• INTRODUCTION • BUILDING OVERVIEW • ARCHITECTURAL BREADTH • LIGHTING SPACE 1 • LIGHTING SPACE 2 • LIGHTING DEPTH 3 • LIGHTING DEPTH 4 •

Slides:



Advertisements
Similar presentations
Introduction Energy consumption of Nordhausen:
Advertisements

A Brighter Future A Greener Tomorrow Lee County Public Safety Building January 6, 2010.
Cebu Green Economy Series Renewable Energy Summit Harness the Power of the Sun.
Worcester Art Museum: Green Technology Evaluation Travis Collins ECE Christopher Gowell ME Aaron Hall-Stinson ME Advisors: Professor William Baller Professor.
Pros & Cons of Solar Energy
Solar is the Solution By Lee Stopak. The World as we Know It Currently 85% of the worlds energy use comes from fossil fuels and natural gas. Not only.
What is Solar Power? A Simple Example How Does Solar Work? Where do we use Solar Power? What is Photovoltaic Power? What are the Components of a Solar.
Common Photovoltaic Cells and Cost Optimization. Overview Overview of solar power Overview of solar power Economic Problems Economic Problems Crystalline.
EDSGN 100 Section 001 Team 5 Submitted To: Smita Bharti 10/16/2012
SOLAR POWER BY KENJUEN SWAN.  Solar energy is radiant light and heat from the sun harnessed using a range of ever-evolving technologies such as solar.
Solar Power By: Collin Chapman. * Energy derived from the Sun's radiation. Passive solar energy can be exploited through architectural design, as by positioning.
Solar Energy By: Mary Erikson. What is solar energy?  Renewable energy source radiated from the sun, harnessed and transferred into useable energy.
By Isai Leal class 607. What is Solar Energy? Solar Energy is radiant light and heat from the sun. It comes from the sun itself. It’s formed by the sun.
THE PROJECT WAS CARRIED OUT BY STUDENTS OF I.P.E.E., INDUSTRIAL TECHNOLOGY AND INFORMATION TECHNOLOGY. 1º BACHILLERATO. PROJECT DEVELOPED DURING OCTOBER-DECEMBER.
Kara Steeland Adena Kass William Finnicum Global Change 1-Section 5.
Green Building Residential Construction
ISO New England Overview M A R C H 2 4, | H O L Y O K E, M A.
Industry perspective of nanotechnology and energy Energy and Nanotechnology Media Round Table: Sandton March 2011.
Solar Cell Chapter 1 Introduction to Photovoltaics Nji Raden Poespawati Department of Electrical Engineering Faculty of Engineering University of Indonesia.
Solar Connections Presented by the MathScience Innovation Center With Mrs. Warren.
Tierra Holcomb Found. Tech 3B.  A solar panel (also solar module, photovoltaic module or photovoltaic panel) is a packaged, connected assembly.
 Eco-friendly building  Sustainable and conserves energy and water  Buildings follow the guidelines set by LEED  Use sustainable materials and equipment.
Medford Aquatic Center Energy Efficiency and Solar incentives-and Pass-through tax credits.
SOLAR ENERGY IN BUILDINGS ARE 440 Lecture by: Sabeer Hamid Architectural Engineering Department Lecture by: Sabeer Hamid Architectural Engineering Department.
Leah Matern Lighting/Electrical Option Faculty Advisors: Dr. Richard Mistrick and Ted Dannerth April 13, 2011 Crystal Lake Elementary School Lake Mary,
Prepared by:. Solar photovoltaics (PVs) are arrays of cells containing a material that converts solar radiation into direct current electricity. Materials.
Earth’s Changing Environment Lecture 15 Energy Conservation.
SOLAR ENERGY.
By Crystal Ng Class 607. Solar energy is energy created by the sun. There is a process of how this happens. The sun reflects on a solar panel, the solar.
Miranda Graham
Needs Identification, Product Specification and Project Plan
Earth’s Changing Environment Lecture 17 Lighting Efficiency.
If I was the Government of India, what is the one thing that I would do to make the nation energy efficient? Suggest one way in which Government of India.
Earth’s Changing Environment Lecture 19 Lighting Efficiency Problem.
  By:Layan 5C Solar Energy   Solar energy is a form of energy from the sun What Is Solar Energy?
Our Carbon Footprint! The people at JMMJ Inc. do everything they can to reduce our carbon emissions.
Lighting Efficiency. Lighting Efficiency Problem Suppose that 25 incandescent light bulbs rated at 100 Watt are replaced by 25 fluorescent lamps rated.
Solar Tracking System.  Introduction  Need for solar tracker  Dual axis tracker  Block diagram  Circuit diagram  Advantages  Disadvantages  Uses.
Photovoltaic Systems Market Research Report: Global Analysis
USING LOCAL RESOURCES TO MEET LOCAL NEEDS. Wood heating – an introduction Eastern Region Renewable Energy Conference
 Renewable energy is energy which comes from natural resources such as sunlight, wind, water, and geothermal heat, which are renewable within a REASONABLE.
NOLAN JAMES AMOS Dr. William Bahnfleth, Faculty Consultant architectural engineering senior thesis mechanical option PHOENIXVILLE EARLY LEARNING CENTER.
NANO SCIENCE IN SOLAR ENERGY
By Aaron Le Conte. We would still be left with 5562 Terawatts of power, from the sun, that could be used. This is equal to 370 times the amount of energy.
FAÇADE DESIGN & DELIVERY 2011 NEW YORK Diego Cuevas Business Development USA Onyx Solar Energy.
SOLAR ENERGY.  Solar energy is radiant light and heat from the Sun harnessed using a range of ever-evolving technologies such as solar heating, photovoltaics,
Solar panels Are power point is about solar panels.
Global Commercial Airport Lighting Consumption 2016 Market Research Report The report focuses on global major leading industry players with information.
SOLAR ENERGY PRESENTED BY GSV RAMESH BABU, GUNTUR ENGINEERING COLLEGE 2 nd MECHANICAL.
Introduction to Android Programming. Features of Android.
Changing the way the world cools…now in India!
SAI BHARATH SRAVAN KUMAR
Solar energy How Free Is Solar Energy?
Mustafa Saffet Anadolu Lisesi
SPACE FUTURE-THE GLOBAL SOLUTIONS FOR THE COMING ENERGY CRISIS
It’s renewable ‘cuz you can use it over and over.
SHEPHERD UNIVERSITY WELLNESS CENTER
Manoharbhai Patel Institute Of Engineering & Technology
Biobehavioral Health Building, University Park, PA
P PT 1 Solar power Describe how electricity can be generated
By: Deniz Sevinc and Jonathan Luu
3.3a Energy from the sun LO’s:
5 a day revision Energy and electricity What is efficiency?
Solar energy.
AL – Mustansiriyah University Faculty of Engineering Electrical Engineering Department Topologies of DC - AC Conversion for Photovoltaic Systems By.
bp.com/statisticalreview #BPstats
PIC NEEDED.
LED PANEL LIGHTS Why Are More Energy-Efficient Than The Traditional!
Presentation transcript:

