化工学报 ›› 2020, Vol. 71 ›› Issue (S1): 194-203.DOI: 10.11949/0438-1157.20191145
收稿日期:
2019-10-09
修回日期:
2019-12-26
出版日期:
2020-04-25
发布日期:
2020-04-25
通讯作者:
赵蕾
作者简介:
刘雅琳(1983—),女,博士,讲师,基金资助:
Yalin LIU1,2(),Ke WANG1,Lei ZHAO1()
Received:
2019-10-09
Revised:
2019-12-26
Online:
2020-04-25
Published:
2020-04-25
Contact:
Lei ZHAO
摘要:
为研究空调通风系统中因存在三通等局部构件而引起的气流再生噪声产生机理,从声源处对其进行控制,采用声学有限元与计算流体动力学相结合的方法,对分流三通局部管段内气动噪声进行分析,获得了管道内表面气动噪声源的强度及其分布规律。探讨了支管前过渡倾角和支管流量分配比对声源强度与噪声传播特性的影响。研究结果表明:当气流流经分流三通管道时,由湍流运动引起的偶极子声源占主导地位,且主要噪声源位于支管处;在支管入口前增加倾角,可削弱声源强度,减少声波向声场传递的声能量,存在某个最优倾角角度使最大声源强度最低;若仅改变支管流量分配比例,声源强度改变,气动噪声主要声源位置不发生变化。倾角与流量分配比变化会导致管道内流体的非定常涡旋运动改变,从而影响到表面偶极子声源强度与噪声传播。
中图分类号:
刘雅琳, 王珂, 赵蕾. 分流三通气动噪声偶极子声源特性的数值分析[J]. 化工学报, 2020, 71(S1): 194-203.
Yalin LIU, Ke WANG, Lei ZHAO. Numerical analysis on aerodynamically generated sound dipole source characteristics of shunt T-elbow[J]. CIESC Journal, 2020, 71(S1): 194-203.
网格数量/个 | a (0,1080,1525) | b (0,2060,0) | ||||
---|---|---|---|---|---|---|
压力 | 速度 | 最大 声压级 | 压力 | 速度 | 最大 声压级 | |
570000 | -18.13 | 4.42 | 66.40 | 18.87 | 6.70 | 62.44 |
800000 | -17.58 | 4.40 | 67.46 | 18.25 | 6.71 | 63.56 |
1040000 | -17.56 | 4.39 | 67.49 | 18.25 | 6.71 | 63.60 |
表1 不同网格方案的相关指标比较
Table 1 Comparisons of relevant indices for different schemes of grid configuration
网格数量/个 | a (0,1080,1525) | b (0,2060,0) | ||||
---|---|---|---|---|---|---|
压力 | 速度 | 最大 声压级 | 压力 | 速度 | 最大 声压级 | |
570000 | -18.13 | 4.42 | 66.40 | 18.87 | 6.70 | 62.44 |
800000 | -17.58 | 4.40 | 67.46 | 18.25 | 6.71 | 63.56 |
1040000 | -17.56 | 4.39 | 67.49 | 18.25 | 6.71 | 63.60 |
1 | 顾强 . 噪声控制工程[M]. 北京: 煤炭工业出版社, 2002: 5. |
Gu Q . Noise Control Engineering [M]. Beijing: Coal Industry Press, 2002: 5. | |
2 | 马大猷 . 声学手册 [M]. 北京: 科学出版社,2004, 709-736. |
Ma D Y . Acoustics Handbook [M]. Beijing: Science Press, 2004: 709-736. | |
3 | Mak C M , To W M , Tai T Y , et al . Sustainable noise control system design for building ventilation systems [J]. Indoor and Built Environment, 2015, 24(1): 128-137. |
4 | Soeta Y , Shimokura R . Sound quality evaluation of air-conditioner noise based on factors of the autocorrelation function [J]. Applied Acoustics, 2017, 124: 11-19. |
5 | Wu C J , Liu D P , Pan J . A study of the aerodynamic and acoustic performance of an indoor unit of a DC-inverter split air-conditioner [J]. Applied Acoustics, 2012, 73(4): 415-422. |
6 | Kim J K . Experimental study on the optimum design of the flow-path system for a low noise indoor package air-conditioner [J]. Journal of Mechanical Science & Technology, 2014, 28(4): 1277-1283. |
7 | 宫武旗, 王芳, 田镇龙, 等 . 叶片锯齿尾缘对降低空调室外机气动噪声影响的试验研究[J]. 工程热物理学报, 2011, 32(10): 1681-1684. |
Gong W Q , Wang F , Tian Z L , et al . Experiment study of the effect of serrated blade trailing edge on axial fan noise reduction in an outdoor air conditioner [J]. Journal of Engineering Thermophysics, 2011, 32(10): 1681-1684. | |
8 | 沈学明, 谈全彬, 郑智丹 . 空调设备的减振[J]. 噪声与振动控制, 2002, (6): 35-38. |
