375 research outputs found

    MEVA - An interactive visualization application for validation of multifaceted meteorological data with multiple 3D devices

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    To achieve more realistic simulations, meteorologists develop and use models with increasing spatial and temporal resolution. The analyzing, comparing, and visualizing of resulting simulations becomes more and more challenging due to the growing amounts and multifaceted character of the data. Various data sources, numerous variables and multiple simulations lead to a complex database. Although a variety of software exists suited for the visualization of meteorological data, none of them fulfills all of the typical domain-specific requirements: support for quasi-standard data formats and different grid types, standard visualization techniques for scalar and vector data, visualization of the context (e.g., topography) and other static data, support for multiple presentation devices used in modern sciences (e.g., virtual reality), a user-friendly interface, and suitability for cooperative work

    Why They Fight: Combat Motivation in the Iraq War

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    With the recent lightning swift combat successes of Operation IRAQI FREEDOM, there may be a tendency to view with awe the lethality of U.S. technology and training. The researchers, however, argue that the true strength of America\u27s military might lies not in its hardware or high-tech equipment, but in its soldiers. Dr. Leonard Wong and his colleagues traveled to Iraq to see what motivated soldiers to continue in battle, to face extreme danger, and to risk their lives in accomplishing the mission. As a means of comparison, they began by interviewing Iraqi Regular Army prisoners of war to examine their combat motivation and unit dynamics. The researchers then interviewed U.S. combat troops fresh from the fields of battle to examine their views. What they found was that today\u27s U.S. soldiers, much like soldiers of the past, fight for each other. Unit cohesion is alive and well in today\u27s Army. Yet, Dr. Wong and his fellow researchers also found that soldiers cited ideological reasons such as liberation, freedom, and democracy as important factors in combat motivation. Today\u27s soldiers trust each other, they trust their leaders, they trust the Army, and they also understand the moral dimensions of war. This year marks the 30th anniversary of the all-volunteer Army. This monograph is a celebration of the success of that radical idea and the transformation of the U.S. Army from a demoralized draft army, to a struggling all-volunteer force, to a truly professional Army.https://press.armywarcollege.edu/monographs/1787/thumbnail.jp

    Unmet needs in pneumonia research: a comprehensive approach by the CAPNETZ study group

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    INTRODUCTION: Despite improvements in medical science and public health, mortality of community-acquired pneumonia (CAP) has barely changed throughout the last 15 years. The current SARS-CoV-2 pandemic has once again highlighted the central importance of acute respiratory infections to human health. The “network of excellence on Community Acquired Pneumonia” (CAPNETZ) hosts the most comprehensive CAP database worldwide including more than 12,000 patients. CAPNETZ connects physicians, microbiologists, virologists, epidemiologists, and computer scientists throughout Europe. Our aim was to summarize the current situation in CAP research and identify the most pressing unmet needs in CAP research. METHODS: To identify areas of future CAP research, CAPNETZ followed a multiple-step procedure. First, research members of CAPNETZ were individually asked to identify unmet needs. Second, the top 100 experts in the field of CAP research were asked for their insights about the unmet needs in CAP (Delphi approach). Third, internal and external experts discussed unmet needs in CAP at a scientific retreat. RESULTS: Eleven topics for future CAP research were identified: detection of causative pathogens, next generation sequencing for antimicrobial treatment guidance, imaging diagnostics, biomarkers, risk stratification, antiviral and antibiotic treatment, adjunctive therapy, vaccines and prevention, systemic and local immune response, comorbidities, and long-term cardio-vascular complications. CONCLUSION: Pneumonia is a complex disease where the interplay between pathogens, immune system and comorbidities not only impose an immediate risk of mortality but also affect the patients’ risk of developing comorbidities as well as mortality for up to a decade after pneumonia has resolved. Our review of unmet needs in CAP research has shown that there are still major shortcomings in our knowledge of CAP

    Complementary hydro-mechanical coupled finite/discrete element and microseismic modelling to predict hydraulic fracture propagation in tight shale reservoirs

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    This paper presents a novel approach to predict the propagation of hydraulic fractures in tight shale reservoirs. Many hydraulic fracture modelling schemes assume that the fracture direction is pre-seeded in the problem domain discretization. This is a severe limitation as the reservoir often contains large numbers of pre-existing fractures that strongly influence the direction of the propagating fracture. To circumvent these shortcomings a new fracture modelling treatment is proposed where the introduction of discrete fracture surfaces is based on new and dynamically updated geometrical entities rather than the topology of the underlying spatial discretization. Hydraulic fracturing is an inherently coupled engineering problem with interactions between fluid flow and fracturing when the stress state of the reservoir rock attains a failure criterion. This work follows a staggered hydro-mechanical coupled finite/discrete element approach to capture the key interplay between fluid pressure and fracture growth. In field practice the fracture growth is hidden from the design engineer and microseismicity is often used to infer hydraulic fracture lengths and directions. Microsesimic output can also be computed from changes of the effective stress in the geomechanical model and compared against field microseismicity. A number of hydraulic fracture numerical examples are presented to illustrate the new technology
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