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Articles 511 - 540 of 1219
Full-Text Articles in Mechanical Engineering
Catmobile Front Suspension, Adam Romine
Catmobile Front Suspension, Adam Romine
Mechanical Engineering and Technology Senior Projects
Each year electric vehicles become more and more popular. The electric vehicle that the Central Washington University Electric Vehicle Club is building needs a front suspension. The vehicle is being built to compete in the Electrathon America Race in May of 2015. The suspension attaches to the wheels and attaches to the frame of the vehicle and provides bump dampening. The suspension was built was using a single swing arm type design. This design consists of six parts that are welded and bolted together to connect the wheel to the frame. The shock absorber that is attached to the single …
Solar Evaporative Fan Coil Unit, Jeremy Dickson, Sam Budnick, Kyle Kluever
Solar Evaporative Fan Coil Unit, Jeremy Dickson, Sam Budnick, Kyle Kluever
Mechanical Engineering and Technology Senior Projects
The purpose of any engineering project is to anticipate a need and meet that need through prediction analysis and design. Over 70% of the nation’s energy is consumed by building infrastructure such as HVAC systems, electrical, etc. HVAC systems use boilers to generate hot water or steam to heat buildings and chillers to provide cold water for cooling. The overall solar evaporative fan coil unit project involves the design and construction of a system that will heat and cool air using a solar collector and an evaporative chiller. This report covers the design and construction of the evaporative chiller specifically. …
Developing Exhaust Air Energy Recovery Credits For The Florida Energy Code, Florida Solar Energy Center, Bereket Nigusse
Developing Exhaust Air Energy Recovery Credits For The Florida Energy Code, Florida Solar Energy Center, Bereket Nigusse
FSEC Energy Research Center®
Energy Recovery Ventilator (ERV) or Heat Recovery Ventilator (HRV) devices recover energy from building's exhaust air to precondition outdoor air. Energy savings of ERV/HRV devices were determined for various commercial buildings in Florida climate using whole building energy simulation tool. The annual HVAC energy percent savings due to ERV/HRV device were calculated from HVAC energy use of a standard reference building without and with ERV/HRV device using EnergyPlus. The annual HVAC energy savings potential (ERV Credits) will be used for code compliance calculation when a compliance software does not have ERV modeling capability. The ERV/HRV credits were reported by building …
The Arched Flexure Vsa: A Compact Variable Stiffness Actuator With Large Stiffness Range, Joseph M. Schimmels, Daniel Garces
The Arched Flexure Vsa: A Compact Variable Stiffness Actuator With Large Stiffness Range, Joseph M. Schimmels, Daniel Garces
Mechanical Engineering Faculty Research and Publications
The high stiffness of conventional robots is beneficial in attaining highly accurate positioning in free space. High stiffness, however, limits a robot's ability to perform constrained manipulation. Because of the high stiffness, geometric conflict between the robot and task constraints during constrained manipulation can lead to excessive forces and task failure. Variable stiffness actuators can be used to adjust the stiffness of robot joints to allow high stiffness in unconstrained directions and low stiffness in constrained directions. Two important design criteria for variable stiffness actuation are a large range of stiffness and a compact size. A new design, the Arched …
Asme R/C Baja Car Suspension And Steering, Nathan Wilhelm
Asme R/C Baja Car Suspension And Steering, Nathan Wilhelm
Mechanical Engineering and Technology Senior Projects
The American Society of Mechanical Engineers holds regional student design competitions each year with both a reoccurring RC Baja competition with a new challenge course each year. This project covers the design and manufacturing of components for a radio controlled car to race in the annual ASME RC Baja competition. For this project the car was broken down into its component subsystems and divided between two partners. It was then determined which components of each respective subsystem could be purchased and which required design and manufacture within the rules set forth in the ASME Baja competition rule book. All of …
Rc Baja Competition Drive Train And Differential, Chelsea Dowdell, Nathan Wilhelm
Rc Baja Competition Drive Train And Differential, Chelsea Dowdell, Nathan Wilhelm
Mechanical Engineering and Technology Senior Projects
The American Society of Mechanical Engineers holds regional student design competitions each year with both a reoccurring RC Baja competition with a new challenge course each year. This project covers the design and manufacturing of components for a radio controlled car to race in the annual ASME RC Baja competition. For this project the car was broken down into its component subsystems and divided between two partners. It was then determined which components of each respective subsystem could be purchased and which required design and manufacture within the rules set forth in the ASME Baja competition rule book. All of …
