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Feasibility Study for Add-On Project for Gas Turbine Power Station in South Region of Iraq PDF

213 Pages·2012·13.12 MB·English
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Preview Feasibility Study for Add-On Project for Gas Turbine Power Station in South Region of Iraq

Study on Economic Partnership Projects in Developing Countries in FY2015 Feasibility Study for Add-On Project for Gas Turbine Power Station in South Region of Iraq Final Report February 2016 Prepared for: Ministry of Economy, Trade and Industry Prepared by: Toyota Tsusho Corporation Reproduction Prohibited ABBREVIATIONS Abbreviation Standard nomenclature ACB Air Circuit Breaker AVR Automatic Voltage Regulator BOO Build Own Operate BoP Balance of Plant BOT Build Operate Transfer BPD Barrels Per Day CAPEX Capital Expenditure CC Combined Cycle CCGT Combined Cycle Power Plant CCR Central Control Room CDM Clean Development Mechanism CEMS Continuous Emission Monitoring System CPA Coalition Provisional Authority CPH Condensate Pre-Heater CST Centi-Stokes CT Current Transformer DCS Distributed Control System DLN Dry Low NO x DM Demineralization EDG Emergency Diesel Generator Abbreviation Standard nomenclature EDI Electro Deionization EHC Electro Hydraulic Control EIA Environmental Impact Assessment EIRR Economic Internal Rate of Return ENRP Electricity Net work Rehabilitation EPC Environment Protection Center EPC Engineering, Procurement, Construction EPIC Environment Protection and Improvement Council EPID Environmental Protection and Improvement Directorate ESSAF Environmental and Social Screening and Assessment Framework ETP Effluent Treatment Plant FCB Field Circuit Breaker FGL Finished Ground Level FIRR Financial Internal Rate of Return G Giga; billion GCB Generator Circuit Breaker GDP Gross Domestic Product GE General Electric GIS Gas Insulated Switchyard GSUT Generator Step-up Transformer GTG Gas Turbine Generator h hour Abbreviation Standard nomenclature HMI Human Machine Interface HP / LP High Pressure / Low Pressure HRSG Heat Recovery Steam Generator HSD High Speed Diesel HV/MV/LV High Voltage / Medium Voltage / Low Voltage ID raqi Dinars IEC International Electrotechnical Commission IEEE Institute of Electrical & Electronics Engineer IMF International Monetary Fund IPBD Isolated Phase Bus duct IPP Independent Power Producer ISRB Iraq Strategic Review Board JBIC Japan Bank for International Cooperation JEM Japan Electrical Manufacturer’s Association Manufacturer’s Standard JIS Japanese Industrial Standards k Kilo; thousand LVS Large Video Screen M Mega; million m3 Cubic Meter MCW Main Cooling Water MOE Ministry of Electricity MOEN Ministry of Environment Abbreviation Standard nomenclature MOO Ministry of Oil NFPA National Fire Protection Association NOX Nitrogen Oxides OEM Original Equipment Manufacturer OFAF Oil Forced Air Forced OFFP Oil For Food Programme OLTC On Load Tap Changer ONAN Oil Natural Air Natural OPEC Organization of Petroleum Export Countries OPEX Operating Expenses ORHA Office of Reconstruction and Humanitarian Assistance OWS Operator Work Station PLC Programmable Logic Control PMC Project management Committee ppm perts per million RCC Reinforced Cement Concrete Ro/Ro Shipment Roll On/Roll Off Shipment SC Simple Cycle SCGT Simple Cycle Gas Turbine SCR Selective Catalytic Reduction SOX Sulfur Oxides Sp. Gr. specific gravity Abbreviation Standard nomenclature STG Steam Turbine Generator SWAS Steam and Water Analysis System TCF Trillion Cubic Feet TCM Trillion Cubic Meter TTC Toyota Tsusho Corporation UAT Unit Auxiliary Transformer UCD Unit Control Desk UN United Nations UNDP United Nations Development Programme UNEP United Nations Environment Programme UPS Uninterruptible Power Supply US$ United States Dollars V Volt W Watts WB the World Bank WCC Water Cooled Condenser Table of Contents Chapter Contents Page Summary S-1 Chapter 1 Overview of Electricity Sector in Iraq 1-1 1. Electricity Sector 1-2 2. Current Circumstances MOE has faced 1-3 3. Gas Turbine Power Station in South of Iraq 1-5 Chapter 2 Objective, Organization and Method of Study 2-1 1. Objective of Study 2-2 2. Organization of Study 2-2 3. Method, Schedule of Study 2-3 Chapter 3 Project Contents and its Technological Feasibility 3-1 1. Background and Objectives 3-2 2. Contents and Technical Feasibility 3-4 Chapter 4 Power System Analysis for Nasiriyah Gas Turbine Power Station 1. Demand Forecast 4-1 2. Peak Load by Region 4-1 3. Power System Development Plan 4-2 4. Power System Analysis 4-16 5. Nasiriyah Gas Power Station 4-23 6. Conclusion 4-35 Chapter 5 Accessibility of Fuel and Water Resources 5-1 1. Crude Oil 5-2 2. Natural Gas 5-6 3. Fuel to Candidate Power Stations 5-8 4. Access of Water Resource 5-9 5. Conclusion 5-11 C-1 Chapter Contents Page Chapter 6 Environmental and Social Feasibility 6-1 1. Premise/Background 6-2 2. Current and Plan of Power Stations in Nasiriyah 6-2 3. Overview of Environment-related Laws and 6-4 Regulations in Iraq 4. Outline of Environmental Impact Assessment in Iraq 6-5 5. Consideration of Environment and Social Feasibility 6-7 for this Project 6. JBIC Guideline for Confirmation of Environmental 6-22 and Social Considerations 7. Conclusion 6-25 Chapter 7 Financial and Economic Feasibility 7-1 1. Project Cost Estimation 7-2 2. Financial and Economic Analysis 7-4 Chapter 8 Project Implementation Schedule 8-1 1. Implementation Schedule 8-2 Chapter 9 Organization of Implementation of Project 9-1 1. Organization of MOE 9-2 2. Organization of MOE for the Project 9-2 Chapter 10 Technological Advantages of Japanese Companies 10-1 1. Competitiveness of Japanese Companies 10-2 C-2 Chapter Contents Page Chapter 11 Project Implementation 11-1 1. Engineering 11-2 2. Transportation Conditions and Security Escort 11-23 3. Construction (Installation and Commissioning) 11-30 4. Plant Operation Concept 11-35 Chapter 12 Conclusion and Recommendation 12-1 1. Conclusion 12-1 2. Recommendation 12-3 C-3

Description:
convert the existing simple cycle gas turbine (“SCGT”) power stations to the combined cycle gas turbine generate the electricity by the steam turbine generator (“STG”). G. Compressor air extraction from gas turbine = 0.
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