在金属探矿机的气体环境中,进行了电爆炸基本热物理、气动力和电动力参数的计算

M. I. Baranov, S. Buriakovskyi, V. Kniaziev
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Basis of thermophysics, thermodynamics, theoretical and applied electrical engineering, electrophysics bases of technique of high-voltage and large impulsive currents, basis of heavy-current electronics, theory of explosion and plasma, measuring technique and electromagnetic compatibility. Results . Close formulas are got for the analytical calculation of temperature of Tm and pressures of Pm in a plasma channel, time of tex explosion of explorer, active resistance of Rc and specific conductivity of γp of plasma channel, to entered in explorer Wi and selected in the channel of Wc of thermal energy and speed of vmw of shock acoustic wave in «metallic plasma» at EE in gas of explorer, testing action LIC in the discharge chain of high-voltage generator of impulsive currents (GIC) with the stocked energy of W0. It is rotined that at EE in atmospheric air of copper explorer long 110 mm and by a radius 0,1 mm in the bit chain of GIC of the microsecond temporal range (Imc≈−190 кА; tmc≈42 μs; ωc≈26,18·103 s-1; W0≈121,4 кJ) levels of temperature of Tm, to time of tex explosion, pressures of Pm and speeds of vmw in the area of his explosion can arrive at numeral values: Tm≈121,6·103 K, tex≈3,32 μs; Pm≈14,19·109 Pa and vmw≈4693 m/s. The ways of receipt are formulated in the bit chain of GIC of «record» (most) values of temperature of Tm, pressures of Pm and speeds of vmw. It is set that at EE in atmospheric air of the indicated short thin copper explorer the coefficient of the useful use of ηc of electric energy of W0 of condenser battery of GIC arrives at the numeral value of ηc≈(Wi+Wc)/W0≈0,326 (32,6 %). Arising up in the plasma channel of discharge, initiated EE in gas of explorer, temperature of Tm and pressure of Pm, time of tex explosion of explorer, specific conductivity of γp of channel, thermal energy of Wc and speed of vmw of shock acoustic wave selected in a channel in «metallic plasma» can be certain experimental a way on results decoding of oscillograms of discharge current of ic(t) and high-voltage of uc(t) on an explorer in the chain of GIC. A formula is resulted for the close calculation of critical integral of current of Jk at EE in gas of explorers from different metals. Executed on powerful GIC heavy-current experiments were confirmed by substantive provisions offered approach near the analytical calculation of basic parameters of electro-explosive process for the probed explorer. Originality. 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引用次数: 0

