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首页> 外文期刊>Journal of Zhejiang University. Science, A >Experimental and thermal stress investigation on side wall deformation at the pendent convective pass in a utility boiler
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Experimental and thermal stress investigation on side wall deformation at the pendent convective pass in a utility boiler

机译:实用锅炉侧壁变形对侧壁变形的实验和热应力研究

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An experimental investigation is performed on side wall deformation at the pendant convective pass (PCP) in a 300 MW and a 600 MW utility boiler. The temperature distributions are measured on the side wall areas of the water-cooled wall, the PCP and the horizontal convective pass (HCP) in the two utility boilers. These experiments show that there are great temperature differences in the side wall areas during the startup process in both utility boilers. These temperature differences can reach 80~150 (C with the side wall temperature in the PCP area higher than those in the water-cooled wall and the HCP. The highest temperature in the PCP is close to the flue gas side temperature at the same position in the horizontal flue gas pass. Thermal stress analyses are conducted in the side wall areas in the water-cooled wall, the PCP and the HCP with the software ANSYS. The results show that, at great temperature differences, the PCP side wall undergoes negative thermal stresses that exceed the yield strength causing deformation in the PCP side wall.
机译:在300 MW和600 MW型电锅炉中对侧壁变形进行实验研究。在两种公用电锅炉中,在水冷壁,PCP和水平对流通段(HCP)的侧壁区域上测量温度分布。这些实验表明,在两个公用事业锅炉中的起始过程中,侧壁区域存在良好的温度差异。这些温度差可以达到80〜150(C的PCP面积高于水冷壁和HCP的侧壁温度。PCP中的最高温度接近同一位置的烟气侧温度在水平烟道气通中。热应力分析在水冷壁,PCP和HCP中的侧壁区域进行,软件ANSYS进行。结果表明,在较高的温度差异,PCP侧壁经历负面热应力超过屈服强度导致PCP侧壁变形的热应力。

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