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An evaluation of the functional performance of research and academic laboratories using the space syntax approach

机译:使用空间语法方法评估研究和学术实验室的功能性能

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Purpose - University research and academic laboratory facilities are key elements in the support of a successful education and research experience. World-class universities consider the functionality of these facilities as a matter of high priority. The functionality of research and academic laboratory facilities is strongly linked to the productivity of students, teachers and researchers who use these facilities. Thus, the purpose of this paper is to evaluate the functional performance of eight university laboratories using the space syntax approach. Design/methodology/approach - The methodology involved the measurements and drawing of as-built floor plans of selected academic and research laboratories. The main benchmarks involved in measuring the functional efficiency, such as mean depth (MD) of space and real relative asymmetry (RRA), were analyzed using the A-graph software and Microsoft Excel spreadsheets. Findings - The results show that "Type D" (chemistry teaching laboratory) and "Type C" (concrete teaching/research laboratory) laboratories have the tendency to be more accessible, efficient and flexible compared to the other laboratory layouts with MD and RRA values of 5.947 and 3.472, and 4.287 and 1.674, respectively. Practical implications - This study shows that the functional efficiency of academic and research laboratories can be influenced by the spatial configuration of the space, as presented by the space syntax theory. Space syntax benchmark elements, such as MD, RRA, R and H*, can be used to compare various spatial arrangements, and the results can inform decisions on ways to re-arrange the space for optimum efficiency. Originality/value - It is hoped that the idea of space syntax theory in the evaluation of the functional efficiency of laboratory facilities, illustrated in this research, is of significant contribution to the enhancement of the research and educational experience of concerned stakeholders in teaching and research environments.
机译:目的-大学研究和学术实验室设施是支持成功的教育和研究经验的关键要素。世界一流的大学高度重视这些设施的功能。研究和学术实验室设施的功能与使用这些设施的学生,教师和研究人员的生产力紧密相关。因此,本文的目的是使用空间语法方法评估八个大学实验室的功能性能。设计/方法/方法-该方法涉及选定学术和研究实验室的竣工平面图的测量和绘图。使用A-graph软件和Microsoft Excel电子表格分析了测量功能效率所涉及的主要基准,例如空间的平均深度(MD)和实际相对不对称(RRA)。研究结果-结果表明,“ D型”(化学教学实验室)和“ C型”(混凝土教学/研究实验室)实验室与其他实验室布局相比,倾向于更易于访问,高效且灵活MD和RRA值分别为5.947和3.472,以及4.287和1.674。实际意义-这项研究表明,如空间语法理论所示,学术和研究实验室的功能效率可能会受到空间的空间配置的影响。空间语法基准元素(例如MD,RRA,R和H *)可用于比较各种空间布置,结果可为重新安排空间以获得最佳效率的方法提供决策依据。独创性/价值-希望这项研究中说明的空间句法理论在评估实验室设施的功能效率方面的思想,对促进有关利益相关者在教学和研究方面的研究和教育经验有重大贡献环境。

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