Littérature scientifique sur le sujet « Multiphysics design »
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Articles de revues sur le sujet "Multiphysics design"
SONG, Shaoyun. « Collaborative design of multiphysics problems ». Chinese Journal of Mechanical Engineering (English Edition) 20, no 03 (2007) : 105. http://dx.doi.org/10.3901/cjme.2007.03.105.
Texte intégralVaidya, A., S. H. Yu, J. St. Ville, D. T. Nguyen et S. D. Rajan. « Multiphysics CAD-Based Design Optimization ». Mechanics Based Design of Structures and Machines 34, no 2 (juillet 2006) : 157–80. http://dx.doi.org/10.1080/15397730600745807.
Texte intégralLuo, Xue, Robert L. Lytton, Yuqing Zhang, Fan Gu, Jinchang Wang et Qiang Tang. « Pavement Analysis and Design by Multiphysics ». Advances in Civil Engineering 2019 (28 février 2019) : 1–2. http://dx.doi.org/10.1155/2019/3024138.
Texte intégralV R Nandigana, Vishal. « Deep Learning and Generative, Interactive Design for Multiphase Multiphysics Technologies ». International Journal of Science and Research (IJSR) 10, no 5 (27 mai 2021) : 673–75. https://doi.org/10.21275/sr21516140813.
Texte intégralWang, Tian, Ping Xi et Bifu Hu. « Multiphysics Modeling of Gas Turbine Based on CADSS Technology ». Shock and Vibration 2020 (19 octobre 2020) : 1–21. http://dx.doi.org/10.1155/2020/8816453.
Texte intégralYouchison, Dennis L., et Michael A. Ulrickson. « Plasma Facing Component Design Through Multiphysics Simulation ». Fusion Science and Technology 64, no 2 (août 2013) : 269–76. http://dx.doi.org/10.13182/fst13-a18088.
Texte intégralAltundas, Yusuf Bilgin, et Nikita Chugunov. « Multiphysics fluid monitoring : Toward targeted monitoring design under uncertainty ». Interpretation 6, no 3 (1 août 2018) : SG19—SG32. http://dx.doi.org/10.1190/int-2017-0180.1.
Texte intégralAdam, Tijjani, et U. Hashim. « COMSOL Multiphysics Simulation in Biomedical Engineering ». Advanced Materials Research 832 (novembre 2013) : 511–16. http://dx.doi.org/10.4028/www.scientific.net/amr.832.511.
Texte intégralMarrese, Fabrizio, Lorenzo Valletti, Stefano Fantauzzi, Alberto Leggieri, Mostafa Behtouei, Bruno Spataro et Franco Di Paolo. « Multiphysics Design of High-Power Microwave Vacuum Window ». Journal of Microwaves, Optoelectronics and Electromagnetic Applications 21, no 1 (mars 2022) : 157–70. http://dx.doi.org/10.1590/2179-10742022v21i1256395.
Texte intégralAmundson, J. F., D. Dechow, L. McInnes, B. Norris, P. Spentzouris et P. Stoltz. « Multiscale, multiphysics beam dynamics framework design and applications ». Journal of Physics : Conference Series 125 (1 juillet 2008) : 012001. http://dx.doi.org/10.1088/1742-6596/125/1/012001.
Texte intégralThèses sur le sujet "Multiphysics design"
FORTE, Ruggero. « Multiphysics Optimization for Water-Cooled Breeding Blanket Design Enhancement ». Doctoral thesis, Università degli Studi di Palermo, 2021. http://hdl.handle.net/10447/478128.
Texte intégralRodrigues, Dário Barros. « Target-specific multiphysics modeling for thermal medicine applications ». Doctoral thesis, Faculdade de Ciências e Tecnologia, 2013. http://hdl.handle.net/10362/11296.
