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首页> 外文期刊>International Journal of Ventilation >Demand control ventilation with hygro passive sensors: impact of sensor's characteristics
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Demand control ventilation with hygro passive sensors: impact of sensor's characteristics

机译:用Hygro无源传感器的需求控制通风:传感器特性的影响

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摘要

Following the increasing energy performances of building, ventilation systems are being considered as key actors in reaching both energy and indoor air quality targets. Despite several pollutants that can be used as airflow modulation inputs, French demand control ventilation for dwellings, is mainly realized using water vapour and passive sensors. A variable opening section is modulated through the relative humidity level within the room (or near the sensor). For the time being, the design step of such a system is realized using perfect systems: which means instantaneous opening variation as well as perfect modulation laws. This study aims at identifying the impact of both time delay and hysteresis on typical passive sensor devices. These elements are introduced from experimental measurements into nodal numerical models. A 4 room dwelling is considered as a test case and a step by step impact is analysed. The hysteresis is shown to have the greater impact on global extracted air flow. It leads to a conservative approach for IAQ targets but increases the energy criteria up to 6.6%.
机译:在增加建筑物的能量性能之后,通风系统被认为是达到能量和室内空气质量目标的关键演员。尽管有几种可用作气流调制输入的污染物,但使用水蒸气和无源传感器主要实现了居住的法国需求控制通风。可变开口部分通过房间内的相对湿度水平(或在传感器附近)调制。暂时,这种系统的设计步骤是使用完美系统实现的:这意味着瞬时开放变化以及完美的调制法。本研究旨在识别时间延迟和滞后对典型无源传感器装置的影响。这些元素从实验测量中引入到节点数值模型中。一个4个房间住宅被认为是测试用例,分析了一步的影响。显示滞后显示对全局提取的空气流动的影响更大。它导致IAQ目标的保守方法,但增加了高达6.6%的能源标准。

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