This article studies the generation of entropy disturbances by laminar premixed flames. The total entropy generation equals the integrated ratio of the local heat release rate and the local temperature, namely, ∫(q˙/T)dV . Due to this path dependency, evaluating this integral requires an understanding of how the heat release is distributed in the t
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This study was designed to designed to address concerns regarding effects of lab processing techniques on downstream results and also to determine an optimal combination of software programs to use to align genetic data and assess differential expression. Homogeneous lab samples were tested using two different purification methods and compared to u
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Munster, Susan K. (2023). Assessment of RNA-seq Sample Preparation Methodology [Data Management Plan]. https://doi.org/10.48321/D1D046
Munster, Susan K. "Assessment of RNA-seq Sample Preparation Methodology [Data Management Plan]" (2023), https://doi.org/10.48321/D1D046
Munster, Susan K. "Assessment of RNA-seq Sample Preparation Methodology [Data Management Plan]" , 2023, https://doi.org/10.48321/D1D046
Sleep disruption is linked with chronic disease, and aircraft noise can disrupt sleep. However, there are few investigations of aircraft noise and sleep in large cohorts. We examined associations between aircraft noise and self-reported sleep duration and quality in the Nurses’ Health Study, a large prospective cohort.
Bozigar, Matthew et al. (2023). Associations between Aircraft Noise Exposure and Self-Reported Sleep Duration and Quality in the United States-Based Prospective Nurses’ Health Study Cohort. https://doi.org/10.1289/EHP10959
Bozigar, Matthew et al. "Associations between Aircraft Noise Exposure and Self-Reported Sleep Duration and Quality in the United States-Based Prospective Nurses’ Health Study Cohort" (2023), https://doi.org/10.1289/EHP10959
Bozigar, Matthew et al. "Associations between Aircraft Noise Exposure and Self-Reported Sleep Duration and Quality in the United States-Based Prospective Nurses’ Health Study Cohort" , 2023, https://doi.org/10.1289/EHP10959
The goal of this paper is to develop a quantitative resilience assessment framework for a supply chain system exposed to multiple risk factors. Most existing studies on supply chain resilience have primarily focused on assessing the system’s ability to withstand and recover from disruptions caused by a single type of hazard. However, a supply chain
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Understanding and measuring the formation of non-volatile particulate matter is important for minimizing emissions and improving the design of aeroengines. In rich-burn, quick-mix, lean-burn (RQL) combustors, significant quantities of soot are formed near the injectors, some of which is later oxidized downstream. In order to better understand the s
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McGrath, Russell et al. (2023). Single-Camera Time-Resolved Laser-Induced Incandescence Measurements in a RQL Aeroengine Combustor.
McGrath, Russell et al. "Single-Camera Time-Resolved Laser-Induced Incandescence Measurements in a RQL Aeroengine Combustor" (2023)
McGrath, Russell et al. "Single-Camera Time-Resolved Laser-Induced Incandescence Measurements in a RQL Aeroengine Combustor" , 2023
The vacuum ultraviolet detector for gas chromatography can be used to identify structural differences between isomers with similar chromatographic elution times, which adds detail to characterization, valuable for prescreening of sustainable aviation fuel candidates. Although this capability has been introduced elsewhere, vacuum ultraviolet spectro
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Aircraft emissions contribute to overall ambient air pollution, including ultrafine particle (UFP) concentrations. However, accurately ascertaining aviation contributions to UFP is challenging due to high spatiotemporal variability along with intermittent aviation emissions. The objective of this study was to evaluate the impact of arrival aircraft
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Chung, Chloe S et al. (2023). Assessing the Impact of Aircraft Arrival on Ambient Ultrafine Particle Number Concentrations in Near-Airport Communities in Boston, Massachusetts. https://doi.org/10.1016/j.envres.2023.115584
Chung, Chloe S et al. "Assessing the Impact of Aircraft Arrival on Ambient Ultrafine Particle Number Concentrations in Near-Airport Communities in Boston, Massachusetts" (2023), https://doi.org/10.1016/j.envres.2023.115584
Chung, Chloe S et al. "Assessing the Impact of Aircraft Arrival on Ambient Ultrafine Particle Number Concentrations in Near-Airport Communities in Boston, Massachusetts" , 2023, https://doi.org/10.1016/j.envres.2023.115584
The propulsion systems used in commercial supersonic transport (SST) aircraft, such as the Concorde, have used repurposed engines or derivative engines based on cores from existing donor engines rather than purpose-designed clean-sheet engines. A similar approach is currently being adopted in the development of new SSTs. Turbomachinery components a
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Prashanth, Prakash et al. (2023). Impact of Design Constraints on Noise and Emissions of Derivative Supersonic Engines. https://doi.org/10.2514/1.B38918
Prashanth, Prakash et al. "Impact of Design Constraints on Noise and Emissions of Derivative Supersonic Engines" (2023), https://doi.org/10.2514/1.B38918
Prashanth, Prakash et al. "Impact of Design Constraints on Noise and Emissions of Derivative Supersonic Engines" , 2023, https://doi.org/10.2514/1.B38918
United States. Federal Aviation Administration. Center of Excellence for Alternative Jet Fuels and Environment
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2023-02-01
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PDF
This report covers the period October 1, 2021, through September 30, 2022. The Center was established by the authority of FAA solicitation 13-C-AJFE-Solicitation. During that time the ASCENT team launched a new website, which can be viewed at ascent.aero. The next meeting(s) will be held during the months of April and May 2023.
