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Articles 661 - 690 of 1004
Full-Text Articles in Mechanical Engineering
Effectiveness Of Florida's Residential Energy Code: 1979 - 2007, Florida Solar Energy Center, Philip W. Fairey
Effectiveness Of Florida's Residential Energy Code: 1979 - 2007, Florida Solar Energy Center, Philip W. Fairey
FSEC Energy Research Center®
This study was commissioned by the Florida Department of Community Affairs’ Codes & Standards Section to determine the impacts of Florida’s Energy Efficiency Code over time and recommend possible changes that would increase residential efficiency. It examines each of the 14 residential energy code cycles that have occurred during the 28 year period and determines the relative change in code stringency and its impact on energy use and energy cost throughout the period. The study also examines Florida’s proposed 2007 Code1 to determine how its requirements compare with the requirements of Section 404 of the 2006 International Energy Conservation Code …
Closing The Gap: Getting Full Performance From Residential Central Air Conditioners, Task 4 - Develop New Climate-Sensitive Air Conditioner, Simulation Results And Cost Benefit Analysis, Florida Solar Energy Center, Hugh Henderson, Jr.
Closing The Gap: Getting Full Performance From Residential Central Air Conditioners, Task 4 - Develop New Climate-Sensitive Air Conditioner, Simulation Results And Cost Benefit Analysis, Florida Solar Energy Center, Hugh Henderson, Jr.
FSEC Energy Research Center®
This study evaluated the impacts of conventional and advanced cooling and dehumidification equipment on residential indoor humidity levels and annual energy consumption using whole building computer simulations. The life-cycle cost premium for the various advanced systems was also estimated. Building models were developed for a standard HERS Reference house, meant to represent current residential construction practice, and a High-Efficiency house that would likely qualify for a federal tax credit. The different houses were simulated in seven southeastern U.S. cities and with two ventilation/infiltration scenarios: 1) variable or natural infiltration alone, and 2) mechanical ventilation that complied with ASHRAE Standard 62.2-2004. …
Mitigating The Impacts Of Uncontrolled Air Flow On Indoor Environmental Quality And Energy Demand In Non-Residential Buildings, Florida Solar Energy Center, Hugh Henderson, Jr.
Mitigating The Impacts Of Uncontrolled Air Flow On Indoor Environmental Quality And Energy Demand In Non-Residential Buildings, Florida Solar Energy Center, Hugh Henderson, Jr.
FSEC Energy Research Center®
This project builds on previous field research in Florida that has demonstrated the significant impact that uncontrolled air flows (UAFs) have on indoor environmental quality (IEQ) and energy use in small commercial buildings, a large but poorly understood segment of the nation's building stock. The goal of this project was to extend that research to a national scale by assessing the importance of UAFs in a sample of 25 commercial buildings in New York State. The differences in climate and construction techniques between New York and Florida are expected to bound the range conditions typically found on a national basis. …
Priorities For Energy Efficiency For Home Construction In Florida, Florida Solar Energy Center, Robin Vieira
Priorities For Energy Efficiency For Home Construction In Florida, Florida Solar Energy Center, Robin Vieira
FSEC Energy Research Center®
Below we provide the priorities for obtaining an energy efficient building in Florida.
Experimental Evaluation Of Nightcool Nocturnal Radiation Cooling Concept: Performance Assessment In Scale Test Buildings, Florida Solar Energy Center, Danny Parker
Experimental Evaluation Of Nightcool Nocturnal Radiation Cooling Concept: Performance Assessment In Scale Test Buildings, Florida Solar Energy Center, Danny Parker
FSEC Energy Research Center®
An experimental test evaluation has been conducted of a night sky cooling system designed to substantially reduce space cooling needs in homes in North American climates. The system uses a sealed attic covered by a highly conductive metal roof (a roof integrated radiator) which is selectively linked by air flow to the main zone with the attic zone to provide cooling- largely during nighttime hours. Available house mass is used to store sensible cooling. Additional dehumidification is done during the evening hours as warranted by interior conditions.