Texte intégralThis thesis addresses thermal medicine applications on murine bladder hyperthermia and brain temperature monitoring. The two main objectives are interconnected by the key physics in thermal medicine: heat transfer. The first goal is to develop an analytical solution to characterize the heat transfer in a multi-layer perfused tissue. This analytical solution accounts for important thermoregulation mechanisms and is essential to understand the fundamentals underlying the physical and biological processes associated with heat transfer in living tissues. The second objective is the development of target-specific models that are too complex to be solved by analytical methods. Thus, the software for image segmentation and model simulation is based on numerical methods and is used to optimize non-invasive microwave antennas for specific targets. Two examples are explored using antennas in the passive mode (probe) and active mode (applicator). The passive antenna consists of a microwave radiometric sensor developed for rapid non-invasive feedback of critically important brain temperature. Its design parameters are optimized using a power-based algorithm. To demonstrate performance of the device, we build a realistic model of the human head with separate temperaturecontrolled brain and scalp regions. The sensor is able to track brain temperature with 0.4 °C accuracy in a 4.5 hour long experiment where brain temperature is varied in a 37 °C, 27 °C and 37 °C cycle. In the second study, a microwave applicator with an integrated cooling system is used to develop a new electro-thermo-fluid (multiphysics) model for murine bladder hyperthermia studies. The therapy procedure uses a temperature-based optimization algorithm to maintain the bladder at a desired therapeutic level while sparing remaining tissues from dangerous temperatures. This model shows that temperature dependent biological properties and the effects of anesthesia must be accounted to capture the absolute and transient temperature fields within murine tissues. The good agreement between simulation and experimental results demonstrates that this multiphysics model can be used to predict internal temperatures during murine hyperthermia studies.
Han, Chanjuan. « Advanced Multiphysics Simulation and Characterization for the Multifunctional and Innovative Design of Energy Geosystem ». Case Western Reserve University School of Graduate Studies / OhioLINK, 2018. http://rave.ohiolink.edu/etdc/view?acc_num=case1524139196492659.
Texte intégralAHMADI, DARMANI MOSTAFA. « Multiphysics Design of Interior Permanent Magnet Machines and Characterization of Innovative Hard Magnetic Material ». Doctoral thesis, Politecnico di Torino, 2022. http://hdl.handle.net/11583/2971120.
Texte intégralBlakely, Cole David. « Uncertainty Quantification and Sensitivity Analysis of Multiphysics Environments for Application in Pressurized Water Reactor Design ». DigitalCommons@USU, 2018. https://digitalcommons.usu.edu/etd/7256.
Texte intégralFukumoto, Yutaka. « Particle Based Multiphysics Simulation for Applications to Design of Soil Structures and Micromechanics of Granular Geomaterials ». Kyoto University, 2015. http://hdl.handle.net/2433/199374.
Texte intégral0048
新制・課程博士
博士(農学)
甲第19050号
農博第2128号
新制||農||1032(附属図書館)
学位論文||H27||N4932(農学部図書室)
32001
京都大学大学院農学研究科地域環境科学専攻
(主査)教授 村上 章, 教授 藤原 正幸, 教授 澤田 純男
学位規則第4条第1項該当
Moreno, Navarro Pablo. « Multiphysics formulation and multiscale finite element discretizations of thermo-electro-magneto-mechanic coupling for smart materials design ». Thesis, Compiègne, 2019. http://www.theses.fr/2019COMP2525.
Texte intégralNumerical algorithms based on the Finite Element Method will be specialized for Analysis, Design, and Optimization of Sensors and Actuators (S-A) and their Application to Smart Structures. The S-A based on tangible assets can couple several fields, such as mechanical, electrical, magnetic, and thermal. They are used in many applications, particularly in smart structures, damage monitoring, or aerodynamics. Despite the considerable experience in these studies, the steps addressed are first to develop a thermodynamically consistent formulation for macro-scale to introduce plasticity models; second, to provide the tools to take into account the heterogeneities of multi-scale models for smart materials. The main objective is the development of a research computer code to simulate and study the performance, not only of the S-A themselves but also of the smart structures in which these S-A will be mounted
Vich, Ramis Maria del Mar. « Design of ensemble prediction systems based on potential vorticity perturbations and multiphysics. Test for western Mediterranean heavy precipitation events ». Doctoral thesis, Universitat de les Illes Balears, 2012. http://hdl.handle.net/10803/84075.
Texte intégralThe main goal of this thesis is to improve the current prediction skill of potentially hazardous heavy precipitation weather events in the western Mediterranean region. We develop and test three different ensemble prediction systems (EPSs) that account for uncertainties present in both the numerical models and the initial conditions. To generate the EPSs we take advantage of the connection between potential vorticity (PV) structures and cyclones, and use different physical parameterization schemes. We obtain an improvement in forecast skill when using an EPS compared to a determinist forecast. The EPSs generated perturbing the initial conditions perform better in the statistical verification scores. The results of this Thesis show the utility and suitability of forecasting methods based on perturbing the upper-level precursor PV structures present in cyclonic situations. The results and strategies here discussed aim to be a basis for future studies making use of these methods.
