房间“过热”和“过冷”条件下的瞬态热感觉分析

IF 1.1 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
J. Seifert, Lars Schinke, M. Beyer
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引用次数: 2

摘要

摘要热舒适是暖通空调系统设计的一个重要问题。热舒适方面在房间的加热/冷却系统的运行中也很重要。许多研究都是研究稳态边界条件,而非瞬态边界条件。因此,本文描述了在瞬态条件下在气候室内进行的测量。在绪论之后,本文的第二部分概述了动态调查的实验设置和方法。第三部分是分析的主要结果。第四部分包括对这些结果的讨论以及对潜在监管体系和进一步调查的贡献。综上所述,用户设定的个人舒适温度大多为(手术室温度)。对于动态行为,可以得出结论,大多数受试者接受室温升高,而不直接表达变化请求。当工作温度低于个体舒适温度时,即使在很小的偏差情况下,也会立即表达增加工作温度的愿望。论文最后总结了研究结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of transient thermal sensation for “overheating” and “subcooling” conditions in a room
Abstract Thermal comfort is a very important issue for the design of HVAC systems. The aspects of thermal comfort are also significant in the operation of the heating/cooling systems in rooms. Many investigations studied the stationary boundary conditions, while transient conditions were not in focus. Therefore, this paper describes measurements carried out in a climate room under transient conditions. After an introduction, the second part of this paper gives an overview about the experimental setup and the methodology of the dynamic investigations. The third part describes the main results of the analyzes. The fourth part includes a discussion of these results and the contribution to potential regulation systems and further investigations. As a result of these analysis, it can be stated, that the individual comfort temperature as set by the user is mostly (operative room temperature). With regard to the dynamic behavior, it must be concluded that most subjects accept a room temperature increase of without directly expressing a change request. When the operative temperature falls below the individual comfort temperature, the desire for an increase in the operative temperature is immediately expressed, even in the case of small deviations. The paper ends with a summary of the results.
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来源期刊
International Journal of Ventilation
International Journal of Ventilation CONSTRUCTION & BUILDING TECHNOLOGY-ENERGY & FUELS
CiteScore
3.50
自引率
6.70%
发文量
7
审稿时长
>12 weeks
期刊介绍: This is a peer reviewed journal aimed at providing the latest information on research and application. Topics include: • New ideas concerned with the development or application of ventilation; • Validated case studies demonstrating the performance of ventilation strategies; • Information on needs and solutions for specific building types including: offices, dwellings, schools, hospitals, parking garages, urban buildings and recreational buildings etc; • Developments in numerical methods; • Measurement techniques; • Related issues in which the impact of ventilation plays an important role (e.g. the interaction of ventilation with air quality, health and comfort); • Energy issues related to ventilation (e.g. low energy systems, ventilation heating and cooling loss); • Driving forces (weather data, fan performance etc).
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