用激波管研究高温气体的现状与发展

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从50年代起,激波管的研究已与原子分子物理学、光谱学、天体物理、化学动力学、等离子体动力学、喷气推进技术燃烧、爆炸、化工技术以及力学的各分支学科,都有一定的相互影响。到60年代,激波管及共研究的对象,差不多快要形成一门专门技术领域。世界上各研究单位的激渡管工作虽然各有不同,但激波管工作的内在特色,如实验工具及理论处理方法等,却有共同性。这种发展导致从1965年起两年一次定期召开激波管国际会议,有几十个国家的几百名代表参加,进行相当广泛的国际交流。 用激波管进行高温气体方面的研究,经过近二十年的发展,已得到了广泛的重视,在一 Since the 1950s, the research on shock tube has been closely linked with the branches of atomic molecular physics, spectroscopy, astrophysics, chemical kinetics, plasma dynamics, jet propulsion combustion, explosion, chemical engineering and mechanics. A certain interaction. By the 1960s, shockwave tubes and their counterparts were about to form a specialized area of ​​expertise. Although there are differences in the work of the extorting pipe in all the research units in the world, the inherent characteristics of shockwave pipe work, such as the experimental tools and theoretical methods of handling, have their common ground. This development led to the regular convening of the International Conference on Shock Wave Tube, which was held every two years from 1965, with hundreds of delegates from dozens of countries participating in a fairly extensive international exchange. With shock tube for high-temperature gas research, after nearly 20 years of development, has been widely valued, in a
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