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Articles 3721 - 3750 of 5444
Full-Text Articles in Engineering
Estimating And Verifying Household Potential To Conserve Water, Francisco J. Suero, Peter W. Mayer, David E. Rosenberg
Estimating And Verifying Household Potential To Conserve Water, Francisco J. Suero, Peter W. Mayer, David E. Rosenberg
Civil and Environmental Engineering Faculty Publications
Behavior and technological impacts on residential indoor water use and conservation efforts in the United States are identified. Preexisting detailed end-use data was collected before and after toilets, faucets, showerheads, and clothes washers were retrofitted in 96 owner-occupied, single-family households in Oakland, California; Seattle, Washington; and Tampa, Florida, between 2000 and 2003. Water volume, duration of use, and time of use were recorded and disaggregated by appliance for two weeks before and four weeks after appliances were retrofitted. For each appliance, observed differences in water use before and after retrofits are compared to water savings predicted by simple analytical, regression, …
Acetone, Butanol, And Ethanol Production From Algae Biomass Using Anaerobic Solventogenic Microorganisms, Neal Hengge, Joshua Ellis
Acetone, Butanol, And Ethanol Production From Algae Biomass Using Anaerobic Solventogenic Microorganisms, Neal Hengge, Joshua Ellis
Student Showcase
The ability to convert the carbohydrates present within algae biomass to high value industrial solvents, namely bio-acetone and bio-butanol, has been demonstrated. Clostridium sp., an obligate anaerobic, spore forming, saccharolytic, and acetone butanol and ethanol (ABE) producing microorganism is capable of metabolizing the carbohydrates present in algal cells. This metabolic activity produces acetone and butanol, in relatively high quantities, as fermentative byproducts. This has been confirmed via GC analysis of the clarified supernatant measured against calibration curves established using analytical standards. Our claim is that we can produce these high value and renewable solvents using algae biomass as well as …
Water Main Break Rates In The Usa And Canada: A Comprehensive Study, April 2012, Steven Folkman
Water Main Break Rates In The Usa And Canada: A Comprehensive Study, April 2012, Steven Folkman
Mechanical and Aerospace Engineering Faculty Publications
Modern societies base their economic prosperity on a standard of living which includes a complex network of infrastructure, both above and below ground. Quality drinking water brought to the tap through elaborate underground distribution systems is a critical component to our public health and economic well-being. In the USA and Canada, it has been the hallmark of our industry and cooperation.
EVIDENCE OF DECLINE
Our water infrastructure is now in decline after decades of service. The signs of distress surface daily as water mains break, creating floods and sink holes. The loss of water service is more than an inconvenience, …
Effects Of Particulates On Water Meter Accuracy Through Expected Life, B. Skyler Buck, Michael C. Johnson, Steven L. Barfuss
Effects Of Particulates On Water Meter Accuracy Through Expected Life, B. Skyler Buck, Michael C. Johnson, Steven L. Barfuss
Civil and Environmental Engineering Faculty Publications
Many factors can influence the accuracy of water meters, including age, throughput, water quality, and the presence of particulates in the metered water. These factors can affect various types of meters quite differently depending on the meter's design. This article examines the effects of particulates on various types of meters over their estimated life in a controlled environment. The intent of this study was to assess the effect of particulates on new meter performance and identify trends that may typify meter performance and longevity after being subjected to a slug of particulates. Oscillating-piston (displacement-piston) meters were most affected by a …
The Cuahsi Community Hydrologic Information System, David G. Tarboton, D. R. Maidment, I. Zaslavsky, Daniel Ames, J. L. Goodall, R. P. Hooper, Jeffery S. Horsburgh
The Cuahsi Community Hydrologic Information System, David G. Tarboton, D. R. Maidment, I. Zaslavsky, Daniel Ames, J. L. Goodall, R. P. Hooper, Jeffery S. Horsburgh
Civil and Environmental Engineering Faculty Publications
No abstract provided.
