Exact(3)
The length and cross section of the monopole mounted on the locomotive top is 70 and 25 × 25 mm, respectively, and the feeding gap between locomotive top plane and monopole is 10 mm.
The length and cross section of the transmitting half-wavelength dipole are 150 and 25 × 25 mm, respectively, and the feeding gap between two arms of the dipole is 10 mm.
The feeding gap of the locomotive antenna is located at the coordinates of (755, 105, 190 ΔS), and the feed gap of the transmitting dipole is located at (105, 172, 254 ΔS).
Similar(57)
The lumped port excitation with 50 ohm internal resistance is located in the feed gap.
The radiation pattern is calculated from the simulations by placing an x-polarized electric dipole source at the feed gap of the dipole antenna.
The feed gap size is 1.8 mm, hence the length of each arm of dipole is 73.5 mm and radius is 1.8 mm.
(c) The corresponding far-field radiation pattern which is excited by placing an x-polarized electric dipole source at the feed gap of the dipole antenna.
Because the large field enhancements occurred in the gap region of the nanoantenna, an electric dipole source is placed at the feed gap of the dipole antenna to simulate the far-field radiations.
The far-field radiation for the case of H = 20 nm at λ = 671 nm by exciting an x-polarized electric dipole source which is placed at the feed gap of the dipole antenna is shown in Figure 6c.
To study the far-field radiation pattern by the nanoantenna in the DESR structure with and without concentric rings, we assume that an x-polarized electric dipole source is placed at the feed gap of the dipole antenna and calculate the far-field radiations in our simulations.
The effects of feed flow rate, feed temperature, gap width, coolant flow rate, feed concentration, and the material of membrane supporting plate on the permeate flux are investigated experimentally.
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