Academic literature on the topic 'Vibrational system'

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Journal articles on the topic "Vibrational system"

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Nikulina, S. A., A. V. Perminov, and T. P. Lyubimova. "Thermal vibrational convection of a pseudoplastic fluid in a rectangular cavity." Вестник Пермского университета. Физика, no. 3 (2020): 14–23. http://dx.doi.org/10.17072/1994-3598-2020-3-14-23.

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Thermal vibrational convection of a pseudoplastic fluid in a closed rectangular cavity, which is in zero gravity and performing longitudinal high-frequency linearly polarized vibrations, is studied. The temperature gradient is perpendicular to the direction of vibration. The system of equations of thermovibrational convection of a Williamson pseudoplastic fluid is given. The problem was solved by the finite difference method. The effect of vibrations on the structure and intensity of flows is investigated. The magnitude of the vibrational effect on the liquid was determined by the vibrational
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Lian, Jijian, Yan Zheng, Chao Liang, and Bin Ma. "Analysis for the Vibration Mechanism of the Spillway Guide Wall Considering the Associated-Forced Coupled Vibration." Applied Sciences 9, no. 12 (2019): 2572. http://dx.doi.org/10.3390/app9122572.

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During the flood discharge in large-scale hydraulic engineering projects, intense flow-induced vibrations may occur in hydraulic gates, gate piers, spillway guide walls, etc. Furthermore, the vibration mechanism is complicated. For the spillway guide wall, existing studies on the vibration mechanism usually focus on the vibrations caused by flow excitations, without considering the influence of dam vibration. According to prototype tests, the vibrations of the spillway guide wall and the dam show synchronization. Thus, this paper presents a new vibration mechanism of associated-forced coupled
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Nishandar, Siddhanath, and A. S. N. Husainy. "Smart Vibration Control Systems: The Role of Digital Output in Advancing Two-Degree-of-Freedom Design." Asian Review of Mechanical Engineering 13, no. 2 (2024): 32–36. https://doi.org/10.70112/arme-2024.13.2.4279.

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This paper focuses on the development of a two-degree-of-freedom (2-DOF) vibration measurement system with digital output, designed for applications in mechanical engineering, structural health monitoring, and industrial processes. The primary objective is to design and implement a system that accurately measures and analyzes vibrations in two degrees of freedom, providing real-time digital insights for further analysis and decision-making. The system consists of a mechanical setup incorporating springs and dampers to simulate 2-DOF vibrations. Sensors are employed to detect vibrational respon
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Fuzaro de Almeida, Estevão, Fábio Roberto Chavarette, and Douglas da Costa Ferreira. "POTÊNCIA GERADA EM UM SISTEMA DINÂMICO DECAPTAÇÃO DE ENERGIA CONTROLADO VIA MÉTODO LQR: COMPARAÇÃO ENTRE EXCITAÇÃO PERIÓDICA E NÃO-IDEAL." COLLOQUIUM EXACTARUM 12, no. 2 (2020): 62–76. http://dx.doi.org/10.5747/ce.2020.v12.n2.e319.

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Most of active control in vibrational dynamic systems is used to reduce vibrations. However,the aim of this research is specifically the use of vibrations to generate electrical energy, in such a way that the vibration becomes a desired phenomenon. In this way, the intention is to use the Optimal Control via Linear Quadratic Regulator (LQR), resulting in greater transduction of vibrational energy to electric power, varying the excitation type and performing an analysis of the stabilityand the effects of control to the dynamic system.The analyzed system is a bimodal mass-spring-damper with piez
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Shimose, Shigeru, Kanjuro Makihara, and Junjiro Onoda. "Comparison of Analog and Digital Self-Powered Systems in Multimodal Vibration Suppression." Smart Materials Research 2012 (February 21, 2012): 1–9. http://dx.doi.org/10.1155/2012/287128.

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This paper compares our analog and digital self-powered systems for vibration suppression, and shows experimental results of multimodal vibration suppression for both self-powered systems. The experimental results are evaluated in light of the damping performance and adaptability under various vibrational conditions. We demonstrate various examples of our innovative vibration suppression method, called “digital self-powered.” Proper status switching of an electric circuit made up of an inductor and a selective switch connected to a piezoelectric transducer attenuates the vibrations. The contro
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Chen, Ming, Jimiao Duan, Dan Shu, Long Huang, and Xiaochen Chen. "Study on Influence of Fluid Parameters on Axial Coupled Vibration of Pipeline Conveying Multiphase Flow." International Journal of Chemical Engineering 2017 (2017): 1–10. http://dx.doi.org/10.1155/2017/4824376.

