Energy Use and Energy Awareness at the CNS Building Lia Stelljes, Physics ‘08 Beth Ellen Clark Joseph, Physics CNS Sustainability Group Office of Facilities.

Slides:



Advertisements
Similar presentations
Climate Action Team Training Series Session #2: Electricity Julio Magalhães, PhD Global Warming Program Coordinator Loma Prieta Chapter, Sierra Club.
Advertisements

Climate Action Team Training Series Session #3: Transportation Julio Magalhães, PhD Global Warming Program Coordinator Loma Prieta Chapter, Sierra Club.
The average electricity consumption for the past 12 month is 19,718kWh/month or $5,181.00/month (Based on current SP tariff $0.2628/kWh before GST)
Dr Zoe Robinson, Keele University, Greening Business: An online teaching resource.
Purchased Utilities and OMP Roundtable UC Budget Conference October 22-23, 2007 Clif Bowen, Moderator.
IAC / WVU Industrial Productivity Improvement Through Energy Efficiency & Waste Reduction By B. Gopalakrishnan, PhD, P.E., CEM Professor & Director Industrial.
The average Kiwi emits 19.3 tonnes of CO 2-e per annum.
Getting greener Not only in color. Being a global thinker, recognizing and understanding the world we live in, Oprema has always been one of the leaders;
Michael Deru ASHRAE Albuquerque, NM June 30, 2010 Better Green House Gas Calculations for Buildings NREL is a national laboratory of the U.S. Department.
LIMESTONE CRUSHING PLANT LOAD MANAGEMENT Jaco Snyman
Towards a Low Carbon Future: China’s Green Development Policy and Practice Ye QI Climate and Carbon Policy Institute (CPI) Tsinghua University & China.
The Role of Energy Conservation and Efficiency in Saudi Arabia in Long - Term Sustainability Dr.Abdulrahman A. Al-Tuwaijri Deputy Minister for.
Feasibility Study of Geothermal Heating Systems at Ithaca College Sanya Levi Prof. Beth Ellen Clark April 6, 2005 Whalen Symposium.
Toward a Sustainable Campus Part II: Improving the Efficiency of the CNS Building Energy Systems Nitin Rajan ‘07 Physics Department Ithaca College.
Example of the Final Project Possible Reduction of Greenhouse Gas Emissions by Replacing Incandescent Lights with Compact Fluorescent Lights (CFL)
Energy Year 2013 Electricity Finnish Energy Industries.
LANDFILL-GAS-TO-ENERGY PROJECTS: AN ANALYSIS OF NET PRIVATE AND SOCIAL BENEFITS By: Paulina Jaramillo.
Low Carbon Action Group results. The nature of our business means a large amount of energy needs to be used, but we are looking to compensate that with.