Emulsion Pump Pressure Relief, Aaron Greean
Emulsion Pump Pressure Relief, Aaron Greean
Mechanical Engineering and Technology Senior Projects
Over time the harsh outdoor environment wears away at asphalt surfaces. Asphalt emulsion is sprayed onto the surface to act as a sacrificial barrier. To pump this asphalt emulsion for spray application an effective pressure relief device must be incorporated. High pressure is needed to achieve the desired spray pattern, but this same pressure can cause components to fail in the presence of a pressure spike. Hydraulically driven positive displacement pumps are used to pump the emulsion, so a pinched hoses or a clog in the system results in a severe pressure spike. Due to the emulsions viscosity and abrasive …
Warpage And Shape Distortion In Laser Metal Sintering, Xuan Wang
Warpage And Shape Distortion In Laser Metal Sintering, Xuan Wang
Industrial and Manufacturing Engineering
Selective Laser Sintering (SLS) is the primary method to fabricate metal and ceramic components in additive manufacturing. Due to the anisotropy of powder material, the sintering rate difference will inevitably causes shape change, distortion , and other defects of sintered parts. In this paper, a continuum model was developed to simulate the SLS process. The developed model has been successful to predict sintering kinetics. The impact of processing parameters, such as laser power, scanning speed, hatching distance, and particle size has been studied . The proposed method provides an innovative tool to optimize SLS process parameters.
Numerical Simulation And Optimization Of Carbon Dioxide Utilization For Enhanced Oil Recovery From Depleted Reservoirs, Razi Safi
McKelvey School of Engineering Graduate Student Theses & Dissertations
Due to concerns about rising CO2 emissions from fossil fuel power plants, there has been a strong emphasis on the development of a safe and economical method for Carbon Capture Utilization and Storage (CCUS). One area of current interest in CO2 utilization is the Enhanced Oil Recovery (EOR) from depleted reservoirs. In an Enhanced Oil Recovery system, a depleted or depleting oil reservoir is re-energized by injecting high-pressure CO2 to increase the recovery factor of the oil from the reservoir. An additional benefit beyond oil recovery is that the reservoir could also serve as a long-term storage …
Effects Of Biomass Moisture Content On Volatile Flame Length During Cofiring With Coal, Matthew Pollard
Effects Of Biomass Moisture Content On Volatile Flame Length During Cofiring With Coal, Matthew Pollard
McKelvey School of Engineering Graduate Student Theses & Dissertations
Cofiring biomass with coal can contribute to meeting Renewable Portfolio Standards (RPS) and reduce pollutant emissions. The physical characteristics and composition of biomass can vary significantly, which can affect the combustion characteristics. When cofiring biomass with coal, these differences can impact the structure of the volatile flame, the region where combustion of volatiles dominates. The length and location of the volatile flame is important to flame stability and determines the location and extent of volatile release. This has an effect on pollutant emissions, such as NOx (nitrogen oxides). Previously, the effects of parameters such as cofiring ratio, particle size, and …
Computational Fluid Dynamics Applied To The Analysis Of Blood Flow Through Central Aortic To Pulmonary Artery Shunts, Carey Celestin Jr
Computational Fluid Dynamics Applied To The Analysis Of Blood Flow Through Central Aortic To Pulmonary Artery Shunts, Carey Celestin Jr
LSU New Orleans Theses and Dissertations
This research utilizes CFD to analyze blood flow through pathways representative of central shunts, commonly used as part of the Fontan procedure to treat cyanotic heart disease. In the first part of this research, a parametric study of steady, Newtonian blood flow through parabolic pathways was performed to demonstrate the effect that flow pathway curvature has on wall shear stress distribution and flow energy losses. In the second part, blood flow through two shunts obtained via biplane angiograms is simulated. Pressure boundary conditions were obtained via catheterization. Results showed that wall shear stresses were of sufficient magnitude to initiate platelet …
Maximum Energy Efficiency Cost Effectiveness In New Home Construction, Florida Solar Energy Center, Philip W. Fairey
Maximum Energy Efficiency Cost Effectiveness In New Home Construction, Florida Solar Energy Center, Philip W. Fairey
FSEC Energy Research Center®
EnergyGauge® USA (v.4.0.00) is used to examine the cost effectiveness of high performance homes that are improved to significantly exceed the minimum requirements of the 2015 IECC. The objective of the study is to determine the maximum level of energy efficiency that can be considered cost effective to the consumer. For these purposes, it is the cost effectiveness of the entire package of measures that is considered by the analysis rather than the cost effectiveness of individual measures. Optimization and rank ordering of the individual improvement measures in the package is not considered by the analysis.