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Taking a slurry reservoir-pipeline-valve system as research object, axial dynamic vibrations of pipe system were induced by coupled hydraulic transient due to rapid closure of valve at the end of pipe. The influences of fluid parameters in multiphase flow, including void fraction, density ratio, and elastic modulus ratio between solid phase and liquid phase, on vibration behaviors of pipe system were analyzed. Results of this study show that wave velocities of pressure and stress can be attenuated evidently when void fraction in multiphase fluid is increased appropriately; meanwhile, the ampli
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Linh, N. N., V. A. Tuan, N. V. Tuan, and N. D. Anh. "Response analysis of undamped primary system subjected to base excitation with a dynamic vibration absorber integrated with a piezoelectric stack energy harvester." Vietnam Journal of Mechanics 44, no. 4 (2022): 490–99. http://dx.doi.org/10.15625/0866-7136/17948.

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Dynamic vibration absorber (DVA) integrated with a piezoelectric stack energy harvesting subjected to base excitation is introduced in this paper. The system of dynamic vibration absorber and piezoelectric stack energy harvesting system (DVA-PSEH) has two functions, the first is to reduce vibrations for the primary system, and the second is to convert a part of the vibrational energy into electricity through the piezoelectric effect. The mechanical and electrical responses of the electromechanical system are determined by the complex amplitude method, then the numerical simulations are carried
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Silva, Ricardo Luís Alves, Kleber Gonçalves Bezerra Alves, José Ângelo Peixoto da Costa, et al. "Dynamics of Vibration in Crane Operation: An Elementary Modal and Harmonic Analysis." Processes 13, no. 3 (2025): 610. https://doi.org/10.3390/pr13030610.

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This work aims to study the dynamic aspects related to mechanical vibrations, focusing on vibrational analysis and harmonics concerning safety and maximum efforts supported by operators working with dynamic mechanical equipment. The main goal is the determination of resonance vibrations, displacements, and accelerations at the workstation of a crane operator. A modal and harmonic analysis was performed using the finite element method and the ANSYS software 2022 R1. The findings indicated that the primary vibration modes impacting the operator’s well-being occurred at 1, 2, and 8 Hz, potentiall
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Karimov, Komolkhan, Bakhtiyor Mardonov, Azamat Akhmedov, and Murtoza Toirov. "Prospects for mathematical modeling in mining system development: accounting for global oscillations and seismic waves." E3S Web of Conferences 525 (2024): 05017. http://dx.doi.org/10.1051/e3sconf/202452505017.

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The article discusses the potential of mathematical modeling in understanding the impact of vibrations and seismic waves, aiming at enhancing the sustainability of systems within the mining industry. It explores the dynamic response of a tall, elastic structure with a uniform cross-section and a fixed cylindrical fluid reservoir, subject to various complex boundary conditions. The study delves into the vibrational behavior of the structure when exposed to seismic and harmonic forces, calculating frequency, vibration periods, and deriving formulas for stress, tension, deformation, bending momen
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Chen, Xiaojuan, Mengyang Han, Xiaolong Yang, and Bo Wang. "Stability Analysis of Parametric Vibration in Overhead Conductors Under Time-Varying Tension." Symmetry 17, no. 3 (2025): 464. https://doi.org/10.3390/sym17030464.

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This paper investigates the impact of dynamic tension induced by adjacent span vibrations on the vibrational characteristics of overhead conductors. A simplified model is established, considering the overhead conductor with a symmetric structure as a simply supported flexible long wire subjected to axial time-varying tension at one end. The transverse motion partial differential equation of the overhead conductor under time-varying tension is formulated and discretized into a parametric vibration equation with time-varying coefficients using the Galerkin method. Based on Floquet theory, the st
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Dissertations / Theses on the topic "Vibrational system"

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Attal, Loïse. "A system-bath model to address anharmonicity effects in the quantum vibrational dynamics of complex or interacting molecular systems." Electronic Thesis or Diss., université Paris-Saclay, 2024. http://www.theses.fr/2024UPASP129.

