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Standard daylight coefficient model for dynamic daylighting simulations

机译:用于动态采光模拟的标准采光系数模型

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Daylight coefficients are normalized contributions from discretized sky or ground segments, or preset solar positions, to solar quantities calculated at various building sensor points. Once generated, daylight coefficients can be folded against luminance efficacy and distribution models to calculate, for instance, time series of illuminances. Over about the last 25 years several daylight coefficient models have been published. The objective of this paper is to propose a standard daylight coefficient model for dynamic daylighting simulations (DDS), consolidating previously published methods. This entails the definition of a standard daylight coefficient data format and accompanying software concepts for dynamic simulation purposes; dynamic in this context meaning variable with time due to changing sky conditions and shading device settings, in contrast to static modelling concepts such as daylight factors. The DDS standard model defines daylight coefficient data independent of building location and scene orientation, and generated using either simulation or measurement. It provides functionality to take into account independently controlled daylighting sources (e.g. windows and skylights) and to query different daylighting quantities in a simulation context (e.g. illuminance at one or more sensors, annual daylight performance metrics). A Radiance-based intermodel comparison shows that DDS-based software outperforms the original validated Daysim approach, upon which DDS is based, notably in cases where sensors are subjected to sudden changes in solar exposure, e.g. in an urban canyon or for sensors located far from a window. The proposed DDS standard daylight coefficient model, including the data format and accompanying software concepts, can be adopted by daylighting and energy-simulation software as a common mechanism for efficiently sharing daylight coefficient data for simulation purposes.
机译:日光系数是离散化的天空或地面部分或预设的太阳能位置对在各个建筑物传感器点计算的太阳能量的归一化贡献。生成后,可以将日光系数与亮度功效和分布模型进行折叠,以计算例如照度的时间序列。在过去的25年中,已经发布了几种日光系数模型。本文的目的是为动态日光模拟(DDS)提出一个标准的日光系数模型,以合并先前发布的方法。这需要定义标准的日光系数数据格式和用于动态仿真目的的随附软件概念;在这种情况下,动态是指与静态建模概念(例如日光因素)相比,由于变化的天空条件和遮光设备设置而随时间变化的变量。 DDS标准模型定义独立于建筑物位置和场景方向的日光系数数据,并使用模拟或测量来生成。它提供的功能可以考虑独立控制的采光源(例如窗户和天窗),并可以在模拟环境中查询不同的采光量(例如一个或多个传感器的照度,年度采光性能指标)。基于辐射度的模型间比较显示,基于DDS的软件优于基于DDS的原始经过验证的Daysim方法,特别是在传感器遭受日照突然变化(例如传感器)的情况下。在城市峡谷中或远离窗户的传感器中。提议的DDS标准日光系数模型(包括数据格式和随附的软件概念)可以被日光照明和能量模拟软件采用,作为有效共享日光系数数据以进行仿真的通用机制。

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