Shen X M , Tan Q B , Zheng Z D . Vibration-reducing in air-conditioning equipment [J]. Noise and Vibration Control, 2002, (6): 35-38. | |
9 | 何卓烈, 郭自杰 . 通风、空调系统中气流再生噪声的试验研究及其在消声计算中的应用[J]. 西安交通大学学报, 1987, (2): 67-77. |
Hei Z L , Guo Z J . Experimental study on airflow regeneration noise in air conditioning system and its application in noise reduction calculation [J]. Journal of Xi an Jiaotong University, 1987, (2): 67-77. | |
10 | 苏宏兵 . 中央空调噪声控制研究与应用[D]. 北京: 清华大学, 2006. |
Su H B . Research and application of central air conditioning noise control [D]. Beijing: Tsinghua University, 2006. | |
11 | 龚农斌, 陈士杰 . 通风空调系统再生噪声的识别与控制[J]. 噪声与振动控制, 1999, (2): 12-15. |
Gong N B , Chen S J . Identification and control of regenerative noise in ventilation and air conditioning systems [J]. Noise and Vibration Control, 1999, (2): 12-15. | |
12 | Holland K R , Davies P O A L . The measurement of sound power flux in flow ducts [J]. Journal of Sound & Vibration, 2000, 230(4): 915-932. |
13 | Zhu Y W , Zhu F W , Zhang Y S , et al . The research on semi-active muffler device of controlling the exhaust pipe s low-frequency noise [J]. Applied Acoustics, 2017, 116: 9-13. |
14 | 刘丽萍, 肖福明, 陆辰, 等 . 存在气流时消声器消声性能的试验研究[J]. 内燃机工程, 2001, (1): 54-57+61. |
Liu L P , Xiao F M , Lu C , et al . The experimental study on the sound elimination performance of mufflers with airflow [J]. Chinese Internal Combustion Engine Engineering, 2001, (1): 54-57+61. | |
15 | 李晓东, 江旻, 高军辉, 等 . 计算气动声学进展与展望[J]. 中国科学: 物理学、力学、天文学, 2014, 44(3): 234-248. |
Li X D , Jiang M , Gao J H , et al . Progress and prospective of computational aeroacoustics [J]. Sci. Sin.-Phys. Mech. Astron., 2014, 44(3): 234-248. | |
16 | Cao Y , Ke H , Lin Y , et al . Investigation on the flow noise propagation mechanism in pipelines of shell-and-tube heat exchangers based on synergy principle of flow and sound fields [J]. Applied Thermal Engineering, 2017, 122: 339-349. |
17 | Mori M , Masumoto T , Ishihara K . Study on acoustic, vibration and flow induced noise characteristics of T-shaped pipe with a square cross-section [J]. Applied Acoustics, 2017, 120: 137-147. |
18 | 白长安, 陈天宁, 张锴, 等 . 管道阀门共振腔气动噪声特性及规律研究[J]. 噪声与振动控制, 2018, 38(S1): 218-221. |
Bai C A , Chen T N , Zhang K , et al . Study on aerodynamic noise characteristics and regulations of resonance cavities in pipeline valves [J]. Noise and Vibration Control, 2018, 38(S1): 218-221. | |
19 | 肖鸿飞, 向阳, 周鹏, 等 . 空调通风系统管道气动噪声分析[J]. 船海工程, 2018, 47(4): 26-30. |
Xiao H F , Xiang Y , Zhou P , et al . Analysis of aerodynamic noise of air conditioning ventilation system pipeline [J]. Ship & Ocean Engineering, 2018, 47(4): 26-30. | |
20 | 吕景伟, 季振林 . 变截面管道内流噪声预报与实验测量[J]. 噪声与振动控制, 2011, 31(1): 166-169. |
Lü J W , Ji Z L . Numerical prediction and experimental measurement of flow noise in pipes with variable cross-sectional area [J]. Noise and Vibration Control, 2011, 31(1): 166-169. | |
21 | 杨文文, 于志成, 李灿, 等 . 基于管道内气流噪声模拟分析与控制实践[C]//全国噪声与振动控制工程学术会议. 2015. |
