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Rise of Buoyant Emissions from Low-Level Sources in the Presence of Upstream and Downstream Obstacles

机译:在存在上游和下游障碍物的情况下,来自低空位源的浮力排放物的上升

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Field and laboratory studies have been conducted to investigate the effect of surrounding buildings on the plume rise from low-level buoyant sources, such as distributed power generators. The field experiments were conducted in Palm Springs, California, USA in November 2010 and plume rise from a 9.3 m stack was measured. In addition to the field study, a laboratory study was conducted in a water channel to investigate the effects of surrounding buildings on plume rise under relatively high wind-speed conditions. Different building geometries and source conditions were tested. The experiments revealed that plume rise from low-level buoyant sources is highly affected by the complex flows induced by buildings stationed upstream and downstream of the source. The laboratory results were compared with predictions from a newly developed numerical plume-rise model. Using the flow measurements associated with each building configuration, the numerical model accurately predicted plume rise from low-level buoyant sources that are influenced by buildings. This numerical plume rise model can be used as a part of a computational fluid dynamics model.
机译:已经进行了野外和实验室研究,以研究周围建筑物对低水平浮力源(例如分布式发电机)对烟羽上升的影响。现场实验于2010年11月在美国加利福尼亚的棕榈泉进行,并测量了9.3 m烟囱的烟羽上升。除现场研究外,还对水通道进行了实验室研究,以研究相对较高风速条件下周围建筑物对烟羽上升的影响。测试了不同的建筑物几何形状和源条件。实验表明,来自低位浮力源的羽流受到源于上游和下游的建筑物引起的复杂流动的强烈影响。将实验室结果与新开发的数值羽状上升模型的预测结果进行了比较。使用与每种建筑物配置相关的流量测量结果,数值模型可以准确地预测受建筑物影响的低水平浮力源的羽流上升。该数值羽流上升模型可以用作计算流体动力学模型的一部分。

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