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Inductive measurement of plasma jet electrical conductivity.

机译:电感测量等离子体射流的电导率。

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Measurement of plasma jet electrical conductivity has utility in the development of explosively driven MHD energy converters as well as magnetic flux compression reaction chambers for nuclear/chemical pulse propulsion and power. Within these types of reactors, the physical parameter of critical importance to underlying MHD processes is the magnetic Reynolds number, the value of which depends upon the product of plasma electrical conductivity and velocity. Therefore, a thorough understanding of MHD phenomena at high magnetic Reynolds number is essential, and methods are needed for the accurate and reliable measurement of electrical conductivity in high-speed plasma jets. It is well known that direct measurements using electrodes suffer from large surface resistances, and an electrode-less technique is desired. To address this need, an inductive probing scheme, originally developed for shock tube studies, has been adapted to measure plasma jet conductivities. In this method, the perturbation of an applied magnetic field by a plasma jet induces a voltage in a search coil, which, in turn, can be used to infer electrical conductivity through the inversion of a Fredholm integral equation of the first kind. A 1-inch diameter probe was designed and constructed, and calibration was accomplished by firing an aluminum slug through the probe using a light-gas gun. Exploratory laboratory experiments were carried out using plasma jets expelled from 15-gram shaped charges. Measured conductivities were in the range of 3 kS/m for unseeded octol charges and 20 kS/m for seeded octol charges containing 2% potassium carbonate by mass.
机译:等离子体射流电导率的测量在爆炸性驱动的MHD能量转换器以及用于核/化学脉冲推进和动力的磁通压缩反应室的开发中很有用。在这些类型的反应堆中,对基本的MHD过程至关重要的物理参数是雷诺数,其值取决于等离子体电导率和速度的乘积。因此,对高雷诺数下的MHD现象有一个透彻的了解是必不可少的,并且需要一些方法来准确,可靠地测量高速等离子体射流中的电导率。众所周知,使用电极的直接测量具有较大的表面电阻,因此需要无电极技术。为了满足这一需求,最初为激波管研究而开发的感应探测方案已经适应于测量等离子体射流电导率。在这种方法中,等离子流对施加的磁场的扰动在搜索线圈中感应出一个电压,该电压又可以用来通过对第一类Fredholm积分方程进行反演来推断电导率。设计并构造了一个直径为1英寸的探头,并使用轻气枪通过将铝块穿过探头发射来进行校准。使用从15克形状的装药中排出的等离子射流进行了探索性实验室实验。对于非种子的辛醇装料,所测量的电导率在3 kS / m的范围内,对于含有2%碳酸钾的种子辛醇装料,电导率的范围在20 kS / m的范围内。

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