COMBEAMS:用于钢-混凝土复合梁结构验证的数值工具

IF 2.4 4区 计算机科学 Q2 COMPUTER SCIENCE, SOFTWARE ENGINEERING
Jorge Palomino Tamayo, Lucas Alves de Aguiar, Cristian de Campos, Daniel Barbosa Mapurunga Matos, Inácio Benvegnu Morsch
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引用次数: 0

摘要

本文介绍了一个用 Python 编写的名为 COMBEAMS 的计算机程序,该程序用于极限状态下连续钢-混凝土复合梁的设计验证。由于该程序具有友好的图形界面,因此用户可以与以计算剪力和弯矩图以及沿钢-混凝土界面的计算剪力连接器分布表示的输出结果进行交互。最后一个问题尤为重要,因为连接件将剪力流从混凝土板传递到型钢上,从而保证了两个构件之间理想的相互作用。该程序还可插入其他方法中。该工具必将有助于工程师和研究人员完成日常任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMBEAMS: A numerical tool for the structural verification of steel-concrete composite beams
This paper presents a computer program named COMBEAMS written in Python and intended for the design verification of continuous steel-concrete composite beams under the ultimate limit state. Due to its friendly graphical interface the program allows the user to interact with the output results expressed in terms of computed shear and bending moment diagrams as well as computed shear connector distribution along the steel-concrete interface. Particularly, this last issue is important as connectors transfer the shear flow from the concrete slab to the steel profile to guarantee the desirable interaction between both members. The program can be also inserted into other methodologies. This tool will certainly aim engineers and researchers with their daily tasks.
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来源期刊
SoftwareX
SoftwareX COMPUTER SCIENCE, SOFTWARE ENGINEERING-
CiteScore
5.50
自引率
2.90%
发文量
184
审稿时长
9 weeks
期刊介绍: SoftwareX aims to acknowledge the impact of software on today''s research practice, and on new scientific discoveries in almost all research domains. SoftwareX also aims to stress the importance of the software developers who are, in part, responsible for this impact. To this end, SoftwareX aims to support publication of research software in such a way that: The software is given a stamp of scientific relevance, and provided with a peer-reviewed recognition of scientific impact; The software developers are given the credits they deserve; The software is citable, allowing traditional metrics of scientific excellence to apply; The academic career paths of software developers are supported rather than hindered; The software is publicly available for inspection, validation, and re-use. Above all, SoftwareX aims to inform researchers about software applications, tools and libraries with a (proven) potential to impact the process of scientific discovery in various domains. The journal is multidisciplinary and accepts submissions from within and across subject domains such as those represented within the broad thematic areas below: Mathematical and Physical Sciences; Environmental Sciences; Medical and Biological Sciences; Humanities, Arts and Social Sciences. Originating from these broad thematic areas, the journal also welcomes submissions of software that works in cross cutting thematic areas, such as citizen science, cybersecurity, digital economy, energy, global resource stewardship, health and wellbeing, etcetera. SoftwareX specifically aims to accept submissions representing domain-independent software that may impact more than one research domain.
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