One-story 2,000 ft2 …
College Of Engineering Senior Design Competition Spring 2015, University Of Nevada, Las Vegas
College Of Engineering Senior Design Competition Spring 2015, University Of Nevada, Las Vegas
Fred and Harriet Cox Senior Design Competition Projects
Part of every UNLV engineering student’s academic experience, the senior design project stimulates engineering innovation and entrepreneurship. Each student in their senior year chooses, plans, designs, and prototypes a product in this required element of the curriculum. A capstone to the student’s educational career, the senior design project encourages the student to use everything learned in the engineering program to create a practical, real world solution to an engineering challenge. The senior design competition helps focus the senior students in increasing the quality and potential for commercial application for their design projects. Judges from local industry evaluate the projects on …
Towards A Dynamic Clamp For Neurochemical Modalities, C. M. Rivera, H.-J. Kwon, A. Hashmi, Gu Yu, J. Zhao, J. Gao, J. Xu, Wei Xue, A. G. Dimitrov
Towards A Dynamic Clamp For Neurochemical Modalities, C. M. Rivera, H.-J. Kwon, A. Hashmi, Gu Yu, J. Zhao, J. Gao, J. Xu, Wei Xue, A. G. Dimitrov
Henry M. Rowan College of Engineering Departmental Research
The classic dynamic clamp technique uses a real-time electrical interface between living cells and neural simulations in order to investigate hypotheses about neural function and structure. One of the acknowledged drawbacks of that technique is the limited control of the cells’ chemical microenvironment. In this manuscript, we use a novel combination of nanosensor and microfluidic technology and microfluidic and neural simulations to add sensing and control of chemical concentrations to the dynamic clamp technique. Specifically, we use a microfluidic lab-on-a-chip to generate distinct chemical concentration gradients (ions or neuromodulators), to register the concentrations with embedded nanosensors and use the processed …
Integration Of Information Literacy Skills To Mechanical Engineering Capstone Projects, Farshid Zabihian, Mary L. Strife, Marian G. Armour-Gemmen
Integration Of Information Literacy Skills To Mechanical Engineering Capstone Projects, Farshid Zabihian, Mary L. Strife, Marian G. Armour-Gemmen
Faculty & Staff Scholarship
Searching for information and using that information appropriately is an essential part of every engineering design project. It has been reported that design engineers spend about 30% of their time searching for information. Experience shows that even senior level students have not received proper training, either directly or indirectly, in information literacy (IL). They usually search for information intuitively. For mechanical and aerospace engineering students at West Virginia University Institute of Technology (WVU Tech), the Mechanical Engineering System Design I and II courses (MAE 480 and 481) are probably the last chance to teach students about IL. In this project, …
Design Improvements Of Wirelesshart Enabled Field Device, Yuxuan Zeng
Design Improvements Of Wirelesshart Enabled Field Device, Yuxuan Zeng
Graduate Theses - Electrical and Computer Engineering
WirelessHART, as an improvement of HART (Highway Addressable Remote Transducer), provides a simple, reliable, and cost-effective method to deliver information without the trouble of wiring in the field. WirelessHART is being used more and more in field devices. Several years ago, Endress + Hauser (U.S.) Automation Instrumentation Inc. designed a WirelessHART solution by attaching a wireless adapter to a field device. The goal of this thesis is to improve the WirelessHART solution of Endress + Hauser to make it less expensive, smaller, and less power-consuming. The work is done in two parts. The first part is to redesign an I/O …
Maximum Power Point Tracking And Solar Power For Developing Countries Around The World, Christopher M. Plate
Maximum Power Point Tracking And Solar Power For Developing Countries Around The World, Christopher M. Plate
Electrical Engineering Undergraduate Honors Theses
