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Full-Text Articles in Engineering

A General Approach To Lifting-Line Theory, Applied To Wings With Sweep, Jackson T. Reid Aug 2020

A General Approach To Lifting-Line Theory, Applied To Wings With Sweep, Jackson T. Reid

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Lifting-line theory is one simple method of predicting the lift produced by a wing. The traditional implementation of lifting-line theory, developed in 1918, is limited to predicting the lift of traditional straight wings. In this work, lifting-line theory is extended to predict the lift produced by modern swept (or "v-shaped") wings by strategically handling the singularities inherent to the theory. The resulting formulation is shown to be both accurate and computationally inexpensive, when compared to experimental and higher-fidelity computational results, demonstrating the method's usefulness as an aerodynamic design tool. Because of the low computational cost and accuracy of the method …


Submerged And Floating Woody Debris-Blocking Sensitivity Of Labyrinth Weirs, Taylor Vaughn Aug 2020

Submerged And Floating Woody Debris-Blocking Sensitivity Of Labyrinth Weirs, Taylor Vaughn

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Accumulation of floating and submerged woody debris at flow control structures can result in reduced discharge efficiency (higher upstream head for a given weir discharge). Labyrinth weirs are more prone to debris blockage than less efficient control structures due to their ability to pass large amounts of flow with relatively small heads. Labyrinth weirs also have geometric properties that are more likely to prevent debris from passing over the weir than linear weirs.

A laboratory study was performed to evaluate the interaction between labyrinth weirs and debris sizes. The individual debris tests indicated that debris blockage probability is influenced by …


Protecting Crops From Abiotic Stress: Copper Oxide Nanoparticle Effects On Wheat And A Beneficial Rhizobacterium, Matthew Potter Aug 2020

Protecting Crops From Abiotic Stress: Copper Oxide Nanoparticle Effects On Wheat And A Beneficial Rhizobacterium, Matthew Potter

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Nanoparticles (NPs) are defined as particles less than 100 nm in at least one dimension. CuO NPs have possible applications in agriculture as micronutrient sources, pesticides, and enhancers of crop stress tolerance. Here, three aspects of CuO NP agricultural applications are studied: 1) the potential of CuO NPs to prevent wheat lodging-when crops irreversibly fall over; 2) CuO NP-induced drought tolerance in wheat seedlings; and 3) the effects of CuO NPs on outer membrane vesicle (OMV) production by Pseudomonas chlororaphis O6 (PcO6), a plant-health promoting bacterium.

Wheat grown 7 d exposed to CuO NPs in the growth matrix …


Design Of A Sweeping Impedance Probe For The Sport Mission, Caleb W. Young Aug 2020

Design Of A Sweeping Impedance Probe For The Sport Mission, Caleb W. Young

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

In our modern world satellite systems are an evermore common part of day to day life. Reliable communication from the ground to these satellites is becoming more and more necessary. Plasma scintillations in the ionosphere can make these communications difficult or even impossible. By gaining a better understanding of these scintillations, times of bad satellite connection can be predicted in the same way terrestrial weather gets predicted and reported today. The objective of the SPORT mission is to gain a better understanding of these plasma scintillations. In order to measure plasma density, and gain a better understanding of plasma scintillations, …


Study Of Levee Underseepage Through Abandoned Channels And Point Bars On Curved Levee Sections Using The Response Surface-Monte Carlo Method, Tomsen Reed Aug 2020

Study Of Levee Underseepage Through Abandoned Channels And Point Bars On Curved Levee Sections Using The Response Surface-Monte Carlo Method, Tomsen Reed

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

The current procedures for calculated the probability of failure of levees (earthen structures designed to prevent flooding of important locations) all have their own unique limitations. Some methods are very simplistic, and either ignore or do not allow for inclusion of complex geometries. Other methods allow for complex geometry, but do not lend themselves to large quantities of analysis because of the amount of time it takes to create or modify a model. For these reasons, previous research performed by Lourdes Polanco and Dr. John Rice developed the preliminary stages of a new method called the Response Surface-Monte Carlo method. …


Environmental Engineering Student Wins Stipend, Usu College Of Engineering Jul 2020

Environmental Engineering Student Wins Stipend, Usu College Of Engineering

College of Engineering News

July 28, 2020 — Utah State University graduate student Jade Snyder Echard will receive a $10,000 stipend from a national organization that encourages students to pursue Master of Science degrees in environmental engineering.


A Win For Women In Transportation Engineering, Usu College Of Engineering Jul 2020

A Win For Women In Transportation Engineering, Usu College Of Engineering

College of Engineering News

July 27, 2020—Utah State University graduate student Ferdousy Runa will receive a $4,000 scholarship for her work studying pedestrian activity. Runa's research will help inform transportation planners and lead to safety improvements at busy intersections.


