Although alkoxymethylsilanes serve as useful building blocks, various efforts to synthesize them by substitution reaction with an alkoxide ion at the carbon adjacent to the silicon failed. To solve this synthetic problem a new route which is very simple to perform was developed. Bromination of (meth
Generalized receptance-based method for accurate and efficient modal synthesis
โ Scribed by R. M. Lin
- Publisher
- John Wiley and Sons
- Year
- 1999
- Tongue
- English
- Weight
- 184 KB
- Volume
- 44
- Category
- Article
- ISSN
- 0029-5981
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โฆ Synopsis
Modal synthesis plays an important role in efficient dynamic analyses of large structural assemblies. However, the numerical accuracy and the computational efficiency which existing modal synthesis methods have achieved to date are not quite satisfactory. This paper presents a new generalized receptance-based modal synthesis method which is numerically very accurate and computationally very efficient. The method employs receptance data computed at just few frequency values to formulate a derived equivalent eigensystem from which required eigenvalues and eigenvectors of interest can be solved. It provides mathematical generalization for existing mode-based modal synthesis methods since modal data are essentially those receptance data at resonant frequencies. A normalization procedure is also presented which can be used to mass normalize computed mode shapes which are often required in practice. Compensation for the contribution of higher uncomputed modes to receptance data at lower frequency of interest is made to improve analysis accuracy by using lower calculated modes and known system matrices. Numerical results are presented to demonstrate the effectiveness of the proposed method.
๐ SIMILAR VOLUMES
We recently reported an efficient and general method for the synthesis of reduced polypropionates with a single heterofunction [1] through the application of Zr-catalyzed asymmetric carboalumination. [2, 3] In view of the large number of complex natural products that are of medicinal and biological