A 30.5 cm diameter, detonation driven shock tube facility has been designed, constructed and tested. The design goals of the shock tube were to reproduce free field blast wave profiles on a laboratory scale using atmospheric gaseous detonation as the energy source. Numerical simulations were utilized to explore the gas dynamic evolution inside detonation driven shock tubes and to select the optimal design parameters for the shock tube.The Friedlander profile was used to evaluate the generated pressure profiles as an approximation of free field blast waves. It has been found that the detonation driver length should be kept below 20% of the total length of the tube in order to produce Friedlander waves. Additionally, it has been found that an...
Compressed gas-driven shock tubes are widely used for laboratory simulation of primary blasts by acc...
The blast parameters for the 6-foot diameter by 200-foot long, explosively driven shock tube are pre...
The objective of this research is to understand the blast propagation into the human skull and brain...
A 30.5 cm diameter, detonation driven shock tube facility has been designed, constructed and tested....
The prevalence of traumatic brain injury (TBI) in American soldiers exposed to a blast wave has crea...
The current state of blast resistant design methods is largely reliant on empirical observations of ...
AbstractShock tubes create simulated blast waves which can be directed and measured to study blast w...
In recent decades, improvised explosive devices have been one of the main causes of injuries due to ...
Bio-shock tubes (BSTs) can approximately simulate the typical blast waves produced by nuclear or che...
<div><p>The end plate mounted at the mouth of the shock tube is a versatile and effective implement ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 201...
The end plate mounted at the mouth of the shock tube is a versatile and effective implement to contr...
<p>The representative incident shock wave profiles generated using helium as a driver gas and Mylar ...
A detonation-driven shock tube firstly designed by H.-R. Yu, is considered as a useful facilities ca...
The prevalence of traumatic brain injury (TBI) in American soldiers exposed to a blast wave has crea...
Compressed gas-driven shock tubes are widely used for laboratory simulation of primary blasts by acc...
The blast parameters for the 6-foot diameter by 200-foot long, explosively driven shock tube are pre...
The objective of this research is to understand the blast propagation into the human skull and brain...
A 30.5 cm diameter, detonation driven shock tube facility has been designed, constructed and tested....
The prevalence of traumatic brain injury (TBI) in American soldiers exposed to a blast wave has crea...
The current state of blast resistant design methods is largely reliant on empirical observations of ...
AbstractShock tubes create simulated blast waves which can be directed and measured to study blast w...
In recent decades, improvised explosive devices have been one of the main causes of injuries due to ...
Bio-shock tubes (BSTs) can approximately simulate the typical blast waves produced by nuclear or che...
<div><p>The end plate mounted at the mouth of the shock tube is a versatile and effective implement ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 201...
The end plate mounted at the mouth of the shock tube is a versatile and effective implement to contr...
<p>The representative incident shock wave profiles generated using helium as a driver gas and Mylar ...
A detonation-driven shock tube firstly designed by H.-R. Yu, is considered as a useful facilities ca...
The prevalence of traumatic brain injury (TBI) in American soldiers exposed to a blast wave has crea...
Compressed gas-driven shock tubes are widely used for laboratory simulation of primary blasts by acc...
The blast parameters for the 6-foot diameter by 200-foot long, explosively driven shock tube are pre...
The objective of this research is to understand the blast propagation into the human skull and brain...