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基于近场声全息的声强场可视化方法 被引量:1
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作者 周琳娜 楼京俊 朱石坚 《噪声与振动控制》 CSCD 2013年第6期53-56,95,共5页
传统噪声源识别主要基于频谱分析方法,无法准确反映声源位置和声场强度变化信息。针对大型水下结构体辐射声场的噪声源识别和辐射声能量监测的问题,提出一种基于声全息测量技术的辐射声强场可视化方法,计算声波在均匀介质中的声强矢量场... 传统噪声源识别主要基于频谱分析方法,无法准确反映声源位置和声场强度变化信息。针对大型水下结构体辐射声场的噪声源识别和辐射声能量监测的问题,提出一种基于声全息测量技术的辐射声强场可视化方法,计算声波在均匀介质中的声强矢量场,并采用体绘制和流线技术实现声场量的可视化,从而定位结构体主要辐射噪声源,直观地展示辐射声场的能量分布及耗散情况,描述声场能量传递方向与路径,为水下结构体辐射声场的监测与分析提供一种新的手段。 展开更多
关键词 声学 近场声全息(NAH) 水下结构体 辐射声强 科学计算可视化
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Noise propagation characteristics of underground equipment in coal mines 被引量:2
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作者 CHENG Gen-yin WEI Zhi-yong +1 位作者 XU Ming ZHU Yan-yan 《Journal of Coal Science & Engineering(China)》 2012年第3期320-324,共5页
On the basis of the survey of underground noise in Jinggezhuang and Donghuantuo mines, Kailuan Group, noise radiation intensity, noise propagation properties and noise frequency-spectrum characteristics of underground... On the basis of the survey of underground noise in Jinggezhuang and Donghuantuo mines, Kailuan Group, noise radiation intensity, noise propagation properties and noise frequency-spectrum characteristics of underground equipment were studied at different work conditions. The result indicates that the noise source intensity surpasses the noise limit requirement of 85 dBA completely. Nearly 70% noise sources exceed the noise limit of 90 dBA, and some are over 100 dBA. Noise attenua- tion in semi-free field environment on the ground is significantly different from underground far-field environment of noise source in coal mines. Noise of these regions, where staffs are long and highly concentrated, exceeds 85 dBA, the basic noise limit. The noise frequency-spectrum presents the wideband characteristics. Especially in the main frequency of the language communication 500, 1 000 and 2 000 Hz, the octave band of noise performs obviously. 展开更多
关键词 noise in coal mine noise propagation property noise frequency-spectrum characteristic
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Stochastic dynamic simulation of the 100-kyr cycles in climate system
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作者 DUAN MingKeng ZHOU XiuJi 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第3期420-428,共9页
Based upon the stochastic resonance theory,the formation mechanism of 100-kyr cycles in climate system is numerically studied in the perspective of stochastic dynamics.In this study,firstly we combine the idealized al... Based upon the stochastic resonance theory,the formation mechanism of 100-kyr cycles in climate system is numerically studied in the perspective of stochastic dynamics.In this study,firstly we combine the idealized albedo model with the geological evidence and observation in climate system to construct a new albedo model.Secondly,a bistable nonlinear system is constructed by introducing the albedo model into zero-dimensional energy balance model.Finally,based on this new system,with the solar radiation cycles and stochastic perturbation simultaneously taken into account,the variation of 100-kyr cycles is analyzed by numerical simulations.The results show that,when the noise intensity reaches a certain value,the stochastic resonance can be triggered.However,the noise intensity in this level does not exist in the actual climate system.In order to explain the formation mechanism of 100-kyr glacial-interglacial cycles forced by the weak solar radiation cycles,besides the solar radiation stochastic perturbation,the stochastic dynamic effects of the other "non-solar" radiation stochastic perturbation in the climate change processes should also be considered.The stochastic dynamic simulations taking the two types of stochastic perturbation into consideration show that,when the two types of appropriately observable stochastic perturbation are introduced,the stochastic resonance also can be generated.In this situation,the contribution rate of solar radiation stochastic perturbation is about 38%,which proves the importance of solar radiation stochastic perturbation in the formation of 100-kyr climate cycles. 展开更多
关键词 solar radiation climate change stochastic dynamics stochastic resonance energy balance model
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