Renewable energy is becoming increasingly important as more and more countries become industrialized. Using solar power as opposed to fossil fuels and coal is becoming cheaper and easier to access throughout the world, yet there are still efficiency hurdles to be overcome. Designing a cheap, easily modifiable and reparable Maximum Power Point Tracker would be a stepping stone to bringing solar power to remote parts of the globe. Once designed and made portable, these devices could be distributed throughout developing countries to enhance renewable energy output. An Arduino-based tracker was chosen for ease of use and access. This base also …
Improving Connectivity Between Members And Alumni Of Alpha Pi Mu, Ben Patrick Buell, Shannon Elizabeth O'Keefe
Improving Connectivity Between Members And Alumni Of Alpha Pi Mu, Ben Patrick Buell, Shannon Elizabeth O'Keefe
Industrial and Manufacturing Engineering
The purpose of this project was to solve the problems of a lack of connectivity between the current members and alumni of Alpha Pi Mu, as well as the lack of incentives for prospective members to join the club. These problems were solved by creating a website that allowed current members to be able to view the complete work experiences of alumni and provided a way to reach out to those alumni directly to network with them. The agile project management system was used to develop the website and helped to successfully complete all of our design requirements listed in …
A Case Study Of Multiple-Use Finish Electrodes For Die-Sinking Edm, Troy A. Robertson
A Case Study Of Multiple-Use Finish Electrodes For Die-Sinking Edm, Troy A. Robertson
Masters Theses & Specialist Projects
This study examines the use of one finishing electrode to finish multiple dies without remachining the electrode. The multiple-use electrode finishing experiment in this study addresses technology in the die-forging industry. Methods of manufacturing spherical straight bevel forge gear dies have relied on die-sinking Electrical Discharge Machining (EDM) practices that showed great potential for advancement. The focus of this study is solely on the improvements of electrode use in EDM finishing-processes. The surface finish quality itself is not an area of concern other than maintaining that it does not diminish. The focused concern is maximizing the process by using one …
Fusion Of Short-Mid Wavelength Infrared Image And Long Wavelength Image Using Discrete Wavelet Transform For Image Quality Enhancement, Rocky Hedrick
Fusion Of Short-Mid Wavelength Infrared Image And Long Wavelength Image Using Discrete Wavelet Transform For Image Quality Enhancement, Rocky Hedrick
Electrical Engineering Undergraduate Honors Theses
Infrared technology advancements have led to an expansive set of infrared applications in both the private and public sectors. New materials and manufacturing techniques have continued to reduce the cost while improving the quality of infrared cameras, but the cost is still high when compared to the cost versus quality of visible light spectrum cameras. Innovative image processing techniques can be implemented to help bridge this gap between the cost and quality of infrared cameras. The goal of this research is to improve the overall quality of infrared imaging by fusing short-mid wavelength infrared images and long wavelength images of …
Improved Methods For Identifying, Applying, And Verifying Industrial Energy Efficiency Measures, Andrew Chase Harding
Improved Methods For Identifying, Applying, And Verifying Industrial Energy Efficiency Measures, Andrew Chase Harding
Graduate Theses and Dissertations
Energy efficiency is the least expensive source of additional energy capacity for today's global energy expansion. Energy efficiency offers additional benefits of cost savings for consumers, reduced environmental impacts, and enhanced energy security. The challenges of energy efficiency include identifying potential efficiency measures, quantifying savings, determining cost effectiveness, and verifying savings of installed measures. This thesis presents three separate chapters which address these challenges. The first is a paper presented at the 2014 industrial energy technology conference (IETC) that details a compressed air system project using the systems approach to identify cost effective measures, energy intensity to project savings, and …