摘要

的目标。接收并分析了等离子体通道中最高温度Tm和Pm压力、探索者tex爆炸时间、Rc有源电阻和等离子体通道γ - p比电导率等工程计算的密切解析相关性;输入探测仪Wi,选择在大脉冲电流(LIC)作用下探测仪气体中电爆炸(EE)等离子体产物中激波分布的热能Wc和高速vmw通道。方法。热物理基础、热力学基础、理论与应用电气工程基础、高压与大脉冲电流技术电物理基础、大电流电子学基础、爆炸与等离子体理论、测量技术与电磁兼容基础。结果。得到了等离子体通道内Tm温度和Pm压力、探测仪tex爆炸时间、Rc有源电阻和等离子体通道γ - p比电导率的解析计算公式,并将其输入探测仪Wi中,选择了探测仪气体EE处“金属等离子体”中热能Wc和激波速度vmw通道。测试高压脉冲电流发生器放电链中的动作LIC,储备能量为W0。结果表明,在微秒时间范围内,铜探测仪长110 mm,半径0.1 mm的大气中EE (Imc≈−190 кА;tmc≈42μs;ωc≈26日18·103 s - 1;W0≈121,4 кJ)级的Tm温度、Tm爆炸时间、Tm压力和Tm爆炸区域内的vmw速度均可达到数值:Tm≈121,6·103 K, tex≈3,32 μs;Pm≈14.19·109 Pa, vmw≈4693 m/s。接收方式在GIC的“记录”(大多数)温度Tm值、Pm压力和vmw速度的钻头链中制定。设定在指定的短薄铜探矿机的大气中EE时,GIC电容器电池W0电能的有效利用系数为ηc≈(Wi+Wc)/W0≈0.326(32.6%)的数值。产生于放电等离子体通道中,探矿器气体中起始EE,温度Tm和压力Pm,探矿器爆炸时间,通道γ - p比电导率,Wc的热能量和在“金属等离子体”通道中选择的冲击声波的vmw速度,可以作为GIC链中探矿器上ic(t)放电电流和uc(t)高压示波结果解码的实验方法。给出了不同金属探矿者气中EE中Jk电流临界积分的近似计算公式。在强GIC大电流上进行的实验得到了实质性的验证,为探测器电爆过程基本参数的近似解析计算提供了方法。创意。通过对插在GIC放电链上的金属探矿机气体中Tm、Pm、tex、Rc、γ - p、Wi、Wc和vmw的EE指示热物理、气动力和电能参数的分析计算,提出了科学的工程依据。实用价值。将电爆过程基本参数在GIC链中进行近似计算,应用于所提供工程的电物理实践,可以方便科学实验室工作人员的劳动,提高工程技术人员在不同电爆技术实际实现过程中的工作效率。
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A calculation of basic thermophysical, gasodynamic and electropower parameters of electric explosion is in the gas environment of metallic explorer
Goal. Receipt and analysis of close analytical correlations for the engineering calculation of maximal temperature of Tm and pressures of Pm in a plasma channel, time of tex explosion of explorer, active resistance of Rc and specific conductivity of γp of plasma channel, to entered in explorer Wi and selected in the channel of Wc of thermal energy and high speed of vmw distribution of shock acoustic wave in the plasma products of electric explosion (EE) in gas of explorer under the action of large impulsive current (LIC). Methodology. Basis of thermophysics, thermodynamics, theoretical and applied electrical engineering, electrophysics bases of technique of high-voltage and large impulsive currents, basis of heavy-current electronics, theory of explosion and plasma, measuring technique and electromagnetic compatibility. Results . Close formulas are got for the analytical calculation of temperature of Tm and pressures of Pm in a plasma channel, time of tex explosion of explorer, active resistance of Rc and specific conductivity of γp of plasma channel, to entered in explorer Wi and selected in the channel of Wc of thermal energy and speed of vmw of shock acoustic wave in «metallic plasma» at EE in gas of explorer, testing action LIC in the discharge chain of high-voltage generator of impulsive currents (GIC) with the stocked energy of W0. It is rotined that at EE in atmospheric air of copper explorer long 110 mm and by a radius 0,1 mm in the bit chain of GIC of the microsecond temporal range (Imc≈−190 кА; tmc≈42 μs; ωc≈26,18·103 s-1; W0≈121,4 кJ) levels of temperature of Tm, to time of tex explosion, pressures of Pm and speeds of vmw in the area of his explosion can arrive at numeral values: Tm≈121,6·103 K, tex≈3,32 μs; Pm≈14,19·109 Pa and vmw≈4693 m/s. The ways of receipt are formulated in the bit chain of GIC of «record» (most) values of temperature of Tm, pressures of Pm and speeds of vmw. It is set that at EE in atmospheric air of the indicated short thin copper explorer the coefficient of the useful use of ηc of electric energy of W0 of condenser battery of GIC arrives at the numeral value of ηc≈(Wi+Wc)/W0≈0,326 (32,6 %). Arising up in the plasma channel of discharge, initiated EE in gas of explorer, temperature of Tm and pressure of Pm, time of tex explosion of explorer, specific conductivity of γp of channel, thermal energy of Wc and speed of vmw of shock acoustic wave selected in a channel in «metallic plasma» can be certain experimental a way on results decoding of oscillograms of discharge current of ic(t) and high-voltage of uc(t) on an explorer in the chain of GIC. A formula is resulted for the close calculation of critical integral of current of Jk at EE in gas of explorers from different metals. Executed on powerful GIC heavy-current experiments were confirmed by substantive provisions offered approach near the analytical calculation of basic parameters of electro-explosive process for the probed explorer. Originality. Offered and the engineering going is scientifically grounded near the analytical calculation of the indicated thermophysical, gasodynamic and electroenergy parameters of Tm, Pm, tex, Rc, γp, Wi, Wc and vmw at EE in gas of metallic explorer, plugged in the discharge chain of GIC. Practical value. Application in electrophysics practice of the offered engineering going near a calculation in the chain of GIC of basic parameters of electro-explosive process will allow to facilitate labour of workers of scientific laboratories and promote efficiency of work of technicians-and-engineers during practical realization by them different electro-explosive technologies.
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