Please use this identifier to cite or link to this item: https://dspace.ctu.edu.vn/jspui/handle/123456789/71185
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dc.contributor.authorThai, Phuong Truc-
dc.date.accessioned2021-12-22T09:25:59Z-
dc.date.available2021-12-22T09:25:59Z-
dc.date.issued2020-
dc.identifier.issn2525-2267-
dc.identifier.urihttps://dspace.ctu.edu.vn/jspui/handle/123456789/71185-
dc.description.abstractWritten for senior-year undergraduates and first-year graduate students with solid backgrounds in differential and integral calculus, this paper is oriented toward engineers and applied mathematicians. Consequently, this paper should be useful to senior-year undergraduates the finite element method (1). The scaled direct approach is adopted for this purpose and each step in the finite element solution process is given in full detail. For this reason, all students must be exposed to (and indeed should master). This paper provides the general framework for the development of nearly all (nonstructural) finite element models. The finite element method of analysis is a very powerful, modern computational tool. Applications range from deformation and stress analysis of automotive, aircraft, building, and bridge structures to field analysis of beat flux, fluid flow, magnetic flux, seepage, and other flow problems.vi_VN
dc.language.isoenvi_VN
dc.relation.ispartofseriesTạp chí Khoa học và Công nghệ Trường Đại học Công nghiệp Thành phố Hồ Chí Minh;Số 43A - Tr.88-91-
dc.subjectFinite element methodvi_VN
dc.subjectCentral difference methodvi_VN
dc.subjectNewmark’s constant average acceleration methodvi_VN
dc.subjectNewmark’s linear acceleration methodvi_VN
dc.titleComparision and study of numerical methods for dynamic response evaluation of sdofvi_VN
dc.typeArticlevi_VN
Appears in Collections:Khoa học và Công nghệ Trường Đại học Công nghiệp Thành phố Hồ Chí Minh

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