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Ventilation performance measurement of a decentralized mechanical system with heat recovery using tracer gas decay method

机译:使用示踪气体衰减法测量带热回收的分散式机械系统的通风性能

摘要

In decentralized mechanical ventilation, air supply being very close to exhaust, short-circuiting of the supply air towards the extraction point may occur, increasing energy consumption of the system and decreasing air diffusion quality. To estimate this quality together with thermal comfort, we measured in a climatic chamber effectiveness of a local ventilation prototype using tracer gas decay method, as well as air velocity.The results show that air change efficiencies, are higher than 0.5 for 50%, 80%, 100% ventilation regimes, and fluctuate between 0.41 and 0.43 for 20% one. Local air change indexes are higher than 1 for regimes higher than 50%, and lower than 0.89 for 20% one. All measured velocities are lower than 0.08m/s. We conclude that the prototype achieves an acceptable air diffusion quality for nominal ventilation regime. But it is not acceptable under 20%. Measurements of velocities do not show any thermal discomfort.
机译:在分散式机械通风中,空气供应非常接近排气,可能会导致供应空气朝向抽气点短路,从而增加系统的能耗并降低空气扩散质量。为了评估这种质量和热舒适性,我们使用示踪气体衰减方法在局部通风原型的气候室效率以及空气速度中进行了测量,结果表明,对于50%,80和80%的空气,换气效率均高于0.5 %,100%的通风方式,并且20%的情况在0.41和0.43之间波动。对于高于50%的区域,局部空气变化指数高于1,对于20%的区域,局部空气变化指数低于0.89。所有测得的速度均低于0.08m / s。我们得出的结论是,该原型在标称通风条件下达到了可接受的空气扩散质量。但是在20%以下是不可接受的。速度的测量没有显示任何热不适。

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