solar and wind power projects - icecubeeng.com

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ENGINEERING, PROCUREMENT & CONSTRUCTION (EPC) FOR GRID CONNECTED SOLAR AND WIND POWER PROJECTS Ÿ Earthing and Lightning Systems Wind Energy is expected to have a growing role within electricity generation portfolios. Planning, developing and integrating wind projects across the social, environmental and technical landscape will be a challenge faced by customers. IceCube effectively meets this challenge with experience, technical and business expertise. Recognizing that one size does not meet all needs, IceCube provides the services and supports for all sizes and phases of wind farm installations in India. Major Components of a Grid Connected Solar Power Plant Solar Power Plant is divided in 5MW or 6.25MW Blocks which consist of Ÿ Solar Modules Ÿ Centralized Switchgear and Control Room Ÿ Evacuation Switchyard and ABT Tariff Metering Ÿ DC Cables and FO cables Ÿ AC or DC Combiner Boxes Ÿ LT and HT Cables Ÿ Inverter Station with Centralized Inverter / Block Substation comprising of HT Panel, Inverter Duty Transformer, LT Panel, Bus Duct, SCADA Panel Ÿ Centralized Inverters / String Inverters Introduction to IceCube IceCube is a leading Engineering Design Services and EPC Contracting Services provider for Electrical Engineering, Solar Engineering and Instrumentation & Control Engineering. We can design and execute Grid Connected Solar Power Plants, Roof Top Solar Power Installations and Industrial Solar Power Installations. We have a design centre at Ahmedabad, India from where we provide Engineering Design Services with International Standards. Design Engineers and Contractors www.icecubeeng.com 150 MW Grid Connected Wind Power Project, SECI - IV, Kutch, Gujarat. 150 MW Grid Connected Wind Power Project, SECI - III, Kutch, Gujarat. 20MW Grid Connected Solar Power Project - Kanasar, Rajasthan.

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ENGINEERING, PROCUREMENT & CONSTRUCTION (EPC)

FOR GRID CONNECTED SOLAR AND WIND POWER PROJECTS

Ÿ Earthing and Lightning Systems

Wind Energy is expected to have a growing role within electricity generation portfolios. Planning, developing

and integrating wind projects across the social, environmental and technical landscape will be a challenge

faced by customers. IceCube effectively meets this challenge with experience, technical and business

expertise. Recognizing that one size does not meet all needs, IceCube provides the services and supports for

all sizes and phases of wind farm installations in India.

Major Components of a Grid Connected Solar Power Plant

Solar Power Plant is divided in 5MW or 6.25MW Blocks which consist of

Ÿ Solar Modules

Ÿ Centralized Switchgear and Control Room

Ÿ Evacuation Switchyard and ABT Tariff Metering

Ÿ DC Cables and FO cables

Ÿ AC or DC Combiner Boxes

Ÿ LT and HT Cables

Ÿ Inverter Station with Centralized Inverter / Block Substation comprising of HT Panel, Inverter Duty

Transformer, LT Panel, Bus Duct, SCADA Panel

Ÿ Centralized Inverters / String Inverters

Introduction to IceCube

IceCube is a leading Engineering Design Services and EPC Contracting Services provider for Electrical

Engineering, Solar Engineering and Instrumentation & Control Engineering. We can design and execute Grid

Connected Solar Power Plants, Roof Top Solar Power Installations and Industrial Solar Power Installations. We

have a design centre at Ahmedabad, India from where we provide Engineering Design Services with

International Standards.

Design Engineers and Contractors

www.icecubeeng.com

150 MW Grid Connected Wind Power

Project, SECI - IV, Kutch, Gujarat.

150 MW Grid Connected Wind Power

Project, SECI - III, Kutch, Gujarat.

20MW Grid Connected Solar Power

Project - Kanasar, Rajasthan.

Ÿ 33 KV transmission line: This runs adjacent to each wind mill and Power generated from each wind mill is

connected to this transmission line

Major Components of a Wind Power Farm

Normally developers select Wind Mills of 2MW Capacity

Ÿ Windmill Substation: This can be Containerized substation having Power Transformer, HT Switchgear and

Connection facility to Transmission Line. Substation can be made separately also with Separate Power

Transformer, HT Switchgear and H Pole with H T Insulators.

Ÿ Design of HT Panel, LT Panel, Busduct, IDT, Battery Charger, UPS and SCADA

Ÿ HT Cable Schedule

Ÿ Power Transformer/ Inverter Duty Transformer Design and Sizing

Ÿ FO Cable Schedule

Ÿ Evacuation Switchyard Design

Ÿ DC Engineering which includes detailed engineering drawings for Solar Tables, Inverter & AC/DC boxes

Ÿ LT Cable Schedule

Ÿ Centralized Switchgear and Control Room

Ÿ Table Formation and Solar Block Design

Ÿ Planning for Array Layout as per various plot plans

Ÿ Tracker or Fixed structure

Electrical Design

Ÿ Array Layout Block Wise with Solar Modules, String Inverter / Centralized Inverter, AC or DC combiner

Boxes

Ÿ HT Cable Routing Layout

Ÿ DC Cable Routing Layout

Ÿ Array Earthing Layout Block wise including Earthing Grid

Ÿ Centralized Inverter Building with Busduct, Inverter Duty Transformer, HT Panel Block Wise

Ÿ Block Substation with HT Panel, LT Panel, Power Transformer, Busduct, SCADA Panel

Ÿ Evacuation Switchyard: This is normally 66 KV or 132 KV depending upon transmission system and this

includes a Step up Transformer and CT / PT and Tariff based Metering.

Ÿ Solar Modules Angle as per Solar Radiation of the place

Ÿ Key Single Line Diagram

Ÿ LT Cable Routing Layout

Ÿ Lightning Protection Layout

Solar Engineering

Ÿ Solar Modules selection

Ÿ Inverter Selection : String Inverter / Centralized Inverter

Tel: +91 79 4001 2500

[email protected]

[email protected]

905, Silicon Tower, Off. C.G.

Road, Ahmedabad - 380 006.

Gujarat, India

Design Engineers and Contractors

www.icecubeeng.com