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Three-Dimensional Thermal Performance Investigation of Natural Draft Counter-flow Wet Cooling Tower

机译:天然逆流湿冷塔的三维热性能研究

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From the aerodynamic fields around the tower air inlet and across the heat and mass transfer zone, and the water temperature field above the water bond surface, this paper clarified the three dimensional characteristics of heat and mass transfer in natural draft counter-flow wet cooling tower (NDCWT), and denoted the necessity of three dimensional investigation on NDCWT. Based on the experimental data of some NDCWT with 5 500 m2 fill area, this paper analyzed the impact of ambient crosswind on the air velocity distribution around tower air inlet, the air mass flowrate through tower, the water temperature drops in each zone etc. The investigation indicated that the ambient crosswind induced the nonuniformity of inflowing air around tower air inlet, reduced the air mass flowrate into tower, destroyed the circumferential uniformity of aerodynamic field, and caused longitudinal vortex under the windward fill, so as to decrease the effective fill cooling area and debase the total thermal performance of NDCWT. This study suggested that the threedimensional investigation of NDWCT thermal performance was very significant.
机译:从塔式空气进气口周围的空气动力学场以及水粘合表面上方的水温场,本文阐明了天然反流湿冷塔中的热量和传质的三维特征(NDCWT),并表示对NDCWT的三维调查的必要性。基于某些NDCWT的实验数据,采用5 500平方米的填充面积,分析了环境跨风对塔式空气入口周围的空气速度分布的影响,通过塔的空气质量流量,水温下降等调查表明,环境越来越诱导塔式空气入口周围流入空气的不均匀性,将空气质量流量降低到塔中,破坏了空气动力学的周向均匀性,并在迎风填充下引起了纵向涡流,从而降低了有效的填充冷却区域和借方NDCWT的总热性能。本研究表明,NDWCT热性能的三维调查非常显着。

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