首页> 外文会议>PVP2011;ASME Pressure Vessels and Piping conference >INVESTIGATION OF BULGING BEHAVIOR OF COKE DRUM -A PRACTICAL ANALYSIS OF BULGING UNDER COMPLEX QUENCH CONDITIONS-
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INVESTIGATION OF BULGING BEHAVIOR OF COKE DRUM -A PRACTICAL ANALYSIS OF BULGING UNDER COMPLEX QUENCH CONDITIONS-

机译:焦炭鼓胀行为的研究-复杂淬火条件下鼓胀的实用分析

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Coke drams undergo cyclic operations typically in the temperature range from room temperature to about 500°C (930°F). During quenching, the coke dram is inevitably subjected to a rapid drop in temperature because cooling water is injected directly into the coke drum through the bottom inlet nozzle. The temperature profile on the shell surface is uneven during quenching, and can vary in each cycle of the quenching operation. Such a complicated thermal profile induces large strains in the shell portion of the coke dram, and eventually causes damage like bulging and/or cracking. The authors have investigated the bulging behavior of the coke dram by the thermal elastic-plastic FE-analysis, considering the existence of the overmatch welds and uneven temperature field during quenching [1]. In this paper, a practical FE-analysis is developed to estimate the complex strain that leads to bulging under uneven temperature fields during quenching. The actual temperature and strain data during operation are collected by thermocouples and high temperature strain gauges. A thermal analysis model, including an evaluation of boiling heat transfer on the shell's inner surface, is established to simulate the measured shell behavior of the coke dram. By utilizing this FE-analysis model, several parameters thought of as causal factors in bulging can be examined under the uneven temperature profile that is likely to occur during actual operation. This analytical approach can also provide effective technique for improvements in shell durability.
机译:焦炭布风通常在从室温到大约500°C(930°F)的温度范围内进行循环操作。在淬火期间,由于冷却水通过底部入口喷嘴直接注入到焦炭塔中,因此焦炭桶不可避免地会经历温度的快速下降。在淬火过程中,壳体表面的温度分布是不均匀的,并且在淬火操作的每个循环中都会变化。这种复杂的热分布在焦油果皮的壳部分中引起很大的应变,并最终导致诸如鼓胀和/或破裂的损坏。作者通过热弹塑性有限元分析,研究了焦油鼓鼓胀的行为,考虑到淬火过程中存在过度匹配的焊缝和不均匀的温度场[1]。在本文中,开发了一种实用的有限元分析来估计在淬火过程中在不均匀温度场下导致膨胀的复杂应变。运行期间的实际温度和应变数据由热电偶和高温应变仪收集。建立了一个热分析模型,包括对壳内表面沸腾传热的评估,以模拟所测得的焦油壳的行为。通过使用这种有限元分析模型,可以在实际操作过程中可能出现的不均匀温度曲线下检查一些被认为是膨胀中的因果因素的参数。这种分析方法还可以提供有效的技术来提高外壳的耐用性。

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