探索热,声和美学环境在公园热体验上的相互作用
Yu Zhang1, Yuta Uchiyama1, Masayuki Sato2,3
1Graduate School of Human Development and Environment, Kobe University, 3 11 Tsurukabuto, Nada-ku, 657 8501, Japan.
Scientific reports
|February 12, 2026
概括
城市公园的热舒适度至关重要. 这项研究发现,热条件是关键,但自然声音和公园美学显著改善热体验,特别是在多样化的天气.
科学领域:
- 环境心理学 环境心理学
- 城市规划 城市规划
- 人与环境的互动 互动
背景情况:
- 城市公园的热舒适性对于幸福和宜居性至关重要.
- 有限的研究将公园中的多感官因素 (热,声,美学) 整合在一起,通常只关注夏季的热量.
研究的目的:
- 研究热,声和美学因素在各种天气条件下对城市公园的热体验的相互作用.
- 为城市规划师和设计师提供实际建议,以提高城市的宜居性和适应气候变化.
主要方法:
- 探索城市公园的热体验上的多感官因素相互作用.
- 分析了各种天气类型下的热,声和美学影响.
- 评估感知到的环境因素对热接受度和整体满意度的影响.
主要成果:
- 热条件是热体验的主要决定因素.
- 声学舒适度有一个小的积极影响,在热应激下减小;自然声音提高了可接受性,而机械声音降低了它.
- 审美满意度积极影响热性可接受性,绿色空间显示出比蓝色空间更一致的效果.
结论:
- 多感官互动显著塑造城市公园的热体验.
- 声学和美学因素可以减轻负面的热感知,提高整体满意度.
- 结果为设计气候适应性和宜居的城市绿地提供了可操作的见解.
相关概念视频
Thermal expansion and Thermal stress: Problem Solving
2.2K
San Francisco's Golden Gate Bridge is exposed to temperatures ranging from -15 °C to 40 °C. At its coldest, the main span of the bridge is 1275 m long. Assuming that the bridge is made entirely of steel, what is the change in its length between these temperatures?
To solve the problem, first, identify the known and unknown quantities. The initial length (L) of the bridge is 1275 m, the coefficient of linear expansion (α) for steel is 12 x 10-6/°C, and the change in temperature (ΔT) is 55...
To solve the problem, first, identify the known and unknown quantities. The initial length (L) of the bridge is 1275 m, the coefficient of linear expansion (α) for steel is 12 x 10-6/°C, and the change in temperature (ΔT) is 55...
2.2K
Thermal Strain
2.9K
Thermal strain is a concept that arises when we consider how temperature changes affect structures. Unlike the conventional assumption that structures remain constant under load, real-world scenarios often involve temperature fluctuations that can significantly impact these structures. Consider a homogeneous rod with a uniform cross-section resting freely on a flat horizontal surface. If the rod's temperature increases, the rod elongates. This elongation is proportional to the temperature...
2.9K
Thermal Expansion
5.7K
The expansion of alcohol in a thermometer is one of many commonly encountered examples of thermal expansion, which is the change in size or volume of a given system as its temperature changes. The most visible example is the expansion of hot air. When air is heated, it expands and becomes less dense than the surrounding air, which then exerts an upward force on the hot air to, for example, make steam and smoke rise, and hot air balloons float. The same behavior happens in all liquids and gases,...
5.7K
Thermal Stress
3.4K
If the temperature of an object is changed while it is prevented from expanding or contracting, the object is subjected to stress. The stress is compressive if the object expands in the absence of constraint and tensile if it contracts. This stress resulting from temperature change is known as thermal stress. It can be quite large and can cause damage. To avoid this stress, engineers may design components so they can expand and contract freely. For instance, on highways, gaps are deliberately...
3.4K
Temperature and Thermal Equilibrium
9.5K
Heat and temperature are essential concepts for everyone every day. The study of heat and temperature is part of an area of physics known as thermodynamics. It is not always easy to distinguish heat and temperature.
The concept of temperature has evolved from the common concepts of hot and cold. The scientific definition of temperature explains more than just our sense of hot and cold. Temperature is operationally defined as the quantity measured with a thermometer. Furthermore, temperature is...
The concept of temperature has evolved from the common concepts of hot and cold. The scientific definition of temperature explains more than just our sense of hot and cold. Temperature is operationally defined as the quantity measured with a thermometer. Furthermore, temperature is...
9.5K
Thermal Insulation in Masonry Walls
567
In hot, dry climates, the thermal mass of masonry walls can be beneficial, absorbing heat during the day and releasing it at night, thereby stabilizing indoor temperatures. However, in most other climates, additional insulation is necessary to enhance thermal resistance.
External insulation can be applied using an Exterior Insulation and Finish System (EIFS), which involves affixing panels of plastic foam to the wall and covering them with a polymeric stucco reinforced with glass fiber mesh....
External insulation can be applied using an Exterior Insulation and Finish System (EIFS), which involves affixing panels of plastic foam to the wall and covering them with a polymeric stucco reinforced with glass fiber mesh....
567


