建筑朝向和单向屋顶的采光分析

Mehmet Sait CENGIZ
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摘要

建筑在居住区的位置对于保护或受益于阳光非常重要。太阳的动态结构根据时间和季节不断变化,直接影响着建筑的结构和城市形态。在建筑的建造过程中,忽视太阳对结构的使用会对居民造成严重的干扰。日照策略也受到气候的影响,取决于自然光的可用性,由建筑场地的纬度和建筑周围的瞬时条件决定。高纬度地区的夏季和冬季条件不同,冬季日照较低。在这些纬度地区,设计师们的目标往往是最大限度地提高建筑的日照穿透力。在热带地区,全年日照水平都很高,设计的重点往往是通过限制进入建筑物的阳光量来防止过热。日光的可用性不仅取决于纬度,还取决于建筑的朝向,建筑的每个立面和材料都需要不同的设计重要性。因此,日光与建筑设计策略是两个不可分割的现象。在这方面,研究传统建筑和过去成功的自然采光设计对于理解气候平衡的建筑设计非常有用。为此,在建筑结构中,根据太阳角度来确定屋顶的坡度,根据位置来计算,为从能源效率到人体健康的许多问题提供了效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Daylight Analysis in Terms of Building Direction and One-Way Roof
The location of the buildings in the residential area is very important in protecting or benefiting from sunlight. The dynamic structure of the sun, which constantly changes according to time and seasons, directly affects the building's architecture and urban formation. Ignoring the sun's use of the structures during the construction of the buildings can cause significant disturbances to the residents. Daylight strategies, which are also influenced by climate, depend on the availability of natural light, determined by the latitude of the building site and the instantaneous conditions around the building. High latitudes have different summer and winter conditions, with lower daylight levels in winter. At these latitudes, designers often aim to maximize daylight penetration in buildings. In the tropics, where daylight levels are high throughout the year, the design emphasis is often on preventing overheating by limiting the amount of sunlight entering the building. Daylight availability depends not only on latitude, but also on the orientation of a building, and each facade and material of the building requires a different design importance. Therefore, daylight and architectural design strategies are two inseparable phenomena. In this respect, examining traditional architecture and successful natural lighting designs in the past is very useful for understanding climate-balanced building design. For this purpose, determining the roof slope according to the sun angle in architectural structures by calculating according to the location provides efficiency in many issues from energy efficiency to human health.
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