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Articles 61 - 90 of 97
Full-Text Articles in Energy Systems
Energy Efficient Renovations Of Storm Damaged Residences - Florida Case Studies, Florida Solar Energy Center, Neil Moyer
Energy Efficient Renovations Of Storm Damaged Residences - Florida Case Studies, Florida Solar Energy Center, Neil Moyer
FSEC Energy Research Center®
Storm-damaged homes offer the opportunity for repairs that reduce energy use, improve comfort and enhance resistance to future storms. Case studies of four Florida homes damaged in the summer of 2004 were documented to show the costs and benefits of various retrofit strategies. All four homes required roof replacement and each took advantage of roof cladding with higher reflectance than the original, a proven means of reducing cooling energy use. Two of the case studies included improvements to attic insulation, tightening of the envelope and/or duct system and improved efficiency equipment and lighting. Energy savings attributable to storm repairs were …
Improved Specifications For Federally Procured Ruggedized Manufactured Homes For Disaster Relief In Hot/Humid Climates, Florida Solar Energy Center, Stephanie Thomas-Rees
Improved Specifications For Federally Procured Ruggedized Manufactured Homes For Disaster Relief In Hot/Humid Climates, Florida Solar Energy Center, Stephanie Thomas-Rees
FSEC Energy Research Center®
The Federal Emergency Management Agency (FEMA) uses ruggedized manufactured homes to provide short term housing solutions during the repair and rebuilding phase after a natural disaster.
Federally procured manufactured homes are currently constructed in accordance with the Housing and Urban Development's (HUD) manufactured housing standards and typically built to the minimum code requirements. These homes can consume more energy than their site built comparatives and use materials and mechanical systems that can potentially contribute to poor indoor quality and low durability. Two improved specifications are presented in this report to enhance energy efficiency, sustainability, indoor air quality and provide back …
How Much Energy Are We Using? Potential Of Residential Energy Demand Feedback Devices, Florida Solar Energy Center, Danny Parker
How Much Energy Are We Using? Potential Of Residential Energy Demand Feedback Devices, Florida Solar Energy Center, Danny Parker
FSEC Energy Research Center®
Past studies of providing instantaneous feedback on household electrical demand show promise to reduce energy consumption by 10-15%. This paper surveys past research and describes a pilot evaluation of two low cost monitoring systems in case study homes. We also develop an evaluation protocol to use such devices to determine the relative energy intensity of various energy end uses. An identified advantage of the technology is that it provides better guidance on profitable areas to reduce household electrical demand-many of which are often unexpected. Moreover, our case studies showed that use of targeted power strips and occupancy-based controls can significantly …
The Energy Policy Pyramid - A Hierarchal Tool For Decision Makers, Florida Solar Energy Center, Robin Vieira
The Energy Policy Pyramid - A Hierarchal Tool For Decision Makers, Florida Solar Energy Center, Robin Vieira
FSEC Energy Research Center®
Policies of dealing with energy programs are often misdirected. Decision makers jump first to fuel substitution to either lower emissions or counter fuel price escalation. When it comes to both return on short-term economic investment and long-term sustainability for the economy and environment, there is a clear hierarchy. This paper presents the hierarchy as The Energy Policy Pyramid©.
Comparison Matrix Of Florida Residential Building Energy Code And The International Energy Conservation Code (Iecc) 2006, Florida Solar Energy Center, Mangesh Basarkar
Comparison Matrix Of Florida Residential Building Energy Code And The International Energy Conservation Code (Iecc) 2006, Florida Solar Energy Center, Mangesh Basarkar
FSEC Energy Research Center®
This report presents a comparison of the differences between the Florida and the IECC (2006) residential energy code requirements. In addition to this summary, the documentation is divided into three sets of distinct comparisons: Comparison of Performance-based methods, Comparison of Prescriptive methods and Comparison of key provisions of the texts. In order to provide the best housing stock, with a code that is easy to implement and enforce, the final recommendation of the study was for Florida to maintain its own code, but consider incorporating some of the newer IECC measures.