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La dynamique quantique permet la description la plus complète de l'évolution temporelle des systèmes moléculaires en tenant compte de leur nature quantifiée. Cependant, l'effort pour résoudre les équations sous-jacentes croît exponentiellement avec le nombre de degrés de liberté. C'est ce que l'on appelle la malédiction de la dimension. Elle est particulièrement frappante pour les systèmes quantiques ouverts (ceux qui sont en contact avec un environnement), qui sont omniprésents en physique et en chimie. Elle limite aussi considérablement notre capacité à décrire rigoureusement les molécules c
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Wei, Ran. "A VIBRATIONAL ENERGY HARVESTING SYSTEM WITH RESONANT PIEZOELECTRIC DEVICES AND LOW-POWER ELECTRONIC INTERFACE." Case Western Reserve University School of Graduate Studies / OhioLINK, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=case1396628545.

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Кононенко, Микола Петрович, Николай Петрович Кононенко та Mykola Petrovych Kononenko. "Повышение качества работы грануляторов типа АВ". Thesis, Сумский государственный университет, 2014. http://essuir.sumdu.edu.ua/handle/123456789/40281.

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Анализ опыта эксплуатации грануляторов конструкции НИИХИММАШ типа АВ в производствах аммиачной селитры (АС-67, АС- 72) и карбамида показывает, что наряду с такими их преимуществами, как простота в эксплуатации, получить продукт хорошего качества с использованием этих грануляторов невозможно. Вибрационная система грануляторов типа АВ рассчитана для работы на строго определенной нагрузке, изменение которой влечет за собой отказ вибросистемы или ее работу в нестабильном режиме. Это приводит к самопроизвольному распаду струй или несовпадению частотных характеристик вибросистемы со скорост
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Bacher, Sven. "Vibrational signals in a leafminer parasitoid system : the sensory ecology of a leafminer in a tritrophic context /." Zürich, 1996. http://e-collection.ethbib.ethz.ch/show?type=diss&nr=11671.

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INZARULFAISHAM, Abd Rahim, and Hideyuki AZEGAMI. "Solution to Shape Optimization Problem of Linear Elastic Continuum with Prescribed Vibrational Eigen-mode." 日本機械学会, 2001. http://hdl.handle.net/2237/12180.

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Cettour-Janet, Raphael. "Modelling the vibrational response and acoustic radiation of the railway tracks." Thesis, Université Paris-Saclay (ComUE), 2019. http://www.theses.fr/2019SACLC040/document.

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Dans un contexte de densification des villes et de leurs réseaux de transport, les gens sont de plus en plus exposés au bruit. Ainsi, le résultat de l'étude d'impact vibro-acoustique joue un rôle primordial dans l'expansion du réseau ferroviaire. L'une des principales sources est le bruit de roulement : La rugosité de la surface de la roue et du rail produit un déplacement imposé sur ces derniers. Ce déplacement entraine une réponse vibratoire des roues et de la voie ferrée et leurs rayonnements acoustiques. Cette thèse propose une amélioration de la modélisation vibro-acoustique de la voie fe
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BHANDARI, CHURNA B. "FIRST-PRINCIPLES STUDY OF ELECTRONIC AND VIBRATIONAL PROPERTIES OF BULK AND MONOLAYER V2O5." Case Western Reserve University School of Graduate Studies / OhioLINK, 2016. http://rave.ohiolink.edu/etdc/view?acc_num=case1459296089.

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Menexiadis, Dimitri. "Conception d'un système expert d'aide au diagnostic pour les machines tournantes." Valenciennes, 1988. https://ged.uphf.fr/nuxeo/site/esupversions/04ba5d72-dc25-461d-8efd-ab79aeeefb8f.

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Bismarck, Jonas von [Verfasser]. "Vibrational Raman Scattering of Liquid Water : Quantitative Incorporation into a Numeric Radiative Transfer Model of the Atmosphere-Ocean System and Analysis of its Impact on Remote Sensing Applications / Jonas von Bismarck." Berlin : Freie Universität Berlin, 2016. http://d-nb.info/1098185447/34.

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Ratnaparkhe, Amol. "FIRST PRINCIPLES STUDY OF ELECTRONIC ANDVIBRATIONAL PROPERTIES OF WIDE BAND GAPOXIDE AND NITRIDE SEMICONDUCTORS." Case Western Reserve University School of Graduate Studies / OhioLINK, 2021. http://rave.ohiolink.edu/etdc/view?acc_num=case1619606222502271.

