Page 63 - 《应用声学》2025年第2期
P. 63
第 44 卷 第 2 期 杨雨等: 微通道内声传播格子 Boltzmann 建模及其特性研究 323
[2] 李菁瑞, 江学良, 李栋辉, 等. 增塑发泡聚氨酯复合材料吸声 sound generation by flow through porous media[J]. Philo-
性能及阻尼性能研究 [J]. 胶体与聚合物, 2019, 37(2): 68–71. sophical Transactions of the Royal Society A: Mathemat-
Li Jingrui, Jiang Xueliang, Li Donghui, et al. Study on ical, Physical and Engineering Sciences, 2011, 369(1945):
sound absorption and damping properties of plasticized 2467–2475.
foamed polyurethane composites[J]. Chinese Journal of [17] 王勇. 格子 Boltzmann 方法在热声领域的应用及热声谐振管
Colloid & Polymer, 2019, 37(2): 68–71. 可视化实验研究 [D]. 西安: 西安交通大学, 2009.
[3] 宋思远. 表面粗糙结构对多孔吸声材料声学性能影响的理论 [18] 周天. 格子 Boltzmann 方法应用于声流效应及悬浮颗粒声波
和数值研究 [D]. 西安: 西安交通大学, 2017. 驱动规律研究 [D]. 武汉: 华中科技大学, 2018.
[4] 王柏村. 多层/梯度多孔材料的设计及其吸声与强化传热性能 [19] Ji C, Zhao D. Lattice Boltzmann simulation of sound ab-
研究 [D]. 杭州: 浙江大学, 2016. sorption of an in-duct orifice[J]. Proceedings of Meetings
[5] Yang W, Bai X, Zhu W, et al. 3D Printing of polymeric on Acoustics Acoustical Society of America, 2013, 19(1):
multi-layer micro-perforated panels for tunable wideband 030015.
sound absorption[J]. Polymers, 2020, 12(2): 360.
[20] Ji C, Zhao D. Two-dimensional lattice Boltzmann inves-
[6] Lu T J, Chen F, He D. Sound absorption of cellular met-
tigation of sound absorption of perforated orifices with
als with semiopen cells[J]. The Journal of the Acoustical
different geometric shapes[J]. Aerospace Science & Tech-
Society of America, 2000, 108(4): 1697–1709.
nology, 2014, 39(12): 40–47.
[7] Wang X, Lu T J. Optimized acoustic properties of cel-
[21] Guan D, Wu J H, Jing L, et al. Lattice Boltzmann
lular solids[J]. The Journal of the Acoustical Society of
simulation of acoustic resistance in microchannels[J]. In-
America, 1999, 106(2): 756–765.
ternational Journal of Modern Physics B, 2015, 29(16):
[8] 何雅玲, 李庆, 王勇, 等. 格子 Boltzmann 方法的工程热物理
1550104.
应用 [J]. 科学通报, 2009, 54(18): 2638–2656.
[22] Higuera F J, Succi S, Benzi R. Lattice gas dynamics with
He Yaling, Li Qing, Wang Yong, et al. Lattice Boltz-
enhanced collisions[J]. Europhysic Letters, 1989, 9(4):
mann method and its applications in engineering ther-
345–349.
mophysics[J]. Chinese Science Bulletin, 2009, 54(18):
[23] Higuera F J, Jimènez J. Boltzmann approach to lattice
2638–2656.
gas simulations[J]. Europhysics Letters (EPL), 1989, 9(7):
[9] Liu C H, Lin K H, Mai H C, et al. Thermal bound-
663–668.
ary conditions for thermal lattice Boltzmann simula-
[24] Lallemand P, Luo L S. Theory of the lattice Boltzmann
tions[J]. Computers & Mathematics with Applications,
method: dispersion, dissipation, isotropy, Galilean invari-
2010, 59(7): 2178–2193.
ance, and stability[J]. Physical Review E, 2000, 61(6):
[10] Buick J M, Greated C A, Campbell D M. Lattice BGK
6546–6562.
simulation of sound waves[J]. Europhysics Letters (EPL),
1998, 43(3): 235–240. [25] Heubes D, Bartel A, Ehrhardt M. Exact artificial bound-
[11] Dellar P J. Bulk and shear viscosities in lattice Boltzmann ary conditions for a lattice Boltzmann method[J]. Com-
puters & Mathematics with Applications, 2014, 67(11):
equations[J]. Physical Review E, 2001, 64(3): 031203.
[12] 李俊, 王辉明. 基于格子 Boltzmann 方法的多孔介质渗流特 2041–2054.
性模拟 [J]. 四川建材, 2023, 49(9): 72–73, 81. [26] Wang Z, Liu Y, Zhang J Z. Simulation of micro flow in
[13] 万鸿. 基于格子 Boltzmann 方法的气动声学计算研究 [D]. 厦 the transition regime using effective-viscosity-based multi-
门: 厦门大学, 2009. relaxation-time lattice Boltzmann model[J]. Acta Physica
[14] Yang Y, Shan M L, Kan X F, et al. Thermodynamic Sinica, 2016, 65(1): 10–20.
effects of gas adiabatic index on cavitation bubble col- [27] Yue X J, Lu Y J, Zhu Q H, et al. Lattice-Boltzmann
lapse[J]. Heliyon, 2023, 9(10): 20532. simulation of gas flow in microchannels[J]. Journal of
[15] Lallemand P, Luo L S. Theory of the lattice Boltz- Northeastern University(Natural Science), 2014, 35(6):
mann method: Acoustic and thermal properties in two 854–857.
and three dimensions[J]. Physical Review E, 2003, 68(3): [28] Tang G H, Tao W Q, He Y L. Lattice Boltzmann method
6706–6730. for simulating gas flow in microchannels[J]. International
[16] Hasert M, Bernsdorf J, Roller S. Towards aeroacoustic Journal of Modern Physics C, 2004, 15(2): 335.