An Milp-Based Aging-Aware Routing Algorithm For Nocs, Kshitij Bhardwaj, Koushik Chakraborty, Sanghamitra Roy
An Milp-Based Aging-Aware Routing Algorithm For Nocs, Kshitij Bhardwaj, Koushik Chakraborty, Sanghamitra Roy
Electrical and Computer Engineering Faculty Publications
Network-on-Chip (NoC) architectures have emerged as a better replacement of the traditional bus-based communication in the many-core era. However, continuous technology scaling has made aging mechanisms such as Negative Bias Temperature Instability (NBTI) and electromigration primary concerns in NoC design. In this paper1, we propose a novel system-level aging model to model the effects of asymmetric aging in NoCs. We observe a critical need of a holistic aging analysis, which when combined with power-performance optimization, poses a multi-objective design challenge. To solve this problem, we propose a Mixed Integer Linear Programming (MILP)-based aging-aware routing algorithm that optimizes the various design …
Stack Aware Threshold Voltage Assignment In 3-D Multicore Designs, Koushik Chakraborty, Sanghamitra Roy
Stack Aware Threshold Voltage Assignment In 3-D Multicore Designs, Koushik Chakraborty, Sanghamitra Roy
Electrical and Computer Engineering Faculty Publications
Due to the inherent nature of heat flow in 3-D integrated circuits, stacked dies exhibit a wide range of thermal characteristics. The temperature of dies progressively increases with increasing distance from the heat sink. This heterogeneous temperature profile coupled with the strong dependence of leakage on temperature and process variation plays havoc in achieving system level energy efficiency in such systems, complicating the task of power provisioning in 3-D multicores. In this paper, we address this power provisioning challenge in 3-D ICs by advocating a novel stack aware microprocessor design paradigm, where the circuit designers are aware of the intended …
Canopy Radiation Transmission For An Energy Balance Snowmelt Model, Vinod Mahat, David G. Tarboton
Canopy Radiation Transmission For An Energy Balance Snowmelt Model, Vinod Mahat, David G. Tarboton
Civil and Environmental Engineering Faculty Publications
To better estimate the radiation energy within and beneath the forest canopy for energy balance snowmelt models, a two stream radiation transfer model that explicitly accounts for canopy scattering, absorption and reflection was developed. Upward and downward radiation streams represented by two differential equations using a single path assumption were solved analytically to approximate the radiation transmitted through or reflected by the canopy with multiple scattering. This approximation results in an exponential decrease of radiation intensity with canopy depth, similar to Beer's law for a deep canopy. The solution for a finite canopy is obtained by applying recursive superposition of …
Simple Optimization Method To Determine Best Management Practices To Reduce Phosphorus Loading In Echo Reservoir, Utah, Omar Alminagorta, Bereket Tesfatsion, David E. Rosenberg, Bethany T. Neilson
Simple Optimization Method To Determine Best Management Practices To Reduce Phosphorus Loading In Echo Reservoir, Utah, Omar Alminagorta, Bereket Tesfatsion, David E. Rosenberg, Bethany T. Neilson
Civil and Environmental Engineering Faculty Publications
This study develops and applies a simple linear optimization program to identify cost effective Best Management Practices (BMPs) to reduce phosphorus loading to Echo Reservoir, Utah. The optimization program tests the feasibility of proposed Total Maximum Daily Load (TMDL) allocations based on potential BMP options and provides information regarding the spatial redistribution of loads among sub-watersheds. The current version of the TMDL for Echo reservoir allocates phosphorus loads to existing non-point phosphorus sources in different sub-watersheds to meet a specified total load. Optimization results show that it is feasible to implement BMPs for non-point sources in each sub-watershed to meet …
Year Eight Annual Report: Activities, Findings And Evaluators' Reports, Ncete Faculty, Jim Dorward
Year Eight Annual Report: Activities, Findings And Evaluators' Reports, Ncete Faculty, Jim Dorward
Reports to NSF
The National Center for Engineering and Technology Education (NCETE) is a collaborative network of scholars with backgrounds in technology education, engineering, and related fields. Our mission is to build capacity in technology education and to improve the understanding of the learning and teaching of high school students and teachers as they apply engineering design processes to technological problems. NCETE was granted a no-cost extension for an eighth year of work. Significant activities were focused in three areas: building research capacity within the engineering and technology education field; building on current research programs; and communicating and disseminating NCETE works and findings.
