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“Engineering Custom Made Photovoltaic Solutions for the Lebanese Industry ”

“Engineering Custom Made Photovoltaic Solutions for the Lebanese Industry ”. Presented by Eng. Elias Abou Chedid Head of Technical Department Elements Sun & Wind. The Company | Concept | Case Study | Economical Study | Conclusion. About the Company:. Name: . Elements Sun & Wind.

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“Engineering Custom Made Photovoltaic Solutions for the Lebanese Industry ”

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  1. “Engineering Custom Made Photovoltaic Solutions for the Lebanese Industry ” Presented by Eng. Elias AbouChedid Head of Technical Department Elements Sun & Wind

  2. The Company | Concept | Case Study | Economical Study | Conclusion • About the Company: • Name: • Elements Sun & Wind • Slogan: • Clean Power Providers • Establishment: • Feb 2011 • Address: • HorchTabet- Lebanon • Field of Work: • Engineering and Procurement Contracting • Size: • 25 Employees (3 Engineers) • PV Built Capacity: • 400+ kWp • Scope of Work: • Engineering, Consultancy, Economic Analysis,Equipment supply… ECOrient 2014

  3. The Company | Concept | Case Study | Economical Study | Conclusion • About the Company: • Mission: We deliver quality solutions and services • Vision: • To reinforce our presence in the Lebanese market and further extend abroad and becomea regional player in the MENA region . • Values: • Credibility • Safety • Customized Solutions • Excellence • Team Work ECOrient 2014

  4. The Company | Concept | Case Study | Economical Study | Conclusion • The Way we See the PV Market in Lebanon: Find the Most Adapted Type for Each Application ?!!! Photovoltaic Systems Grid Connected Stand Alone Public Grid (Net metering) Private Grid (PV/Diesel) With Batteries (Remote areas, Backup, Street lighting,..) Without Batteries (Special Applications) -Grid Quality - High lifecycle cost -Low Prices - Short lifetime - Pollution ECOrient 2014

  5. The Company | Concept | Case Study | Economical Study | Conclusion PV Panels • Concept of a PV Diesel system: Inverter 5 ¢/kWh Public Grid Load 10 ¢/kWh Diesel Genset 28 ¢/kWh ECOrient 2014

  6. The Company | Concept | Case Study | Economical Study | Conclusion • The PV system injects power to: ∞ ? • The Public Grid • The Diesel Genset Grid Is this Solution Technically Feasible? > > > 2000MW 1MW ECOrient 2014

  7. The Company | Concept | Case Study | Economical Study | Conclusion • The PV power is synchronized with the Generators Power: P P P Load Gen PV • For a determined load, any variation of the PV power will Directly affect the Power produced by the Generators (indirect relation) ECOrient 2014

  8. The Company | Concept | Case Study | Economical Study | Conclusion • The generator may work below its minimum acceptable load • If the power taken from the PV system is too big: Reduce Service life • - Poor Combustion • - Deposit forming on turbo and exhaust • - Oil and lubricant consumption • Reverse current will be injected to the Stator of the Generator causing it to act as a load Damage the Generator • - Stator Will heat and burn • If the variation of the PV power is big and relatively fast: Poor Grid Quality • - Unstable Frequency • - High Distortion Levels • - Over/Under Voltage Complete Shut Down of the Grid • Low spinning reserve: Generators incapable of taking full power of the PV system ECOrient 2014

  9. The Company | Concept | Case Study | Economical Study | Conclusion PV Panels Inverter Increase PV Power Lower PV Power Controller Load Diesel Genset ECOrient 2014

  10. The Company | Concept | Case Study | Economical Study | Conclusion The System Is Implemented, Tested and Already in Service 5th in the World 1st in the Middle East ECOrient 2014

  11. The Company | Concept | Case Study | Economical Study | Conclusion • Case Study: • API- ZoukMosbeh • -Location: • -Average Daily Load: • 450-600kW • - Power Sources: • Only Gensets • - Available Genset Power: • 3 X 635 KVA • - Yearly Diesel Consumption: • 900 Tons • -Installed PV Power: • 192 kWp • - Inverters: • 8 X 20KW • -Occupied Roof Surface: • 1200m² ECOrient 2014

  12. The Company | Concept | Case Study | Economical Study | Conclusion • What can this PV System technically achieve? • 245,000 kWh annual energy yield • 70,000 litters/year of fuel consumption reduction • 170 tons/year of CO2 emission reduction • 4.6 tons/year of SO2 emission reduction ECOrient 2014

  13. The Company | Concept | Case Study | Economical Study | Conclusion • What about the Economical study of the project? • The PV Electricity is very cheap: 5¢/kWh • Simple Payback 5.9 Years • Cost (¢/kWh) • The system’s Implementation cost was covered by a NEEREA Loan • Very Attrative Cash Flow • - No Down Payment • Granted By the EU by 5% • - 1.075% Interest rate • - Always Ascending • - 2 Years Grace Period • - Always Positive • - 8 Years Loan Period • - Real PBP = 0 Years • - 10 Years Total Loan Period • - NPV= 525,000$ • - IRR= ∞ % ECOrient 2014

  14. The Company | Concept | Case Study | Economical Study | Conclusion • Conclusion: • Technically Safe System “I now own a half million dollar power plant on the roof of my factory which produces clean and cheap energy… And I did not pay a single penny” • Attractive Performance • Very Appealing Economical Results Mr. Gaby AbouChedid, CEO,API. • The Tailored Fit PV/Diesel Hybrid Solution Opens New Horizons for Solar Power to Revolutionize the Lebanese Energy Sector. ECOrient 2014

  15. Visit Us At Booth K12 ECOrient 2014

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