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Econometric Views, often stylized as EViews, is a package that merges statistical analysis with econometric studies. It is designed to provide tools for time series analysis, forecasting, and econometric model simulation. The software originated from MicroTSP software and has evolved significantly since its inception in 1981. The history of EViews is marked by a continuous effort to enhance its computational speed and user interface. It was initially developed for large computing systems but...
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Concrete exposed to seawater can undergo degradation like the dissolution of ettringite and gypsum, increasing the material's porosity and decreasing its strength. In contrast, the crystallization of salts within the concrete's pores can cause expansion, particularly above the waterline where evaporation occurs. Nonetheless, this expansion only happens when seawater, enabled by the concrete's permeability, manages to infiltrate the structure.
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Deep sea optical viewing systems: methodologies for their analyses and synthesis.

H E Brandt, R J Mataloni

    Applied Optics
    |February 16, 2010
    PubMed
    Summary

    This study presents a methodology for analyzing deep-sea optical viewing systems. It optimizes submersible viewing parameters like field of view and speed for better deep-sea exploration.

    Area of Science:

    • Oceanography
    • Optical Engineering
    • Robotics

    Background:

    • Deep-sea exploration requires effective optical viewing systems.
    • Submersible-mounted systems face unique challenges due to the deep-sea environment.
    • Existing systems may not be optimized for specific exploration tasks.

    Purpose of the Study:

    • To develop and present a methodology for analyzing and synthesizing deep-sea submersible-mounted optical viewing systems.
    • To characterize the radiation field of illuminators using a phenomenological beam model.
    • To define and calculate key optical parameters for optimizing system performance.

    Main Methods:

    • Analysis and synthesis of three model deep-sea submersible-mounted optical viewing systems.
    • Characterization of illuminator radiation field using a phenomenological beam model.

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  • Calculation of key exposures and irradiances, including exposure field, contrast field, irradiance field, signal-to-noise field, and blur.
  • Main Results:

    • Introduction of novel concepts: exposure field, exposure contrast field, irradiance field, signal-to-noise field, and blur.
    • Calculation of critical exposure and irradiance values for deep-sea optical systems.
    • Identification of relationships between optical system parameters and submersible operational characteristics.

    Conclusions:

    • The presented methodology enables the analysis and synthesis of optimized deep-sea optical viewing systems.
    • Key parameters such as angular field of view, height off-bottom, and submersible speed can be specified for optimal performance.
    • This work provides a framework for improving the effectiveness of deep-sea exploration through advanced optical system design.