A previous report describes a detailed simulation model of the relevant night cooling …
High Pressure Testing Of Composite Solid Rocket Propellant Mixtures: Burner Facility Characterization, Rodolphe Valentin Carro
High Pressure Testing Of Composite Solid Rocket Propellant Mixtures: Burner Facility Characterization, Rodolphe Valentin Carro
Electronic Theses and Dissertations
Much Research on composite solid propellants has been performed over the past few decades and much progress has been made, yet many of the fundamental processes are still unknown, and the development of new propellants remains highly empirical. Ways to enhance the performance of solid propellants for rocket and other applications continue to be explored experimentally, including the effects of various additives and the impact of fuel and oxidizer particle sizes on burning behavior. One established method to measure the burning rate of composite propellant mixtures in a controlled laboratory setting is to use a constant-volume pressure vessel, or strand …
Solar Energy For Disaster Response Using Space Program Resources, Florida Solar Energy Center, William Young
Solar Energy For Disaster Response Using Space Program Resources, Florida Solar Energy Center, William Young
FSEC Energy Research Center®
Satellite pictures, solar radiation levels on the earth's surface, Global Positioning Satellites (GPS) and other space-related resources are available through the efforts of many people and organizations. Satellites' measurements of these resources can be integrated with resources on earth to assess damage from disasters and evaluate resources available to respond. Space-related resources are currently being used by the American Red Cross, the Federal Emergency Management Agency, county Emergency Managers and other organizations. The widest use is in evaluating utility resources and deploying them for repair and emergency power in response to a disaster. Today's use of state-of-the-art satellite and Geographic …
Liquid Crystal Thermography Studies In Water Pool Boiling At Subatmospheric Pressures, Kiran Talari
Liquid Crystal Thermography Studies In Water Pool Boiling At Subatmospheric Pressures, Kiran Talari
Electronic Theses and Dissertations
A pool boiling experimental facility has been designed and built to investigate nucleate pool boiling in water under sub atmospheric pressure. Liquid crystal thermography, a non intrusive technique, is used for the determination of surface temperature distributions. This technique uses encapsulated liquid crystals that reflect definite colors at specific temperatures and viewing angle. Design of the test section is important in this experimental study. Since a new TLC is required for every new set of test conditions, a permanently sealed test section is not an option. The real challenge is to design a leak proof test section which is flexible …
Wall Heat Transfer Effects In The Endwall Region Behind A Reflected Shock Wave At Long Test Times, Corey Frazier
Wall Heat Transfer Effects In The Endwall Region Behind A Reflected Shock Wave At Long Test Times, Corey Frazier
Electronic Theses and Dissertations
Shock-tube experiments are typically performed at high temperatures (≥1200K) due to test-time constraints. These test times are usually ~1 ms in duration and the source of this short, test-time constraint is loss of temperature due to heat transfer. At short test times, there is very little appreciable heat transfer between the hot gas and the cold walls of the shock tube and a high test temperature can be maintained. However, some experiments are using lower temperatures (approx. 800K) to achieve ignition and require much longer test times (up to 15 ms) to fully study the chemical kinetics and combustion chemistry …
Heat Transfer In Multi-Layer Energetic Nanofilm On Composites Substrate, Manesh Navid Amini
Heat Transfer In Multi-Layer Energetic Nanofilm On Composites Substrate, Manesh Navid Amini
Electronic Theses and Dissertations
The main purpose of this work is the physical understanding and the numerical description of the reaction of the dense metastable intermolecular composition (MIC). Energy density of MIC is much higher than conventional energetic material; therefore, MIC finds more applications in the propellant and explosive system. The physical model includes the speed of propagation and rate of reaction, and the relationship between the layer thickness, heat rate, and length of the flame based on physical model. In Part I of this thesis, a one-dimensional model based on Weihs was developed for 20 pairs of a multi-layer of aluminum and copper …
A Study Of Syngas Oxidation At High Pressures And Low Temperatures, Danielle Marie Kalitan
A Study Of Syngas Oxidation At High Pressures And Low Temperatures, Danielle Marie Kalitan
Electronic Theses and Dissertations