Three Dimensional Simulations Of Tornado Sheltering Effect Of Man-Made Structures, Piotr Gorecki
Three Dimensional Simulations Of Tornado Sheltering Effect Of Man-Made Structures, Piotr Gorecki
Graduate Theses and Dissertations
A three dimensional computational fluid dynamics (CFD) model was utilized to investigate tornado-like vortex interactions with wide man-made structures. The tornado-like wind profile was approximated using Rankine vortex model. By utilizing the CFD model, it was explained why tornadoes exhibit less damage on leeward side of large structures. During the preliminary stage of this study, a perpendicular vortex-prism interaction was analyzed. The prism height and the length were equal to the vortex core radius. The prism was also 12 times wider than the vortex core radius. During the vortex-prism interaction, the near-ground portion of the vortex was blocked by the …
Characterization Of Nano-Porous Si-Cu Composites To Enhance Lubricant Retention Impacting The Tribological Properties Of Sliding Surfaces, Julius Sheldon Morehead
Characterization Of Nano-Porous Si-Cu Composites To Enhance Lubricant Retention Impacting The Tribological Properties Of Sliding Surfaces, Julius Sheldon Morehead
Graduate Theses and Dissertations
As the expectations for modern machinery's tribological and thermal performances continue to rise, the retention of lubricant on the contact surfaces of their sliding components becomes an increasingly important issue. Friction and wear cause heat-related failures which lead to catastrophic damage to machinery. Evaporation of a lubricant's volatile constituents as well as lubricant migration leads not only to a reduction in lubricant quantity but also in its quality, thus facilitating component failures. In order to enhance component reliability, the surface should incorporate features that actively retain lubricants. The unique properties of nano-porous topographies such as their high surface area-to-volume ratio …
The Development And Evaluation Of A Method For Understanding The Impact Of Transmission Loss On The Overall Noise Attenuation Of Finite Barriers, Ashwin Arvind Upasani
The Development And Evaluation Of A Method For Understanding The Impact Of Transmission Loss On The Overall Noise Attenuation Of Finite Barriers, Ashwin Arvind Upasani
Graduate Theses - Mechanical Engineering
The purpose of this study is to evaluate the impact of transmission loss on the overall noise reduction obtained from finite barriers. The noise attenuation ability of barriers is understood to be a consequence of sound waves diffracting around their edges. Although the presence of transmission loss is acknowledged, its significance in affecting noise attenuation is usually not considered a priority in barrier design. This study incorporates the Fresnel Number concept for predicting theoretical insertion loss of a finite barrier and compares these predictions to experimental observations. The experiments performed in this study offer a method to isolate the transmission …
Euler-Lagrange Optimal Control Of Indirect Fire Symmetric Projectiles, Austin L. Nash
Euler-Lagrange Optimal Control Of Indirect Fire Symmetric Projectiles, Austin L. Nash
Graduate Theses - Mechanical Engineering
An important aspect of controls engineering is the dynamic modeling and flight control of smart weapons. One division of this area involves the guidance, navigation, and control of smart projectiles. In recent decades, methods for controlling projectiles have become much more sophisticated. In this thesis, principles of optimal control are used to develop a controller for indirect fire symmetric projectiles, or high-launch projectiles. A plant model is created to simulate the flight of a 2.75-inch Hydra-70 rocket. Two pairs of forward-mounted controllable canards are used as actuators to modify the flight toward a downrange target. A linear optimal regulator is …
Efficient Method To Cool The Data Center Using Solar Energy, Krishna Ketanbhai Desai
Efficient Method To Cool The Data Center Using Solar Energy, Krishna Ketanbhai Desai
Mechanical and Aerospace Engineering Theses - Archive