Impact Of Solar Powered Disaster-Resistant Communities, Florida Solar Energy Center, William Young
Impact Of Solar Powered Disaster-Resistant Communities, Florida Solar Energy Center, William Young
FSEC Energy Research Center®
Natural and man made disasters can destroy lives, homes, businesses, the economy and the environment. Disasters can happen with little or no warning, leaving hundreds or even thousands of people without medical services, potable water, sanitation, communications and electrical services for up to several weeks. This paper identifies the imperative for and value of creating disaster-resistant homes and communities. The use of renewables, the application of distributed generation, implementation of energy-efficient building designs and construction of disaster-resistant structures can minimize the destruction of property, cost of recovery and disruption of lives. Through enhanced construction practices and the use of solar …
Potential Of Energy Efficiency And Renewable Energy Savings To Impact Florida's Projected Energy Use In 2014, Florida Solar Energy Center, Philip W. Fairey
Potential Of Energy Efficiency And Renewable Energy Savings To Impact Florida's Projected Energy Use In 2014, Florida Solar Energy Center, Philip W. Fairey
FSEC Energy Research Center®
Florida's 2004 electrical energy use was 233 billion kilowatt-hours. Over half (51%) of this energy use went to residential building energy. The state's current 10-year predictions for electrical energy use in 2014 show a requirement for approximately 308 billion kilowatt-hours of electricity, an increase of approximately 75 billion kilowatt-hours. This study presents an example of how Florida can radically alter its 2014 energy use projection by aggressively pursuing residential building energy efficiency improvements and aggressively increasing its use of proven renewable energy resources.
Geographic Variation In Potential Of Rooftop Residential Photovoltaic Electric Power Production In The United States, Florida Solar Energy Center, Matthew Lombardi
Geographic Variation In Potential Of Rooftop Residential Photovoltaic Electric Power Production In The United States, Florida Solar Energy Center, Matthew Lombardi
FSEC Energy Research Center®
This paper describes a geographic evaluation of Zero Energy Home (ZEH) potential, specifically an assessment of residential roof-top solar electric photovoltaic (PV) performance around the United States and how energy produced would match up with very-efficient and super-efficient home designs. We performed annual simulations for 236 TMY2 data locations throughout the United States on two highly-efficient one-story 3-bedroom homes with a generic grid-tied solar electric 2 kW PV system. These annual simulations show how potential annual solar electric power generation (kWh) and potential energy savings from PV power vary geographically around the U.S. giving the user in a specific region …
Measured Energy And Peak Demand Reductionfrom High Efficiency Air Conditioner Replacement, Florida Solar Energy Center, John Masiello
Measured Energy And Peak Demand Reductionfrom High Efficiency Air Conditioner Replacement, Florida Solar Energy Center, John Masiello
FSEC Energy Research Center®
A utility load research project has monitored over 167 single-family residences in Central Florida collecting baseline 15-minute data on air conditioner (AC) power consumption, interior air temperatures and appliance loads over a two year period. Within the project we evaluated the impact of replacing older existing air conditioners with modern high efficiency equipment.
Preliminary Evaluation Of Performance Enhanced Relocatable Classrooms In Three Climates, Florida Solar Energy Center, Danny Parker
Preliminary Evaluation Of Performance Enhanced Relocatable Classrooms In Three Climates, Florida Solar Energy Center, Danny Parker
FSEC Energy Research Center®
A research project has monitored a specifically modified energy efficient portable classroom compared with a standard unit, in side-by-side installations in three states (NY, NC and FL). Energy performance data is summarized in this paper.