Ignition and oxidation characteristics of CO/H2, H2/O2 and CO/H2/CH4/CO2/Ar fuel blends in air were studied using both experimental and computer simulation methods. Shock-tube experiments were conducted behind reflected shock waves at intermediate temperatures (825 < T < 1400 K) for a wide range of pressures (1 < P < 45 atm). Results of this study provide the first undiluted fuel-air ignition delay time experiments to cover such a wide range of syngas mixture compositions over the stated temperature range. Emission in the form of chemiluminescence from the hydroxyl radical (OH*) transition near 307 nm and the pressure behind the reflected shock wave were used to monitor reaction progress from which ignition delay times were determined. In addition to the experimental analysis, chemical kinetics calculations were completed to compare several chemical kinetics mechanisms to the new experimental results. Overall, the models were in good agreement with the shock-tube data, especially at higher temperatures and lower pressures, yet there were some differences between the models at higher pressures and the lowest temperatures, in some cases by as much as a factor of five. In order to discern additional information from the chemical kinetics mechanisms regarding their response to a wide range of experimental conditions, ignition delay time and reaction rate sensitivity analyses were completed at higher and lower temperatures and higher and lower pressures. These two sensitivity analyses allow for the identification of the key reactions responsible for ignition. The results of the sensitivity analysis indicate that the ignition-enhancing reaction H + O2 = O + OH and hydrogen oxidation kinetics in general were most important regardless of mixture composition, temperature or pressure. However, lower-temperature, higher-pressure ignition delay time results indicate additional influence from HO2- and CO- containing reactions, particularly the well-known H + O + M = HO2 + M reaction and also the CO + O + M = CO2 + M and CO + HO2 = CO2 + OH reactions. Differences in the rates of the CO-related reactions are shown to be the cause of some of the discrepancies amongst the various models at elevated pressures. However, the deviation between the models and the experimental data at the lowest temperatures could not be entirely explained by discrepancies in the current rates of the reactions contained within the mechanisms. Additional calculations were therefore performed to gain further understanding regarding the opposing ignition behavior for calculated and measured ignition delay time results. Impurities, friction induced ionization, static charge accumulation, boundary layer effects, wall reaction effects, and revised chemical kinetics were all considered to be possible mechanisms for the model and measured data disparity. For the case of wall-reaction effects, additional shock-tube experiments were conducted. For the remaining effects listed above, only detailed calculations were conducted. Results from this preliminary anomaly study are at this time inconclusive, but likely avenues for future study were identified. Additional kinetics calculations showed that the large difference between the experimental data and the chemical kinetics models predictions at low temperatures can be explained by at least one missing reaction relevant to low-temperature and high-pressure experimental conditions involving the formation of H2O2, although further study beyond the scope of this thesis is required to prove this hypothesis both theoretically and experimentally.
An Interactive Framework For Meshless Methods Analysis In Computational Mechanics And Thermofluids, Salvadore Anthony Gerace
An Interactive Framework For Meshless Methods Analysis In Computational Mechanics And Thermofluids, Salvadore Anthony Gerace
Electronic Theses and Dissertations
In recent history, the area of physics-based engineering simulation has seen rapid increases in both computer workstation performance as well as common model complexity, both driven largely in part by advances in memory density and availability of clusters and multi-core processors. While the increase in computation time due to model complexity has been largely offset by the increased performance of modern workstations, the increase in model setup time due to model complexity has continued to rise. As such, the major time requirement for solving an engineering model has transitioned from computation time to problem setup time. This is due to …
Lattice Boltzmann Simulation To Study Single And Multi Bubble Dynamics, Amit Gupta
Lattice Boltzmann Simulation To Study Single And Multi Bubble Dynamics, Amit Gupta
Electronic Theses and Dissertations
In recent years, the lattice Boltzmann method (LBM) has emerged as a powerful tool that has replaced conventional macroscopic techniques like Computational Fluid Dynamics (CFD) in many applications. The LBM starts from meso- and microscopic Boltzmann's kinetic equation to determine macroscopic fluid dynamics. The origins of LBM can be drawn back to lattice gas cellular automata (LGCA); however it lacks Galilean invariance and creates statistical noise in the system. LBM on the other hand does away from these drawbacks of LGCA, and is easy to implement in complex geometries and can be used to study microscopic flow behavior in complex …
The Nature Of Turbulence In A Narrow Apex Angle Isosceles Triangular Duct, Vaidyanathan Krishnan