• INTRODUCTION • BUILDING OVERVIEW • ARCHITECTURAL BREADTH • LIGHTING SPACE 1 • LIGHTING SPACE 2 • LIGHTING DEPTH 3 • LIGHTING DEPTH 4 • ELECTRICAL DEPTH 1 • ELECTRICAL DEPTH 2 • ACCOUSTICAL BREADTH • CONCLUSION •

ABOUT THE BUILDING BUILDING FEATURES Built in 1903 100,000 Square Feet Italianate Industrial Style • INTRODUCTION • BUILDING OVERVIEW • LIGHTING DEPTH 1 • LIGHTING DEPTH 2 • LIGHTING DEPTH 3 • LIGHTING DEPTH 4 • ELECTRICAL DEPTH 1 • ELECTRICAL DEPTH 2 • ARCHITECTURAL BREADTH • ACCOUSTICAL BREADTH • CONCLUSION • BUILDING FEATURES Saw-tooth Skylights Wood Ceiling Trusses Large Manufacturing Space

WHY PHOTOVOLTAICS? DESIGN FEATURES Most efficient form of renewable energy The sun gives 350,000,000 terawatts of radiation per year The global energy consumption in 2004 was 130,000 terawatt hours • INTRODUCTION • BUILDING OVERVIEW • LIGHTING DEPTH 1 • LIGHTING DEPTH 2 • LIGHTING DEPTH 3 • LIGHTING DEPTH 4 • ELECTRICAL DEPTH 1 • ELECTRICAL DEPTH 2 • ARCHITECTURAL BREADTH • ACCOUSTICAL BREADTH • CONCLUSION • DESIGN FEATURES Enphase Microinverters Sharp Commercial Series Panels 20% payback over the lifetime of the system

DESIGN STATISTICS DESIGN FEATURES X X • INTRODUCTION • BUILDING OVERVIEW • LIGHTING DEPTH 1 • LIGHTING DEPTH 2 • LIGHTING DEPTH 3 • LIGHTING DEPTH 4 • ELECTRICAL DEPTH 1 • ELECTRICAL DEPTH 2 • ARCHITECTURAL BREADTH • ACCOUSTICAL BREADTH • CONCLUSION • DESIGN FEATURES X