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Books on the topic "Vibrational system"

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N, Fleĭshman A., Institut kompleksnykh problem gigieny i i profzabolevaniĭ (Rossiĭskai͡a︡ akademii͡a︡ medit͡s︡inskikh nauk. Sibirskoe otdelenie) та T͡S︡entr diagnostiki i korrekt͡s︡ii psikhomaticheskikh, neĭrovegetativnykh i professionalʹnykh zabolevaniĭ (Rossiĭskai͡a︡ akademii͡a︡ medit͡s︡inskikh nauk. Sibirskoe otdelenie), ред. Medlennye kolebatelʹnye prot͡s︡essy v organizme cheloveka: Teorii͡a︡, prakticheskoe primenenie v klinicheskoĭ medit͡s︡ine i profilaktike : sbornik nauchnykh trudov simpoziuma, 27-29 mai͡a︡ 1997 g. Rossiĭskai͡a︡ akademii͡a︡ medit͡s︡inskikh nauk, Sibirskoe otd-nie, In-t kompleksnykh problem gigieny i profzabolevaniĭ, 1997.

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Findeisen, Dietmar. System Dynamics and Mechanical Vibrations. Springer Berlin Heidelberg, 2000. http://dx.doi.org/10.1007/978-3-662-04205-2.

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Olejárová, Štefánia, Juraj Ružbarský, and Tibor Krenický. Vibrations in the Production System. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-01737-8.

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Findeisen, Dietmar. System Dynamics and Mechanical Vibrations: An Introduction. Springer Berlin Heidelberg, 2000.

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Roseau, Maurice. Vibrations in Mechanical Systems. Springer Berlin Heidelberg, 1987. http://dx.doi.org/10.1007/978-3-642-61594-8.

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Magrab, Edward B. Vibrations of Elastic Systems. Springer Netherlands, 2012. http://dx.doi.org/10.1007/978-94-007-2672-7.

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Leissa, Arthur W. Vibrations of continuous systems. McGraw-Hill, 2011.

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Instytut Mechaniki Stosowanej (Politechnika Poznańska) and Polskie Towarzystwo Mechaniki Teoretycznej i Stosowanej., eds. Vibrations in phisical systems. Institute of Applied Mechanics at Poznań University of Technology, 1996.

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Rao, Singiresu S. Vibration of Continuous Systems. John Wiley & Sons, Inc., 2019. http://dx.doi.org/10.1002/9781119424284.

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Ovchinnikov, A. A., N. S. Erikhman, and K. A. Pronin. Vibrational-Rotational Excitations in Nonlinear Molecular Systems. Springer US, 2001. http://dx.doi.org/10.1007/978-1-4615-1317-9.

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Book chapters on the topic "Vibrational system"

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Tochev, Emil, Harald Pfifer, and Svetan Ratchev. "Indirect System Condition Monitoring Using Online Bayesian Changepoint Detection." In IFIP Advances in Information and Communication Technology. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-72632-4_6.

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AbstractThis paper presents a method for online vibration analysis and a simple test bench analogue for the solder pumping system in an industrial wave-soldering machine at a Siemens factory. A common machine fault is caused by solder build-up within the pipes of the machine. This leads to a pressure drop in the system, which is replicated in the test bench by restricting the flow of water using a gate valve. The pump’s vibrational response is recorded using an accelerometer. The captured data is passed through an online Bayesian Changepoint Detection algorithm, adapted from existing literatur
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Sato, Hisako, Jun Yoshida, and Akihiko Yamagishi. "Construction of the Multi-dimensional VCD System." In Multi-dimensional Vibrational Circular Dichroism. Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-97-0391-3_3.

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Menšík, M., and S. Nešpůrek. "Energy Dissipation of Localized Exciton-Vibrational System." In Molecular Low Dimensional and Nanostructured Materials for Advanced Applications. Springer Netherlands, 2002. http://dx.doi.org/10.1007/978-94-010-0349-0_36.

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Blekhman, Iliya I. "Vibrational Displacement Determined by Constructive and Force Asymmetry of System." In Non-smooth Problems in Vehicle Systems Dynamics. Springer Berlin Heidelberg, 2009. http://dx.doi.org/10.1007/978-3-642-01356-0_16.