Dr. Regan Zane Joins The Ece Department As A Ustar Professor | Utah State University Power Electronics Lab, Usu College Of Engineering
Dr. Regan Zane Joins The Ece Department As A Ustar Professor | Utah State University Power Electronics Lab, Usu College Of Engineering
College of Engineering News
The ECE Department is pleased to announce that Dr. Regan Zane has joined us as a USTAR professor in the area of electrical power conversion. His work, funded by USTAR, DOE, and other sources, deals with efficient and bidirectional conversion of power levels.
Team Based Engineering Design Thinking, Nathan Mentzer
Team Based Engineering Design Thinking, Nathan Mentzer
Publications
The objective of this research was to explore design thinking among teams of high school students. This objective is encompassed in the research question driving this inquiry: How do teams of high school students allocate time across stages of design? Design thinking on the professional level typically occurs in a team environment. Many individuals contribute in a variety of ways to facilitate the successful development of a solution to a problem. Teachers often require students to work in groups, but little is known about how the group functions in the context of design and the potential interaction between group performance …
Infusing Engineering Concepts: Teaching Engineering Design, Jenny L. Daugherty
Infusing Engineering Concepts: Teaching Engineering Design, Jenny L. Daugherty
Publications
Engineering has gained considerable traction in many K-12 schools. However, there are several obstacles or challenges to an effective approach that leads to student learning. Questions such as where engineering best fits in the curriculum; how to include it authentically and appropriately; toward what educational end; and how best to prepare teachers need to be answered. Integration or infusion appears to be the most viable approach; instead of stand-alone engineering courses squeezing into the already crammed curriculum. An integrative approach whereby engineering is infused into the existing curriculum, within science, technology, mathematics or other courses, appears to be the best …
Incorporating Engineering Design Challenges Into Stem Courses, Daniel L. Householder, Christine E. Hailey
Incorporating Engineering Design Challenges Into Stem Courses, Daniel L. Householder, Christine E. Hailey
Publications
The National Center for Engineering and Technology Education (NCETE) invited a small group of experienced engineering educators, curriculum developers, cognitive scientists, and professional development providers to engage in the discussion of guidelines for the selection and development of engineering design challenges suitable for all students in grades 9-12. That effort resulted in seven provocative papers (Carr & Strobel, 2011; Denson, 2011; Eisenkraft, 2011; Hynes et al., 2011; Jonassen, 2011a; Schunn, 2011; Sneider, 2011) that are accessible on the NCETE web site at http://ncete.org/flash/research.php NCETE hosted two Caucuses, each consisting of “a group of people united to promote an agreed-upon cause” …
Final Report: Accomplishments And Findings, Ncete Faculty
Final Report: Accomplishments And Findings, Ncete Faculty
Reports to NSF
The National Center for Engineering and Technology Education (NCETE) was funded on August 15, 2004 under the auspices of the Centers for Learning and Teaching (CLT) program in the Division of Elementary, Secondary and Informal Education. The Program Solicitation (NSF 04-501) provided the following synopsis of the program: The Centers for Learning and Teaching program focuses on the advanced preparation of science, technology, engineering, and mathematics (STEM)educators as well as the establishment of meaningful partnerships with education stakeholders, especially PhD-granting institutions, school systems, and informal education performances. Its goal is to renew and diversify the care of leaders in STEM …
High Intensity Land Treatment (Hilt) Practices, John P. Martin, Ronald C. Sims
High Intensity Land Treatment (Hilt) Practices, John P. Martin, Ronald C. Sims
Reports
Land treatment is categorized in the Resource Conservation and Recovery Act of 1976 (RCRA) as one of the land disposal options for managing hazardous waste constituents within the defined treatment zone before such constituents can be transported to surface water, groundwater, or air. Under the authroity of Subtitle C of RCFA, the U.S. Environmental Protection Agency has promulgated regulations governing the treatment and disposal of hazardous wastes in land treatment units (40 CFR, Part 264, Subpart M, July 26, 1982). The objectives of this report were to identify land treatment facilities meeting the defined high intensity land treatment (HILT) criteria, …
Solving Problems In Water Quality, Utah Water Research Laboratory
Solving Problems In Water Quality, Utah Water Research Laboratory
Reports
No abstract provided.
