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水流量對熱軋鋼板層流冷卻過程對流換熱系數的影響

Effect of water flow rate on the heat transfer coefficient of a hot steel plate during laminar flow cooling

  • 摘要: 提高帶鋼層流冷卻控制模型的精度,關鍵是建立精確的對流換熱系數與冷卻工藝之間的關系.采用有限差分法和反向熱傳導法,獲得了實驗條件下鋼板表面的對流換熱系數及表面溫度.研究了不同水流量(0.9~2.1 m3·h-1)對換熱系數與表面溫度變化規律的影響.在層流冷卻過程中,對流換熱系數與表面溫度呈非線性關系;在距離駐點70 mm內,水流量對換熱系數隨表面溫度變化規律沒影響;遠離駐點70 mm外,對流換熱系數比隨遠離沖擊區駐點距離的增加而減小.采用所確定的換熱系數計算得到的溫降曲線與實測曲線吻合較好.

     

    Abstract: Establishing an accuracy relationship between the convective heat transfer coefficient and cooling process is the key to improve the laminar cooling control model. The convective heat transfer coefficient and corresponding surface temperature were calculated by the finite difference method and the inverse heat conduction method. The effects of cooling water jet flow rate on the heat transfer coefficient and surface temperature was investigated when the cooling water jet flow rate varied from 0.9 to 2.1 m3·h-1. It is found that the convective heat transfer coefficient is a nonlinear function of the surface temperature during laminar flow cooling. Within a distance of 70 mm from the stagnation line, the cooling flow rate has no effect on the heat transfer coefficient and surface temperature. But outside 70 mm, the heat transfer coefficient ratio becomes smaller with increasing distance from the stagnation line. It is also shown that relatively good agreement is obtained between the calculated and measured curves.

     

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