The Nature Of Turbulence In A Narrow Apex Angle Isosceles Triangular Duct, Vaidyanathan Krishnan
Electronic Theses and Dissertations
An experimental investigation was performed to ascertain the nature of turbulence in a narrow apex angle isosceles triangular duct. The study involved the design and construction of a low noise, low turbulence wind tunnel that had an isosceles triangular test section with an apex angle of 11.5[degrees]. Experiments involved the measurement of velocity fluctuations using hot wire anemometry and wall pressure fluctuations using a condenser microphone. Measurement of the velocity fluctuations reconfirms the coexistence of laminar and turbulent regions at a given cross section for a range of Reynolds numbers. The laminar region is concentrated closer to the apex while …
Methods Of Extrapolating Low Cycle Fatigue Data To High Stress Amplitudes, David Charles Radonovich
Methods Of Extrapolating Low Cycle Fatigue Data To High Stress Amplitudes, David Charles Radonovich
Electronic Theses and Dissertations
Modern gas turbine component design applies much effort into prediction and avoidance of fatigue. Advances in the prediction of low-cycle fatigue (LCF) cracks will reduce repair and replacement costs of turbine components. These cracks have the potential to cause component failure. Regression modeling of low-cycle fatigue (LCF)test data is typically restricted for use over the range of the test data. It is often difficult to characterize the plastic strain curve fit constants when the plastic strain is a small fraction of the total strain acquired. This is often the case with high strength, moderate ductility Ni-base superalloys. The intent of …
Effects Of Position, Orientation, And Infiltrating Material On Three Dimensional Printing Models, Joseph William Frascati
Effects Of Position, Orientation, And Infiltrating Material On Three Dimensional Printing Models, Joseph William Frascati
Electronic Theses and Dissertations
This research defined and evaluated mechanical properties of prototypes created using a plaster based three-dimensional printing (3DP) system commercialized by Z Corporation. 3DP is one of the fastest growing forms of rapid prototyping. Till date, there is little or no information available on material properties of infiltrants used in 3DP. This research work evaluated and documented some of the useful information for 3DP users by determining the effect of build position, build orientation and infiltration materials on the strength of prototypes. The study was performed in three different phases to limit the processing variables and to arrive at definite conclusions …
Functional Disaster Resistant Buildings, Florida Solar Energy Center, William Young
Functional Disaster Resistant Buildings, Florida Solar Energy Center, William Young
FSEC Energy Research Center®
Natural disasters, such as hurricanes, floods, tornados, tsunami and earthquakes, are becoming a greater problem as they destroy lives, homes, businesses and the natural environment. Such 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. One proactive strategy to minimize this type of destruction and disruption to lives is the implementation of disaster-resistant buildings that are energy efficient, fortified to the latest codes, and incorporate renewable energy systems. This approach uses the best energy-efficient buildings, fortified to the latest …
Problems And Solutions: Training Disaster Organizations On The Use Of Pv, Florida Solar Energy Center, William Young
Problems And Solutions: Training Disaster Organizations On The Use Of Pv, Florida Solar Energy Center, William Young
FSEC Energy Research Center®
In 1992, the Florida Solar Energy Center (FSEC) and Sandia National Laboratories (SNL) assisted the University of Miami Field Epidemiology Survey Team (FEST) with photovoltaic systems to power temporary medical clinics after Hurricane Andrew struck south Dade County. At that time, it became apparent that there were no educational materials prepared for disaster relief or emergency management personnel on the use of photovoltaic (PV) to supply electrical power in response to a disaster. This need prompted FSEC to create an education program to develop awareness and train organizations on the proper use of PV in disasters. Since then, FSEC has …
Grid-Connected Photovoltaic System Design Review And Approval, Florida Solar Energy Center, James Dunlop
Grid-Connected Photovoltaic System Design Review And Approval, Florida Solar Energy Center, James Dunlop
FSEC Energy Research Center®
This document provides details of operations and procedures for the approval of grid-connected photovoltaic (PV) system designs and documentation conducted by the Florida Solar Energy Center. The principal goal of this process is to help ensure the safety and quality of installed PV systems, and provides an assurance to installers, consumers and financiers that approved designs meet accepted codes and industry practices, and are accompanied by a complete System Manual that meets the minimum requirements outlined in this document.
