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Arul Arulrajah

Researcher at Swinburne University of Technology

Publications -  410
Citations -  13387

Arul Arulrajah is an academic researcher from Swinburne University of Technology. The author has contributed to research in topics: Fly ash & Compressive strength. The author has an hindex of 53, co-authored 381 publications receiving 9215 citations. Previous affiliations of Arul Arulrajah include Curtin University.

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Investigation into the tempo-spatial distribution of recent fire hazards in China

TL;DR: In this article, the authors analyzed the place distribution of fire hazards and the primary causes of fire hazard in China during the period from 2000 to 2016 in daily life, transportation, storages, industrial production, etc.
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Extended water/cement ratio law for cement mortar containing recycled asphalt pavement

TL;DR: In this paper, the authors investigated the effect of the RAP replacement ratio, water to cement ratio (w/C) and curing time on strength development of RAP-CM.
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Landslide Event on 24 June in Sichuan Province, China: Preliminary Investigation and Analysis

TL;DR: Wang et al. as mentioned in this paper reported on a massive landslide event, in which 8 million cubic meters of earth and rocks slid down from the top of a mountain in the village of Xinmo, located in the county of Maoxian, in the province of Sichuan, China, on 24 June 2017.
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Improvement of flexural strength of concrete pavements using natural rubber latex

TL;DR: In this article, natural rubber latex (NRL) was used as a green additive to improve the flexural strength properties of concrete pavements and a mix design chart was proposed for NRL-concrete pavements, to facilitate the determination of effective mix ingredient based on operation and material cost to meet both economical and engineering criteria.
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Land Subsidence Control Zone and Policy for the Environmental Protection of Shanghai

TL;DR: From a strategic environmental assessment (SEA) point of view, the 2013-regulation attains a high total score, indicating that the control of groundwater withdrawal and recharge is effective and more effort should be made in the implementation of SEA in land subsidence control in the future.