实验流体力学
實驗流體力學
실험류체역학
JOURNAL OF EXPERIMENTS IN FLUID MECHANICS
2009年
4期
56-59,64
,共5页
朱博%汤更生%顾光武%李鹏
硃博%湯更生%顧光武%李鵬
주박%탕경생%고광무%리붕
航空声学风洞%背景噪声%测试
航空聲學風洞%揹景譟聲%測試
항공성학풍동%배경조성%측시
aeroacoustic wind tunnel%background noise%measurement toechnology
介绍了在国内第一个全新设计的0.55m×0.4m航空声学引导风洞开展风洞背景噪声测量的技术方案和方法,对电容式麦克风、脉动压力传感器、预极化和非预极化传声器、自由场和压力场传声器、传声器安装方式以及声学频谱算法进行了比较实验和分析.在初期实验过程中,根据测试结果优化了风洞降噪方案,达到了较为理想的风洞背景噪声指标.测试结果表明:采用电容式麦克风比采用脉动压力传感器得到的频谱和声压级精度高;在消声部段前后的同一侧洞壁上测量,可以得到消声部段传声损失;压力场和自由场传声器在修正后可以互换使用;为得到重复性较好的背景噪声频谱和有效声压级,采用频谱线性平均算法.实验结果对低速航空声学风洞背景噪声测试具有一定的指导意义.
介紹瞭在國內第一箇全新設計的0.55m×0.4m航空聲學引導風洞開展風洞揹景譟聲測量的技術方案和方法,對電容式麥剋風、脈動壓力傳感器、預極化和非預極化傳聲器、自由場和壓力場傳聲器、傳聲器安裝方式以及聲學頻譜算法進行瞭比較實驗和分析.在初期實驗過程中,根據測試結果優化瞭風洞降譟方案,達到瞭較為理想的風洞揹景譟聲指標.測試結果錶明:採用電容式麥剋風比採用脈動壓力傳感器得到的頻譜和聲壓級精度高;在消聲部段前後的同一側洞壁上測量,可以得到消聲部段傳聲損失;壓力場和自由場傳聲器在脩正後可以互換使用;為得到重複性較好的揹景譟聲頻譜和有效聲壓級,採用頻譜線性平均算法.實驗結果對低速航空聲學風洞揹景譟聲測試具有一定的指導意義.
개소료재국내제일개전신설계적0.55m×0.4m항공성학인도풍동개전풍동배경조성측량적기술방안화방법,대전용식맥극풍、맥동압력전감기、예겁화화비예겁화전성기、자유장화압력장전성기、전성기안장방식이급성학빈보산법진행료비교실험화분석.재초기실험과정중,근거측시결과우화료풍동강조방안,체도료교위이상적풍동배경조성지표.측시결과표명:채용전용식맥극풍비채용맥동압력전감기득도적빈보화성압급정도고;재소성부단전후적동일측동벽상측량,가이득도소성부단전성손실;압력장화자유장전성기재수정후가이호환사용;위득도중복성교호적배경조성빈보화유효성압급,채용빈보선성평균산법.실험결과대저속항공성학풍동배경조성측시구유일정적지도의의.
This paper presented the background noise measurement technology scheme of 0.55m×0.4m aeroacoustic pilot wind tunnel newly designed in China.It made some comparative tests and data analysis of condenser microphone,piezoresistive transducer,prepolarized microphone,externally polarized microphone,free-field microphone,pressure-field microphone,sensor installing methods and acoustic frequency spectrum algorithm.According to the obtained data,some measures were taken to optimize the noise reduction performance of the wind tunnel.It showed that condenser microphone is more accurate than piezoresistive transducer used for background noise measurement.After correction,pressure-field microphone and free-field microphone could be replaced by each other.Spectrum linear average algorithm should be used to calculate the muffler noise transmission loss for the sake of repetitive precision.The conclusion is helpful for background noise measurement of low speed aeroacoustic wind tunnel.