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Thong, K. T., C. F. Soon, A. B. Ismail, and K. S. Tee. "Development of a Microfluidic Vibrational Cleaning System for Cleaning Microtissues." In IFMBE Proceedings. Springer Singapore, 2015. http://dx.doi.org/10.1007/978-981-10-0266-3_31.

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Vostrikov, A. A., S. G. Mironov, and A. K. Rebrov. "Vibrational Relaxation Kinetics in a Two-Phase Gas-Cluster System." In Rarefied Gas Dynamics. Springer US, 1985. http://dx.doi.org/10.1007/978-1-4613-2467-6_51.

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Bian, Jiang, Shifu Weng, Jinguang Wu, Jianbin Hui, and Guangxian Xu. "Vibrational Spectroscopic Studies on Acid Soaps as a Membrane Mimic System." In Spectroscopy of Biological Molecules. Springer Netherlands, 1995. http://dx.doi.org/10.1007/978-94-011-0371-8_168.

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Benítez, P., J. C. Losada, R. M. Benito, and F. Borondo. "Analysis of the Full Vibrational Dynamics of the LiNC/LiCN Molecular System." In Progress and Challenges in Dynamical Systems. Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-38830-9_6.

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Farantos, Stavros C., and Jonathan Tennyson. "A Ro-Vibrational Study of Regular/Irregular Behaviour of the CO-Ar System." In Fractals, Quasicrystals, Chaos, Knots and Algebraic Quantum Mechanics. Springer Netherlands, 1988. http://dx.doi.org/10.1007/978-94-009-3005-6_14.

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Weiss, Shmuel. "Computer Simulation of the Vibrational Spectrum of a System with Ultrafast Chemical Reaction." In Molecular Liquids: New Perspectives in Physics and Chemistry. Springer Netherlands, 1992. http://dx.doi.org/10.1007/978-94-011-2832-2_29.

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Conference papers on the topic "Vibrational system"

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Zhu, Y., Y. Qiu, Y. Wu, and Z. Qu. "Decoupling vibrational and translational temperature for plasma-combustion chemistry system containing rich vibrational states." In 2024 IEEE International Conference on Plasma Science (ICOPS). IEEE, 2024. http://dx.doi.org/10.1109/icops58192.2024.10627718.

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Wang, Zhenyi, Hongjian Yu, Zijia Guo, Xiangyu Shen, and Zhijiang Du. "A Modular Robotic System for Tibial Fracture Reduction and Rehabilitation with Vibrational Stimuli Generation." In 2024 IEEE International Conference on Mechatronics and Automation (ICMA). IEEE, 2024. http://dx.doi.org/10.1109/icma61710.2024.10633136.

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Fayer, Michael D. "Vibrational Dynamics in Liquids and Glasses: Picosecond Infrared Vibrational Photon Echoes and Other IR Experiments." In Modern Spectroscopy of Solids, Liquids, and Gases. Optica Publishing Group, 1995. http://dx.doi.org/10.1364/msslg.1995.stha1.

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The first vibrational photon echo experiments conducted in the liquid and solid phases [1,2] are used to examine the vibrational dynamics of solute molecules in liquids and glasses. . These experiments are performed using the Stanford superconducting linac pumped free electron laser which provides a source of tunable ~0.7 psec IR pulses. The psec IR vibrational photon echo experiment directly examines the interactions of a particular vibration with phonons and other vibrational modes of the system. In an IR vibrational echo experiment, the laser is tuned to the vibration of interest. Two pulse
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Noda, Michiyasu, Akira Maekawa, Michiaki Suzuki, and Masanori Shintani. "Development of Evaluation Method of Vibrational Stress in Piping System Applying Multiple Laser Displacement Sensors." In ASME 2007 Pressure Vessels and Piping Conference. ASMEDC, 2007. http://dx.doi.org/10.1115/pvp2007-26453.

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Many damages of the piping system in the nuclear power plants have occurred due to the vibration fatigue induced by the mechanical vibration of pumps and so on. One of the preventive measures for the problem of vibration is the evaluation of vibrational stress, which is the methods using the strain gauge and the accelerometer. However, these evaluation methods require highly specialized skills and many man-hours, and nuclear plants are awaiting the development of vibration-measuring techniques and evaluation techniques that are easy to perform and produce accurate results promptly. The purpose
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Sandercock, J. R. "A Dynamic Antivibration System." In 1st Int'l Conf on Vibrational Control in Optics and Metrology, edited by Lionel R. Baker and Daniel Vukobratovich. SPIE, 1987. http://dx.doi.org/10.1117/12.937916.

