"NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains" - Information and Links:

NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains - Info and Reading Options

"NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains" and the language of the book is English.


“NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains” Metadata:

  • Title: ➤  NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains
  • Author: ➤  
  • Language: English

Edition Identifiers:

  • Internet Archive ID: NASA_NTRS_Archive_20130000578

AI-generated Review of “NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains”:


"NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains" Description:

The Internet Archive:

In the formulations of earlier Displacement Transfer Functions for structure shape predictions, the surface strain distributions, along a strain-sensing line, were represented with piecewise linear functions. To improve the shape-prediction accuracies, Improved Displacement Transfer Functions were formulated using piecewise nonlinear strain representations. Through discretization of an embedded beam (depth-wise cross section of a structure along a strain-sensing line) into multiple small domains, piecewise nonlinear functions were used to describe the surface strain distributions along the discretized embedded beam. Such piecewise approach enabled the piecewise integrations of the embedded beam curvature equations to yield slope and deflection equations in recursive forms. The resulting Improved Displacement Transfer Functions, written in summation forms, were expressed in terms of beam geometrical parameters and surface strains along the strain-sensing line. By feeding the surface strains into the Improved Displacement Transfer Functions, structural deflections could be calculated at multiple points for mapping out the overall structural deformed shapes for visual display. The shape-prediction accuracies of the Improved Displacement Transfer Functions were then examined in view of finite-element-calculated deflections using different tapered cantilever tubular beams. It was found that by using the piecewise nonlinear strain representations, the shape-prediction accuracies could be greatly improved, especially for highly-tapered cantilever tubular beams.

Read “NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains”:

Read “NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains” by choosing from the options below.

Available Downloads for “NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains”:

"NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains" is available for download from The Internet Archive in "texts" format, the size of the file-s is: 66.59 Mbs, and the file-s went public at Sat Nov 12 2016.

Legal and Safety Notes

Copyright Disclaimer and Liability Limitation:

A. Automated Content Display
The creation of this page is fully automated. All data, including text, images, and links, is displayed exactly as received from its original source, without any modification, alteration, or verification. We do not claim ownership of, nor assume any responsibility for, the accuracy or legality of this content.

B. Liability Disclaimer for External Content
The files provided below are solely the responsibility of their respective originators. We disclaim any and all liability, whether direct or indirect, for the content, accuracy, legality, or any other aspect of these files. By using this website, you acknowledge that we have no control over, nor endorse, the content hosted by external sources.

C. Inquiries and Disputes
For any inquiries, concerns, or issues related to the content displayed, including potential copyright claims, please contact the original source or provider of the files directly. We are not responsible for resolving any content-related disputes or claims of intellectual property infringement.

D. No Copyright Ownership
We do not claim ownership of any intellectual property contained in the files or data displayed on this website. All copyrights, trademarks, and other intellectual property rights remain the sole property of their respective owners. If you believe that content displayed on this website infringes upon your intellectual property rights, please contact the original content provider directly.

E. Fair Use Notice
Some content displayed on this website may fall under the "fair use" provisions of copyright law for purposes such as commentary, criticism, news reporting, research, or educational purposes. If you believe any content violates fair use guidelines, please reach out directly to the original source of the content for resolution.

Virus Scanning for Your Peace of Mind:

The files provided below have already been scanned for viruses by their original source. However, if you’d like to double-check before downloading, you can easily scan them yourself using the following steps:

How to scan a direct download link for viruses:

  • 1- Copy the direct link to the file you want to download (don’t open it yet).
  • (a free online tool) and paste the direct link into the provided field to start the scan.
  • 2- Visit VirusTotal (a free online tool) and paste the direct link into the provided field to start the scan.
  • 3- VirusTotal will scan the file using multiple antivirus vendors to detect any potential threats.
  • 4- Once the scan confirms the file is safe, you can proceed to download it with confidence and enjoy your content.

Available Downloads

  • Source: Internet Archive
  • Internet Archive Link: Archive.org page
  • All Files are Available: Yes
  • Number of Files: 12
  • Number of Available Files: 12
  • Added Date: 2016-11-12 02:51:33
  • PPI (Pixels Per Inch): 600
  • OCR: ABBYY FineReader 11.0

Available Files:

1- Text PDF

  • File origin: original
  • File Format: Text PDF
  • File Size: 0.00 Mbs
  • File Name: NASA_NTRS_Archive_20130000578.pdf
  • Direct Link: Click here

2- Metadata

  • File origin: original
  • File Format: Metadata
  • File Size: 0.00 Mbs
  • File Name: NASA_NTRS_Archive_20130000578_files.xml
  • Direct Link: Click here

3- Metadata

  • File origin: original
  • File Format: Metadata
  • File Size: 0.00 Mbs
  • File Name: NASA_NTRS_Archive_20130000578_meta.sqlite
  • Direct Link: Click here

4- Metadata

  • File origin: original
  • File Format: Metadata
  • File Size: 0.00 Mbs
  • File Name: NASA_NTRS_Archive_20130000578_meta.xml
  • Direct Link: Click here

5- JPEG Thumb

  • File origin: original
  • File Format: JPEG Thumb
  • File Size: 0.00 Mbs
  • File Name: __ia_thumb.jpg
  • Direct Link: Click here

6- Animated GIF

  • File origin: derivative
  • File Format: Animated GIF
  • File Size: 0.00 Mbs
  • File Name: NASA_NTRS_Archive_20130000578.gif
  • Direct Link: Click here

7- Abbyy GZ

  • File origin: derivative
  • File Format: Abbyy GZ
  • File Size: 0.00 Mbs
  • File Name: NASA_NTRS_Archive_20130000578_abbyy.gz
  • Direct Link: Click here

8- DjVuTXT

  • File origin: derivative
  • File Format: DjVuTXT
  • File Size: 0.00 Mbs
  • File Name: NASA_NTRS_Archive_20130000578_djvu.txt
  • Direct Link: Click here

9- Djvu XML

  • File origin: derivative
  • File Format: Djvu XML
  • File Size: 0.00 Mbs
  • File Name: NASA_NTRS_Archive_20130000578_djvu.xml
  • Direct Link: Click here

10- Single Page Processed JP2 ZIP

  • File origin: derivative
  • File Format: Single Page Processed JP2 ZIP
  • File Size: 0.06 Mbs
  • File Name: NASA_NTRS_Archive_20130000578_jp2.zip
  • Direct Link: Click here

11- Scandata

  • File origin: derivative
  • File Format: Scandata
  • File Size: 0.00 Mbs
  • File Name: NASA_NTRS_Archive_20130000578_scandata.xml
  • Direct Link: Click here

12- Archive BitTorrent

  • File origin: metadata
  • File Format: Archive BitTorrent
  • File Size: 0.00 Mbs
  • File Name: NASA_NTRS_Archive_20130000578_archive.torrent
  • Direct Link: Click here

Search for “NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains” downloads:

Visit our Downloads Search page to see if downloads are available.

Find “NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains” in Libraries Near You:

Read or borrow “NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains” from your local library.

Buy “NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains” online:

Shop for “NASA Technical Reports Server (NTRS) 20130000578: Improved Displacement Transfer Functions For Structure Deformed Shape Predictions Using Discretely Distributed Surface Strains” on popular online marketplaces.


Related Books