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Full-Text Articles in Engineering

Topographic And Meteorological Influences On Spatial Scaling Of Heavy Convective Rainfall In Mountainous Regions, Antonio Rubert Godoy Jan 2003

Topographic And Meteorological Influences On Spatial Scaling Of Heavy Convective Rainfall In Mountainous Regions, Antonio Rubert Godoy

Dissertations, Master's Theses and Master's Reports - Open

Characterizing the spatial scaling and dynamics of convective precipitation in mountainous terrain and the development of downscaling methods to transfer precipitation fields from one scale to another is the overall motivation for this research. Substantial progress has been made on characterizing the space-time organization of Midwestern convective systems and tropical rainfall, which has led to the development of statistical/dynamical downscaling models. Space-time analysis and downscaling of orographic precipitation has received less attention due to the complexities of topographic influences. This study uses multiscale statistical analysis to investigate the spatial scaling of organized thunderstorms that produce heavy rainfall and flooding in …


Evaluating The Usefulness Of Soil Moisture (Forecasts) In Streamflow Prediction For Central Texas , Mohammed Mahmoud Jan 2003

Evaluating The Usefulness Of Soil Moisture (Forecasts) In Streamflow Prediction For Central Texas , Mohammed Mahmoud

Dissertations, Master's Theses and Master's Reports - Open

The past decade has brought significant advancements in seasonal climate forecasting. However, water resources decision support and management continues to be based almost entirely on historical observations and does not take advantage of climate forecasts. This study builds on previous work that conditioned streamflow ensemble forecasts on observable climate indicators, such as the El Niño-Southern Oscillation (ENSO) and the Pacific Decadal Oscillation (PDO) for use in a decision support model for the Highland Lakes multi-reservoir system in central Texas operated by the Lower Colorado River Authority (LCRA). In the current study, seasonal soil moisture is explored as a climate indicator …


Climatological Study Of Transport To The Pico-Nare Site Using Atmospheric Backward Trajectories, Robert Christopher Owen Jan 2003

Climatological Study Of Transport To The Pico-Nare Site Using Atmospheric Backward Trajectories, Robert Christopher Owen

Dissertations, Master's Theses and Master's Reports - Open

This study developed a transport climatology to the PICO-NARE station, in the central North Atlantic Ocean, using a 40-year set of atmospheric back trajectories. The trajectory set was subjected to a cluster analysis in order to group trajectories into six flow patterns, or clusters. An air flow probability analysis was conducted in conjunction with the cluster analysis in order to determine the source regions for flow to the site. Seasonal differences in the flow patterns were found, which included enhanced westerly flow in the winter, decreased westerly flow in the summer, and spring and fall having moderate westerly flow. The …


Reynolds-Stress Turbulence Model In The Kiva Code For Engine Simulation, Yeow-Khern Siow Jan 2003

Reynolds-Stress Turbulence Model In The Kiva Code For Engine Simulation, Yeow-Khern Siow

Dissertations, Master's Theses and Master's Reports - Open

A Reynolds-Stress Turbulence Model has been incorporated with success into the KIVA code, a computational fluid dynamics hydrocode for three-dimensional simulation of fluid flow in engines. The newly implemented Reynolds-stress turbulence model greatly improves the robustness of KIVA, which in its original version has only eddy-viscosity turbulence models. Validation of the Reynolds-stress turbulence model is accomplished by conducting pipe-flow and channel-flow simulations, and comparing the computed results with experimental and direct numerical simulation data. Flows in engines of various geometry and operating conditions are calculated using the model, to study the complex flow fields as well as confirm the model’s …


Selected Chemoautotrophic Processes In Wastewater Treatment: Low Temperature Nitrification Inhibition By An Azo Dye And Biofiltration For Odor Control Of Hydrogen Sulfide, Ronald W. Martin Jr. Jan 2003

Selected Chemoautotrophic Processes In Wastewater Treatment: Low Temperature Nitrification Inhibition By An Azo Dye And Biofiltration For Odor Control Of Hydrogen Sulfide, Ronald W. Martin Jr.

Dissertations, Master's Theses and Master's Reports - Open

Biochemical processes by chemoautotrophs such as nitrifiers and sulfide and iron oxidizers are used extensively in wastewater treatment. The research described in this dissertation involved the study of two selected biological processes utilized in wastewater treatment mediated by chemoautotrophic bacteria: nitrification (biological removal of ammonia and nitrogen) and hydrogen sulfide (H2S) removal from odorous air using biofiltration.

A municipal wastewater treatment plant (WWTP) receiving industrial dyeing discharge containing the azo dye, acid black 1 (AB1) failed to meet discharge limits, especially during the winter. Dyeing discharge mixed with domestic sewage was fed to sequencing batch reactors at 22oC and 7oC. …


Reaction Control In Quiescent Systems Of Free-Radical Retrograde-Precipitation Polymerization, Vijaya Raghavan Tirumala Jan 2003

Reaction Control In Quiescent Systems Of Free-Radical Retrograde-Precipitation Polymerization, Vijaya Raghavan Tirumala

Dissertations, Master's Theses and Master's Reports - Open

Free-radical retrograde-precipitation polymerization, FRRPP in short, is a novel polymerization process discovered by Dr. Gerard Caneba in the late 1980s. The current study is aimed at gaining a better understanding of the reaction mechanism of the FRRPP and its thermodynamically-driven features that are predominant in controlling the chain reaction.

A previously developed mathematical model to represent free radical polymerization kinetics was used to simulate a classic bulk polymerization system from the literature. Unlike other existing models, such a sparse-matrix-based representation allows one to explicitly accommodate the chain length dependent kinetic parameters.

Extrapolating from the past results, mixing was experimentally shown …