水管锅炉运行时最大允许压力计算

A. Elmaryami, M. Ahmida, W. Muhammad
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引用次数: 0

摘要

在蒸汽锅炉工业领域,水管的压力和温度是影响蒸汽锅炉安全和效率的两个主要因素。爆炸可能是由于压力突然下降而温度没有相应下降而发生的。因此,了解水管锅炉的温度分布对控制锅炉的故障和爆炸至关重要。一旦知道了温度分布,就可以确定影响水管寿命的限制因素,如最大允许压力。利用ANSYS软件确定某电站锅炉在提高进水和炉膛温度下运行时水管内的温度分布。由于水管是圆柱形的,所以采用了轴对称理论。在轴对称理论中,像水管这样的三维圆柱形问题可以通过忽略周向Ө而简化为二维,而r轴和z轴则变为x轴和y轴或笛卡尔坐标。然后利用ANSYS 10在r和z轴上对水管剖面进行二维矩形单元网格划分,计算出水管的稳态温度分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maximum Allowable Pressure Calculation of Water Tube Boiler during Operation
In the steam boiler industrial sector, pressure and temperature of the water tube are the two main factors that affect the safety and efficiency of a steam boiler.  Explosions may be occurring because of a sudden drop in pressure without a corresponding drop in temperature.  Therefore, understanding the temperature distribution of the water tube boiler is essential to control the failure and explosion of the boiler.  Once the temperature distribution is known than the limiting factors that affect the water tube life such as the maximum allowable pressure can be determined.  ANSYS software will be used to determine the temperature distribution in the water tube of a utility boiler during operation at elevated inlet water and furnace temperature.  The theory of axisymmetric has been utilized since the water- tube is cylindrical in shape.  In axisymmetric theory, a three-dimensional cylindrical problem like a water tube can be reduced to two-dimensional by ignoring the circumferential Ө, while the r-axis and z-axis became x-axis and y-axis or Cartesian coordinate.  Then two-dimensional rectangular elements meshing for the profile cross-section along the water tube in r and z axes were implemented in a computerized simulation using ANSYS 10 to find out the steady-state temperature distribution of the water tube.
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