Test Method For Photovoltaic Module Ratings, Florida Solar Energy Center, Kevin Lynn
Test Method For Photovoltaic Module Ratings, Florida Solar Energy Center, Kevin Lynn
FSEC Energy Research Center®
This document describes the testing and reporting requirements for certification and labeling of photovoltaic modules (PV) for their power ratings. The test methods and procedures chosen for this purpose are based on consensus standards of relevant committees of the Institute of Electrical and Electronic Engineers (IEEE), the American Society for Testing and Materials (ASTM), or the International Electrotechnical Commission (IEC).
Executive Summary: Evaluation Of The Impact Of Vacant Home Space Conditioning Strategies On Summer Relative Humidity, Energy, And Peak Load; Phase Ii, Florida Solar Energy Center, James Cummings
Executive Summary: Evaluation Of The Impact Of Vacant Home Space Conditioning Strategies On Summer Relative Humidity, Energy, And Peak Load; Phase Ii, Florida Solar Energy Center, James Cummings
FSEC Energy Research Center®
The Vacant Home Space Conditioning Study was sponsored by Florida Power & Light (FPL) as part of its Conservation R&D Program and carried out by the Florida Solar Energy Center (FSEC). In the US, about one in four retiree "snowbirds" make Florida their destination to escape the northern cold. Snowbird residents number more than 900,000 in Florida during the winter. In some counties of FPL's territory these seasonal residents compose up to 15% of the population (Shih, 1981). This pattern of seasonal occupancy creates a need for space conditioning guidelines for vacant homes to avoid mold problems while minimizing both …
Solar Dhw Storage Tanks And Systems, Florida Solar Energy Center
Solar Dhw Storage Tanks And Systems, Florida Solar Energy Center
FSEC Energy Research Center®
Water is by far the most common storage medium in solar domestic hot water systems. Rock storage is another method of sensible heat storage, but is not generally used in systems that are exclusively DHW. Storage of heat in solutions of phase-changing salts is extremely rare in DHW systems and therefore is not discussed.
Field Monitoring And Computer Modeling To Determine Energy And Demand Savingsfrom The Melink Intellihood Exhaust And Make-Up Air Control System At Two Supermarkets, One Restaurant, And One Fast Food Restaurant, Florida Solar Energy Center, James Cummings
Field Monitoring And Computer Modeling To Determine Energy And Demand Savingsfrom The Melink Intellihood Exhaust And Make-Up Air Control System At Two Supermarkets, One Restaurant, And One Fast Food Restaurant, Florida Solar Energy Center, James Cummings
FSEC Energy Research Center®
Note: Only the Executive Summary of this proprietary report is available for public download.
Balanced Return Air, Duct Airtightness, And Combustion/Dilution Air Code Compliance In 40 Central Florida Homes, Florida Solar Energy Center, James Cummings
Balanced Return Air, Duct Airtightness, And Combustion/Dilution Air Code Compliance In 40 Central Florida Homes, Florida Solar Energy Center, James Cummings
FSEC Energy Research Center®
This report has been extracted from a larger report titled "Florida Building Code - Enhance Florida's Building to Next-Generation Energy & Mechanical Codes and Enrich Compliance", FSEC-CR-1678-06, November 29, 2006, which can be found at http://www.fsec.ucf.edu/en/publications/pdf/FSEC-CR-1678-06.pdf
Florida Building Code - Enhance Florida's Building To Next-Generation Energy & Mechanical Codes And Enrich Compliance, Florida Solar Energy Center, Muthusamy V. Swami
Florida Building Code - Enhance Florida's Building To Next-Generation Energy & Mechanical Codes And Enrich Compliance, Florida Solar Energy Center, Muthusamy V. Swami
FSEC Energy Research Center®
The project implemented ASHRAE 90.1 2004 into Florida's compliance tool, EnergyGauge, to allow inclusion of the methodologies and rule sets of ASHRAE 90.1-2004. The project also implemented IECC 2003 into Florida's compliance tool to allow inclusion of the methodologies of Chapters 4, 5, and 6 of the International Energy Conservation Code 2003 (IECC 2003). Field testing was completed in 40 central Florida homes (built after March 1, 2002) to examine compliance with the balanced return air, duct leakage, and combustion/dilution air requirements of the Florida Mechanical Code. A course titled Complying with Duct System Requirements of the Florida Energy Code …
