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L&D#1 COMSOL Simulations. 8/9/2013 LRC. Water Conductivity = 0.07 S/m Water Depth = 29.35’ Insulcrete Conductivity = 0.001 S/m Concrete Conductivity = 0.0025 S/m Coated Steel Conductivity = 0.0001 S/m Steel Barge Conductivity = 10 S/m 1 V/in field = 0.394 V/cm = 39.4 V/m = 2.758 A/m²
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L&D#1 COMSOL Simulations 8/9/2013 LRC
Water Conductivity = 0.07 S/m Water Depth = 29.35’ Insulcrete Conductivity = 0.001 S/m Concrete Conductivity = 0.0025 S/m Coated Steel Conductivity = 0.0001 S/m Steel Barge Conductivity = 10 S/m 1 V/in field = 0.394 V/cm = 39.4 V/m = 2.758 A/m² (V/m * S/m = A/m²) Vp Applied = 1.2kV
Water Conductivity = 0.07 S/m Water Depth = 24’ Insulcrete Conductivity = 0.001 S/m Concrete Conductivity = 0.0025 S/m Coated Steel Conductivity = 0.0001 S/m Steel Barge Conductivity = 10 S/m 1 V/in field = 0.394 V/cm = 39.4 V/m = 2.758 A/m² (V/m * S/m = A/m²) Vp Applied = 1.2kV
Water Conductivity = 0.07 S/m Water Depth = 18’ Insulcrete Conductivity = 0.001 S/m Concrete Conductivity = 0.0025 S/m Coated Steel Conductivity = 0.0001 S/m Steel Barge Conductivity = 10 S/m 1 V/in field = 0.394 V/cm = 39.4 V/m = 2.758 A/m² (V/m * S/m = A/m²) Vp applied = 700V
Water Conductivity = 0.07 S/m Water Depth = 12’ Insulcrete Conductivity = 0.001 S/m Concrete Conductivity = 0.0025 S/m Coated Steel Conductivity = 0.0001 S/m Steel Barge Conductivity = 10 S/m 1 V/in field = 0.394 V/cm = 39.4 V/m = 2.758 A/m² (V/m * S/m = A/m²) Vp applied = 700V
Water Conductivity = 0.07 S/m Water Depth = 12’ Insulcrete Conductivity = 0.001 S/m Concrete Conductivity = 0.0025 S/m Coated Steel Conductivity = 0.0001 S/m Steel Barge Conductivity = 10 S/m 1 V/in field = 0.394 V/cm = 39.4 V/m = 2.758 A/m² (V/m * S/m = A/m²) Vp applied = 700V With 9’ draft Barge
Sweeping Array Water Conductivity = 0.07 S/m Water Depth = 29.35’ Insulcrete Conductivity = 0.001 S/m Concrete Conductivity = 0.0025 S/m Coated Steel Conductivity = 0.0001 S/m Steel Barge Conductivity = 10 S/m 1 V/in field = 0.394 V/cm = 39.4 V/m = 2.758 A/m² (V/m * S/m = A/m²) Vp Applied = 1.2kV