提高大学教学空间的声学性能

A. Rizk, H. Dewer, H. S. Seddeq, R. Aly-Aldean
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引用次数: 1

摘要

由于声学、建筑和热处理在提高空间的声学和热性能,从而提高空间的声学和热舒适性方面起着重要作用,因此对演讲厅的声学和热性能影响很大。本研究针对坦塔工程主报告厅内部声热环境的声学、建筑和热处理的作用进行了深入的研究。然而,该报告厅存在很大的声热问题,主要原因是天花板的天光;在声学和热处理之间进行整合工作,以达到最佳的声学和热性能,并使用ODEON软件对声学建议处理进行评估,并选择最佳处理,然后使用DESIGN BUILDER软件进行评估,以计算这些建议处理后大厅能耗降低的范围。提高了大厅的声热性能水平,提高了大厅的声热舒适性。经过这些处理,报告厅的RT值由RT=3.5 Hz降低到RT=0.95 Hz,能耗范围降低70%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancement of Acoustical Performance in Universities' Educational Spaces
Acoustic and thermal performance greatly affect in lecture halls as, acoustic, architecture and thermal treatments play an important role to enhance acoustic and thermal performance in space and therefore increasing sentiment of acoustic and thermal comfort in space. This research get down to the role of acoustic, architecture and thermal treatments to enhance acoustic and thermal performance of internal acoustic and thermal environment for main lecture hall of Tanta engineering whereas, the hall suffers great acoustic and thermal problems, all because of several reasons, most important it, sky light of ceiling, integration work done between acoustic and thermal treatments to achieve best acoustic and thermal performance and using ODEON software to evaluate suggested treatments acoustically and selection the best then evaluate it by DESIGN BUILDER software to calculate the range of energy consumption reduce in hall after these suggested treatments. It helped to enhance acoustic and thermal performance level in hall and increasing sentiment of acoustic and thermal comfort in hall. RT value of lecture hall reduce from RT=3.5 Hz to RT=0.95 Hz and the range of energy consumption reduce in hall after these treatments 70%.
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