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Heat was generated within the seawater using alternating electric current at frequency of 60 Hz, the range of electrical field strength was 6.35 11.04 (V/cm).
Results indicate that the apparent electrical conductivity was reduced by increasing the electrical field strength.
It was demonstrated that the ohmic evaporator performed better at electrical field strength 56 V/cm.
The observations made by Schonland and Craib in South Africa of changes of electrical field strength produced by lightning discharges are in complete accord with the theory.
The influence of the electrical field strength on those differences is discussed in a simple model.
The enhancement of the overall rate of deposition is also drastic and increases with increasing electrical field strength.
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Ohmic evaporator was designed and used to evaporate seawater at electrical field strengths 24, 56 and 87 V/cm using alternating electric current at frequency of 60 Hz.
The trajectories were determined at a range of applied electrical field strengths and over a range of drop sizes and in two scales of experimental geometry.
a Change in DC electrical resistance vs pressure and b electrical conductivity vs electric field strength.
Fig. 3 Change in electrical resistance with pressure and electric field strength.
According to the effective medium theory [26], the average microscopic electric field inside the ceramic matrix filled with conductive particles increases in the region of the PT, which results in a significant decrease in Eb. Figure 4 shows the non-Ohmic properties of the CCTO/Au nanocomposites as a plot of electrical current density (J) vs. electric field strength (E).
More suggestions(12)
electrical field intensity
magnetic field strength
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electrical field dependence
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electrical field distribution
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electrical field profile
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