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Sökning: WFRF:(Hu H) > Bokkapitel

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1.
  • Du, J., et al. (författare)
  • Storm runoff simulation based on the spatially distributed runoff curve number and time variant routing methods
  • 2007
  • Ingår i: Methodology in Hydrology. - Wallingford, England : IAHS. - 9781901502930 ; , s. 186-194
  • Bokkapitel (övrigt vetenskapligt/konstnärligt)abstract
    • In this study, a GIS-based, simple and easily performed modelling approach was proposed to simulate storm runoff response processes with consideration of spatial and temporal variability of runoff generation and flow routing through the hillslope and river network. The watershed was discretized into grid cells, and the river network was delineated from the DEM by use of GIS. In the modelling approach, the US Department of Agriculture Soil Conservation Service (SCS) curve number (CN) method in its differential form was used to calculate surface runoff (or excess rainfall) for each grid cell. The surface runoff was then routed to the watershed outlet using an improved spatially distributed travel time method. The approach was applied to simulate eight storm runoff events in the Jiaokou Reservoir watershed, a sub-basin of the Yongjiang River basin in southeast China. The results showed that the proposed approach predicted the runoff processes with an average efficiency of 0.94.
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2.
  • Shen, H., et al. (författare)
  • Wearable carbon nanotube devices for sensing
  • 2017
  • Ingår i: Industrial applications of carbon nanotubes. - : Elsevier. - 9780323415316 - 9780323414814 ; , s. 179-199
  • Bokkapitel (refereegranskat)abstract
    • The application of carbon nanotubes (CNTs) for wearable sensing device fabrication is an interesting area, attracting sustained scientific and technological interest. Acquisition of information from wearable technologies is considered a cornerstone in person-centered health informatics, because of its independence, currency, and timeliness. The unique physical and chemical properties (such as high aspect ratio, ultralight weight, high mechanical strength, high electrical conductivity, and high thermal conductivity) of CNTs make them an attractive nanomaterial for wearable sensor fabrication. Extensive efforts will continuously be made in both academia and industry in the research and development of wearable CNT sensors to enhance their function, flexibility, energy saving, and longevity. We will discuss recent advances in the design and application of wearable devices based on CNT materials for sensing, especially in the fields of medical equipment, motion detection, and environmental sensor.
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3.
  • Yu, X., et al. (författare)
  • Photonics-Aided 300–500 GHz Wireless Communications Beyond 100 Gbps
  • 2022
  • Ingår i: THz Communications. - Cham : Springer Science and Business Media Deutschland GmbH. ; , s. 467-472
  • Bokkapitel (refereegranskat)abstract
    • We experimentally demonstrated a series of photonics-wireless transmissions in the 300–500 GHz band at the Technical University of Denmark (DTU) and the Zhejiang University (ZJU), with special efforts to drive the data rates beyond 100 Gbps and to extend the THz wireless reach by combining the techniques of state-of-the-art optoelectronic THz devices, spectrally efficient modulation formats and advanced digital signal processing. 
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