LEI 11053 PDF

A pile-soil separation concerned continuum method is proposed to analyze the response of laterally loaded piles in a homogeneous multilayer elastic medium. The displacement fields of soil vary in the vertical direction and decrease in the radical direction. Variational principles are used to obtain the governing differential equations for the pile and soil displacements. Closed-form solutions are derived and the pile deflection, pile rotation, bending moment and shear force for the entire length of the pile can be obtained.

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Either your web browser doesn't support Javascript or it is currently turned off. In the latter case, please turn on Javascript support in your web browser and reload this page. Read article at publisher's site DOI : Phys Chem Chem Phys , 20 42 , 01 Oct Cited by 3 articles PMID: To arrive at the top five similar articles we use a word-weighted algorithm to compare words from the Title and Abstract of each citation.

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Europe PMC requires Javascript to function effectively. Recent Activity. Recent history Saved searches. Abstract Available from publisher site using DOI. A subscription may be required. Search articles by 'Qiuyun Ouyang'. Ouyang Q 1 ,. Xinpeng Di Search articles by 'Xinpeng Di'.

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Thus this kind of organic glasses have great promise in optical limiter and optical shutter applications. Multiphoton absorbing materials: molecular designs, characterizations, and applications. Title not supplied Bolotin J. Title not supplied Zhang J. Title not supplied Song Opt. Title not supplied Zhang Chin. Title not supplied Qian J. Title not supplied Ouyang Appl. Electromechanical resonators from graphene sheets.

Show 10 more references 10 of Surface oxygen-containing defects of graphene nanosheets with tunable nonlinear optical absorption and refraction. Nonlinear absorption, nonlinear scattering, and optical limiting properties of MoS2-ZnO composite-based organic glasses.

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A Pile-Soil Separation Concerned Model for Laterally Loaded Piles in Layered Soils



Enhanced reverse saturable absorption in graphene/Ag2S organic glasses.



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