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Odour sampling. 2. Comparison of physical and aerodynamic characteristics of sampling devices: A review

机译:气味采样。 2.采样装置的物理和空气动力特性比较:回顾

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Sampling devices differing greatly in shape, size and operating condition have been used to collect air samples to determine rates of emission of volatile substances, including odour. However, physical chemistry principles, in particular the partitioning of volatile substances between two phases as explained by Henrys Law and the relationship between wind velocity and emission rate, suggests that different devices cannot be expected to provide equivalent emission rate estimates. Thus several problems are associated with the use of static and dynamic emission chambers, but the more turbulent devices such as wind tunnels do not appear to be subject to these problems. In general, the ability to relate emission rate estimates obtained from wind tunnel measurements to those derived from device-independent techniques supports the use of wind tunnels to determine emission rates that can be used as input data for dispersion models. (C) 2007 Elsevier Ltd. All rights reserved.
机译:形状,大小和操作条件差异很大的采样设备已用于收集空气样本,以确定包括气味在内的挥发性物质的排放速率。但是,物理化学原理,尤其是亨利斯定律所解释的两相之间的挥发性物质分配以及风速与排放速率之间的关系,表明不能期望使用不同的设备来提供等效的排放速率估算值。因此,静态和动态发射室的使用存在一些问题,但是诸如风洞之类的更湍流的装置似乎不受这些问题的影响。通常,将从风洞测量获得的排放速率估计与从独立于设备的技术得出的排放速率估计相关联的能力支持使用风洞来确定可用作分散模型输入数据的排放速率。 (C)2007 Elsevier Ltd.保留所有权利。

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