Showing 61 - 80 results of 2,713 for search '"dissipation"', query time: 0.07s Refine Results
  1. 61

    Screen-type energy dissipator for small hydraulic structures by Zhu, Junfei.

    Published 2009
    “…Energy dissipators are commonly used in high velocity hydraulic engineering devices to dissipate hydraulic energy. …”
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    Final Year Project (FYP)
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  4. 64

    Earthquake energy dissipation in a fracture mechanics framework by Kammer, David S., McLaskey, Gregory C., Abercrombie, Rachel E., Ampuero, Jean-Paul, Cattania, Camilla, Cocco, Massimo, Zilio, Luca Dal, Dresen, Georg, Gabriel, Alice-Agnes, Ke, Chun-Yu, Marone, Chris, Selvadurai, Paul Antony, Tinti, Elisa

    Published 2024
    “…The propagation speed and final area of the rupture, which determine an earthquake's potential impact, are directly related to the nature and quantity of the energy dissipation involved in the rupture process. Here, we present the challenges associated with defining and measuring the energy dissipation in laboratory and natural earthquakes across many scales. …”
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    Journal Article
  5. 65

    Dissipative solitons in passively mode-locked fiber lasers by Wu, Xuan

    Published 2012
    “…The solitons formed in the mode-locked fiber lasers are a type of dissipative solitons. The dynamics of dissipative solitons formed in a fiber laser is governed by the Ginzburg-Landau equation. …”
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    Thesis
  6. 66
  7. 67

    3D printed structures for impact energy dissipation by Muhammad Aidil Juhari

    Published 2017
    “…The function of a bicycle helmet is to dissipate energy upon collision. It achieves this with two main components: the helmet foam liner and the hard outer shell. …”
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    Final Year Project (FYP)
  8. 68

    Parity solitons in nonresonantly driven-dissipative condensate channels by Liew, Timothy Chi Hin, Shelykh, I. A., Sigurdsson, H.

    Published 2018
    “…We study analytically and numerically the condensation of a driven-dissipative exciton-polariton system using symmetric nonresonant pumping geometries. …”
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    Journal Article
  9. 69

    Quantum dissipative master equations : some exact results by Zhao, Yang, Chen, Guan Hua

    Published 2011
    “…With the help of quantum characteristic functions some exact results are found for two quantum dissipative master equations which contain dissipative Liouvillian operators of the Lindblad-type corresponding to two forms of dissipation mechanisms. …”
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    Journal Article
  10. 70

    Prediction of the energy dissipation rate in ductile crack propagation by Atkins, A. G., Chen, Zhong, Cotterell, Brian

    Published 2012
    “…In this paper, energy dissipation rate D vs. Δa curves in ductile fracture are predicted using a ‘conversion’ between loads, load-point displacements and crack lengths predicted by NLEFM and those found in real ELPL propagation. …”
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    Journal Article
  11. 71

    Piezocone dissipation testing of Singapore marine clay at Changi by Arulrajah, A., Bo, M.W., Nikraz, H., Hashim, Roslan

    Published 2004
    “…In-situ dissipation tests provide a means of evaluating the in-situ horizontal coefficient of consolidation and horizontal hydraulic conductivity of marine clays. …”
    Article
  12. 72

    Optimization of earthquake energy dissipation system by genetic algorithm by Hejazi, Farzad, Toloue, Iraj, Jaafar, Mohd Saleh, Noorzaie, Jamaloddin

    Published 2013
    “…However, the available literature on optimizing earthquake energy dissipation systems shows that most researchers have considered optimization processes using just one or a few parameters applicable only to simple SDOF or MDOF systems. …”
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    Article
  13. 73

    Heat Dissipation Enhancement Using Graphene Heat Sink by Wong, Jer Jian

    Published 2021
    “…Heat dissipation is one of the challenges that need to be tackled to enhance the performance of the electronic components. …”
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    Monograph
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    Influence of viscous dissipation on the boundary layer flow of hybrid nanofluid by Kho, Yap Bing, Rahimah, Jusoh, Mohd Zuki, Salleh, Zulkhibri, Ismail, Mohd Hisyam, Mohd Ariff

    Published 2021
    “…This study presents the mathematical modelling of two dimensional boundary layer flow of hybrid nanofluid where the impact of viscous dissipation has been accentuated in the energy equation. …”
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    Article
  16. 76

    Universal energy transport law for dissipative and diffusive phase transitions by Nadkarni, Neel, Daraio, Chiara, Abeyaratne, Rohan, Kochmann, Dennis M.

    Published 2016
    “…We present a scaling law for the energy and speed of transition waves in dissipative and diffusive media. By considering uniform discrete lattices and continuous solids, we show that—for arbitrary highly nonlinear many-body interactions and multistable on-site potentials—the kinetic energy per density transported by a planar transition wave front always exhibits linear scaling with wave speed and the ratio of energy difference to interface mobility between the two phases. …”
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    Article
  17. 77

    Poroelasticity is the dominant energy dissipation mechanism in cartilage at the nano-scale by Tavakoli Nia, Hadi, Han, L., Li, Y., Ortiz, Christine, Grodzinsky, Alan J.

    Published 2016
    “…We introduce the characteristic frequency f[subscript peak] at which the maximum energy dissipation occurs as an important parameter to characterize matrix time-dependent behavior. …”
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    Article
  18. 78

    A low-dissipation, pumpless, gravity-induced flow battery by Chen, Xinwei, Hopkins, Brandon James, Helal, Ahmed H., Fan, Frank Yongzhen, Smith, Kyle, Li, Zheng, Slocum Jr., Alexander H, McKinley, Gareth H, Carter, W. Craig, Chiang, Yet-Ming

    Published 2017
    “…Such designs are particularly appropriate for semi-solid electrodes comprising suspensions of networked conductors and/or electroactive particles, due to their low energy dissipation during flow. Accordingly, we demonstrate the GIFcell using nonaqueous lithium polysulfide solutions containing a nanoscale carbon network in a half-flow-cell configuration and achieve round trip energy efficiency as high as 91%.…”
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    Article
  19. 79

    Roughness-Induced Vehicle Energy Dissipation: Statistical Analysis and Scaling by Louhghalam, Arghavan, Tootkaboni, Mazdak, Ulm, Franz-Josef

    Published 2017
    “…The key parameters driving this dissipation mechanism are identified via dimensional analysis. …”
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    Article
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