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Application of operational-based strategic intervention model for evaluating office buildings energy efficiency performance

机译:基于运营的战略干预模型评估办公大楼能效性能的应用

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The operational management and strategic interventions for energy efficiency (EE) of facilities could be optimised if interventions and decision-making processes are well integrated. Hence, this study developed a conceptual dual model for building energy performance (BEP) as a composite model based on prior theories. The theoretical study variables were interventions (technical and operational) and decision-making (management) factors (manifest variables) derived from an extensive literature review. Likewise, the constructs (latent variables) were the aggregated data of the intervention/decision-making evident factors used in the composite scale model. These constructs define the identifiable EE (management) manifest factors and classify them for standardised EE management practices. This paper describes the effects and the causal relationship between constructs derived from these factors that impact BEP via the composite scale model. An online self-administered questionnaire was used in gathering information from the occupants of selected office buildings in two countries (Nigeria and the UK). Structural equation modelling was engaged in evaluating the structure of the composite scale model that serves as a merger of isolated critical factors that affect BEP improvement. The model has four parts: the strategic driver, management policy, operational and building energy performance constructs as distinct sub-models. The results of the model evaluation reveal that the collected data fit the hypothesised dual model and have good fits. The models are not significantly different; they help investigate the fundamental relationship between the constructs. The result also reveals a strong positive correlation of management policy with strategic drivers for EE; strategic drivers with the use of building energy performance model; and management policy with operational EE practices. Path evaluation shown on the dual model specified the hypothesised causal relationship amongst constructs and strategic driver as the only significant positive mediator. Furthermore, the study integrates interventions and decision-making in a new dual model for improving BEP for diagnostic and solution purposes. Facility managers and owners could use the dual model as a strategic and tactical decision-making implement in managing low-carbon office BEP.
机译:如果干预措施和决策流程综合,可以优化设施的能效(EE)的运营管理和战略干预措施。因此,本研究开发了一种基于先前理论的复合模型构建能量性能(BEP)的概念性双模型。理论研究变量是从广泛的文献综述中获取的干预(技术和运营)和决策(管理)因素(现有变量)。同样地,构造(潜在变量)是复合标尺模型中使用的干预/决策的汇总数据。这些构造定义了可识别的EE(管理)表现因子,并为标准化EE管理实践进行分类。本文介绍了通过复合标度模型影响BEP的这些因素的构造的效果和因果关系。在线自我管理的调查问卷用于从两国(尼日利亚和英国)的选定办公大楼的乘客收集信息。结构方程建模从事评估复合标尺模型的结构,该模型作为影响BEP改进的分离关键因素的合并。该型号有四个部分:战略司机,管理政策,运营和建筑能源性能构建为不同的子模型。模型评估的结果表明,收集的数据适合假设的双模型并具有良好的拟合。模型没有显着差异;它们有助于调查构建体之间的基本关系。结果还揭示了对EE战略司机的管理政策强烈正面相关;使用建筑能源性能模型的战略司机;与业务EE实践的管理政策。在双模型上显示的路径评估指定了构造和战略司机之间的假设因果关系,作为唯一重要的正调解员。此外,该研究将干预措施和决策集成在新的双模型中,以改善BEP进行诊断和解决方案。设施管理人员和业主可以在管理低碳办公BEP中使用双重模型作为战略和战术决策工具。

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