The thermohydraulic generator: a pulse power source of intense pressure pulses

W. Hartmann, J. Kieser, K. Rohde
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引用次数: 2

Abstract

Intense pressure pulses, often focussed to form strong shockwaves, are used for a variety of medical and industrial applications. In this contribution, a new principle-the thermohydraulic generation of strong pressure (sound) pulses-is reported which promises a considerably extended lifetime. The energy efficiency is comparable to that of commercial shockwave sources based on the magnetodynamic principle. The underlying physics is that of the generation of strong thermoelastic waves in electrically conducting media, in particular in electrolytes, by direct ohmic heating with intense current pulses. A simplified model is discussed to describe the pressure amplitudes and the influence of the thermoacoustic properties of the electrolyte. The source is scalable over a large range, and is arbitrarily adaptable in its shape. Large-area plane waves with amplitudes of up to 5 MPa have been achieved, as well as a self-focusing geometry with peak pressures of over 70 MPa.
热液发生器:一种脉冲电源,产生强烈的压力脉冲
强烈的压力脉冲,通常集中形成强烈的冲击波,用于各种医疗和工业应用。在这篇贡献中,报告了一种新的原理-强压力(声音)脉冲的热水力产生-有望大大延长寿命。基于磁动力学原理的能量效率可与商用激波源相媲美。其基本的物理原理是在导电介质中,特别是在电解质中,通过用强电流脉冲直接欧姆加热而产生强烈的热弹性波。讨论了一个简化模型来描述压力幅值和电解质热声特性的影响。该源可在大范围内扩展,并且可任意调整其形状。已经实现了振幅高达5 MPa的大面积平面波,以及峰值压力超过70 MPa的自聚焦几何形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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