Cee & Uwrl Research In Action, Utah Water Research Laboratory
Cee & Uwrl Research In Action, Utah Water Research Laboratory
Reports
Introduction: The Department of Civil and Environmental Engineer (CEE) and the Utah Water Research Laboratory (UWRL) have a symbiotic working relationship. The CEE Department provides the pricipal investigators with academic affiliation to the university while the UWRL provides faculty with a strong water research arena. Both the CEE department and the UWRL have been involved in research and problem solving for government agencies and private industry.
Information For Operation Of Water Supply Systems, L. Douglas James, Glen E. Stringham, J. Clair Batty
Information For Operation Of Water Supply Systems, L. Douglas James, Glen E. Stringham, J. Clair Batty
Reports
Introduction: Water requirements increase as more people use more water for domestic purposes. The increase is augmented as technological advances add to the water needs of agriculture and industry. Additional urban landscaping adds further to the demand. Simultaneously, the same forces increase demands for flood control, hydrelectric power, and navigation; and a more urbanized population want more flows preserved for productive natural environments, recreational use, and aesthetic enjoyment. The response over the years to these growing demands on water resources has been to supply increasing amounts of water and greater levels of development for other purposes by building more projects, …
Hydrologic Efficiency In Water Conservation, L. Douglas James
Hydrologic Efficiency In Water Conservation, L. Douglas James
Reports
Introduction: The hydrologic cycle can be subdivided into three phases: 1)Humidity is transported within the atmosphere and becomes precipitation, and 2) Water moves downhill until eventually reaching the sea while all the time 3) Evapotranspiration returns exposed moisture to the atmosphere. During its movement, flowing water transports suspended sediments and dissolved minerals to reshape landforms and redistribute the mineral composition of the earth's surface throughout geologic time. It is during the second phase that flowing water can be diverted for uses that generally add to evaportranspiration (through consumptive use) and transport (through waste disposal). The water resources development that serves …
Urban Particulate Matter Activates Akt In Human Lung Cells, T. L. Watterson, B. Hamilton, Randy S. Martin, R. A. Coloumb Jr.
Urban Particulate Matter Activates Akt In Human Lung Cells, T. L. Watterson, B. Hamilton, Randy S. Martin, R. A. Coloumb Jr.
