首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.4 >CONJUGATED HEAT TRANSFER IN SKIRT HOT BOX IN PRESSURE VESSELS
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CONJUGATED HEAT TRANSFER IN SKIRT HOT BOX IN PRESSURE VESSELS

机译:压力容器中裙式热箱中的共轭传热

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Pressure vessels are common equipment in oil, gas and petrochemical industries. In a hot containing fluid vessel, excessive temperature gradient at junction of skirt to head (weld line), can cause unpredicted high thermal stresses; Thereby fracture of the vessel may occur as a result of cyclic operation. Providing a hot box (air pocket) in crotch space is a economical, applicable and easy mounted method in order to reduce the intensity of thermal stresses. Natural convection due to temperature difference between the wall of pocket, will absorb heat near the hot wall(head of the vessel) and release that near the cold wall(skirt of the vessel), then the skirt wall conducts heat to the earth as a fin. This conjugated heat transfer removes the temperature gradient boundary at welded junction. This phenomena will lead the temperature gradient on the weld line from a sudden to smooth behavior, thereby the skirt-head junction, that is a critical region, could be protected from excessive thermal stresses.rnIn this paper the profit of hot box and conjugated heat transfer in cavity has been demonstrated experimentally. As a result it is shown that the conductive heat transfer through the skirt (which acts as a fin) ensures the continuation of natural convection in the box. Also the governing equations has been solved numerically and compared with experimental results.
机译:压力容器是石油,天然气和石化行业中的常用设备。在盛有热量的流体容器中,裙板与头部(焊接线)交界处的温度梯度过大会导致无法预料的高热应力。因此,循环操作可能会导致血管破裂。为了减少热应力的强度,在c部空间中提供热箱(气袋)是一种经济,适用且易于安装的方法。由于袋壁之间的温差而产生的自然对流,将在热壁(容器的顶部)附近吸收热量,并在冷壁(容器的裙部)附近释放热量,然后裙壁将热量作为热量传导到地球鳍。这种共轭传热消除了焊接接头处的温度梯度边界。这种现象将导致焊接线上的温度梯度从突然变化变为平稳变化,从而可以保护裙边-头部连接处(即关键区域)免受过度的热应力。实验证明了腔内转移。结果表明,通过裙部(用作散热片)的传导热传递确保了盒中自然对流的延续。控制方程也已经数值求解,并与实验结果进行了比较。

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