Optimizing Manufactured Housing Energy Use, Florida Solar Energy Center, Mark Mcginley
Optimizing Manufactured Housing Energy Use, Florida Solar Energy Center, Mark Mcginley
FSEC Energy Research Center®
In partnership with the Florida Solar Energy Center (FSEC), two manufactured homes were located on North Carolina A&T State University's campus in Greensboro, NC and used in a side-by-side energy consumption comparison. One of the homes was built to the basic HUD code standard and the other was constructed with features expected to produce a home that was 50% more energy efficient.
FSEC and NCATSU began monitoring energy performance in both homes. In addition, the performance of each unit was evaluated using a DOE2 based computer energy analysis program developed by FSEC. A comparison of the performance of the units …
Florida's Energy Future: Opportunities For Our Economy, Environment And Security - Executive Summary, Florida Solar Energy Center, Philip W. Fairey
Florida's Energy Future: Opportunities For Our Economy, Environment And Security - Executive Summary, Florida Solar Energy Center, Philip W. Fairey
FSEC Energy Research Center®
The future of Florida's economy, environment and security is inextricably intertwined with our energy use decisions. Our state has one of the nation's fastest growing populations, promoting rapid expansion of an energy industry that imports its fuel supplies. Florida exports approximately $32 billion per year for these energy fuels. Moreover, the Florida economy depends critically on tourism and agriculture, and the fuels and energy products that maintain them. Our pristine environment is the primary natural resource supporting this unique economic engine and the adverse effects of our rapidly growing energy use now stress it. Our State's economic well-being and security …
Florida's Energy Future: Opportunities For Our Economy, Environment And Security - Appendices, Florida Solar Energy Center, Philip W. Fairey
Florida's Energy Future: Opportunities For Our Economy, Environment And Security - Appendices, Florida Solar Energy Center, Philip W. Fairey
FSEC Energy Research Center®
The future of Florida's economy, environment and security is inextricably intertwined with our energy use decisions. Our state has one of the nation's fastest growing populations, promoting rapid expansion of an energy industry that imports its fuel supplies. Florida exports approximately $32 billion per year for these energy fuels. Moreover, the Florida economy depends critically on tourism and agriculture, and the fuels and energy products that maintain them. Our pristine environment is the primary natural resource supporting this unique economic engine and the adverse effects of our rapidly growing energy use now stress it. Our State's economic well-being and security …
Florida's Energy Future: Opportunities For Our Economy, Environment And Security, Florida Solar Energy Center, Philip W. Fairey
Florida's Energy Future: Opportunities For Our Economy, Environment And Security, Florida Solar Energy Center, Philip W. Fairey
FSEC Energy Research Center®
The future of Florida's economy, environment and security is inextricably intertwined with our energy use decisions. Our state has one of the nation's fastest growing populations, promoting rapid expansion of an energy industry that imports its fuel supplies. Florida exports approximately $32 billion per year for these energy fuels. Moreover, the Florida economy depends critically on tourism and agriculture, and the fuels and energy products that maintain them. Our pristine environment is the primary natural resource supporting this unique economic engine and the adverse effects of our rapidly growing energy use now stress it. Our State's economic well-being and security …
Achieving Airtight Ducts In Manufactured Housing, Florida Solar Energy Center, Janet Mcilvaine
Achieving Airtight Ducts In Manufactured Housing, Florida Solar Energy Center, Janet Mcilvaine
FSEC Energy Research Center®
Data and findings presented here were gathered between 1996 and 2003 during 39 factory visits at 24 factories of six HUD Code home manufacturers interested in improving the energy efficiency their homes. Factory observations typically showed that building a tighter duct system was the most cost effective way to improve the product's energy efficiency.
Sunup To Sundown - Energygauge Usa 2.0, Florida Solar Energy Center, Robin Vieira
Sunup To Sundown - Energygauge Usa 2.0, Florida Solar Energy Center, Robin Vieira
FSEC Energy Research Center®
You need special tools to design high-performance homes - residences where energy efficiency creates greater comfort, health, and energy savings. Making decisions about energy efficiency requires the accurate calculation of energy use and demand, and the comprehensive evaluation of proposed improvements.
