Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Materials Science and Engineering (3)
- Applied Mechanics (2)
- Computer-Aided Engineering and Design (2)
- Manufacturing (2)
- Structural Materials (2)
-
- Acoustics, Dynamics, and Controls (1)
- Applied Mathematics (1)
- Applied Statistics (1)
- Architecture (1)
- Biomaterials (1)
- Biomechanical Engineering (1)
- Biomedical Engineering and Bioengineering (1)
- Chemical Engineering (1)
- Civil Engineering (1)
- Civil and Environmental Engineering (1)
- Computer Sciences (1)
- Data Science (1)
- Dynamic Systems (1)
- Dynamics and Dynamical Systems (1)
- Engineering Mechanics (1)
- Engineering Physics (1)
- Engineering Science and Materials (1)
- Environmental Sciences (1)
- Fluid Dynamics (1)
- Heat Transfer, Combustion (1)
- Nanoscience and Nanotechnology (1)
- Operations Research, Systems Engineering and Industrial Engineering (1)
- Keyword
-
- Mechanical Engineering (6)
- Physics (2)
- Additive Manufacturing (1)
- Bioengineering and Biomedical Engineering (1)
- Capillary Flow (1)
-
- Civil Engineering (1)
- Computer Science (1)
- Engineering, General/Other (1)
- Finite element method (1)
- Hardness prediction (1)
- Laser cladding (1)
- Mathematics, Applied (1)
- Microfluidics (1)
- Molecular Dynamics Simulation (1)
- Nanoscale Transport (1)
- Particulate Composite (1)
- Particulate Suspension (1)
- Phase Change (1)
- Phase transformation (1)
- Physical Sciences, General/Other (1)
- Rheology (1)
- Statistics (1)
- Sustainability and Development (1)
- Thermo-kinetic model (1)
- Urban Planning (1)
- Urban Resilience; Community Resilience; Mean-Square Displacement (MSD); Brownian Motion; Statistical Mechanics; Traffic-Flow Data; Cell-Phone GPS Location Data; Spatiotemporal Probability Density; Natural Hazards; Engineering Resilience; Urban Systems; Mechanical Model; Viscoelastic Analogy; Mobility Data Analytics; Human Mobility Patterns; Stochastic Processes; Ensemble Averaging; Climate-induced Hazards (1)
- Publication
- Publication Type
- File Type
Articles 1 - 10 of 10
Full-Text Articles in Other Mechanical Engineering
An Analytical Framework For Quantifying Urban And Community Resilience To Natural Hazards From Cell-Phone Gps-Location And Traffic-Flow Data, Georgios Chatzikyriakidis
An Analytical Framework For Quantifying Urban And Community Resilience To Natural Hazards From Cell-Phone Gps-Location And Traffic-Flow Data, Georgios Chatzikyriakidis
Civil and Environmental Engineering Theses and Dissertations
Urban areas are increasingly exposed to natural hazards while accommodating a growing share of the global population, yet a consistent science-based framework for quantifying urban and community resilience remains lacking. This dissertation develops a physics-based analytical framework grounded in statistical mechanics and the quantitative theory of Brownian motion. A city is conceptualized as a complex medium in which citizens move analogously to Brownian particles within a viscoelastic environment, influenced by socioeconomic interactions and infrastructure functionality.
A central premise is that urban resilience, interpreted as engineering resilience (an outcome), can be quantified through a single metric: the mean-square displacement MSD=⟨r²(t)⟩, of …
Molecular Dynamics Study Of Phase Change And Interfacial Behavior In Nanoconfined Argon, Ying-Chu Chen
Molecular Dynamics Study Of Phase Change And Interfacial Behavior In Nanoconfined Argon, Ying-Chu Chen
Mechanical Engineering Research Theses and Dissertations
As electronic devices continue to reduce in size, effective thermal management becomes increasingly critical. Thin-film evaporation offers a promising solution due to its high heat flux capacity and passive nature. However, the applicability of continuum theory to thin-film evaporation becomes uncertain at the nanoscale. This work presents a two-phase Molecular Dynamics(MD) study of liquid argon confined within two parallel platinum walls, focusing on both equilibrium and non-equilibrium phase change behavior under nanoscale confinement.
In the first phase, Equilibrium Molecular Dynamics (EMD) simulations investigate the influence of channel height (4, 8, and 16 nm) and wall-fluid interaction strength on bulk and …
Effect Of Surface Fluid Entrapment In A Laminar Flat Plate Boundary Layer, Abigail Hays
Effect Of Surface Fluid Entrapment In A Laminar Flat Plate Boundary Layer, Abigail Hays
Mechanical Engineering Research Theses and Dissertations
For streamlined objects in laminar flow, the drag is dominated by friction drag. To counteract this, the boundary condition of the object can be changed to introduce an apparent slip on the surface. A number of approaches have been proposed for introducing surface slip to reduce drag and viscous resistance in fluid flows. This work investigates a novel approach to providing slip via fluid entrapment in a perforated domain embedded in the surface. The fluid entrapment system uses a cavity underneath the domain to allow entrapment of fluid of the same type, or supply air to the surface perforations in …
Rheology Of Particulate Suspensions With Non-Newtonian Fluids In Capillaries, Bin Xia, Paul Krueger
Rheology Of Particulate Suspensions With Non-Newtonian Fluids In Capillaries, Bin Xia, Paul Krueger
Mechanical Engineering Research
This resource contains the processed experimental measurements of the flow consistency index and flow behavior index, along with their trendlines, for the particulate suspensions investigated in "Rheology of Particulate Suspensions with Non-Newtonian Fluids in Capillaries" by Bin Xia and Paul S. Krueger.
