The discontinuous deformation numerical analysis method in geotechnical engineering 巖土工程非連續(xù)變形的數(shù)值分析方法
Status of infinite line contacts elastohydrodynamic lubrication study by numerical analysis methods 數(shù)值法研究無限長線接觸彈流問題發(fā)展?fàn)顩r
This method was based on the balance of node , and use sub - structure as a numerical analysis method 本文對形態(tài)分析的三種常用方法的原理進(jìn)行了說明及公式推導(dǎo)。
Now numerical analysis method has been one of the most important - tools in solving problems in scientific research field 在科學(xué)研究領(lǐng)域里,數(shù)值分析方法已經(jīng)成為解決問題的主要工具之一。
The non - linear numerical analysis method obtained lays a foundation for the further researching of the mechanical behavior of articaular cartilage 該非線性問題的數(shù)值分析方法,為關(guān)節(jié)軟骨力學(xué)行為的深入研究奠定了進(jìn)一步的基礎(chǔ)。
The stress - deformation behavior of diaphragm walls of concrete face rockfill dam built on thick alluvium deposit was analyzed using the numerical analysis method 摘要采用數(shù)值分析方法對深覆蓋層上混凝土面板堆石壩的防滲墻應(yīng)力變形性狀進(jìn)行了研究。
Finite element method is a popular numerical analysis method , which is widely applied in many industrial fields such as aviation , architecture , mechanics , electronics and chemistry 它廣泛應(yīng)用于航空、航天、土木、機(jī)械、石油、化工、電子等工業(yè)部門,已成為結(jié)構(gòu)設(shè)計與分析優(yōu)化的標(biāo)準(zhǔn)方法。
A numerical analysis method is introduced to guide the low loss design for the inverter system , according which lead to a satisfied experiment results for a 3kw prototype circuit 同時對該方案進(jìn)行了損耗分析,提出了系統(tǒng)的損耗最小化設(shè)計方案,按照提出的控制和優(yōu)化方案設(shè)計了3kw系統(tǒng),給出了仿真和實(shí)驗(yàn)結(jié)果。
Finite element method is a popular numerical analysis method , which is widely applied in many industrial fields such as aviation , architecture , mechanics , electronics and chemistry 有限元方法是一種求解連續(xù)介質(zhì)力學(xué)問題的通用數(shù)值方法。它廣泛應(yīng)用于航空航天、船舶、土木水利、機(jī)械、石油、電子等工業(yè)領(lǐng)域。
For these disciplines there are different requirements and complex couplings . integration and trade off using efficient numerical analysis methods and advanced optimization algorithms are needed to obtain a high quality design 各個學(xué)科的要求既相互矛盾又相互聯(lián)系,需要使用有效的數(shù)值分析方法和先進(jìn)的優(yōu)化算法進(jìn)行綜合與折衷。