Guo, Dongzhi. « Design, Analysis, Modeling and Testing of a Micro-scale Refrigeration System ». Research Showcase @ CMU, 2014. http://repository.cmu.edu/dissertations/450.
Texte intégralEivarsson, Nils, Malin Bohman, Emil Grosfilley et Axel Lundberg. « Design and Simulation of Terahertz Antenna for Spintronic Applications ». Thesis, Uppsala universitet, Institutionen för materialvetenskap, 2020. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-412982.
Texte intégralLivres sur le sujet "Multiphysics design"
Haddar, Mohamed, Mohamed Slim Abbes, Jean-Yves Choley, Taoufik Boukharouba, Tamer Elnady, Andrei Kanaev, Mounir Ben Amar et Fakher Chaari, dir. Multiphysics Modelling and Simulation for Systems Design and Monitoring. Cham : Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-14532-7.
Texte intégralRosu, Marius, Ping Zhou, Dingsheng Lin, Dan Ionel, Mircea Popescu, Frede Blaabjerg, Vandana Rallabandi et David Staton. Multiphysics Simulation by Design for Electrical Machines, Power Electronics, and Drives. Hoboken, NJ, USA : John Wiley & Sons, Inc., 2018. http://dx.doi.org/10.1002/9781119103462.
Texte intégralBoukharouba, Taoufik, Fakher Chaari, Mohamed Haddar, Mohamed Slim Abbes, Jean-Yves Choley, Tamer Elnady, Andrei Kanaev et Mounir Ben Amar. Multiphysics Modelling and Simulation for Systems Design and Monitoring : Proceedings of the Multiphysics Modelling and Simulation for Systems Design ... Tunisia. Springer, 2015.
Trouver le texte intégralBoukharouba, Taoufik, Fakher Chaari, Mohamed Haddar, Mohamed Slim Abbes, Jean-Yves Choley, Tamer Elnady, Andrei Kanaev et Mounir Ben Amar. Multiphysics Modelling and Simulation for Systems Design and Monitoring : Proceedings of the Multiphysics Modelling and Simulation for Systems Design ... Tunisia. Springer, 2016.
Trouver le texte intégralLee, Jaewook, Tsuyoshi Nomura et Ercan M. Dede. Multiphysics Simulation : Electromechanical System Applications and Optimization. Springer, 2014.
Trouver le texte intégralLee, Jaewook, Tsuyoshi Nomura et Ercan M. Dede. Multiphysics Simulation : Electromechanical System Applications and Optimization. Springer London, Limited, 2014.
Trouver le texte intégralDede, Ercan M. M., Jaewook Lee et Tsuyoshi Nomura. Multiphysics Simulation : Electromechanical System Applications and Optimization. Springer, 2016.
Trouver le texte intégralMultiphysics Simulation : Electromechanical System Applications and Optimization. Springer, 2014.
Trouver le texte intégralHaddar, Mohamed, Mohamed Slim Abbes et Jean-Yves Choley. Multiphysics Modelling and Simulation for Systems Design and Monitoring : Proceedings of the Multiphysics Modelling and Simulation for Systems Design ... MMSSD 2014, 17-19 December, Sousse, Tunisia. Springer, 2015.
Trouver le texte intégralBoukharouba, Taoufik, Mohamed Haddar, Mohamed Slim Abbes, Jean-Yves Choley et Tamer Elnady. Multiphysics Modelling and Simulation for Systems Design and Monitoring : Proceedings of the Multiphysics Modelling and Simulation for Systems Design Conference, MMSSD 2014, 17-19 December, Sousse, Tunisia. Springer, 2015.
Trouver le texte intégralChapitres de livres sur le sujet "Multiphysics design"
Xu, Liu-Jun, et Ji-Ping Huang. « Theory for Thermoelectric Effect Control : Transformation Nonlinear Thermoelectricity ». Dans Transformation Thermotics and Extended Theories, 35–51. Singapore : Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-5908-0_4.
Texte intégralVinogradov, K., G. Kretinin et I. Leshenko. « Robust Multiphysics Optimization of Fan Blade ». Dans Uncertainty Management for Robust Industrial Design in Aeronautics, 583–600. Cham : Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-77767-2_36.
Texte intégralRichard, S., et N. Magnino. « Use of RD in Multiphysics Applications ». Dans Uncertainty Management for Robust Industrial Design in Aeronautics, 777–83. Cham : Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-77767-2_50.
