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Problem-solving Base Building Under Uncertainty And Ambiguity: Multiple-case Study On An Airport expansion Program

机译:不确定性和歧义下的问题解决基地建设:机场扩建计划的多案例研究

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This multiple-case study induces alternative strategies to coordinate the overlap of tasks to detail and physically execute base building with tasks to conceptualize the business-critical fit out. Base-building subsystems provide service space for occupancy, whereas fit-out subsystems make the space functional. Our empirical findings on problem-solving base-building design under uncertainty and ambiguity stem from a number of projects in an airport expansion program. They suggest that base-building subsystems show low sensitivity to incremental changes in fit out as their definitions are seldom optimized to eliminate slack. Yet, base-building subsystems show high sensitivity to radical changes in fit out when the architectures of the two subsystems are integral to one another. Three strategies for problem-solving base building stand out: (1) iterate design when preliminary information about fit out is ambiguous, or precise but unstable; (2) physically decouple the architectures of base building and fit out; and (3) design buffers in base building when preliminary information about fit out lacks precision but it is not ambiguous. These buffers can be designed out if uncertainties in fit out resolve favorably before starting the physical execution for base building.
机译:这项多案例研究提出了可替代的策略,以协调任务的重叠以详述细节并实际执行具有任务的基础构建,以概念化关键业务装修。基础构建子系统为占用提供服务空间,而装修子系统则使空间发挥作用。我们在不确定性和歧义下解决问题的基础建筑设计的经验发现来自于机场扩建计划中的许多项目。他们认为,基础构建子系统对装修的增量变化不敏感,因为它们的定义很少进行优化以消除松弛。然而,当两个子系统的体系结构相互集成时,基础构建子系统对装修的根本变化表现出很高的敏感性。解决问题的基础建设的三种策略引人注目:(1)在有关装修的初步信息不清楚,或精确但不稳定的情况下进行迭代设计; (2)在物理上将基础建筑物的架构分离并进行装修; (3)当关于装修的初步信息缺乏准确性但不是模棱两可时,在基础建筑中设计缓冲。如果在开始进行基础构建的物理执行之前,可以很好地解决装配中的不确定性,则可以设计出这些缓冲区。

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