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Numerical Simulation and Experiment for Underwater Shock Wave in Newly Designed Pressure Vessel for Food Processing

机译:新型食品加工压力容器中水下冲击波的数值模拟与实验

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Modern eating habits depend in large part on the development of food processing technology. Thermal treatments are often performed in the conventional food processing, but it can cause discoloration and loss of nutrients of the food by thermal processing or treatment. On the other hand, food processing using an underwater shock wave has little influence of heat and its processing time is very short, preventing the loss of nutrients.In this research optical observation experiment and the numerical simulation were performed, in order to understand and control the behavior of the underwater shock wave in the development of the processing container using an underwater shock wave for the factory and home.In this experiment a rectangular container was used to observe the behavior of the underwater shock wave. In the experiment, the shock wave was generated by using explosiveon the shock wave generation side. The shock wave, which passed through the phosphor bronze and propagated from the aluminum sidewall, was observed on the processing container side.Numerical simulation of an analogous experimental model was investigated, where LS-DYNA software was used for the numerical simulation.The comparative study of the experiment and the numerical simulation was investigated. The behavior of a precursor shock wave from the device wall was able to be clarified. This result is used for development of the device in numerical simulation.
机译:现代饮食习惯在很大程度上取决于食品加工技术的发展。热处理通常在常规食品加工中进行,但是通过热处理或加工会导致食品变色和营养成分的损失。另一方面,使用水下冲击波的食品加工对热量的影响很小,并且加工时间很短,从而防止了营养成分的流失。 在这项研究中,进行了光学观察实验和数值模拟,以了解和控制在工厂和家庭中使用水下冲击波处理容器开发过程中的水下冲击波的行为。 在该实验中,使用矩形容器观察水下冲击波的行为。在实验中,冲击波是通过使用爆炸物产生的 在冲击波产生方面。在处理容器侧观察到穿过磷青铜并从铝侧壁传播的冲击波。 研究了类似实验模型的数值模拟,其中使用LS-DYNA软件进行了数值模拟。 对实验与数值模拟的对比研究进行了研究。能够弄清来自设备壁的前驱冲击波的行为。该结果用于数值模拟中的设备开发。

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