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主变室外部声场分布主要影响因素对比研究——以220 kV户内变电站为例 被引量:4

A comparative study on main influencing factors of outdoor sound field distribution of transformer chamber——A case study of 220 kV indoor substation
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摘要 为了解决城市户内变电站噪声对环境的影响问题,研究户内变电站主变室外噪声分布状况,该文采用RAYNOISE软件对220 k V户内变电站不同类型的门窗和进风口进行模拟分析,主变室内放置1台主变压器。模拟结果显示,是否设置隔声门对室外声场的影响不大,而消声百叶对室外声场的影响较大,比普通百叶的降噪效果高3~4 d B;同时设置隔声门和消声百叶的降噪效果比普通百叶和金属门高5~6 d B。该文通过一系列的模拟计算,推导出了户内变电站主变室外部三维空间的噪声预测模型,以期为变电站的噪声控制和改造工程提供科学指导和技术支持。 In order to solve the problem of negative impact of indoor substation noise on the surroundingsand investigate the outdoor noise distribution of the transformer chamber in the indoor substation, RAYNOISEsoftware was used in this paper to simulate and analyze different types of doors, windows and inlets in 220 kVindoor substation, considering 1 main transformer in the transformer chamber. The simulation results haveshown that the setting of acoustic doors has little effect on the outdoor sound field, but the effect of acousticlouver on the outdoor sound field is 34 dB higher than that of the normal louver. If both the door and louverare soundproofed, the noise reduction is 56 dB higher than the setting of normal door and louver. Througha series of simulations, this paper has developed the noise prediction models for the outdoor three-dimensionalspace of indoor substation, and scientific guidance and technical support have been provided for the noisecontrol and retrofit engineering solutions of substation.
作者 徐禄文 谢辉 罗芳芳 邹岸新 XU Luwen;XIE Hui;LUO Fangfang;ZOU Anxin(Chongqing Electric Power Research Institute, Chongqing 401123, China;Faculty of Architecture and Urban Planning, Chongqing University, Chongqing 400045, China;Key Laboratory of New Technology for Construction of Cities in Mountain Area, Ministry of Education, ChongqingUniversity, Chongqing 400045, China)
出处 《应用声学》 CSCD 北大核心 2018年第3期378-384,共7页 Journal of Applied Acoustics
基金 国家自然科学基金项目(51678089) 中央高校基金项目(106112017CDJQJ198841)
关键词 户内变电站 进风口 消声百叶 噪声预测模型 Indoor substation, Air inlets, Acoustic louver, Noise prediction model
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