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Endogenous transformation of exogenous effects in a system dynamics model of heating, ventilation and rebound

机译:内源性转化在加热,通风和反弹的系统动力学模型中的外源性作用

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Energy efficiency measures do not fully translate into energy consumption reductions because occupants increase their dwellings' internal temperatures rather than only reducing energy bills. This effect, known as the rebound effect, has been empirically confirmed and is usually attributed to occupants' increase of thermal comfort. Based on system dynamics modelling, we offer a different and complementary explanation that shows how rebound may occur when occupants feel thermally comfortable throughout. The interaction of their desired behaviour with other practices, such as cooking, explains how shifts in their desired temperature may occur. We thus contribute to the understanding of domestic practices related to energy efficiency and rebound. In addition, our study shows how rebound occurs through the transformation of exogenous inputs through endogenous feedback mechanisms. While system dynamics emphasises continuous modelling and endogeneity, our study thus also motivates future research into the analysis of the endogenous transformation of time-varying inputs in system dynamics.
机译:能效措施并未完全转化为能耗减少,因为占用者增加了住所的内部温度,而不是减少能源票据。这种效果,被称为反弹效果,经过经验证实,通常归因于占用者的热舒适性的增加。基于系统动力学建模,我们提供了不同的和互补的解释,显示了当乘客在整个中热舒适时可能会出现反弹。它们所需行为与其他实践的相互作用,例如烹饪,解释了可能发生所需温度的转变。因此,我们有助于了解与能源效率和反弹相关的国内实践。此外,我们的研究表明,通过内源反馈机制改变外源投入的转化,如何反弹。虽然系统动力学强调持续建模和内能性,但我们的研究也会激发未来的研究进入分析系统动力学中时变输入的内源性转换。

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