A new software tool helps meet these requirements. EnergyGauge USA, an hourly simulation tool for the design and analysis of high-performance homes, performs detailed hourly simulation analysis for energy use, ratings and code calculations. Version 2.0 adds many features to the first-generation product, including thermal mass, photovoltaic (PV) system simulation, solar water heating, and detailed hourly outputs.
The software, …
Air Handler Leakage: Field Testing Results In Residences, Florida Solar Energy Center, James Cummings
Air Handler Leakage: Field Testing Results In Residences, Florida Solar Energy Center, James Cummings
FSEC Energy Research Center®
Testing was performed to characterize air leakage in 30 air handler cabinets and at connections to supply and return ductwork. Operating pressures were measured in the air handler and plenums. Q 0.1 (Q 25) in the air handler averaged 23.9 cfm (11.3 l/s) in 30 homes. Leakage at the return and supply ductwork connections averaged 3.9 Q 0.1 (1.8 l/s Q 25) and 2.2 Q 0.1 (1.0 l/s Q 25), respectively. Actual return side leakage of 77.5 cfm (36.6 l/s) and supply side leakage of 3.1 cfm (1.5 l/s) are calculated based on Q 0.1 (Q 25) and measured operating …
Field Testing And Computer Modeling To Characterize The Energy Impacts Of Air Handler Leakage, Florida Solar Energy Center, James Cummings
Field Testing And Computer Modeling To Characterize The Energy Impacts Of Air Handler Leakage, Florida Solar Energy Center, James Cummings
FSEC Energy Research Center®
In order to determine the impact of air handler location upon heating and cooling energy use, the amount of air leakage which occurs in the air handler cabinet needs to be known. Also, the leakage which occurs at the connections between the air handler cabinet and the return and supply plenums needs to be known as well because these connection leaks would also be located in the attic or any other location.
In order to assess this leakage, testing was performed on a total of 69 air conditioning systems. Thirty systems were tested in the year 2001 under funding from …
Design And Construction Of Interior Duct Systems, Florida Solar Energy Center, Janet Mcilvaine
Design And Construction Of Interior Duct Systems, Florida Solar Energy Center, Janet Mcilvaine
FSEC Energy Research Center®
To combat the energy, durability, and indoor air quality penalties of duct leakage, energy experts have recommended putting the duct system and air handler inside the conditioned space. Two paths of accomplishing this have emerged: unvented attics/crawl spaces and interior chases. This study focuses on the design, construction, and performance of the interior chase approach as implemented by five different builders in Texas, North Carolina, and Florida.
Researchers found that, in many cases, breeches of the air barrier were evident from simple visual inspection. Critical points of design and construction were identified and will be presented through photos, design and …
Sunsmart Community Partnerships: Summary And Lessons Learned Report, Florida Solar Energy Center, Jennifer Szaro
Sunsmart Community Partnerships: Summary And Lessons Learned Report, Florida Solar Energy Center, Jennifer Szaro
FSEC Energy Research Center®
Through a working partnership with the Florida Municipal Electric Association (FMEA), the Florida Solar Energy Center (FSEC), the Florida Municipal Power Agency (FMPA), the Legal Environmental Assistance Foundation (LEAF), and FMEA member utilities, the SunSmart program offers a unified, low-cost solution to providing municipal electric customers with a solar energy option. It also provides its member utilities with a high level of technical and administrative support to alleviate concerns about working with an unfamiliar electric generation technology. It relies on a core team to develop a standardized marketing and public outreach plan which can be utilized by all participants, and …
Preliminary Evaluation Of Energy-Efficiency Improvements To Modular Classrooms, Florida Solar Energy Center, Danny Parker
Preliminary Evaluation Of Energy-Efficiency Improvements To Modular Classrooms, Florida Solar Energy Center, Danny Parker
FSEC Energy Research Center®
The objective of our investigation is to evaluate innovations that would enable modular classroom builders to improve the energy performance of their classrooms. We investigate improved insulation, better windows, daylighting, cross-ventilation, sensible and latent heat recovery of ventilation air and light colored surfaces and radiant barriers for cooling dominated climates. The tasks associated with this work are as follows:
- Create a simulation software.