United States. Federal Aviation Administration. Center of Excellence for Alternative Jet Fuels and Environment (2023). FAA Center of Excellence for Alternative Jet Fuels & Environment: Annual Technical Report 2021: For the Period October 1, 2021 – September 30, 2022.
United States. Federal Aviation Administration. Center of Excellence for Alternative Jet Fuels and Environment "FAA Center of Excellence for Alternative Jet Fuels & Environment: Annual Technical Report 2021: For the Period October 1, 2021 – September 30, 2022" (2023)
United States. Federal Aviation Administration. Center of Excellence for Alternative Jet Fuels and Environment "FAA Center of Excellence for Alternative Jet Fuels & Environment: Annual Technical Report 2021: For the Period October 1, 2021 – September 30, 2022" , 2023
This project involved coordination between dozens of researchers and stakeholders from several different countries relating to the influence of jet fuel variation on sprays and combustion operability including ignition and lean blowout, and the models required to anticipate combustor performance. The models included chemical kinetic models of the c
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Heyne, Joshua et al. (2023). Project 034 National Jet Fuels Combustion Program – Area #7: Overall Program Integration and Analysis.
Heyne, Joshua et al. "Project 034 National Jet Fuels Combustion Program – Area #7: Overall Program Integration and Analysis" (2023)
Heyne, Joshua et al. "Project 034 National Jet Fuels Combustion Program – Area #7: Overall Program Integration and Analysis" , 2023
The twofold goals for this study were to determine an optimum choice for ribonucleic acid sequencing (RNA-Seq) alignment software and to determine which differential expression software packages produced consistent and accurate results. RNA was extracted from blood and pooled to produce homogenous sample material to ensure that any differential exp
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Munster, Susan K. et al. (2023). RNA-Seq Alignment and Differential Expression Software Comparison. https://doi.org/10.21949/1524443
Munster, Susan K. and Nicholson, Scott J. and Uyhelji, Hilary A. "RNA-Seq Alignment and Differential Expression Software Comparison" (2023), https://doi.org/10.21949/1524443
Munster, Susan K. et al. "RNA-Seq Alignment and Differential Expression Software Comparison" , 2023, https://doi.org/10.21949/1524443
United States. Department of Transportation. Federal Aviation Administration. Civil Aerospace Medical Institute. Aerospace Medical Education Division
2023-01-01
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Aeromedical Safety Brochures
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PDF
Aeromedical Safety Brochures are prepared for general aviation pilots, commercial pilots and physicians. The brochures acquaint the aviation community with the physiological challenges of the aviation environment and relevant safety concerns.
Supporting Files
United States. Department of Transportation. Federal Aviation Administration. Civil Aerospace Medical Institute. Aerospace Medical Education Division (2023). What are ECG Normal Variants?. https://doi.org/10.21949/1403387
United States. Department of Transportation. Federal Aviation Administration. Civil Aerospace Medical Institute. Aerospace Medical Education Division "What are ECG Normal Variants?" (2023), https://doi.org/10.21949/1403387
United States. Department of Transportation. Federal Aviation Administration. Civil Aerospace Medical Institute. Aerospace Medical Education Division "What are ECG Normal Variants?" , 2023, https://doi.org/10.21949/1403387
Ribonucleic acid sequencing (RNA-Seq) is a valuable and commonly used technique to quantify the number of individual RNA transcripts within a sample. RNA-Seq typically requires a small amount of pure and concentrated RNA, which can necessitate additional concentration or purification of previously isolated RNA samples. Magnetic beads and silica-bas
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Munster, Susan K. et al. (2023). An Evaluation of the Downstream Effects of Purification Methods on RNA-Seq Differential Expression. https://doi.org/10.21949/1524442
Munster, Susan K. and Uyhelji, Hilary A. and Nicholson, Scott J. "An Evaluation of the Downstream Effects of Purification Methods on RNA-Seq Differential Expression" (2023), https://doi.org/10.21949/1524442
Munster, Susan K. et al. "An Evaluation of the Downstream Effects of Purification Methods on RNA-Seq Differential Expression" , 2023, https://doi.org/10.21949/1524442
As part of a larger project aimed at gaining a better understanding of factors that affect the quality of test results using Anthropomorphic Test Devices (ATDs), the FAA tested the effects of long-term static ATD pelvis loading during storage. Testing simulated two types of ATD pelvis storage methods of the 50th percentile Hybrid III ATD for one ye
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Hellstrom, Ian T. and Moorcroft, David M. (2023). Effect of Pelvic Loading during Anthropomorphic Test Device Storage. https://doi.org/10.21949/1524440
Hellstrom, Ian T. and Moorcroft, David M. "Effect of Pelvic Loading during Anthropomorphic Test Device Storage" (2023), https://doi.org/10.21949/1524440
Hellstrom, Ian T. and Moorcroft, David M. "Effect of Pelvic Loading during Anthropomorphic Test Device Storage" , 2023, https://doi.org/10.21949/1524440
The Federal Aviation Administration’s air traffic control organization (ATO) encompasses a variety of facilities that include towers, terminal radar approach control facilities (TRACONs), and air route traffic control centers (ARTCCs). Well trained air traffic controllers using effective automation can exploit alarms, alerts and warnings (collectiv
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Ruskin, Keith J et al. (2022). A Handbook for Signal Design: Alarms, Alerts, and Warnings in Air Traffic Control.
