Matches in SemOpenAlex for { <https://semopenalex.org/work/W4311457533> ?p ?o ?g. }
- W4311457533 endingPage "108023" @default.
- W4311457533 startingPage "108023" @default.
- W4311457533 abstract "This paper uses a train-track-bridge interaction system to assess the dynamic performance of railway bridges exposed to a high-speed train and magnetic field. A 24° of freedom 3D train model and thin steel bridge beam are considered. In the interaction of train and bridge, a new six-parameter track system consisting of rail, sleeper, and ballast is modeled. The governing equations of the bridge, track and train motions are derived based on the Lagrange method. The Lorentz force induced by the directed magnetic field in the axial direction is obtained by Maxwell's equation. Using state-space forms, the second-order equations of motion are transformed into first-order differential equations, which are then solved using the Runge-Kutta method. Studies using parametric data are done to show how the suggested approach may be used to investigate the dynamic interaction of the entire system. The magnetic field intensities and moving train speed on the interaction of the railway bridge system were investigated and analyzed for the first time in the literature. Depending on the speed of the vehicle, when the dimensionless magnetic field is Hxm=30, it can be seen that the train body's vertical displacement falls by around 50%. The obtained results are helpful for the design of railway bridges and the safe and comfortable ride of high-speed trains over flexible structures." @default.
- W4311457533 created "2022-12-26" @default.
- W4311457533 creator A5012529207 @default.
- W4311457533 creator A5017621085 @default.
- W4311457533 creator A5067923618 @default.
- W4311457533 date "2023-03-01" @default.
- W4311457533 modified "2023-09-23" @default.
- W4311457533 title "Application of magnetic field to reduce the forced response of steel bridges to high speed train" @default.
- W4311457533 cites W1966680944 @default.
- W4311457533 cites W1969213703 @default.
- W4311457533 cites W1990149381 @default.
- W4311457533 cites W1997478770 @default.
- W4311457533 cites W2049500572 @default.
- W4311457533 cites W2064868472 @default.
- W4311457533 cites W2071046585 @default.
- W4311457533 cites W2086032695 @default.
- W4311457533 cites W2122527644 @default.
- W4311457533 cites W2135834642 @default.
- W4311457533 cites W2141699206 @default.
- W4311457533 cites W2142041430 @default.
- W4311457533 cites W2153665827 @default.
- W4311457533 cites W2313605267 @default.
- W4311457533 cites W2548771624 @default.
- W4311457533 cites W2550283852 @default.
- W4311457533 cites W2568344498 @default.
- W4311457533 cites W2577040214 @default.
- W4311457533 cites W2725117449 @default.
- W4311457533 cites W2766639343 @default.
- W4311457533 cites W2770946996 @default.
- W4311457533 cites W2771351469 @default.
- W4311457533 cites W2774421124 @default.
- W4311457533 cites W2795248968 @default.
- W4311457533 cites W2800977156 @default.
- W4311457533 cites W2891535394 @default.
- W4311457533 cites W2892816754 @default.
- W4311457533 cites W2898505324 @default.
- W4311457533 cites W2900910151 @default.
- W4311457533 cites W2906414395 @default.
- W4311457533 cites W2913614455 @default.
- W4311457533 cites W2923352069 @default.
- W4311457533 cites W2937838853 @default.
- W4311457533 cites W2942483895 @default.
- W4311457533 cites W2948792370 @default.
- W4311457533 cites W2956060330 @default.
- W4311457533 cites W2960608397 @default.
- W4311457533 cites W2964238140 @default.
- W4311457533 cites W2969833570 @default.
- W4311457533 cites W2978357804 @default.
- W4311457533 cites W2995901971 @default.
- W4311457533 cites W3009704298 @default.
- W4311457533 cites W3009879278 @default.
- W4311457533 cites W3015215059 @default.
- W4311457533 cites W3016241768 @default.
- W4311457533 cites W3021653025 @default.
- W4311457533 cites W3035340173 @default.
- W4311457533 cites W3041177606 @default.
- W4311457533 cites W3043176897 @default.
- W4311457533 cites W3080822739 @default.
- W4311457533 cites W3082521518 @default.
- W4311457533 cites W3083094767 @default.
- W4311457533 cites W3107055536 @default.
- W4311457533 cites W3112119775 @default.
- W4311457533 cites W3119665022 @default.
- W4311457533 cites W3140568434 @default.
- W4311457533 cites W3157363459 @default.
- W4311457533 cites W3203626521 @default.
- W4311457533 cites W3215172625 @default.
- W4311457533 cites W4240796209 @default.
- W4311457533 cites W4283763465 @default.
- W4311457533 cites W4285600992 @default.
- W4311457533 cites W4290964092 @default.
- W4311457533 cites W4304693542 @default.
- W4311457533 doi "https://doi.org/10.1016/j.ijmecsci.2022.108023" @default.
- W4311457533 hasPublicationYear "2023" @default.
- W4311457533 type Work @default.
- W4311457533 citedByCount "0" @default.
- W4311457533 crossrefType "journal-article" @default.
- W4311457533 hasAuthorship W4311457533A5012529207 @default.
- W4311457533 hasAuthorship W4311457533A5017621085 @default.
- W4311457533 hasAuthorship W4311457533A5067923618 @default.
- W4311457533 hasConcept C100776233 @default.
- W4311457533 hasConcept C105795698 @default.
- W4311457533 hasConcept C107551265 @default.
- W4311457533 hasConcept C115260700 @default.
- W4311457533 hasConcept C117251300 @default.
- W4311457533 hasConcept C119599485 @default.
- W4311457533 hasConcept C121332964 @default.
- W4311457533 hasConcept C125907379 @default.
- W4311457533 hasConcept C126322002 @default.
- W4311457533 hasConcept C127413603 @default.
- W4311457533 hasConcept C135628077 @default.
- W4311457533 hasConcept C14037181 @default.
- W4311457533 hasConcept C15744967 @default.
- W4311457533 hasConcept C17281054 @default.
- W4311457533 hasConcept C179093217 @default.
- W4311457533 hasConcept C190839683 @default.
- W4311457533 hasConcept C205649164 @default.
- W4311457533 hasConcept C26016710 @default.