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Preliminary Assessment of Noise Pollution Prevention in Wind Turbines Based on an Exergy Approach

机译:基于火用法的风力发电机噪声污染防治初步评价。

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Most existing methods for energy transformation and use are inadvertently contaminating our water supplies, releasing greenhouse gasses into the atmosphere, emitting compounds that diminish the earth's protective blanket of ozone, and depleting the earth's crust of natural resources. As a result, scientists and engineers are increasingly pursuing sustainable technologies so that costs associated with global warming can be minimized and adverse impact on living organisms can be prevented. A promising sustainable method is to harness energy from the wind via wind turbines. However, the noise generated by wind turbines proves to be one of the most significant hindrances to the extensive use of wind turbines. In this study, noise generation produced by flow over objects is investigated to characterize the noise generated due to flow-structure interaction and aeroacoustics. As a benchmark, flow over a cylinder has been chosen for this study, with the aim of correlating three main characteristics in noise generation. Hence, the generated sound pressure level, exergy destroyed and the normal flow velocity (a?a a??) are employed to characterize the system in order to relate the exergy destruction to the noise generated in the flow. The correlation has the potential to be used in wind turbine designs to minimize noise pollution due to aerodynamic noise.
机译:现有的大多数能源转换和使用方法都无意中污染了我们的水源,将温室气体释放到大气中,释放出减少地球保护臭氧层的化合物,并耗尽了地球的自然资源。结果,科学家和工程师越来越多地追求可持续技术,以便将与全球变暖相关的成本降至最低,并防止对生物体的不利影响。一种有前途的可持续方法是通过风力涡轮机利用风能。然而,由风力涡轮机产生的噪声被证明是广泛使用风力涡轮机的最大障碍之一。在这项研究中,研究了由物体上方流动产生的噪声,以表征由于流动-结构相互作用和空气声学而产生的噪声。作为基准,本研究选择了通过圆柱体的流量,目的是将噪声产生中的三个主要特征关联起来。因此,所产生的声压级,能级破坏和正常流速(aΔaaβ)被用来表征系统,以便将能级破坏与流动中产生的噪声联系起来。这种相关性有可能用于风力涡轮机的设计中,以最大程度地减少由于空气动力噪声引起的噪声污染。

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