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Simulation of cracks in tungsten under ITER specific transient heat loads

机译:在ITER瞬态热载荷下模拟钨中的裂纹

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The results of the experiments performed in quasistationary plasma accelerator (QSPA), simulating the type I ITER ELM heat loads on the tungsten divertor tiles, has been analysed. An analytical model has been proposed to explain the crack pattern with two characteristic crack depth of ~500 μm and of ~50 μm. It was assumed that the crack pattern observed in the experiment can be explained by the thermostress, generated at the interface between thin resolidified layer at the tungsten surface and the underlying tungsten bulk. Numerical simulation using the modified PEGASUS-3D code proved that this mechanism reproduces the experimentally observed crack pattern.
机译:分析了准静态等离子体加速器(QSPA)中模拟I型ITER ELM钨分流器瓦上热负荷的实验结果。提出了一个解析模型来解释具有两个特征裂纹深度〜500μm和〜50μm的裂纹模式。可以认为,在实验中观察到的裂纹模式可以用热应力来解释,该热应力在钨表面的薄固化层和下面的钨块之间的界面处产生。使用修改后的PEGASUS-3D代码进行的数值模拟证明,该机制可再现实验观察到的裂纹模式。

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