Ruskin, Keith J and Rice, Stephen and Ruskin, Anna Clebone "A Handbook for Signal Design: Alarms, Alerts, and Warnings in Air Traffic Control" (2022)
Ruskin, Keith J et al. "A Handbook for Signal Design: Alarms, Alerts, and Warnings in Air Traffic Control" , 2022
Background: Studies of the association between aircraft noise and hypertension are complicated by inadequate control for potential confounders and a lack of longitudinal assessments, and existing evidence is inconclusive. Objectives: We evaluated the association between long-term aircraft noise exposure and risk of hypertension among post-menopausa
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Six hundred and seventy-five measurements of dynamic viscosity and density have been used to assess the prediction error of the Arrhenius blending rule for kinematic viscosity of hydrocarbon mixtures. Major trends within the data show that mixture complexity–binary to hundreds of components—and temperature are more important determinants of predict
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All the viscosity and density data measured in support of this manuscript are provided within the “data” tab of the attached document called HEAT_LAB_ViscosityData_2022 (XLSX). Expanded versions of Tables 1, 2 are provided in the other tab, “Material_list”. A definition of important terms used throughout the theory section is provided in Viscosity_
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Supporting Files
Boehm, Randall C. et al. (2022). An Error Quantification of the Arrhenius Blending Rule for Viscosity of Hydrocarbon Mixtures [Supplemental Materials].
Boehm, Randall C. et al. "An Error Quantification of the Arrhenius Blending Rule for Viscosity of Hydrocarbon Mixtures [Supplemental Materials]" (2022)
Boehm, Randall C. et al. "An Error Quantification of the Arrhenius Blending Rule for Viscosity of Hydrocarbon Mixtures [Supplemental Materials]" , 2022
United States. Federal Aviation Administration. Center of Excellence for Alternative Jet Fuels and Environment
2022-12-01
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PDF
This report covers the period October 1, 2020, through September 30, 2021. The Center was established by the authority of FAA solicitation 13-C-AJFE-Solicitation. During that time the ASCENT team launched a new website, which can be viewed at ascent.aero. The next meeting will be held April 5-7, 2022, in Alexandria, VA.
United States. Federal Aviation Administration. Center of Excellence for Alternative Jet Fuels and Environment (2022). FAA Center of Excellence for Alternative Jet Fuels & Environment: Annual Technical Report 2021: For the Period October 1, 2020 - September 30, 2021: Volume 2.
United States. Federal Aviation Administration. Center of Excellence for Alternative Jet Fuels and Environment "FAA Center of Excellence for Alternative Jet Fuels & Environment: Annual Technical Report 2021: For the Period October 1, 2020 - September 30, 2021: Volume 2" (2022)
United States. Federal Aviation Administration. Center of Excellence for Alternative Jet Fuels and Environment "FAA Center of Excellence for Alternative Jet Fuels & Environment: Annual Technical Report 2021: For the Period October 1, 2020 - September 30, 2021: Volume 2" , 2022
United States. Department of Transportation. Federal Aviation Administration. Center of Excellence for Alternative Jet Fuels and Environment
2022-12-01
|
PDF
This report covers the period October 1, 2020, through September 30, 2021. The Center was established by the authority of FAA solicitation 13-C-AJFE-Solicitation. During that time the ASCENT team launched a new website, which can be viewed at ascent.aero. The next meeting will be held April 5-7, 2022, in Alexandria, VA.
United States. Department of Transportation. Federal Aviation Administration. Center of Excellence for Alternative Jet Fuels and Environment (2022). FAA Center of Excellence for Alternative Jet Fuels & Environment: Annual Technical Report 2021: For the Period October 1, 2020 - September 30, 2021: Volume 1.
United States. Department of Transportation. Federal Aviation Administration. Center of Excellence for Alternative Jet Fuels and Environment "FAA Center of Excellence for Alternative Jet Fuels & Environment: Annual Technical Report 2021: For the Period October 1, 2020 - September 30, 2021: Volume 1" (2022)
United States. Department of Transportation. Federal Aviation Administration. Center of Excellence for Alternative Jet Fuels and Environment "FAA Center of Excellence for Alternative Jet Fuels & Environment: Annual Technical Report 2021: For the Period October 1, 2020 - September 30, 2021: Volume 1" , 2022
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