Title of article :
Dynamic Analysis of Suspension Footbridges Using an Actual Pedestrian Load Model Compared with EUR23984 EN Requirements
Author/Authors :
Samadi, B Department of Civil Engineering - Faculty of Engineering - Urmia University, Urmia, Iran , Zamani Ahari, G Department of Civil Engineering - Faculty of Engineering - Urmia University, Urmia, Iran
Pages :
9
From page :
1379
To page :
1387
Abstract :
The suspension footbridges are very flexible due to their geometrical structure; hence they may face severe vibration problems induced mainly by natural forces and pedestrians crossing. By exceeding a certain limit, these vibrations can disturb the serviceability of the bridge as well as health and safety of the structure and pedestrians. Therefore, standard design guidelines are sets of recommendations to control the vibrations by applying restrictive design criteria. Because of the complexity of the exact simulation of the human-induced loads, these guidelines provide simplified methods to cover the frequency ranges of the human motion types in order to estimate the response of the structure without modeling the actual motion. As current paper, the simplified loading method proposed by EUR23984 EN code‑as the main footbridge design standard was investigated. Its compliance with pedestrian’s synchronization phenomenon was evaluated using the analysis results of a discontinuous type loading model proposed by authors. It was shown that the response of the footbridge strictly depends on the type and the speed of the pedestrian motion applied to the bridge, which is not included in the design parameters of the code. In this research work, a series of analysis is conducted on a suspension footbridge as a case study under both actual human loads and the simplified loads suggested by the code and the results were compared. It was found out that in the same crowd loading, the actual human loading creates greater vertical accelerations compare to EUR 23984 EN method results.
Farsi abstract :
پل هاي معلق عابرپياده با توجه به ساختار هندسي خود و انعطاف پذيري بالا، در اثر حركت عابران پياده مي توانند به سرعت مرتعش شوند، كه علت اين موضوع نزديك بودن محدوده فركانس طبيعي اين سازه ها با محدوه فركانس گام برداري انسان است. از سويي ديگر ارتعاشات بيش از حد اين سازه ها بر روي بهره برداري از آنها اثرگذار بوده و سبب اخلال در سلامت عملكرد آنها مي گردد. بنابراين دستورالعمل هاي طراحي با استفاده از شرايط محدودكننده سعي در كنترل اين ارتعاشات دارند. مدل سازي حركات انسان دشوار است و بر اين اساس بارگذاري هاي ارائه شده توسط آيين نامه ها ساده سازي شده مي باشند. در اين آئين نامه ها، فركانس حركات مختلف انساني مبناي آناليز سازه قرار مي گيرد و اين در حال ي است كه رفتار واقعي سازه علاوه بر فركانس حركت به نوع حركت و سرعت آن نيز بستگي دارد. در اين مطالعه، پل معلق عابر پياده تحت بارگذاري واقعي انساني و بارگذاري ارائه شده توسط آيين نامه EUR23984 EN مورد تحليل و مقايسه قرار گرفته است. بر اساس نتايج بدست آمده مشاهده گرديد كه بارگذاري واقعي حركات انسان موجب ايجاد شتاب قائم بزرگتري نسبت به بارگذاري پيشنهادي آئين نامه مي گردد.
Keywords :
Suspension Footbridge , Pedestrian Load , Dynamic Analysis
Serial Year :
2019
Record number :
2496875
Link To Document :
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