computational mechanic造句
例句與造句
- Chinese journal of computational mechanics
計算力學學報 - Basis of computational mechanics
計算力學基礎 - Basis of computational mechanics
計算力學基礎 - Sheldon is very active in computational mechanics , and other applied mathematics and engineering societies
曉東在計算力學,和其它應用數學和工程學學會十分活躍。 - Discontinuous deformation computational mechanics model and its application in stability analysis of rock slope
非連續變形計算力學模型在巖體邊坡穩定性分析中的應用 - It's difficult to find computational mechanic in a sentence. 用computational mechanic造句挺難的
- Nonlinear behavior of the constitutive simulation of meso - scopic computational mechanics for three - dimensional multi - directional braided composites
三維多向編織復合材料非線性本構行為的細觀數值模擬 - M . y . dong , g . c . zhou . “ the zigzag approach for optimum design of frame structures ” . proceedings of international conference on computational mechanics , tokyo , may 25 - 29 , 1986
董明耀,周廣春。框架結構優化設計的齒行法。哈爾濱建筑大學學報, 1987年第一期 - He is in the editorial board of computers & structures and the scientific advisory boards of world congress on computational mechanics and mit conference on computational fluid and solid mechanics
他是計算機與結構學術雜志的編輯委員,計算力學世界大會和麻省理工學院計算流體和固體力學的科學顧問委員。 - Computational mechanics is the basic of cae ( computer aided engineering ) , because of the rapid development of computer technology , it becomes one of the most important ways to resolve engineering problems
計算力學是cae ( computeraidedengineering )的基礎,隨著計算機的高速發展,它逐漸成為力學工作者解決工程問題最重要的手段之一。 - Jiang ke . a new method for solving solid structures . computational mechanics : proceedings of international symposium on computational mechanics ( iscm 2007 ) , july 30 - august 1 , 2007 , beijing , china . tsinghua university press & springer
該文提出了一個求解實體結構(或彈性體)的新方法,非常簡單。它是建立在“廣義虎克定律和疊加原理”基礎上的,不需要“彈性力學的偏微分方程”就可獲得三維實體的內力與位移。 - With the development of computer and computational mechanics , the numerical simulation of unsteady flow with moving boundary will be a fruitful research area . in this thesis , some significant progresses have been achieved in the numerical simulation of complex - cylinder flow field with moving boundary
隨著計算機、計算流體力學的發展,液壓元件內動邊界流場的仿真,將成為一個研究方向,本文在這方面作了一些初步的工作。 - Major courses : theoretical mechanics , mechanics of materials , structural mechanics , mechanics of elasticity , fluid mechanics , computational mechanics , vibration mechanics , experimental mechanics , fundamentals of electrical engineering & electric technology , computer technology and program design , main specialized courses in structural engineering , main specialized courses in engineering software
主要課程:理論力學、材料力學、結構力學、彈性力學、流體力學、計算力學、振動力學、實驗力學、電工與電子技術基礎、計算機基礎知識及程序設計、結構工程類專業課、計算機軟件類專業課。 - By means of structural optimization , not only the weight of structures can be reduced , but also the strength , stiffness , vibration behavior , buckling stability , and other performances of structures can be improved efficiently . structural optimization is an important research direction in the computational mechanics and modern design field
結構優化設計不僅可以降低結構重量和材料成本,而且能夠改進結構的強度、剛度、振動特性、屈曲穩定性等性能,是計算力學以及現代設計制造領域的重要研究方向。 - Secondly , two carbon fiber reinforced composite beams were fabricated , and their modal frequencies were measured by an experiment method . thirdly , delaminations were modeled by pairs of nodes with the same coordinates but different node numbers , while the modal frequencies of these beams with different delamination location and size were computed by an eas piezoelectric solid element . moreover , a novel method combining computational mechanics and neural network was demonstrated for composite health monitoring ; the first five flexure modal frequencies obtained by fem were modified by a primary revising approach and were used to train the neural network
本文較全面地評述了神經網絡的應用模型、改進算法等,編制了bp神經網絡程序:制備了纖維增強復合材料試件,并進行實驗模態分析;利用坐標相同、節點號不同的方法模擬脫層損傷,基于eas列式的壓電固體單元計算了不同脫層損傷情況下的頻率信息;針對基于實驗數據訓練神經網絡存在樣本不足的缺陷,本文提出了利用有限元方法對含有脫層損傷的復合材料試件進行數值模擬,以前五階彎曲模態頻率構建訓練樣本的新思路,并提出了一種初步的計算值修正方法,以此構建神經網絡的訓練樣本:將實驗模態分析的結果送入訓練好的神經網絡進行預測,實現了對復合材料梁的脫層損傷的定位和損傷程度的評估。 - Many problems of engineering mechanics that have large computation scale have n ' t been solved due to the bottleneck between the computation and memory of the von neumann computer . and there still have n ' t breakthrough in some new or pendent problems because of such reason as computation , etc . therefore , new theory and method of computational mechanics need to be developed to solve above problems
由于傳統計算機本身固有的計算與存儲之間的“瓶頸”障礙,許多工程力學問題因計算規模大而得不到求解,許多新問題和懸而未決的老問題,由于計算問題等原因還沒有突破性進展。
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