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Behnam Mobaraki

Researcher at University of Castilla–La Mancha

Publications -  19
Citations -  183

Behnam Mobaraki is an academic researcher from University of Castilla–La Mancha. The author has contributed to research in topics: Computer science & Structural health monitoring. The author has an hindex of 3, co-authored 15 publications receiving 76 citations. Previous affiliations of Behnam Mobaraki include Islamic Azad University & Eastern Mediterranean University.

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Numerical study of the depth and cross-sectional shape of tunnel under surface explosion

TL;DR: In this article, the authors evaluated the dynamic responses of buried tunnel in depths of 3.5, 7, 10.5 and 14 m for surface detonation of 1000 kg TNT charge in a surrounding sandy soil.
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Development of a Low-Cost System for the Accurate Measurement of Structural Vibrations.

TL;DR: In this article, a Cost Hyper-Efficient Arduino Product (CHEAP) is developed to accurately measure structural accelerations, which is composed of five low-cost accelerometers that are connected to an Arduino microcontroller as their data acquisition system.
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Effect of the soil type on the dynamic response of a tunnel under surface detonation

TL;DR: The analysis of the dynamic response of a circular tunnel in three types of soil at different depths under surface detonation of a 250-kg TNT charge reveals that the tunnel peak particle velocity and the failure zone length are sensitive to the soil type and material properties as discussed by the authors.
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Application of Low-Cost Sensors for Building Monitoring: A Systematic Literature Review

TL;DR: A systematic review to analyze the state of the art in two aspects of structural and indoor parameters of buildings, in the SCOPUS database, to illustrate the potential uses of low-cost sensors in the building sector and addresses the scholars the preferred communication protocols and the most common microcontrollers for installation ofLow-cost monitoring systems.
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A Novel Data Acquisition System for Obtaining Thermal Parameters of Building Envelopes

TL;DR: In this paper , a hyper-efficient Arduino transmittance-meter was introduced to overcome limitations and determine the thermal parameters of building envelopes, which is based on synchronized measurements of different parameters.