Baseline methodologies for grid- connected electricity – Context and Introduction to the Combined Margin Baseline Calculation Martina Bosi, World Bank.
1 MET 12 Global Warming: Lecture 12 Transportation Shaun Tanner Outline:   Energy use   Petroleum   Hybrid   Electric   Fuel Cell   Biofuels.
* To choose right wattage of LED Lamp to replace conventional lamps in the project. * To know price information of other lamp cost, electricity cost,
ENERGY CONSERVATION & BUILDING STANDARDS Brian Deal, Fred Hahn, Karl Helmink, Claire McConnell, Dhara Patel, Claudia Szczepaniak, Scott Willenbrock.
You can achieve 100% Energy Saving WHEN YOU TURN OFF THE LIGHTS.
THE PROJECT WAS CARRIED OUT BY STUDENTS OF I.P.E.E., INDUSTRIAL TECHNOLOGY AND INFORMATION TECHNOLOGY. 1º BACHILLERATO. PROJECT DEVELOPED DURING OCTOBER-DECEMBER.
Managing Operational Energy in Buildings
Low Carbon Buildings and Sustainability By Dr David Johnston – licensed under the Creative Commons Attribution – Non-Commercial – Share Alike License
LONG TERM ELECTRICAL SUPPLY PLAN STAFF RESPONSE TO QUESTIONS, ISSUES, AND RECOMMENDATIONS MADE IN NOVEMBER 2004 Presentation to the Gainesville City Commission.
Problem Statement Due to a rough history with the local power company, San Pablo has resorted to using power from the power company without paying their.
DAC PROJECT Capacity Building in Balcan Countries for the Abatement of Greenhouse Gases Setting priorities for GHG emissions’ reduction George Mavrotas.
Energy in Ireland 1990 – 2004 Oireachtas Joint Committee on Communications, Marine and Natural Resources.
Team Mango Atanas Bosakov & Olga Shapoval
1 Power Consumption in the Datacenter Computer Rm. AC 34% Server/Storage 50% Conversion 7% Network 7% Lighting 2% Source: APC Where Does the Power Go?
Partner for progress The climate footprint of the water sector WWF5 Istanbul March 2009 Jos Frijns, Adriana Hulsmann.
1 – Consciously Manage Our Capabilities At Intel IT, we think “green” everyday with a long-term strategy for IT sustainability.long-term strategy.
Give me a break! How turning off the television can give your TV and the Earth a break.
Residential Heating and Cooling Prepared by: Will George Ryan Lester.
Carbon Emissions from the University of Minnesota Buildings & Facilities Andrew Edwins David Grandall Luke Hollenkamp Patrick Santelli Amy Scheller.
Low Carbon Buildings and Sustainability By Dr David Johnston – licensed under the Creative Commons Attribution – Non-Commercial – Share Alike License
Energy Star. How energy star products help the consumer Save money Save energy Reduce carbon footprint.
President's Climate Commitment I: The Wedge Capacity of Energy Efficiency at Ithaca College Steve Figgatt Environmental Studies Chris O’Keefe Environmental.
Efficiency Review Presentation Arizona State Lab.
Initial Goal 58 KBTU/Ft 2 Graph includes main building and all mobile units Baseline =
1 Analysis of Two-Tiered Deemed Savings Values for Energy Star Clothes Washers February 10, 2004.
Statistic Energy Consumption Water Consumption Municipal Solid Waste generated Hazardous Waste generated Energy Consumption As a Goal 30 % Energy usage.
Energy Economics Kelly Kissock, Ph.D., P.E. Department of Mechanical and Aerospace Engineering University of Dayton Industrial Assessment Center.
Accommodation & Hospitality Services THE ENVIRONMENT MATTERS GROUP.
1 Oconomowoc Area School District Energy Update 6-Month Status Report December 2005 – May 2006.
Class Project Report Sustainable Air Quality, EECE 449/549, Spring 2009 Washington University, St. Louis, MO The Energy Analysis and Carbon Footprint of.
Proposed by.. Ms. Autchara Poohngamnil Energy Field of Study
Class Project Report Sustainable Air Quality, EECE 449/549, Spring 2009 Washington University, St. Louis, MO The Energy Analysis and Carbon Footprint of.
Sustainable Laboratory Design: Challenges and Solutions
1 Energy-efficient distribution transformers Case study.
Sustainability and Facilities Management John Sullivan Energy & Sustainability Office Facilities & Services Division.
Friendly People for Friendly Energy. The changes in climate, increased energy consumption and reduced deposits of natural resources are the most crucial.
Energy Efficiency Update Before the Senate Energy, Utilities & Communications Committee Part 2 May 17, 2011 – State Capitol Robin Smutny-Jones Assistant.
Priority National GEF Projects. Project-1 Improving energy efficiency in the generation and distribution of portable water in Antigua and Barbuda Antigua.
Public Name: François Bruggemans Dept: New Business - Heating Carbon footprint of heating systems Lowering GHG emissions by the use of heat pumps.
Improving performance, reducing risk Dr Apostolos Noulis, Lead Assessor, Business Development Mgr Thessaloniki, 02 June 2014 ISO Energy Management.
SCE GOES GREEN. Who are we? Why? *** Research Question *** What is our plan? *** Collecting Data *** Results *** Conclusion The Content.
An Alternate to Alternative Energy microE 3,LLC Copyrighted, 2013, microE3,LLC Robert S Donaldson.
P08424 Residential Energy Savings Robert Underhill: Project Manager Aaron Resetarits: Component Analysis/ Implementation Feasibility Bill Jamieson: Building.
World Energy and Environmental Outlook to 2030
Operating Room HVAC Waste Reduction Jason Lang, MD, Seema Gandhi, MD University of California San Francisco Carbon Neutrality Initiative Fellowship Introduction.
Logistics Facilities Ad-Hoc Committee
Communicare Boom Flats Retrofit: Financial Analysis
P08424 Residential Energy Savings
Getting greener Not only in color.
Integrated Math & Science
Global Status Report for COP
Presentation transcript:

Energy Use and Energy Awareness at the CNS Building Lia Stelljes, Physics ‘08 Beth Ellen Clark Joseph, Physics CNS Sustainability Group Office of Facilities (Data Contribution) Michael “Bodhi” Rogers, Physics Fume Hood Electricity Use Awareness Study

Does awareness affect electricity use?  1 week “ad campaign”  Repercussions of fume hood misuse  Hypothesis driven Awareness increases Electricity decreases Goals:  understand laboratory energy use  calculate dollars saved  calculate decrease in CO 2 emissions  decrease building consumption  global awareness and change

Data Collection  Study week Nov. 10 th – Nov. 17 th Based on past data Electricity use fluctuates

Data Collection  Study week Nov. 10 th – Nov. 17 th Based on past data Electricity use fluctuates JanMarMayJulSepNov

Data Collection Continued

Study Data BREAK

Statistical Analysis of Results Comparing Average Peak of Normal Weeks with Peak of Study Week Normal Weeks Study Week electricity use (kWh) Promising results!

Future Work  Continue Study Include more weeks in analysis Natural gas data Other areas of energy use

Conclusion Baseline use estimate Consumption levels change with awareness Efficiency measures implemented in CNS in 2006  Average decrease 2000 kWh/month  Dollars saved: $2400 /yr ! Decrease in CO 2 emissions: lbs/yr!