首页> 外文会议>TMS(The Minerals, Metals amp; Materials Society) Annual Meeting; 20050213-17; San Francisco,CA(US) >CALCULATION OF HEAT TRANSFER COEFFICIENTS AT THE INGOT SURFACE DURING DC CASTING
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CALCULATION OF HEAT TRANSFER COEFFICIENTS AT THE INGOT SURFACE DURING DC CASTING

机译:直流浇铸过程中钢锭表面传热系数的计算

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Surface heat transfer coefficients representing the various regimes of water cooling during the Direct Chill (DC) casting of aluminum 3004 alloy ingots have been calculated using the inverse heat transfer technique. ProCAST, a commercial casting simulation package, which includes heat transfer, fluid flow, solidification, and inverse heat transfer, was used for this effort. Thermocouple data from an experimental casting run, and temperature-dependent thermophysical properties of the alloy were used in the calculation. The use of a structured vs. unstructured mesh was evaluated. The calculated effective heat transfer coefficient, which is a function of temperature and time, covers three water cooling regimes, i.e., convection, nucleate boiling, and film boiling, and the change of water flow rate with time.
机译:使用逆传热技术已经计算出代表铝3004合金铸锭直接冷铸(DC)铸造过程中水冷却的各种方式的表面传热系数。为此,使用了ProCAST,这是一种商业铸造模拟软件包,其中包括传热,流体流动,凝固和逆传热。计算中使用了实验浇铸过程中的热电偶数据以及该合金的温度相关热物理性质。评估了结构化与非结构化网格的使用。计算出的有效传热系数是温度和时间的函数,它涵盖了三种水冷却方式,即对流,成核沸腾和薄膜沸腾,以及水流量随时间的变化。

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