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由电气不穿透电线爆炸等离子体驱动的复合能量材料产生的冲击波
Yang Meng1, Wenyong Jin1, Ke Zhang1
1State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, People's Republic of China.
一种新的不穿透电线方法简化了水下冲击波技术的能量负载生产,提高了石油和天然气的开采,同时保持了安全性和可控性.
科学领域:
- * 工程 * 工程师 *
- * 材料科学 材料科学
- * * 地质物理学
背景情况:
- *水下冲击波技术对于提高石油和天然气库的透性至关重要,特别是对于成熟度较低的资源.
- *目前使用电线爆炸等离子体的方法需要复杂的负载组件.
- * 实现高强度,安全和可控制的冲击波对于实际应用至关重要.
研究的目的:
- * 提出和评估一种新的能量材料负载设计,使用不穿透的电线驱动复合能量材料.
- * 简化用于水下冲击波生成的能量负载的生产过程.
- * 评估新设计的冲击波参数和能量释放特性.
主要方法:
- * 开发一种使用非穿透电线配置的高能材料负载.
- *实验测试以测量能量沉积和冲击波强度.
- * 施莱伦诊断可视化复合材料能量材料的动态过程,驱动和释放能量.
- *与传统的水下电线爆炸和"无线"结构进行比较分析.
主要成果:
- * 不透的电线设计简化了能量负载的产生.
- * 与传统方法相比,能量沉积和冲击波强度都减少了.
- *冲击波强度仍然高于标准的水下电线爆炸.
- * 施莱伦成像揭示了复合能量材料的逐渐驱动和非缩的能量释放.
- * "无线"结构导致随机电离和弱冲击波由于缓慢的爆炸.
结论:
- * 非穿透性电线方法为水下冲击波生成提供了一种简化方法,用于能量负载制造.
- *虽然冲击波强度降低了,但它仍然适用于需要受控动态岩石破碎的应用.
- * 逐渐释放能量机制需要进一步研究,以优化冲击波生成.
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