热等离子体喷涂技术是现代表面工程的重要手段之一。
Thermal plasma spraying is one of the important technologies in modern surface engineering.
涉及到等离子体物理学、电磁场理论、现代雷达、机械与电气工程等众多领域。
It includes plasma physics, theory of electromagnetic field, radar technology, mechanical and electrical engineering.
将主从式并行遗传算法应用于托卡马克等离子体平衡位形优化问题,这是一个工程中实际存在的大搜索空间优化问题。
The optimization of tokamak plasma equilibrium shape, which is considered as a problem with large search space, is solved using master-slave PGAs.
等离子体RCS减缩技术具有潜在的工程应用价值。
The technology of plasma RCS reduction has potential engineering value.
水约束层可以提高等离子体的压力和脉宽,已经成功应用于激光喷丸工程化加工。
Water confinement regime can enhance the amplitude and duration of plasma pressures, and was widely applied in laser peening.
近期主要从事于大功率微波工程和等离子体物理实验研究。
His current research interests mainly include high power microwave engineering and experimental research of plasma physics.
本文介绍了中科院等离子体所ht - 6m托卡马克装置新的控制系统的设计方法、工程实现及实验运行结果。
The design, realization and experiment result of new control system of HT-6M tokamak based PC real time control have been described.
由于传统的DBD在气体电离方法方面存在许多问题,致使大气压条件下放电空间内气体的电离度很低,无法满足非平衡等离子体化学工程的需要。
There are many unsolved problems in conventional DBD gas ionization technique, resulting in lower gas ionizability, which cannot be used in non-equilibrium plasma chemistry.
等离子体处理也应用于组织工程学及生物医学等。
Plasma surface modification has also been applied to fibers and fiber meshes used as scaffolds in tissue engineering and biomedical applications.
通过对不同结构等离子体射流激励器流场特性的研究,将为等离子体激励器的设计和工程应用奠定基础。
With the increase of the Angle, the orientation of the jet flow changes from vertical to parallel. This research may serve as a basis for the design and application of plasma actuators.
不同结构等离子体射流激励器流场特性的研究,将为等离子体激励器的设计和工程应用奠定基础。
With the increase of the Angle, the orientation of jet flow changed from vertical to parallel. This research is the base of the design and application of the plasma actuators.
不同结构等离子体射流激励器流场特性的研究,将为等离子体激励器的设计和工程应用奠定基础。
With the increase of the Angle, the orientation of jet flow changed from vertical to parallel. This research is the base of the design and application of the plasma actuators.
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