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By inserting microelectrodes into the giant nerve fibres of the squid Loligo forbesi, they were able to show that the electrical potential of a fibre during conduction of an impulse exceeds the potential of the fibre at rest, contrary to the accepted theory, which postulated a breakdown of the nerve membrane during impulse conduction.
Transformer fault detection during impulse tests has always been an important topic in power engineering.
The results indicate that the two damper configurations exhibit different force displacement characteristics during impulse loading.
Results indicate that during impulse starting, the flow field is divided into three zones with different aerodynamic parameters by primary shock and upstream-facing shock.
The mass flux distribution of flow field is non-uniform because of the interaction between shock and boundary layer, so that the mass flow rate at throat is unsteady during impulse starting.
These applications include: fault detection in transformers during impulse test [16], prediction and control of fuel cell operating conditions [17], load forecasting process in a deregulated power system [18], fault detection [19, 20], modeling of nonlinear dynamic systems [21], power quality events recognition [22] and voltage disturbance classification [23].
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A direct method is proposed to rapidly fragment bodies during impulse-based discrete element method simulations of multiple body interactions.
The correct legends of Figs. 3 and 4 are listed below: Fig. 3 Bulls-eye plots of the distribution of external myocardial work in the canine left ventricle during normal impulse conduction (atrial pacing) and during asynchronous activation, as induced by RV apex and LV free wall pacing.
In this paper, the principles of vector space representation of signals are effectively adopted in the measured transient signals during the impulse testing of transformers and shunt reactor.
In this paper, a 3D simulation using the FEA software MAXWELL has been applied to study the magnetic field distribution during an impulse electromagnetic forming process.
From the seismic moment released during the impulse, we have estimated the average slip and stress drop over the fault to be 50 m and 40 MPa, respectively.
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