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A Simulation-Based Design Analysis for the Assessment of Indoor Comfort Under the Effect of Solar Radiation

机译:太阳辐射效应下室内舒适性评估的仿真设计分析

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One of the drivers of sustainable design is to maximize daylight across the floor plan in order to decrease electric energy consumption and create more productive and healthy working spaces. However, uncontrolled incoming solar radiation can lead to significant visual and thermal comfort issues. In particular, solar radiation landing on occupants can create thermal discomfort that the HVAC system cannot compensate for, thereby causing intolerable conditions for users close to the facade. We aim to present a new climate-based annual framework, based on ASHRAE 55 appendix C (2017), to assess radiant discomfort across a space due to direct solar radiation. The framework is calculated using the hourly effective radiant field (ERF) and delta Mean Radiant Temperature (ΔMRT) across the indoor space. The Radiance-based framework coupled with the proposed Annual Radiation Discomfort metric (ARD) provides designers a robust method to assess the performance of complex fenestration systems (CFS) at reducing potential thermal discomfort caused by incoming shortwave radiation.
机译:可持续设计的驱动因素之一是最大限度地跨越地板计划,以减少电能消耗并创造更加富有成效和健康的工作空间。然而,不受控制的传入的太阳辐射可以导致显着的视觉和热舒适性问题。特别是,乘员的太阳辐射降落可以产生热量不适,即HVAC系统不能补偿,从而导致靠近立面的用户的无法忍受的条件。我们的目标是基于Ashrae 55附录C(2017)的基于新的气候年度框架,以评估由于直接的太阳辐射而在空间上的辐射不适。使用室内空间的每小时有效的辐射场(ERF)和ΔMRT)计算框架。基于辐射的框架与所提出的年度辐射不适(ARD)提供了一种稳健的方法,可以评估复杂更强壮的系统(CFS)在减少传入短波辐射引起的潜在热不适的性能的方法。

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