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Duan, Shanzhong (Shawn), Lars Mattison, and Teresa Binkley. "Multibody Dynamics Model for Analysis of Human Body Response to Vibrations." In ASME 2012 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/imece2012-86880.

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Some laboratory studies have showed that vibrational stimulation can enhance muscle strength and improve bone density, but it is not clearly understood how frequency and magnitude of vibration have effects on human muscles and bones. In this paper, a whole-body vibration case study is presented to help understand mechanism of human body responses to vibration intervention. A whole body vibration platform is used to provide a source of vibrational intervention. A person steps up and stands on the platform to experience whole-body vibration. Based on this whole-body vibration intervention case,
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Fukushima, Masaru, та Takashi Ishiwata. "VIBRATIONAL ANALYSIS OF THE SiCN X̃ 2Π SYSTEM". У 71st International Symposium on Molecular Spectroscopy. University of Illinois at Urbana-Champaign, 2016. http://dx.doi.org/10.15278/isms.2016.tj07.

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Esposito, Enrico. "Vibrational assessment of professional loudspeaker system plastic cabinets." In Fifth International Conference on Vibration Measurements by Laser Techniques, edited by Enrico P. Tomasini. SPIE, 2002. http://dx.doi.org/10.1117/12.468189.

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Oikawa, Takahiro, Yoshihito Aoki, and Yoshiyuki Suzuki. "Development of Vibrational Rate Sensor and Navigation System." In SAE International Congress and Exposition. SAE International, 1987. http://dx.doi.org/10.4271/870215.

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Candy, J. V., L. M. Stoops, S. N. Franco, and M. C. Emmons. "Modal Frequency Tracking of an Unknown Vibrational System." In 2018 OCEANS - MTS/IEEE Kobe Techno-Ocean (OTO). IEEE, 2018. http://dx.doi.org/10.1109/oceanskobe.2018.8558788.

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Reports on the topic "Vibrational system"

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Yan, Haixing. The Vibrational Relaxation Processes in a CO2-N2-H2O Laser System. Defense Technical Information Center, 1988. http://dx.doi.org/10.21236/ada196860.

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McCallen, D. Effect of foundation flexibility on the vibrational stability of the National Ignition Facility optical system support structures. Office of Scientific and Technical Information (OSTI), 1997. http://dx.doi.org/10.2172/591790.

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Galtz, C., R. Stackhouse, and W. Campbell. LWBR development program: Flow-induced vibrational wear behavior of zircaloy clad simulated fuel rods in a grid support system. Office of Scientific and Technical Information (OSTI), 1987. http://dx.doi.org/10.2172/6744550.

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Brangham, D., and K. Olson. Vibration Mitigation System. Office of Scientific and Technical Information (OSTI), 2020. http://dx.doi.org/10.2172/1661032.

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Martin E. Cobern. Downhole Vibration Monitoring & Control System. Office of Scientific and Technical Information (OSTI), 2007. http://dx.doi.org/10.2172/903219.

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Martin E. Cobern. Downhole Vibration Monitoring & Control System. Office of Scientific and Technical Information (OSTI), 2006. http://dx.doi.org/10.2172/890746.

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Martin E. Cobern. DOWNHOLE VIBRATION MONITORING & CONTROL SYSTEM. Office of Scientific and Technical Information (OSTI), 2006. http://dx.doi.org/10.2172/894899.

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Martin E. Cobern. Downhole Vibration Monitoring & Control System. Office of Scientific and Technical Information (OSTI), 2006. http://dx.doi.org/10.2172/897545.

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Martin E. Cobern. DOWNHOLE VIBRATION MONITORING & CONTROL SYSTEM. Office of Scientific and Technical Information (OSTI), 2006. http://dx.doi.org/10.2172/883086.

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Martin E. Cobern. DOWNHOLE VIBRATION MONITORING & CONTROL SYSTEM. Office of Scientific and Technical Information (OSTI), 2004. http://dx.doi.org/10.2172/834331.

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