Usu Awarded $5.6m For Vehicle Technology Research, Usu College Of Engineering Jul 2020

Usu Awarded $5.6m For Vehicle Technology Research, Usu College Of Engineering

College of Engineering News

July 22, 2020 — Utah State University researchers will receive four major grants from the U.S. Department of Energy to lead advancements in vehicle and transportation technology.


Collaborative Research: Network Hub: Enabling, Supporting, And Communicating Critical Zone Research, Jeffery S. Horsburgh Jul 2020

Collaborative Research: Network Hub: Enabling, Supporting, And Communicating Critical Zone Research, Jeffery S. Horsburgh

Funded Research Records

No abstract provided.


Usu Biological Engineers Monitor Coronavirus In Sewage, Usu College Of Engineering Jul 2020

Usu Biological Engineers Monitor Coronavirus In Sewage, Usu College Of Engineering

College of Engineering News

July 16, 2020 — A recent statewide pilot study confirmed that coronavirus can be detected in sewage that enters wastewater treatment facilities. The findings may lead to new public health tools that help track infection rates and trends.


Discovery Of A Novel Analogue Of Fr901533 And The Corresponding Biosynthetic Gene Cluster From Streptosporangium Roseum No. 79089, Fuchao Xu, Yonghong Liang, Jie Ren, Siyuan Wang, Jixun Zhan Jul 2020

Discovery Of A Novel Analogue Of Fr901533 And The Corresponding Biosynthetic Gene Cluster From Streptosporangium Roseum No. 79089, Fuchao Xu, Yonghong Liang, Jie Ren, Siyuan Wang, Jixun Zhan

Biological Engineering Faculty Publications

FR901533 (1, also known as WS79089B), WS79089A (2), and WS79089C (3) are polycyclic aromatic natural products with promising inhibitory activity to endothelin-converting enzymes. In this work, we isolated five tridecaketide products from Streptosporangium roseum No. 79089, including 1-3, benaphthamycin (4) and a novel FR901533 analogue (5). The structure of 5 was characterized based on spectroscopic data. Compared to the major product 2, the new compound 5 has an additional hydroxyl group at C-12 and an extra methyl group at the 13-OH. The configuration of C-19 of these compounds …


Improving Thermal Conduction Across Cathode/Electrolyte Interfaces In Solid-State Lithium-Ion Batteries By Hierarchical Hydrogen-Bond Network, Jinlong He, Lin Zhang, Ling Liu Jul 2020

Improving Thermal Conduction Across Cathode/Electrolyte Interfaces In Solid-State Lithium-Ion Batteries By Hierarchical Hydrogen-Bond Network, Jinlong He, Lin Zhang, Ling Liu

Mechanical and Aerospace Engineering Student Publications and Presentations

Effective thermal management is an important issue to ensure safety and performance of lithium-ion batteries. Fast heat removal is highly desired but has been obstructed by the high thermal resistance across cathode/electrolyte interface. In this study, self-assembled monolayers (SAMs) are used as the vibrational mediator to tune interfacial thermal conductance between an electrode, lithium cobalt oxide (LCO), and a solid state electrolyte, polyethylene oxide (PEO). Embedded at the LCO/PEO interface, SAMs are specially designed to form hierarchical hydrogen-bond (H-bond) network with PEO. Molecular dynamics simulations demonstrate that all SAM-decorated interfaces show enhanced thermal conductance and dominated by H-bonds types. The …


Greentpu: Predictive Design Paradigm For Improving Timing Error Resilience Of A Near-Threshold Tensor Processing Unit, Pramesh Pandey, Prabal Basu, Koushik Chakraborty, Sanghamitra Roy Jul 2020

Greentpu: Predictive Design Paradigm For Improving Timing Error Resilience Of A Near-Threshold Tensor Processing Unit, Pramesh Pandey, Prabal Basu, Koushik Chakraborty, Sanghamitra Roy

Electrical and Computer Engineering Faculty Publications

The emergence of hardware accelerators has brought about several orders of magnitude improvement in the speed of the deep neural-network (DNN) inference. Among such DNN accelerators, the Google tensor processing unit (TPU) has transpired to be the best-in-class, offering more than 15\times speedup over the contemporary GPUs. However, the rapid growth in several DNN workloads conspires to escalate the energy consumptions of the TPU-based data-centers. In order to restrict the energy consumption of TPUs, we propose GreenTPU - a low-power near-threshold (NTC) TPU design paradigm. To ensure a high inference accuracy at a low-voltage operation, GreenTPU identifies the patterns in …


Quantum Frontiers: To Boldly Go, Michael Dixon, Cali Christensen, Rachael Leisek Jul 2020

Quantum Frontiers: To Boldly Go, Michael Dixon, Cali Christensen, Rachael Leisek

Space Dynamics Laboratory Publications

We have lift off!

