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  • 1
    Keywords: Environmental pollution ; Hydraulic engineering ; Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution ; Environmental pollution ; Hydraulic engineering ; Water pollution. ; Water quality. ; Engineering geology. ; Engineering—Geology. ; Foundations. ; Hydraulics.
    Description / Table of Contents: This book presents new findings on intrinsic variability in pollutant build-up and wash-off processes by identifying the characteristics of underlying process mechanisms, based on the behaviour of various-sized particles. The correlation between build-up and wash-off processes is clearly defined using heavy metal pollutants as a case study. The outcome of this study is an approach developed to quantitatively assess process uncertainty, which makes it possible to mathematically incorporate the characteristics of variability in build-up and wash-off processes into stormwater quality models. In addition, the approach can be used to quantify process uncertainty as an integral aspect of stormwater quality predictions using common uncertainty analysis techniques. The information produced using enhanced modelling tools will promote more informed decision-making, and thereby help to improve urban stormwater quality
    Type of Medium: Online Resource
    Pages: Online-Ressource (VIII, 82 p, online resource)
    Edition: Springer eBook Collection. Earth and Environmental Science
    ISBN: 9789811335075
    Series Statement: SpringerBriefs in Water Science and Technology
    Language: English
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  • 2
    Publication Date: 2016-06-15
    Description: High-energy physics experiments enable us to explore and understand particle properties and interactions. An increase in luminosity in the accelerator, which allows us to study particles in higher energy ranges, demands faster data transmission and processing. Aimed at this, a high throughput uTCA-compliant electronics module, based on the latest FPGAs, has been designed. It contains 48 10.0 Gb/s optical fiber input channels and 24 10.0 Gb/s optical fiber output channels, supporting up to 480 Gb/s input bandwidth and 240 Gb/s output bandwidth. It complies with the uTCA standards, providing high speed data exchange capability and functioning as a compact and key module in a trigger and DAQ system for a large experiment. A reliable 10.0 Gb/s data transmission among two boards has been verified and one functionality that merges 6 1.6 Gb/s data channels into one single 10.0 Gb/s channel has been achieved. The hardware, firmware and software together with a performance evaluation are...
    Print ISSN: 1674-1137
    Topics: Physics
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