Comparison Of Solar Hot Water Systems Simulated In Energygauge Usa And Trnsys 15, Florida Solar Energy Center, Michael Anello
Comparison Of Solar Hot Water Systems Simulated In Energygauge Usa And Trnsys 15, Florida Solar Energy Center, Michael Anello
FSEC Energy Research Center®
This document is meant to serve as a detailed summary of the comparison between the simulation methods of EnergyGauge USA and TRNSYS (version 15) relating to solar hot water systems. The initial motivation behind this comparison was to verify that the f-chart model created for EnergyGauge's solar hot water calculations was reporting the correct results. To this end, models of three systems were created in TRNSYS in order to serve as a baseline for the EnergyGauge results. The three systems modeled were: Liquid-active closed loop (LACL), Liquid-active open loop (LAOL), Integrated collector storage (ICS). This document will detail each of …
Measured Impacts Of Proper Air Conditioning Sizing In Four Florida Case Study Homes, Florida Solar Energy Center, Jeffrey Sonne
Measured Impacts Of Proper Air Conditioning Sizing In Four Florida Case Study Homes, Florida Solar Energy Center, Jeffrey Sonne
FSEC Energy Research Center®
Previous studies have shown that residential air-conditioning system oversizing is a common practice that has both energy and comfort penalties. A Florida Power and Light / Florida Solar Energy Center (FSEC) study involving over 350 homes found that 50% of the studies AC systems were over sized by 120% or more (James et al. 1997). The same study found oversizing AC systems by 1.0 to 1.2 times Manual J resulted in 3.7% higher cooling energy use and oversizing systems 1.2 to 1.5 times Manual J resulted in 9.3% higher cooling energy use.
The goal of Task 3.2, Benefits of Proper …
Building America Industrialized Housing Partnership (Baihp), Final Project Report, September 1, 1999 - June 30, 2006, Florida Solar Energy Center, Janet Mcilvaine
Building America Industrialized Housing Partnership (Baihp), Final Project Report, September 1, 1999 - June 30, 2006, Florida Solar Energy Center, Janet Mcilvaine
FSEC Energy Research Center®
This final report summarizes the work conducted by the Building America Industrialized Housing Partnership (www.baihp.org ) for the period 9/1/99 - 6/30/06. BAIHP is led by the Florida Solar Energy Center of the University of Central Florida and focuses on factory built housing. In partnership with over 50 factory and site builders, work was performed in two main areas - research and technical assistance.
In the research area -- through site visits in over 75 problem homes, we discovered the prime causes of moisture problems in some manufactured homes and our industry partners adopted our solutions to nearly eliminate this …
Field Monitoring And Hourly Simulation Modeling Of The Melink Intellihood Exhaust Control System At Two Supermarkets, One Restaurant, And One Fast Food Restaurant; Final Report, Florida Solar Energy Center, Lixing Gu
Field Monitoring And Hourly Simulation Modeling Of The Melink Intellihood Exhaust Control System At Two Supermarkets, One Restaurant, And One Fast Food Restaurant; Final Report, Florida Solar Energy Center, Lixing Gu
FSEC Energy Research Center®
Monitoring of variable speed control of exhaust and make-up air on four Florida buildings is performed. Computer modeling is used to determine energy and demand savings on a yearly basis.
Comparing Apples, Oranges And Grapefruits: An Analysis Of Current Building Energy Analysis Standards For Building America, Home Energy Ratings And The 2006 International Energy Conservation Code, Florida Solar Energy Center, Philip W. Fairey
Comparing Apples, Oranges And Grapefruits: An Analysis Of Current Building Energy Analysis Standards For Building America, Home Energy Ratings And The 2006 International Energy Conservation Code, Florida Solar Energy Center, Philip W. Fairey
FSEC Energy Research Center®
The purpose of this work is to determine the relationship between the U.S. Department of Energy's Building America (BA) Benchmarking Analysis methods and the energy-efficiency analysis methods used by the International Energy Conservation Code (IECC) and the Residential Energy Services Network (RESNET) and the Home Energy Rating Systems (HERS) industry for similar purposes. Analysis for three different home sizes conducted in seven different climate zones revealed no correlation between the analysis methods. Pros and cons are presented for different policy options for maintaining or changing the BA benchmark.