Cali Christensen started her summer at Quantum Frontiers (QF) at an intern lunch. Seated around her were 20 other interns from universities all over the country who had been selected from a pool of over 900 applicants to participate in high-tech, space-related research endeavors pushing the boundaries of various fields such as engineering, mathematics, computer science, machine learning, and physics. Cali quickly realized after the first presentation that she may be one of the only non-engineer or scientists in the room. Her internship was different from any others that QF had yet sponsored. Instead of making …


Restoring Lake Urmia: Moving Beyond A Uniform Lake Level (2-Page Summary), Somayeh Sima, Dory Rosenberg, Wayne A. Wurtsbaugh, Sarah E. Null, Karin M. Kettenring Jul 2020

Restoring Lake Urmia: Moving Beyond A Uniform Lake Level (2-Page Summary), Somayeh Sima, Dory Rosenberg, Wayne A. Wurtsbaugh, Sarah E. Null, Karin M. Kettenring

Watershed Sciences Faculty Publications

More than 5 million people live near Lake Urmia in northwestern Iran, one of the world's largest hypersaline lakes. Over the past two decades, the lake has lost 95% of its volume, lake level has dropped more than 7 m, and lake restoration has gained widespread interest. The government seeks a uniform "ecological" target lake level of 1274.1 m above sea level to lower salinity below 240 gL-1 and recover brine shrimp (Artemia spp.) and flamingos (Phoenicopterus roseus).

We have synthesized over 40 years of available data, defined 8 ecosystem services for human health, water quality, ecology, recreation, and …


Yingying Zheng Joins Usu Biological Engineering Department, Usu College Of Engineering Jun 2020

Yingying Zheng Joins Usu Biological Engineering Department, Usu College Of Engineering

College of Engineering News

June 29, 2020 — Dr. Yingying Zheng will be joining the Biological Engineering faculty as a tenure-track assistant professor on August 1, 2020.


A Low-Cost, Open Source Monitoring System For Collecting High Temporal Resolution Water Use Data On Magnetically Driven Residential Water Meters, Camilo J. Bastidas Pacheco, Jeffery S. Horsburgh, Robb J. Tracy Jun 2020

A Low-Cost, Open Source Monitoring System For Collecting High Temporal Resolution Water Use Data On Magnetically Driven Residential Water Meters, Camilo J. Bastidas Pacheco, Jeffery S. Horsburgh, Robb J. Tracy

Publications

We present a low-cost (≈$150) monitoring system for collecting high temporal resolution residential water use data without disrupting the operation of commonly available water meters. This system was designed for installation on top of analog, magnetically driven, positive displacement, residential water meters and can collect data at a variable time resolution interval. The system couples an Arduino Pro microcontroller board, a datalogging shield customized for this specific application, and a magnetometer sensor. The system was developed and calibrated at the Utah Water Research Laboratory and was deployed for testing on five single family residences in Logan and Providence, Utah, for …


Existing Empirical Kinetic Models In Biochemical Methane Potential (Bmp) Testing, Their Selection And Numerical Solution, Yehor Pererva, Charles D. Miller, Ronald C. Sims Jun 2020

Existing Empirical Kinetic Models In Biochemical Methane Potential (Bmp) Testing, Their Selection And Numerical Solution, Yehor Pererva, Charles D. Miller, Ronald C. Sims

Biological Engineering Faculty Publications

Biochemical Methane Potential (BMP) tests are a crucial part of feasibility studies to estimate energy recovery opportunities from organic wastes and wastewater. Despite the large number of publications dedicated to BMP testing and numerous attempts to standardize procedures, there is no “one size fits all” mathematical model to describe biomethane formation kinetic precisely. Importantly, the kinetics models are utilized for treatability estimation and modeling processes for the purpose of scale-up. A numerical computation approach is a widely used method to determine model coefficients, as a replacement for the previously used linearization approach. However, it requires more information for each model …


Developing A Mobile Application‐Based Particle Image Velocimetry Tool For Enhanced Teaching And Learning In Fluid Mechanics: A Design‐Based Research Approach, Angela L. Minichiello, David Armijo, Sarbajit Mukherjee, Lori M. Caldwell, Vladimir Kulyukin, Tadd T. Truscott, Jack Elliott, Aditya Bhouraskar Jun 2020