- Establish a baseline reference building using a standard modular classroom building.
- Parametric evaluation of the impact of ventilation and school schedule on energy use.
- Determine the feasibility of improving insulation and envelope systems.
- Determine the feasibility of …
Evaluation Of Resources And Energy Systems At Dry Tortugas National Park, Addendum Report, Florida Solar Energy Center, James Dunlop
Evaluation Of Resources And Energy Systems At Dry Tortugas National Park, Addendum Report, Florida Solar Energy Center, James Dunlop
FSEC Energy Research Center®
The objectives of this report are to identify opportunities for increasing efficiency, reducing costs and improving environmental quality by implementing conservation measures and renewable energy systems in park operations. Information in this report was derived from a site survey conducted on April 4-6, 2000 by personnel from the National Park Service (NPS), U.S. Department of Energy (DOE), Sandia National Laboratories (SNL), Oak Ridge National Laboratory (ORNL) and Florida Solar Energy Center (FSEC). It builds on earlier site assessments and reports developed in 1989 and 1997 by FSEC under contract to DOE and SNL
Energy Efficient Design For Florida Educational Facilities, Florida Solar Energy Center, Janet Mcilvaine
Energy Efficient Design For Florida Educational Facilities, Florida Solar Energy Center, Janet Mcilvaine
FSEC Energy Research Center®
This manual addresses energy efficiency options for new educational facilities in Florida. The recommendations may not be valid when considered outside Florida's hot humid climate or for purposes other than new construction.
Construction funds spent on new construction heavily outweigh (67%) those spent on retrofit, as reported in an annual statistical analysis published by American School and University (September 1992). The comprehensive survey showed that construction funds for new educational facilities nationwide have risen for eight consecutive years, and no region has experienced more growth than the Southeast. Currently, funds spent on energy services (excluding capital outlay, salaries, benefits, and …
Improving Doe-2'S Resys Routine: User Defined Functions To Provide More Accurate Part Load Energy Use And Humidity Predictions, Florida Solar Energy Center, Hugh Henderson, Jr.
Improving Doe-2'S Resys Routine: User Defined Functions To Provide More Accurate Part Load Energy Use And Humidity Predictions, Florida Solar Energy Center, Hugh Henderson, Jr.
FSEC Energy Research Center®
In hourly energy simulations, it is important to properly predict the performance of air conditioning systems over a range of full and part load operating conditions. An important component of these calculations is to properly consider the performance of the cycling air conditioner and how it interacts with the building. This paper presents improved approaches to properly account for the part load performance of residential and light commercial air conditioning systems in DOE-2. First, more accurate correlations are given to predict the degradation of system efficiency at part load conditions. In addition, a user-defined function for RESYS is developed that …
Florida Homeowner's Manual For Energy Efficiency, Florida Solar Energy Center, Danny Parker
Florida Homeowner's Manual For Energy Efficiency, Florida Solar Energy Center, Danny Parker
FSEC Energy Research Center®
Most homeowners would like to save on their monthly expenses. One of these expenses - the utility bill - costs the average Florida homeowner five percent of his/her total annual after-tax income. Currently, Floridians are paying about eight cents per kilowatt hour (kWh) for electricity. Without close monitoring, electrical uses such as air conditioning can easily push utility costs over $150 per month. Effective conservation measures involve using household appliances less frequently and servicing them properly. These measures will improve their performance as well as their useful life - a real savings over the long run. Also, when you use …
An Assessment Of Building Energy Efficiency Options At Horn Island Ranger Station, Gulf Islands National Seashore, Florida Solar Energy Center, Stephen Barkaszi
An Assessment Of Building Energy Efficiency Options At Horn Island Ranger Station, Gulf Islands National Seashore, Florida Solar Energy Center, Stephen Barkaszi
