Airborne trajectory analysis derivation for use in accident reconstruction.

Author(s)
Aronberg, R.
Year
Abstract

This paper presents a unique derivation of airborne trajectory analysis equations from the classical physics equations of uniformly accelerated motion. These trajectory analysis with realistic real world values. A current widely utilized equation of human trajectory analysis ignores an important cosine function in the calculation of horizontal launch velocity. It is shown that ignoring this cosine function can yield significant error in calculations. A graph is derived from published data on freefall sky diving. This graph can be referenced to adjust calculated velocities for the effects of air drag. It is shown that prior published data which has been widely utilized within the accident reconstruction profession, is inaccurate A simple method for the application of the derived equation and data to real world problems is outlined. The method illustrates that even when theangle of launch and first point of contact with the ground are unknown, good results for launch velocity can be obtained. (A)

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Publication

Library number
C 2344 (In: C 2334) /80 / IRRD 862186
Source

In: Accident reconstruction : human, vehicle and environmental factors : papers presented at the International Congress and Exposition, Detroit, Michigan, February 26 - March 2, 1990, SAE Paper 900367, p. 135-142, 23 ref.

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This publication is one of our other publications, and part of our extensive collection of road safety literature, that also includes the SWOV publications.