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Effect of the cooling water flow rate to control self-heating of coal in a cylindrical reactor heated by a hot plate heater

机译:冷却水流速对热板加热器加热圆柱形反应器中煤自加热的影响

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Coal transport by sea transportation method including inter-islands barge system remains important means of bulk material transportation method. Depend upon the distance between the coal mine sites to the power plant sited, the coal transportation could take days or weeks. Prolonged transportation time could lead to self-heating leading to spontaneous combustion of lower rank coal. To prevent this, a heat exchanger submersion method is proposed to reduce the potentials of self-heating problem by means increasing the heat loss from the coal piles. This experiment work was conducted to determine the effect of cooling water flow rate on decreasing temperature of coal. Laboratory-scale experiments were performed using a stainless steel cylinder that opens at the top and insulated by rockwool to reduce heat loss. The heat source comes from the bottom which is heated by a hot plate heater. A U-shaped heat exchanger of laboratory-scale experiments was prepared. In this experiment, subbituminous coal was used. The effect of flow rate on the prevention of spontaneous combustion was studied by providing variations of the flow rates, thus the amount of heat taken from the heated coal bed. In this experiment the greater flow rate is accompanied by a higher decrease in coal temperature. Therefore, this heat exchanger effective for taking heat from the coal bed.
机译:海运方法煤炭运输方法包括岛间驳船系统仍然是散装材料运输方法的重要手段。取决于煤矿位点与发电厂的距离,煤炭运输可能需要数天或数周。长时间的运输时间可能导致自我加热导致较低级煤炭的自发燃烧。为了防止这种情况,提出了一种热交换器浸渍方法,以通过增加煤桩的热量损失来降低自加热问题的电位。进行该实验工作以确定冷却水流速对煤的降低降低的影响。使用不锈钢圆筒进行实验室规模的实验,其在顶部开口并通过摇滚池绝缘来减少热量损失。热源来自底部,由热板加热器加热。制备了实验室规模实验的U形热交换器。在该实验中,使用亚脱煤。通过提供流速的变化来研究流速对防止自发燃烧的影响,从而从加热煤层中取出的热量。在该实验中,较高的流速伴随着煤温度的降低。因此,该热交换器有效地从煤层中吸热。

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