FSEC Energy Research Center®
As requested by Joe Martin of the National Park Service (NPS), Southeast Support Office, researchers from the Florida Solar Energy Center (FSEC) conducted a building energy efficiency assessment for the ranger station on Horn Island, Mississippi. The assessment included audits and inspections of the energy systems, building thermal performance, appliances, and energy use patterns. FSEC researchers Stephen Barkaszi and John Harrison conducted the audits and on-site inspections June 29 and June 30, 1999. The purpose of the assessment was to evaluate the facility and to present recommendations for improving the energy efficiency of the building. This report summarizes the information …
Field Evaluation Of Efficient Building Technology With Photovoltaic Power Production In New Florida Residential Housing, Florida Solar Energy Center, Danny Parker
Field Evaluation Of Efficient Building Technology With Photovoltaic Power Production In New Florida Residential Housing, Florida Solar Energy Center, Danny Parker
FSEC Energy Research Center®
The objective of the project, sponsored by the Florida Energy Office and Sandia National Laboratories, is to test the feasibility of building very efficient residential buildings that when combined with utility-interactive PV power, exert little net demand on the utility during the summer peak demand period.
Two single family homes - one, a super efficient residence with a utility interactive photovoltaic (PV) system, and another, a control home - have been constructed in Lakeland, Florida. The PV residence, or PVRES, was constructed with many measures designed to make it more efficient (Fig.E-1). These include a white tile reflective roof system, …
Energy-Efficient Florida Educational Facilities: Improvements To A Portable Classroom At A Volusia County School. Final Report. 06-98, Florida Solar Energy Center, Danny Parker
Energy-Efficient Florida Educational Facilities: Improvements To A Portable Classroom At A Volusia County School. Final Report. 06-98, Florida Solar Energy Center, Danny Parker
FSEC Energy Research Center®
An ambitious project by the Florida Solar Energy Center (FSEC) and sponsored by the Florida Department of Education (FDOE) is monitoring the energy use of two adjacent portable classrooms to see how they might be made more energy efficient in a hot-humid climate. These classrooms have been monitored for one year to collect baseline data before the energy efficient measures are installed. These measures include an efficient lighting system, a new air conditioner, and a reflective white metal roof.
Maine Guide To Energy Efficient Residential Construction : A Manual Of Accepted Practices, State Of Maine Energy Conservation Division
Maine Guide To Energy Efficient Residential Construction : A Manual Of Accepted Practices, State Of Maine Energy Conservation Division
Maine Collection
Maine Guide to Energy Efficient Residential Construction : A Manual of Accepted Practices
State of Maine Energy Conservation Division, Department of Economic and Community Development, 59 State House Station, Augusta, Maine 04333-0059
Second Edition - November, 1997
Contents: Dedication / Acknowledgements / Introduction / Part 1. Summary of Maine's Residential Energy Standards / Part 2. Siting and Initial Design Considerations / Part 3. Important Considerations for the Design Phase / Part 4. Recommended Construction Practices / Appendixes
Energy Efficiency For Florida Educational Facilities: The 1996 Energy Survey Of Florida Schools, Florida Solar Energy Center, Danny Parker
Energy Efficiency For Florida Educational Facilities: The 1996 Energy Survey Of Florida Schools, Florida Solar Energy Center, Danny Parker
FSEC Energy Research Center®
A detailed survey of energy use and related physical and operational characteristics of Florida's public schools has been completed. A mailed survey instrument was sent to all 2,512 schools throughout the state in March 1996. A total of 1, 298 surveys were returned -- a response rate of approximately 52%. Of these some 680 provided matching utility data. The survey data was analyzed to create a school energy use profile as well as to identify characteristics that may influence efficiency. Based on our findings, the total annual energy cost for the Florida school system totaled $205 million in 1995. As …