基于自然通风的被动式住宅夏高峰热舒适度预测方法

IF 2.1 Q3 ENVIRONMENTAL SCIENCES
Ibrahim Alhindawi, C. Jimenez-Bescos
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引用次数: 4

摘要

被动式住宅建筑概念在其性能方面,特别是在能耗和热性能方面得到了广泛的研究。然而,设计阶段仍然没有提供有助于研究设计性能的动态热舒适性预测过程。这项研究的重点是一种方法,该方法基于自然通风计划在保持足够气流方面的有效性,计算英国试点被动式住宅夏季的峰值条件。该方法包括EnergyPlus动态模拟、ANSYS计算流体动力学模拟和建筑环境热舒适工具中心。结果显示,对于不同的空速,人们不满意的预测百分比在13.3%-99.2%之间,其中大多数都是不舒服的程度。结果还分别给出了热舒适性参数的范围。通过采用集成软件组合,这些发现可以为设计阶段的热舒适状态添加全面的描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computational Approach to Predict Thermal Comfort Levels at Summer Peak Conditions in Passive House Based on Natural Ventilation
The Passive House building concept has been widely researched concerning its performance, especially aspects like energy consumption and thermal properties. Nevertheless, the design stages still do not present a dynamic thermal comfort predictive process that aids in investigating the design performance. This study focuses on a methodology that calculates summer months peak conditions in a pilot Passive House dwelling in the United Kingdom, based on the natural ventilation plan’s effectiveness in maintaining sufficient airflows. The methodology involves EnergyPlus dynamic simulations, ANSYS computational fluid dynamics simulations, and the Centre for the Built Environment Thermal Comfort Tool. The results showed a spectrum of predicted percentages of people dissatisfied ranging between 13.3 − 99.2% for different airspeeds, where the majority were of uncomfortable levels. Results also present ranges of thermal comfort parameters individually. The findings may add a comprehensive description to the thermal comfort status during design stages by employing the integrated software combination.
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来源期刊
CiteScore
5.40
自引率
9.50%
发文量
59
审稿时长
20 weeks
期刊介绍: The Journal of Sustainable Development of Energy, Water and Environment Systems – JSDEWES is an international journal dedicated to the improvement and dissemination of knowledge on methods, policies and technologies for increasing the sustainability of development by de-coupling growth from natural resources and replacing them with knowledge based economy, taking into account its economic, environmental and social pillars, as well as methods for assessing and measuring sustainability of development, regarding energy, transport, water, environment and food production systems and their many combinations.
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