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Aerodynamic performance of a low-speed wind tunnel

机译:低速风洞的空气动力学性能

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The determination of the odour mass flow emitted from a source is a very important step and forms the basis for all subsequent considerations and calculations. Wastewater treatment plants, as well as waste treatment facilities, consist of different kinds of odour sources. Unfortunately, most of the sources are passive sources, where no outward air flow-rate can be measured, but where odorants are obviously emitted. Thus, a type of sampling is required that allows to measure the emitted odour flow-rate (OFR). To achieve this, different methods are in use worldwide. Besides indirect methods, such as micrometeorological atmospheric dispersion models, which have not been used in Germany (in other countries due to different problems, direct methods are also used). Direct measurements include hood methods, commonly divided into static flux chambers, dynamic flux chambers and wind tunnels. The wind tunnel that we have been operating in principle since 1983 is different from all subsequent presented wind tunnels, in that we operate it at a considerably lower wind speed than the others. To describe the behaviour of this wind tunnel, measurement of the flow pattern in this low-speed tunnel are under way, and some initial results are presented here.
机译:确定源排放的气味质量流量是非常重要的步骤,并为所有后续考虑和计算奠定了基础。废水处理厂以及废物处理设施由不同种类的气味源组成。不幸的是,大多数源是被动源,无法测量向外的空气流速,但是明显散发出臭味。因此,需要一种采样类型,该采样类型允许测量所散发的气味流率(OFR)。为了实现这一点,全世界正在使用不同的方法。除了间接方法(例如微气象大气扩散模型)在德国尚未使用(由于其他问题,在其他国家,也使用直接方法)。直接测量包括罩方法,通常分为静态通量室,动态通量室和风洞。自1983年以来,我们原则上一直在运行的风洞与随后出现的所有风洞都不同,因为我们以比其他风洞低得多的风速进行操作。为了描述该风洞的行为,正在对该低速风洞中的流型进行测量,并在此处给出了一些初步结果。

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