Civil and Environmental Engineering Faculty Publications
The normally picturesque Cache Valley in northern Utah is frequently reported to have the worst particulate (PM) air pollution in the United States. Numerous epidemiological studies conducted elsewhere have associated PM exposure to a variety of cardiovascular diseases and early mortality. We have previously shown that Cache Valley PM (CVPM) is pro-inflammatory, through a variety of mechanisms involving the release of inflammatory cytokines, unfolded protein response, ER stress, and C-reactive protein (CRP). This study was undertaken to determine whether Cache Valley PM (CVPM) would activate Akt, an upstream mechanism common to these events. Human lung (BEAS-2B) cells were treated with …
Geographical Assessment Of Microalgae Biofuels Potential Incorporating Resource Availability, Jason C. Quinn, Kimberly Catton, Sara Johnson, Thomas H. Bradley
Geographical Assessment Of Microalgae Biofuels Potential Incorporating Resource Availability, Jason C. Quinn, Kimberly Catton, Sara Johnson, Thomas H. Bradley
Mechanical and Aerospace Engineering Faculty Publications
Previous assessments of the economic feasibility and large-scale productivity of microalgae biofuels have not considered the impacts of land and carbon dioxide (CO2) availability on the scalability of microalgae-based biofuels production. To accurately assess the near-term productivity potential of large-scale microalgae biofuel in the US, a geographically realized growth model was used to simulate microalgae lipid yields based on meteorological data. The resulting lipid productivity potential of Nannochloropsis under large-scale cultivation is combined with land and CO2 resource availability illustrating current geographically feasible production sites and corresponding productivity in the US. Baseline results show that CO2 transport constraints will limit …
Spatially Localized Measurement Of Thermal Conductivity Using A Hybrid Photothermal Technique, Zilong Hua, Heng Ban, Marat Khafizov, Robert Schley, Rory Kennedy, David H. Hurley
Spatially Localized Measurement Of Thermal Conductivity Using A Hybrid Photothermal Technique, Zilong Hua, Heng Ban, Marat Khafizov, Robert Schley, Rory Kennedy, David H. Hurley
Mechanical and Aerospace Engineering Faculty Publications
A photothermal technique capable of measuring thermal conductivity with micrometer lateral resolution is presented. This technique involves measuring separately the thermal diffusivity, D, and thermal effusivity, e, to extract the thermal conductivity, k = (e2/D)1/2. To generalize this approach, sensitivity analysis is conducted for materials having a range of thermal conductivities. Application to nuclear fuel is consider by performing experimental validation using two materials (CaF2 and SiO2) having thermal properties representative of fresh and high burnup nuclear fuel. The measured conductivities compare favorably with literature values.
Parametric Study Of The Frequency-Domain Thermoreflectance Technique, C. Xing, C. Jensen, Z. Hua, Heng Ban, D. H. Hurley, M. Khafizov, J. R. Kennedy
Parametric Study Of The Frequency-Domain Thermoreflectance Technique, C. Xing, C. Jensen, Z. Hua, Heng Ban, D. H. Hurley, M. Khafizov, J. R. Kennedy
Mechanical and Aerospace Engineering Faculty Publications
Without requiring regression for parameter determination, one-dimensional (1D) analytical models are used by many research groups to extract the thermal properties in frequency-domain thermoreflectance measurements. Experimentally, this approach involves heating the sample with a pump laser and probing the temperature response with spatially coincident probe laser. Micron order lateral resolution can be obtained by tightly focusing the pump and probe lasers. However, small laser beam spot sizes necessarily bring into question the assumptions associated with 1D analytical models. In this study, we analyzed the applicability of 1D analytical models by comparing to 2D analytical and fully numerical models. Specifically, we …
Optimizing Reservoir-Stream-Aquifer Interactions For Conjunctive Use And Hydropower Production, Hala Fayad, Richard C. Peralta, Ali Forghani
Optimizing Reservoir-Stream-Aquifer Interactions For Conjunctive Use And Hydropower Production, Hala Fayad, Richard C. Peralta, Ali Forghani
Civil and Environmental Engineering Faculty Publications
