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Turning off low and high currents in a transmitter loop used in the transient electromagnetic method

机译:在瞬态电磁法中使用的发射器环中关闭低频和高电流

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In near-surface transient electromagnetic studies, it is desirable to measure the transient response starting from the earliest possible time. This requires the current in the transmitter loop to be switched off quickly, which necessitates working with a low transmitter current. As for deep-target transient electromagnetic studies, the transmitter current is as high as possible. The transmitter current's turn-off waveform and total duration affect the transient voltage response, especially at early times, which is to be accounted for when interpreting transient electromagnetic data. This article discusses the difference in switching off low and high current in a horizontal loop used as the source of the primary magnetic field in the transient electromagnetic method. Low and high currents are turned off in fundamentally different ways. When the current to be switched off is low, the loop can be represented as a symmetric combination of two transmission lines grounded at the middle of the loop perimeter. Such a representation of a loop allows calculating the current turn-off waveform at any point of the loop. The waveform and total duration of switching off a low current does not depend on its magnitude, but is determined by the period of natural oscillations of the current in the loop and the resistance of a shunting resistor. Switching off a low current in a loop can be represented as the sum of stepped current waves travelling along the loop wire. As a consequence, the current at different points of the loop perimeter is turned off at different times. In contrast to a low current, a high current is switched off linearly in time and synchronously at all points of the loop perimeter. The wave phenomena appear only at the very beginning of the current shutdown for a time interval that is much less than the total current turn-off duration. Presentation of the loop using a simple lumped-circuit model predicts the waveform and duration of the high current turn-off that coincide with the measured ones. There are two reasons why the article may be of interest to those engaged in the theory and/or practice of electromagnetic geophysical methods. First, it contributes to a general understanding of how the current in the transmitter loop is turned off. Second, the article shows how the parameters of a transmitter loop determine the current turn-off duration and thus the minimum depth of the transient electromagnetic sounding method.
机译:在近表面瞬态电磁研究中,希望从最早的时间开始测量瞬态响应。这需要快速关闭发射器环路中的电流,这需要使用低发射器电流。至于深针瞬态电磁研究,发射器电流尽可能高。发射机电流的关闭波形和总持续时间会影响瞬态电压响应,尤其是在早期时,在解释瞬态电磁数据时要考虑。本文讨论了在瞬态电磁法中用作初级磁场源的水平环路下关闭低电平和高电流的差异。低电流以根本不同的方式关闭。当要关闭的电流低时,环路可以表示为在环形周长的中间接地的两个传输线的对称组合。这种循环的这种表示允许在循环的任何点计算电流关闭波形。开关低电流的波形和总持续时间不依赖于其幅度,而是由环路中电流的自然振荡周期和分流电阻的电阻确定。关闭循环中的低电流可以表示为沿环路行进的阶梯式电流波之和。结果,环形周长的不同点处的电流在不同的时间关闭。与低电流相比,在循环周长的所有点处,高电流随时间线性地切换并同步地关闭。波现象仅出现在当前关断的时开始的时间间隔远小于总电流关闭持续时间。使用简单的集总电路模型呈现循环预测的波形和持续时间与测量的电流关断的波形和持续时间。这些原因有两个可能对从事电磁地球物理方法的理论和/或实践的人感兴趣的原因。首先,它有助于一般地了解发送器循环中的电流如何关闭。其次,本文示出了发射器环路的参数如何确定当前的截止持续时间,从而确定瞬态电磁探测方法的最小深度。

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