Texte intégralKapuganti, Rajesh. « Design of Medical Device Product Using Multiphysics Simulations ». Dans Lecture Notes on Multidisciplinary Industrial Engineering, 967–72. Singapore : Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-32-9072-3_81.
Texte intégralLakshmanan, Vinila Mundakkal, Aparna Kallingal et Sreepriya Sreekumar. « Optimum Design of Cumene Reactor Using COMSOL Multiphysics Modelling ». Dans Advanced Engineering Optimization Through Intelligent Techniques, 523–32. Singapore : Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-19-9285-8_50.
Texte intégralCosta, A. M., E. Poiate, C. S. Amaral, A. Pereira, L. F. Martha, M. Gattass et D. Roehl. « GEOMECHANICS APPLIED TO THE WELL DESIGN THROUGH SALT LAYERS IN BRAZIL : A HISTORY OF SUCCESS ». Dans Multiscale and Multiphysics Processes in Geomechanics, 165–68. Berlin, Heidelberg : Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-19630-0_42.
Texte intégralCosta, Daniele, Giacomo Palmieri, Matteo Palpacelli et David Scaradozzi. « Design of a Thunniform Swimming Robot in a Multiphysics Environment ». Dans Advances in Service and Industrial Robotics, 257–65. Cham : Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-48989-2_28.
Texte intégralAlì, Giuseppe, et Andreas Bartel. « A Priori Estimates for Multiphysics Models in Electric Circuit Design ». Dans Progress in Industrial Mathematics at ECMI 2002, 167–71. Berlin, Heidelberg : Springer Berlin Heidelberg, 2004. http://dx.doi.org/10.1007/978-3-662-09510-2_19.
Texte intégralSharma, Shivashree, et Saroj Yadav. « Numerical Analysis of Fin Heat Transfer in Radiators Using Simulation Software Comsol Multiphysics 5.5 ». Dans Sustainable Material, Design, and Process, 143–67. Boca Raton : CRC Press, 2023. http://dx.doi.org/10.1201/9781003242291-7.
Texte intégralMurthy, K. S. N., M. Siva Kumar, K. Suma Bindu, K. Satyanarayana, D. Sivateja et G. Sai Hemanth. « Design and Simulation of Implantable Blood Pressure Sensor Using COMSOL Multiphysics ». Dans Advances in Intelligent Systems and Computing, 1119–26. Singapore : Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-10-5903-2_117.
Texte intégralActes de conférences sur le sujet "Multiphysics design"
Fu, Jiaping, Jing Jin, Ke Cao, Tengyu Li, Xintong Shi et Hai Lin. « Two-stage Cognition-driven Multiphysics Optimization for Microwave Filters Design ». Dans 2024 Photonics & Electromagnetics Research Symposium (PIERS), 1–5. IEEE, 2024. http://dx.doi.org/10.1109/piers62282.2024.10618469.
Texte intégralZhao, Yuxin, Jiawei Chen, Yuqiang Zhang et Zhinan Zhang. « Vibration and Noise Reduction Design of EHA Pipeline Based on Multiphysics Coupling ». Dans 2024 2nd International Conference on Design Science (ICDS), 1–7. IEEE, 2024. http://dx.doi.org/10.1109/icds62420.2024.10751696.
Texte intégralKnoll, Jonathan, Mark Ott, Kevin Cooney et Michael Seifert. « Multiphysics Simulation of Pylon Fluid-Elastomeric Isolators ». Dans Vertical Flight Society 74th Annual Forum & Technology Display, 1–9. The Vertical Flight Society, 2018. http://dx.doi.org/10.4050/f-0074-2018-12878.
Texte intégralMishra, Sandeep, Mayank Jaiswal, Kaustubh Kumar Shukla, Harshit Mittal, Sourabh Dubey et Bhupendra Kumar Sharma. « Design and Analysis of a Novel Microbattery using Multiphysics based on Artificial Intelligence Applications ». Dans 2024 Third International Conference on Smart Technologies and Systems for Next Generation Computing (ICSTSN), 1–6. IEEE, 2024. http://dx.doi.org/10.1109/icstsn61422.2024.10671311.
Texte intégral« Multiphysics/thermal modeling ». Dans 2016 IEEE Electrical Design of Advanced Packaging and Systems (EDAPS). IEEE, 2016. http://dx.doi.org/10.1109/edaps.2016.7893163.
Texte intégral« Multiphysics for everyone ». Dans 2016 MIXDES - 23rd International Conference "Mixed Design of Integrated Circuits and Systems". IEEE, 2016. http://dx.doi.org/10.1109/mixdes.2016.7529803.
