PHASE-LAG

作品数:7被引量:8H指数:1
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相关领域:理学天文地球更多>>
相关期刊:《Applied Mathematics and Mechanics(English Edition)》《Journal of Computational Mathematics》《China Ocean Engineering》《Numerical Mathematics(Theory,Methods and Applications)》更多>>
相关基金:国家自然科学基金更多>>
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Rational design of thermoelastic damping in microresonators with phase-lagging heat conduction law
《Applied Mathematics and Mechanics(English Edition)》2022年第11期1675-1690,共16页Yu FU Li LI Hongfang CHEN Xuelin WANG Ling LING Yujin HU 
supported by the National Natural Science Foundation of China(No.52175095);the Young Top-Notch Talent Cultivation Program of Hubei Province of China。
The design of thermoelastic damping(TED)affected by the phase-lagging non-Fourier heat conduction effects becomes significant but challenging for enlarging the quality factor of widely-used microresonators operating i...
关键词:MICRORESONATOR non-Fourier damping factor topology optimization 
Magnetophotothermal interaction in a rotating solid cylinder of semiconductor silicone material with time dependent heat flow被引量:1
《Applied Mathematics and Mechanics(English Edition)》2021年第1期39-52,共14页A.E.ABOUELREGAL 
A mathematical model linking thermoelasticity to photothermal experiments is proposed with the consideration of the photothermal effect.The system equations for coupled plasma,heat conduction with phase-lags(PLs),and ...
关键词:PHOTOTHERMAL phase-lag(PL) solid cylinder ROTATION semiconductor carrier concentration 
Mobile bed thickness in skewed asymmetric oscillatory sheet flows被引量:7
《Acta Mechanica Sinica》2018年第2期257-265,共9页Xin Chen Yong Li Fujun Wang 
supported by the National Natural Science Foundation of China (Grants 51609244, 11472156, and 51139007);the National Science-Technology Support Plan of China (Grant 2015BAD20B01)
A new instantaneous mobile bed thickness model is presented for sediment transport in skewed asymmetric oscillatory sheet flows. The proposed model includes a basic bed load part and a suspended load part related to t...
关键词:Mobile bed thickness PHASE-LAG Sediment transport Sheet flow Skewed asymmetric oscillatory flow 
Predicting Net Cross-Shore Total Load Transport: A Phase-Averaging, Quasi-Steady Approach Incorporating Undertow Contribution
《China Ocean Engineering》2016年第5期703-717,共15页WANG Yu-hai 
supported by the National Natural Science Foundation of China(Grant No.51179211)
Wave shapes that induce velocity skewness and acceleration asymmetry are usually responsible for onshore sediment transport, whereas undertow and bottom slope effect normally contribute to offshore sediment transport....
关键词:cross-shore net total load transport PHASE-LAG phase-averaged UNDERTOW 
HIGH-ACCURACY EXPLICIT TWO-STEP METHODS WITH MINIMAL PHASE-LAG FOR y″=f(t,y)
《Annals of Differential Equations》2005年第3期454-459,共6页Xiang Kaili 
In this paper, two families of high accuracy explicit two-step methods with minimal phase-lag are developed for the numerical integration of special secondorder periodic initial-value problems. In comparison with some...
关键词:second order periodic initial-value problems PHASE-LAG local truncation error 
EFFICIENT SIXTH ORDER P-STABLE METHODS WITH MINIMAL LOCAL TRUNCATION ERROR FOR y"=f(x,y)
《Journal of Computational Mathematics》2002年第2期175-184,共10页Kai-li Xiang R.M.Thomas 
State Key Laboratory of Oil/Gas Reservoir Geology and Exploitation (PLN0115).
A family of symmetric (hybrid) two step sixth P-stable methods for the accurate numerical integration of second order periodic initial value problems have been considered in this paper. These methods, which require on...
关键词:second order periodic initial value problems P-stable PHASE-LAG local truncation error 
EXPLICIT TWO-STEP HIGH-ACCURACY METHODS FOR y" = f(x,y)
《Numerical Mathematics A Journal of Chinese Universities(English Series)》1994年第2期172-179,共8页向开理 张建军 
In this paper, an almost P-stable two-step sixth-order Hybrid method with phase-lag of order infinity and a class explicit eighth-order Obreckoff methods with phase-lag of order 10-24 are developed for the numerical i...
关键词:second order periodic initial-value problems interval of PERIODICITY minimal PHASE-LAG of order. 
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