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The Extensible Orchestration Framework approach to collaborative design in architectural, urban and construction engineering

机译:在建筑,城市和建筑工程中进行协作设计的可扩展编排框架方法

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The proliferation of information technologies and the diversity of problem domains that heavily rely on software tool applications promote computer-supported cooperative work as a challenging discipline that drives the development process of contemporary and future engineering methods, standards, and tools. Consequently, a particular domain of expertise in engineering and scientific fields has emerged, demanding more advanced skills and deeper domain knowledge. The essential role of Architectural Design (AD) and Urban Planning (UP) is to enable a forward-looking approach to building/facility creation. Construction Engineering (CE) expresses its routine primarily through a transition phase that transforms ideas to sustainable urban artifacts. The CE role appears as a combination of backward and downward looking to the same process/product All three domains are highly cooperative in the context of Environmental Engineering (EE). Currently available software tools that support the AD, UP and CE domains are far from simple. Several recent software engineering studies suggest that, instead of developing a complex "all in one solution", the federation or orchestration of several related simple methods and tools seems promising. In this article, we discuss the basic AD, UP and CE domain-cooperation aspects and suggest an Extensible Orchestration Framework (ExOF) model that may support them. To verify the ExOF simulation and orchestration potential, we used its architectural model to orchestrate different software tools when performing the urban blocks daylight illumination simulation for different urban block morphology models. For the exact simulation, we used the normalized sun-exposition data for the city of Novi Sad, Serbia. Also presented is an illustration of the methodology, modeling and orchestration potential of ExOF for the selected case study, together with the results, obtained for typical 3D models of selected urban block morphology patterns. (C) 2016 Elsevier B.V. All rights reserved.
机译:信息技术的迅猛发展和严重依赖软件工具应用程序的问题领域的多样性,促进了计算机支持的协作工作,将其作为具有挑战性的学科来驱动当代和未来工程方法,标准和工具的开发过程。因此,出现了在工程和科学领域的特定专业知识领域,需要更高级的技能和更深的领域知识。建筑设计(AD)和城市规划(UP)的基本作用是为建筑/设施创建提供前瞻性方法。建筑工程(CE)主要通过一个过渡阶段来表达其常规,该过渡阶段将构想转变为可持续的城市文物。 CE角色是对同一过程/产品的向下和向下组合,在环境工程(EE)的背景下,这三个领域都高度协作。当前支持AD,UP和CE域的软件工具远非简单易行。近期的一些软件工程研究表明,与其开发复杂的“一站式解决方案”,不如联合或协调几种相关的简单方法和工具似乎很有希望。在本文中,我们讨论了AD,UP和CE域合作的基本方面,并提出了可支持它们的可扩展编排框架(ExOF)模型。为了验证ExOF仿真和编排的潜力,当针对不同的城市街区形态模型执行城市街区日光照明仿真时,我们使用其架构模型来编排不同的软件工具。为了进行精确的模拟,我们使用了塞尔维亚诺维萨德市的归一化日照数据。还介绍了针对选定案例研究的ExOF的方法,建模和编排潜力,以及从选定城市街区形态模式的典型3D模型获得的结果。 (C)2016 Elsevier B.V.保留所有权利。

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