Texte intégralManca, Nicolo, Marco Del Sarto, Alex Gritti, Roseanne Duca et Vincent Mangion. « Package Design for Multiphysics MEMS Sensor ». Dans 2019 18th IEEE Intersociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems (ITherm). IEEE, 2019. http://dx.doi.org/10.1109/itherm.2019.8757310.
Texte intégralStabile, Alessandro, Guglielmo S. Aglietti et Guy Richardson. « Electromagnetic damper design using a multiphysics approach ». Dans SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring, sous la direction de Wei-Hsin Liao. SPIE, 2015. http://dx.doi.org/10.1117/12.2084031.
Texte intégralGambin, Vincent, Benjamin Poust, Dino Ferizovic, Monte Watanabe, Gary Mandrusiak, David Lin et Thomas Dusseault. « Impingement cooled embedded diamond multiphysics co-design ». Dans 2016 15th IEEE Intersociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems (ITherm). IEEE, 2016. http://dx.doi.org/10.1109/itherm.2016.7517729.
Texte intégralFallgren, A. J., B. T. Rearden, John Kennedy, Nathan George, Dov Rhodes, Adam Oler, John Pevey et Josh Payne. « Multiphysics Suite for Design of Small Reactors ». Dans Nuclear and Emerging Technologies for Space (NETS-2022). Illinois : American Nuclear Society, 2022. http://dx.doi.org/10.13182/nets22-38734.
Texte intégralRapports d'organisations sur le sujet "Multiphysics design"
Goldring, Nicholas, David Bruhwiler, Boaz Nash, Zhigang Wu, Robert Nagler, Jason Carter, Jason Lerch et al. Multiphysics Design and Optimization of Complex Vacuum Chambers. Office of Scientific and Technical Information (OSTI), juin 2020. http://dx.doi.org/10.2172/1635367.
Texte intégralAde, Brian, Briana Hiscox, Emilian Popov, Richard Archibald, Nate See et Vladimir Sobes. Artificial Intelligence for Multiphysics Nuclear Design Optimization with Additive Manufacturing. Office of Scientific and Technical Information (OSTI), septembre 2021. http://dx.doi.org/10.2172/1866700.
Texte intégralRobinson, Dean. IMPACT : Design of Integrated Multiphysics Producible Additive Components for Turbomachinery. Office of Scientific and Technical Information (OSTI), mai 2024. http://dx.doi.org/10.2172/2373076.
Texte intégralParra-Alvarez, Milo, Malik Hassanaly, Mohammad Rahimi et Hariswaran Sitaraman. Multiphysics Computational Fluid Dynamics for Design and Scale-Up of CO2/Syngas Bioreactors. Office of Scientific and Technical Information (OSTI), décembre 2023. http://dx.doi.org/10.2172/2274814.
Texte intégralLee, Changho, Yeon Jung, Zhaopeng Zhong, Javier Ortensi, Vincent Laboure et Yaqi Wang. Assessment of the Griffin Reactor Multiphysics Application Using the Empire Micro Reactor Design Concept. Office of Scientific and Technical Information (OSTI), juillet 2020. http://dx.doi.org/10.2172/1648116.
Texte intégralLee, Changho, Yeon Jung, Zhaopeng Zhong, Javier Ortensi, Vincent Laboure et Yaqi Wang. Assessment of the Griffin Reactor Multiphysics Application Using the Empire Micro Reactor Design Concept. Office of Scientific and Technical Information (OSTI), juillet 2020. http://dx.doi.org/10.2172/1833008.
Texte intégralDunn, Martin L. Topology Optimization for the Design of 3-D Microelectromechanical Systems (MEMS) Undergoing Coupled Multiphysics Phenomena. Fort Belvoir, VA : Defense Technical Information Center, novembre 2004. http://dx.doi.org/10.21236/ada438436.
Texte intégralBecker, R., M. McElfresh, C. Lee, R. Balhorn et D. White. Multiscale Modeling of Nano-scale Phenomena : Towards a Multiphysics Simulation Capability for Design and Optimization of Sensor Systems. Office of Scientific and Technical Information (OSTI), décembre 2003. http://dx.doi.org/10.2172/15013766.
Texte intégralApostolatos, A., R. Rossi et C. Soriano. D7.2 Finalization of "deterministic" verification and validation tests. Scipedia, 2021. http://dx.doi.org/10.23967/exaqute.2021.2.006.
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