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首页> 外文期刊>Applied Energy >Determining the energy performance of manually controlled solar shades: A stochastic model based co-simulation analysis
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Determining the energy performance of manually controlled solar shades: A stochastic model based co-simulation analysis

机译:确定手动控制的遮阳帘的能量性能:基于随机模型的协同仿真分析

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摘要

Solar shading devices play a significant role in reducing building energy consumption and maintaining a comfortable indoor condition. In this paper, a typical office building with internal roller shades in hot summer and cold winter zone was selected to determine the driving factor of control behavior of manual solar shades. Solar radiation was determined as the major factor in driving solar shading adjustment based on field measurements and logit analysis and then a stochastic model for manually adjusted solar shades was constructed by using Markov method. This model was used in BCVTB for further co-simulation with Energyplus to determine the impact of the control behavior of solar shades on energy performance. The results show that manually adjusted solar shades, whatever located inside or outside, have a relatively high energy saving performance than clear-pane windows while only external shades perform better than regularly used LOW-E windows. Simulation also indicates that using an ideal assumption of solar shade adjustment as most studies do in building simulation may lead to an overestimation of ; energy saving by about 16-30%. There is a need to improve occupants' actions on shades to more effectively respond to outdoor conditions in order to lower energy consumption, and this improvement can be easily achieved by using simple strategies as a guide to control manual solar shades.
机译:遮阳装置在降低建筑能耗和维持舒适的室内条件方面发挥着重要作用。在本文中,选择了在炎热的夏季和寒冷的冬季区域内使用内部卷帘的典型办公大楼,以确定手动遮阳帘控制行为的驱动因素。通过实地测量和对数分析确定太阳辐射为驱动遮阳调节的主要因素,然后采用马尔可夫方法建立了手动调节遮阳的随机模型。该模型已在BCVTB中用于与Energyplus的进一步协同仿真,以确定遮阳帘的控制行为对能源性能的影响。结果表明,无论内部还是外部,手动调节的遮阳帘都比透明窗具有相对较高的节能性能,而仅外部遮阳帘比常规使用的LOW-E窗性能更好。仿真还表明,如大多数研究在建筑仿真中所做的那样,使用太阳阴影调节的理想假设可能导致高估;节能约16-30%。需要改善乘员在遮阳帘上的动作以更有效地响应室外条件以降低能耗,并且可以通过使用简单的策略作为控制手动遮阳帘的指南来轻松实现这一改进。

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