Yang W W , Yu Z C , Li C ,et al . Simulation analysis and control practice based on airflow noise in pipelines [C]// National Conference on Noise and Vibration Control Engineering. 2015. | |
22 | Gao R , Fang Z , Li A G , et al . A novel low-resistance tee of ventilation and air conditioning duct based on energy dissipation control [J]. Applied Thermal Engineering, 2017: 1359431117360337. |
23 | Gao R , Zheng H C , Li A G , et al . A novel low-resistance duct tee emulating a river course [J]. Building and Environment, 2018, 144: 295-304. |
24 | Lighthill M J . On sound generated aerodynamically (Ⅰ): General theory[J]. Pro. Roy. London Soc., 1952, 211(1107): 546-587. |
25 | Curle N . The influence of solid boundaries upon aerodynamic sound [J]. Proceedings of the Royal Society A, 1955, 231(1187): 505-514. |
26 | 詹福良, 徐俊伟 . Virtual. Lab Acoustics声学仿真计算从入门到精通[M]. 西安: 西北工业大学出版社, 2013: 212. |
Zhan F L , Xu J W . Virtual. Lab Acoustics Acoustics Simulation Calculations from Entry to Proficiency [M]. Xi an: Northwestern Polytechnical University Press, 2013. | |
27 | Waddington D C , Oldham D J . The prediction of airflow-generated noise in mechanical ventilation systems [J]. Indoor and Built Environment, 2000, 9(2): 111-117. |
28 | Poweel A . Theory of vortex sound [J]. Acoust. Soc. Am., 1964, 36: 177-195. |
29 | 杨杰, 覃国周, 刘万里 . 存在气流时消声器传声损失的数值计算[J]. 车辆与动力技术, 2015, (1): 42-46. |
Yang J , Qin G Z , Liu W L . Numerical calculation of transmission loss of muffler with airflow [J]. Vehicle & Power Technology, 2015, (1): 42-46. | |
30 | 赵荣义, 范存养 . 空气调节[M]. 北京: 中国建筑工业出版社, 2005: 172. |
Zhao R Y , Fan C Y . Air Conditioning [M]. Beijing: China Building Industry Press, 2005: 172. |
[1] | 张思雨, 殷勇高, 贾鹏琦, 叶威. 双U型地埋管群跨季节蓄热特性研究[J]. 化工学报, 2023, 74(S1): 295-301. |
[2] | 肖明堃, 杨光, 黄永华, 吴静怡. 浸没孔液氧气泡动力学数值研究[J]. 化工学报, 2023, 74(S1): 87-95. |
[3] | 温凯杰, 郭力, 夏诏杰, 陈建华. 一种耦合CFD与深度学习的气固快速模拟方法[J]. 化工学报, 2023, 74(9): 3775-3785. |
[4] | 汪林正, 陆俞冰, 张睿智, 罗永浩. 基于分子动力学模拟的VOCs热氧化特性分析[J]. 化工学报, 2023, 74(8): 3242-3255. |
[5] | 岳林静, 廖艺涵, 薛源, 李雪洁, 李玉星, 刘翠伟. 凹坑缺陷对厚孔板喉部空化流动特性影响研究[J]. 化工学报, 2023, 74(8): 3292-3308. |
[6] | 邢雷, 苗春雨, 蒋明虎, 赵立新, 李新亚. 井下微型气液旋流分离器优化设计与性能分析[J]. 化工学报, 2023, 74(8): 3394-3406. |
[7] | 何晓崐, 刘锐, 薛园, 左然. MOCVD生长AlN单晶薄膜的气相和表面化学反应综述[J]. 化工学报, 2023, 74(7): 2800-2813. |
[8] | 牛超, 沈胜强, 杨艳, 潘泊年, 李熠桥. 甲烷BOG喷射器流动过程计算与性能分析[J]. 化工学报, 2023, 74(7): 2858-2868. |
[9] | 刘道银, 陈柄岐, 张祖扬, 吴琰. 颗粒聚团结构对曳力特性影响的数值模拟[J]. 化工学报, 2023, 74(6): 2351-2362. |
[10] | 李晨曦, 刘永峰, 张璐, 刘海峰, 宋金瓯, 何旭. O2/CO2氛围下正庚烷的燃烧机理研究[J]. 化工学报, 2023, 74(5): 2157-2169. |
[11] | 董鑫, 单永瑞, 刘易诺, 冯颖, 张建伟. 非牛顿流体气泡羽流涡特性数值模拟研究[J]. 化工学报, 2023, 74(5): 1950-1964. |
[12] | 李正涛, 袁志杰, 贺高红, 姜晓滨. 疏水界面上的NaCl液滴蒸发过程内环流调控机制研究[J]. 化工学报, 2023, 74(5): 1904-1913. |
[13] | 周艾然, 陆平, 夏建辉, 李冬勤, 郭杰, 杜明, 董立春. 氯化钛白氧化反应器结疤问题分析及数值模拟[J]. 化工学报, 2023, 74(4): 1499-1508. |
[14] | 孙哲, 金华强, 李康, 顾江萍, 黄跃进, 沈希. 基于知识数据化表达的制冷空调系统故障诊断方法[J]. 化工学报, 2022, 73(7): 3131-3144. |
[15] | 李亚飞, 邓建强, 何阳. 跨临界CO2快速膨胀过程中非平衡冷凝和闪蒸机理的数值研究[J]. 化工学报, 2022, 73(7): 2912-2923. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||