Developing A Mobile Application‐Based Particle Image Velocimetry Tool For Enhanced Teaching And Learning In Fluid Mechanics: A Design‐Based Research Approach, Angela L. Minichiello, David Armijo, Sarbajit Mukherjee, Lori M. Caldwell, Vladimir Kulyukin, Tadd T. Truscott, Jack Elliott, Aditya Bhouraskar

Engineering Education Faculty Publications

A robust and intuitive understanding of fluid mechanics—the applied science of fluid motion—is foundational within many engineering disciplines, including aerospace, chemical, civil, mechanical, naval, and ocean engineering. In‐depth knowledge of fluid mechanics is critical to safe and economical design of engineering applications employed globally everyday, such as automobiles, aircraft, and sea craft, and to meeting global 21st century engineering challenges, such as developing renewable energy sources, providing access to clean water, managing the environmental nitrogen cycle, and improving urban infrastructure. Despite the fundamental nature of fluid mechanics within the broader undergraduate engineering curriculum, students often characterize courses in fluid mechanics …


Learning From Engineers To Develop A Model Of Disciplinary Literacy In Engineering (Year 3), Theresa Green, Angela L. Minichiello, Amy Wilson-Lopez, Christina Marie Hartman, Jared W. Garlick Jun 2020

Learning From Engineers To Develop A Model Of Disciplinary Literacy In Engineering (Year 3), Theresa Green, Angela L. Minichiello, Amy Wilson-Lopez, Christina Marie Hartman, Jared W. Garlick

Engineering Education Faculty Publications

Purpose This paper will the describe the overall project goals, activities, preliminary findings, and future work on this project. The purpose of this project is to develop a model of Disciplinary Literacy Instruction (DLI) in engineering that can be used in both K-12 and undergraduate engineering settings. This model of DLI will be informed by knowledge about the ways practicing engineers across four disciplines of engineering (i.e., electrical/computer, mechanical/aerospace, civil/environmental, and chemical/biological) read, interpret, evaluate, and generate texts in the context of their work environment. This information will be translated into a model of DLI in engineering to teach students …


Using An Embedded Researcher Approach To Explore Student Outcomes And Relationship Development During An Intensive Engineering Apprenticeship Program, Lori M. Caldwell, Angela Minichiello Jun 2020

Using An Embedded Researcher Approach To Explore Student Outcomes And Relationship Development During An Intensive Engineering Apprenticeship Program, Lori M. Caldwell, Angela Minichiello

Engineering Education Faculty Publications

The purpose of this qualitative research study was to explore the emotions, outcomes, and interpersonal relationship development of high school aged students who participated in a three-week intensive engineering apprenticeship program (EAP) during the summer of 2019. This EAP introduces students to engineering by placing them in teams and asking them to build an underwater vehicle that can complete a timed obstacle course. Program mentors provide minimal lecture based instruction and focus on encouraging each team to create their own unique design. The primary purpose of the EAP is to increase student interest in engineering by improving student understanding of …


The Gridded Retarding Ion Drift Sensor For The Petitsat Cubesat Mission, Ryan L. Davidson, B. Oborn, E. F. Robertson, S. Noel, G. D. Earle, J. Green, J. Kramer Jun 2020

The Gridded Retarding Ion Drift Sensor For The Petitsat Cubesat Mission, Ryan L. Davidson, B. Oborn, E. F. Robertson, S. Noel, G. D. Earle, J. Green, J. Kramer

Electrical and Computer Engineering Faculty Publications

The Gridded Retarding Ion Drift Sensor (GRIDS) is a small sensor that will fly on the 6 U petitSat CubeSat. It is designed to measure the three-dimensional plasma drift velocity vector in the Earth’s ionosphere. The GRIDS also supplies information about the ion temperature, ion density, and the ratio of light to heavy ions present in the ionospheric plasma. It utilizes well-proven techniques that have been successfully validated by similar instruments on larger satellite missions while meeting CubeSat-compatible requirements for low mass, size, and power consumption. GRIDS performs the functions of a Retarding Potential Analyzer (RPA) and an Ion Drift …


Nappe Oscillations On Free-Overfall Structures, Data From Laboratory Experiments, Maurine Lodomez, Blake Tullis, Pierre Archambeau, Vasileios Kitsikoudis, Michel Pirotton, Benjamin Dewals, Sébastien Erpicum Jun 2020

Nappe Oscillations On Free-Overfall Structures, Data From Laboratory Experiments, Maurine Lodomez, Blake Tullis, Pierre Archambeau, Vasileios Kitsikoudis, Michel Pirotton, Benjamin Dewals, Sébastien Erpicum

