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An assessment of the potential of supply-side ventilation demand control to regulate natural ventilation flow patterns and reduce domestic space heating consumption

机译:评估供气侧通风需求控制潜力,以调节自然通风流型并减少家庭空间供热消耗

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Uncontrolled natural ventilation systems tend, by their nature, to deliver varying flow rates that are not necessarily optimised for human comfort or energy efficiency. Moreover these ventilation flow rates may not be delivered along the intended flow paths through a building, possibly further reducing ventilation effectiveness and increasing ventilation heat losses. These characteristics make natural ventilation systems a suitable candidate for ventilation demand control where the levels of fresh air delivered respond to a sensed parameter that indicates the level of ventilation demand. This paper makes a preliminary, comparative assessment of the impact an active supply-side CO2 ventilation demand control system may have on the ventilation regime, flow levels and space heating consumption of a two-storey naturally ventilated domestic property. The dwelling is modelled in EnergyPlus and the performance of the ventilation demand control system simulated using EnergyPlus' run-time Energy Management System. Simulations are conducted for a variety of temperate climate contexts and building fabric leakage levels. The simulations demonstrate that the ventilation demand control system could reinforce desired flow regimes and provide comparable indoor air quality compared to the uncontrolled base case whilst delivering significant reductions in space heating consumption. (C) 2018 Elsevier B.V. All rights reserved.
机译:自然界中不受控制的自然通风系统往往会提供变化的流量,而这些流量不一定要为人类的舒适度或能源效率而优化。此外,这些通风流速可能不会沿着穿过建筑物的预期流动路径传递,可能会进一步降低通风效率并增加通风热量损失。这些特性使自然通风系统成为通风需求控制的合适候选者,其中输送的新鲜空气水平响应指示通风需求水平的感测参数。本文对主动供气侧CO2通风需求控制系统可能会对两层自然通风的住宅物业的通风状况,流量水平和空间供暖消耗产生的影响进行初步的比较评估。住宅在EnergyPlus中建模,通风需求控制系统的性能使用EnergyPlus的运行时能源管理系统进行模拟。针对各种温带气候环境和建筑织物泄漏水平进行了仿真。仿真结果表明,与不受控制的基本情况相比,通风需求控制系统可以增强所需的流量状态,并提供可比的室内空气质量,同时显着减少空间供暖的消耗。 (C)2018 Elsevier B.V.保留所有权利。

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