Solar energy is the only source which is abundantly available and which can be used to power a cooling system that is based on absorption cycle. Solar cooling system can be used to provide refrigeration for food and medicines and comfort cooling also. Such systems are speci cally applicable to the large applications having large cooling loads for particularly big periods of a year. Peak demand for the cooling of a building and the highest availability of solar radiation are in similar phase, which makes solar cooling of any building a potential energy source and also a green solution. In …
Multiphase Flow Modeling And Analysis Of Filling Process For Pulsed Detonation Engines, Swati Chandran Thirumangalath
Multiphase Flow Modeling And Analysis Of Filling Process For Pulsed Detonation Engines, Swati Chandran Thirumangalath
Mechanical and Aerospace Engineering Theses - Archive
The filling process of a pulsed detonation engine with fuel and oxidizer should be carried out quickly in order to maintain a high frequency of operation. The objectives of this research were to model an efficient inlet system for filling the detonation tube with fuel/air mixture in stoichiometric ratio and to evaluate various filling schemes. Numerical modeling of the filling process was done using PointwiseTM for meshing and FluentTM as the flow solver, solving the Reynolds-averaged Navier-Stokes equations with a k-? turbulence model. Five different filling configurations were studied, including endwall, normal and angled, opposing and staggered sidewall. The fuel …
Proper Orthogonal Decomposition For Incompressible And Compressible Flows, Seyed Milad Rafieinaini
Proper Orthogonal Decomposition For Incompressible And Compressible Flows, Seyed Milad Rafieinaini
Theses and Dissertations - UTB/UTPA
In this project, reduced order modelling technique has been used to investigate incompressible and compressible flows. At first, Proper Orthogonal Decomposition (POD), Singular Value Decomposition (SVD) and Principal Component Analysis (PCA) have been used to analyze pulsed jet flow as an incompressible flow and supersonic impinging jet as a compressible flow. Then, two flows have been investigated from physics point of view and finally the link between physics of flows and modes have been studied. All investigations have been done based on the given data from Particle Image Velocimetry (PIV). These data have been analyzed by using MATLAB®. Finally, the …
Hybrid Carbon Fiber Alumina Nanocomposite For Non-Contact Stress Sensing Via Piezospectroscopy, Imad Hanhan
Hybrid Carbon Fiber Alumina Nanocomposite For Non-Contact Stress Sensing Via Piezospectroscopy, Imad Hanhan
HIM 1990-2015
Carbon ber composites have become popular in aerospace structures and applications due to their light weight, high strength, and high performance. Recently, scientists have begun investigating hybrid composites that include fibers and particulate fillers, since they allow for advanced tailoring of mechanical properties, such as improved fatigue life. This project investigated a hybrid carbon ber reinforced polymer (HCFRP) that includes carbon fiber and additional alumina nanoparticle fillers, which act as embedded nano stress-sensors. Utilizing the piezospectroscopic e ect, the photo-luminescent spectral signal of the embedded nanoparticles has been monitored as it changes with stress, enabling non-contact stress detection of the …
Available Work Rate Of A Reversible System Bounded By Constant Thermal Resistances Linked To Isothermal Reservoirs, Jim Mcgovern
Available Work Rate Of A Reversible System Bounded By Constant Thermal Resistances Linked To Isothermal Reservoirs, Jim Mcgovern
Conference Papers
Exergy analysis is based on the concept of an idealized, all-enclosing reference environment that has infinite heat capacity and thermal conductivity, and is in equilibrium. The actual surroundings of a real plant such as a heat engine, a heat pump or a refrigerator may differ significantly from the ideal. First law performance parameters and second law rational efficiency are examined. The concepts of finite time thermodynamics are applied in an attempt to refine the concept of T0, the environmental reference temperature, thereby making exergy analysis more reflective of reality.