Microparticle Propulsion For In Vivo Navigation, Louis Rogowski
Microparticle Propulsion For In Vivo Navigation, Louis Rogowski
Mechanical Engineering Research Theses and Dissertations
Microscale propulsion impacts a diverse array of fields, with simplistic microrobots allowing for novel innovations in microscale surgery and drug delivery. Propulsion at the microscale is constrained by physics, with time-reversal and geometric symmetries limiting available propulsion mechanisms. However, certain fluid environments and surface coatings allow for the propulsion of microparticles through externally applied magnetic fields. Presented here is a detailed analysis of microparticles propelling using spontaneous symmetry breaking, flagella surface coatings, and multi-modal actuation mechanisms. Spontaneous symmetry breaking in nonlinearly viscoelastic fluids is presented for the first time in literature, with two equal and opposite propulsion states existing along …
Homogenization Of Composite And Cellular Materials Incorporating Microstructure And Surface Energy Effects, Ahmad Gad
Mechanical Engineering Research Theses and Dissertations
In the last few decades, the popularity of composite and cellular materials has rapidly increased through their widespread applications in multiple engineering fields including aerospace, automotive, civil and biomedical. However, to a large extent, the success of their practical applications depends on our ability to predict their mechanical behavior by using high-fidelity mechanics models.
Micromechanical modeling of composite and cellular materials is a challenging task due to the heterogeneous nature of such materials and the interactions among various constituent phases at the microscopic level, which result in non-homogeneous deformation, strain and stress fields. Therefore, it is necessary to develop simple …
Critical Point Identification In 3d Velocity Fields, Mohammadreza Zharfa
Critical Point Identification In 3d Velocity Fields, Mohammadreza Zharfa
Mechanical Engineering Research Theses and Dissertations
Classification of flow fields involving strong vortices such as those from bluff body wakes and animal locomotion can provide important insight to their hydrodynamic behavior. Previous work has successfully classified 2D flow fields based on critical points of the velocity field and the structure of an associated weighted graph using the critical points as vertices. The present work focuses on extension of this approach to 3D flows. To this end, we have used the Gauss-Bonnet theorem to find critical points and their indices in the 3D velocity vector field, which functions similarly to the Poincare-Bendixon theorem in 2D flow fields. …
Graphene-Based Water Desalination Using Atomistic Simulations, Thanh Chinh Nguyen
Graphene-Based Water Desalination Using Atomistic Simulations, Thanh Chinh Nguyen
Mechanical Engineering Research Theses and Dissertations
My research focused on investigating saltwater transport through nanoporous graphene membranes using molecular dynamics (MD) simulations. Particularly, in this dissertation, we focused on pressure-driven flows of salt water through uncharged and charged nanoporous graphene membranes for water desalination applications. In the first study, desalination performance of uncharged single-layer nanoporous graphene membranes was observed based on volumetric flow rate, required pressure drop, and salt rejection efficiency. A functional relationship between the volumetric flow rate, pressure drop, pore diameter, and the dynamic viscosity of saltwater was also examined. In further studies, transport of salt ions through positively and negatively charged single-layer nanoporous …
Molecular Dynamics Studies On Nanoscale Confined Liquids, Alper Celebi
Molecular Dynamics Studies On Nanoscale Confined Liquids, Alper Celebi
Mechanical Engineering Research Theses and Dissertations
Liquid transport in nanochannels have been attracting great interests, especially for last two decades, owing to its potential applicability in various fields including biochemistry, medical science and engineering. For exploring and generating new ideas in the field of nanofluidics, molecular simulation techniques have become an ideal way due to the experimental challenges impeding the field of nanofluidics in fabrication and measurements.
In this dissertation, we perform molecular dynamics simulations to investigate liquid transport behavior in nanoscale channels. The expanse of this dissertation concerns several fundamental topics in nanoscale liquid transport phenomena such as liquid properties in nanoscale confinements, interfacial flows …
Investigation Of Thermal Cycle And Hardness Distribution In The Laser Cladding Of Aisi H13 Tool Steel Produced By A High Power Direct Diode Laser, Parisa Farahmand, Prabu Balu, Fanrong Kong, Radovan Kovacevic
Investigation Of Thermal Cycle And Hardness Distribution In The Laser Cladding Of Aisi H13 Tool Steel Produced By A High Power Direct Diode Laser, Parisa Farahmand, Prabu Balu, Fanrong Kong, Radovan Kovacevic
Mechanical Engineering Research
Laser cladding (LC) of tool steel has significant application in rapid tooling, and surface coating for worn-out components in different industries. During the LC process, several phase transformations influence the microstructural and mechanical properties of the deposited layer. In order to successfully implement the LC process, it is essential to understand the relationship between the thermal cycle (heating and cooling), phase transformations, and the output quantities of the deposited layer. In this study a direct diode laser with a power of up to 8 kW was used to deposit AISI H13 tool steel on mild steel grade A36 substrate to …