Publications

This paper presents a dataset obtained from fifty-two laboratory experiments of nappe oscillations on free overfall structures. Data were collected on two complementary experimental setups, each consisting of a linear weir model. The dataset covers test configurations involving varied geometric parameters (i.e. weir crest shape, weir width, fall height and nappe confinement) and inflow discharges. The following experimental data were produced: assessment of nappe oscillation occurrence and associated frequencies. The later measurements were performed using characterization techniques (image and sound analysis) developed for this research. Reuse of the collected data will support efforts to improve the understanding of the physical …


Usu Engineering Professor Named Ieee Distinguished Lecturer, Usu College Of Engineering Jun 2020

Usu Engineering Professor Named Ieee Distinguished Lecturer, Usu College Of Engineering

College of Engineering News

June 16, 2020 — Utah State University Professor Rose Hu has again been named to a class of distinguished lecturers within the Institute of Electrical and Electronics Engineers, known as IEEE.


Environmental Engineering Student Earns Scholarship For Air Quality Research, Usu College Of Engineering Jun 2020

Environmental Engineering Student Earns Scholarship For Air Quality Research, Usu College Of Engineering

College of Engineering News

June 12, 2020 — Utah State University graduate student Motasem Abualqumboz is being recognized by an international organization for his research into Northern Utah’s air quality problems.


Usu Mars Rover Team Places In University Rover Challenge Finals, Usu College Of Engineering Jun 2020

Usu Mars Rover Team Places In University Rover Challenge Finals, Usu College Of Engineering

College of Engineering News

June 9, 2020 — Space exploration technology is constantly in need of creative and innovative design updates to help expand our exploration of the cosmos.


Numerical Method For Rapid Aerostructural Design And Optimization, Jeffrey D. Taylor, Douglas F. Hunsaker Jun 2020

Numerical Method For Rapid Aerostructural Design And Optimization, Jeffrey D. Taylor, Douglas F. Hunsaker

Mechanical and Aerospace Engineering Student Publications and Presentations

During early phases of wing design, analytic and low-fidelity methods are often used to identify promising design concepts. In many cases, solutions obtained using these methods provide intuition about the design space that is not easily obtained using higher-fidelity methods. This is especially true for aerostructural design. However, many analytic and low-fidelity aerostructural solutions are limited in application to wings with specific planforms and weight distributions. Here, a numerical method for minimizing induced drag with structural constraints is presented that uses approximations that apply to wings with arbitrary planforms and weight distributions. The method is applied to the NASA Ikhana …


Developing Open Source Software Using Version Control Systems: An Introduction To The Git Language For Documenting Your Computational Research, Jared D. Smith, Jonathan D. Herman Jun 2020

Developing Open Source Software Using Version Control Systems: An Introduction To The Git Language For Documenting Your Computational Research, Jared D. Smith, Jonathan D. Herman

All ECSTATIC Materials

Version control systems track the history of code as it is committed (saved) by any number of developers. Have you made a coding error and cannot debug it? Version control systems allow for resetting code back to when it worked, and show what code has changed since previous commits.

The contents of this lecture provide an introduction to the git version control language, GitHub for cloud hosting open source code repositories, and tutorials that demonstrate common and useful git and GitHub practices. This lecture is intended to be coupled with a discussion on creating reproducible computational research.

The zipped folder …


Fast Summarizing Algorithm For Polygonal Statistics Over A Regular Grid, Scott Haag, David G. Tarboton, Martyn Smith, Ali Shokoufandeh May 2020

Fast Summarizing Algorithm For Polygonal Statistics Over A Regular Grid, Scott Haag, David G. Tarboton, Martyn Smith, Ali Shokoufandeh

Publications

We describe a data structure and associated algorithm called Fast Zonal Statistics (FZS) for the retrieval of the summary characteristics of an arbitrary polygon derived from a regular grid. The FZS algorithm can return numerical (e.g., mean, sum, and count) attributes for a polygonal object over a regular grid (e.g., raster data model). The computational complexity of the FZS algorithm is constant in relation to the length of the polygon perimeter. This contrasts with existing approaches which scale in relation to the polygon area, therefore we expect and measure geometric decreases in execution time using the proposed approach for simple …


3-D Printed Hybrid Propulsion Solutions For Smallsat Lunar Landing And Sample Return, Stephen A. Whitmore May 2020

3-D Printed Hybrid Propulsion Solutions For Smallsat Lunar Landing And Sample Return, Stephen A. Whitmore

Funded Research Records

No abstract provided.