Conjunctive management of water resources involves coordinating use of surface water and groundwater resources. Very few simulation/optimization (S-O) models for stream-aquifer system management have included detailed interactions between groundwater, streams, and reservoir storage. This paper presents an S-O model doing that via artificial neural network simulators and genetic algorithm optimizer for multiobjective conjunctive water use problems. The model simultaneously addresses all significant flows including reservoir-stream-diversion-aquifer interactions in a more detailed manner than previous models. The model simultaneously maximizes total water provided and hydropower production. A penalty function implicitly poses constraints on state variables. The model effectively finds feasible optimal solutions …
The Cuahsi Community Hydrologic Information System (Invited), David G. Tarboton, D. R. Maidment, I. Zaslavsky, Daniel Ames, J. L. Goodall, R. P. Hooper, Jeffery S. Horsburgh
The Cuahsi Community Hydrologic Information System (Invited), David G. Tarboton, D. R. Maidment, I. Zaslavsky, Daniel Ames, J. L. Goodall, R. P. Hooper, Jeffery S. Horsburgh
Civil and Environmental Engineering Faculty Publications
Hydrologic information is collected by many individuals and organizations in government and academia for many purposes, including general monitoring of the condition of the water environment and specific investigations of hydrologic processes. Comprehensive understanding of hydrology requires integration of this information from multiple sources. The Consortium of Universities for the Advancement of Hydrologic Science, Inc. (CUAHSI) has developed a Hydrologic Information System (HIS) to provide better access to data by enabling the publication, cataloging, discovery and retrieval of hydrologic data using web services. This paper describes HIS capability developed to promote data sharing and interoperability in the Hydrologic Sciences with …
Creating Tomorrow, Fall 2011, College Of Engineering
Creating Tomorrow, Fall 2011, College Of Engineering
College of Engineering Magazines
Annual magazine for the College of Engineering at Utah State University.
Evaluation And Seismically Isolated Substructure Redesign Of A Typical Multi-Span Pre-Stressed Concrete Girder Highway Bridge, Brian D. Richins
Evaluation And Seismically Isolated Substructure Redesign Of A Typical Multi-Span Pre-Stressed Concrete Girder Highway Bridge, Brian D. Richins
All Graduate Theses and Dissertations, Spring 1920 to Summer 2023
Seismic considerations greatly influence the lateral and vertical design of a structure, often necessitating larger elements than would otherwise be required. Seismic isolation greatly reduces the demands on a structure due to earthquake loading, allowing the use of smaller, more efficient members and foundations. This case study illustrates the theory and procedure of evaluating the response of a recently built multi-span highway bridge using the most recent (2009) AASHTO code. Based on this response, an equivalent structure was designed to incorporate a seismic isolation system, and the substructure of the isolated bridge redesigned to meet the reduced demands more economically. …
Closed-Loop Attitude Control Using Fluid Dynamic Vectoring On An Aerospike Nozzle, Nathan Erni
Closed-Loop Attitude Control Using Fluid Dynamic Vectoring On An Aerospike Nozzle, Nathan Erni
All Graduate Plan B and other Reports, Spring 1920 to Spring 2023
Attitude control of a prototype satellite bus using fluid mechanical vectoring on an aerospike nozzle is demonstrated. The design achieves thrust vectoring by injecting propellant asymmetrically into the unconstrained aerospike exhaust plume near the nozzle base. The prototype system uses cold-gas thrusters to both spin-up and de-tumble the test article. The system is configured with axially directed annular flows that produce large longitudinal thrusts and smaller secondary lateral-injection flows for side thrusts. Both open and closed-loop attitude control, with and without main aerospike annular flow active, are demonstrated. Proportional, integral, derivative (PID) regulation is used for closed-loop attitude control. When …
Nonlinear Aerodynamic Corrections To Blade Element Momentum Model With Validation Experiments, Robert S. Merrill
Nonlinear Aerodynamic Corrections To Blade Element Momentum Model With Validation Experiments, Robert S. Merrill
All Graduate Plan B and other Reports, Spring 1920 to Spring 2023
Blade element momentum theory is well suited for propeller analysis during the early stages of design. The analytic blade element momentum model is presented along with a proposed nonlinear improvement. The analytical model makes small angle assumptions which are known to be inaccurate under some conditions. The nonlinear model avoids these assumptions. The results of the analytical and nonlinear models are compared against each other. The differences between these are most prevalent on lower pitch propellers at high advance ratios. A wind tunnel validation test is outlined. Results of the validation test and other published data from the University of …