm / h。观察到比3cm深度的4厘米深的峰值温度。

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