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Module 1.6 Cables 1
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Module 1.6 Cables - PtfCarptfcar.org/.../uploads/2019/01/Wind-generation-Module-1.6_Cables.pdf · International standard wire sizes (IEC 60228) 4 mm 50 mm2 240 mm2 1000 mm2 2500 mm2

Mar 13, 2021

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Page 1: Module 1.6 Cables - PtfCarptfcar.org/.../uploads/2019/01/Wind-generation-Module-1.6_Cables.pdf · International standard wire sizes (IEC 60228) 4 mm 50 mm2 240 mm2 1000 mm2 2500 mm2

Module 1.6Cables

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Page 2: Module 1.6 Cables - PtfCarptfcar.org/.../uploads/2019/01/Wind-generation-Module-1.6_Cables.pdf · International standard wire sizes (IEC 60228) 4 mm 50 mm2 240 mm2 1000 mm2 2500 mm2

Generation Side. Cabling.

Cables are an utmost critical component of every system, often overlooked.His correct selection, sizing and installation methods are key for the system performance.Cutting corners or being cheap on cables has dramatic financial impacts in the long term.

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Page 3: Module 1.6 Cables - PtfCarptfcar.org/.../uploads/2019/01/Wind-generation-Module-1.6_Cables.pdf · International standard wire sizes (IEC 60228) 4 mm 50 mm2 240 mm2 1000 mm2 2500 mm2

Generation Side. Cabling Sizing.

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Page 4: Module 1.6 Cables - PtfCarptfcar.org/.../uploads/2019/01/Wind-generation-Module-1.6_Cables.pdf · International standard wire sizes (IEC 60228) 4 mm 50 mm2 240 mm2 1000 mm2 2500 mm2

Generation Side. Cable Insulation.

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Page 5: Module 1.6 Cables - PtfCarptfcar.org/.../uploads/2019/01/Wind-generation-Module-1.6_Cables.pdf · International standard wire sizes (IEC 60228) 4 mm 50 mm2 240 mm2 1000 mm2 2500 mm2

Generation Side. Cable Color Code.

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Page 6: Module 1.6 Cables - PtfCarptfcar.org/.../uploads/2019/01/Wind-generation-Module-1.6_Cables.pdf · International standard wire sizes (IEC 60228) 4 mm 50 mm2 240 mm2 1000 mm2 2500 mm2

Generation Side. Cable Capacity.

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Page 7: Module 1.6 Cables - PtfCarptfcar.org/.../uploads/2019/01/Wind-generation-Module-1.6_Cables.pdf · International standard wire sizes (IEC 60228) 4 mm 50 mm2 240 mm2 1000 mm2 2500 mm2

Generation Side. Cable Loses.

Voltage Drop formula for Single Phase and DC Circuits.

VD = I × (2 × L × R / 1000)

Voltage Drop Calculation and formula for Three Phase system.

For 3 Phase 3 Wire system.VD = 0.866 × I × RVD = 0.866 × I × 2 × L× R/ 1000

For 3 Phase 4 Wire systems.VD = 0.5 × I × RVD = 0.5 × I × 2 × L× R/ 1000 Where,

VD = Voltage Drop in Volts.I = Wire Current in Amperes.R = Wire Resistance in Ohms (Ω) [Ω/km].L = wire distance in meters.

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Page 8: Module 1.6 Cables - PtfCarptfcar.org/.../uploads/2019/01/Wind-generation-Module-1.6_Cables.pdf · International standard wire sizes (IEC 60228) 4 mm 50 mm2 240 mm2 1000 mm2 2500 mm2

Generation Side. Cable Loses.

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Page 9: Module 1.6 Cables - PtfCarptfcar.org/.../uploads/2019/01/Wind-generation-Module-1.6_Cables.pdf · International standard wire sizes (IEC 60228) 4 mm 50 mm2 240 mm2 1000 mm2 2500 mm2

Generation Side. Cable Loses.

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Page 10: Module 1.6 Cables - PtfCarptfcar.org/.../uploads/2019/01/Wind-generation-Module-1.6_Cables.pdf · International standard wire sizes (IEC 60228) 4 mm 50 mm2 240 mm2 1000 mm2 2500 mm2

Generation Side. Cable Loses.

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