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Journal ArticleDOI

Earthquake safety in India: achievements, challenges and opportunities

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TLDR
The Indian subcontinent has suffered some of the greatest earthquakes in the world as mentioned in this paper, and this earthquake was the first instance of an earthquake causing collapses of modern multi-storey buildings in India and triggered unprecedented awareness amongst professionals, academics and the general public.
Abstract
The Indian subcontinent has suffered some of the greatest earthquakes in the world. The earthquakes of the late nineteenth and early twentieth centuries triggered a number of early advances in science and engineering related to earthquakes that are discussed here. These include the development of early codes and earthquake-resistant housing after the 1935 Quetta earthquake in Baluchistan, and strengthening techniques implemented after the 1941 Andaman Islands earthquake, discovered by the author in remote islands of India. Activities in the late 1950s to institutionalize earthquake engineering in the country are also discussed. Despite these early developments towards seismic safety, moderate earthquakes in India continue to cause thousands of deaths, indicating the poor seismic resilience of the built environment. The Bhuj earthquake of 2001 highlighted a striking disregard for structural design principles and quality of construction. This earthquake was the first instance of an earthquake causing collapses of modern multi-storey buildings in India, and it triggered unprecedented awareness amongst professionals, academics and the general public. The earthquake led to the further development of the National Information Centre of Earthquake Engineering and the establishment of a comprehensive 4-year National Programme on Earthquake Engineering Education that was carried out by the seven Indian Institutes of Technology and the Indian Institute of Science. Earthquake engineering is a highly context-specific discipline and there are many engineering problems where appropriate solutions need to be found locally. Confined masonry construction is one such building typology that the author has been championing for the subcontinent. Development of the student hostels and staff and faculty housing on the new 400-acre campus of the Indian Institute of Technology Gandhinagar has provided an opportunity to adopt this construction typology on a large scale, and is addressed in the monograph. The vulnerability of the building stock in India is also evident from the occasional news reports of collapses of buildings under construction or during rains (without any earthquake shaking). Given India’s aspirations to be counted as one of the world’s prosperous countries, there is a great urgency to address the safety of our built environment. There is a need: to create a more professional environment for safe construction, including a system for code enforcement and building inspection; for competence-based licensing of civil and structural engineers; for training and education of all stakeholders in the construction chain; to build a research and development culture for seismic safety; to encourage champions of seismic safety; to effectively use windows of opportunity provided by damaging earthquakes; to focus on new construction as opposed to retrofitting existing buildings; and to frame the problem in the broader context of overall building safety rather than the specific context of earthquakes. Sustained long-term efforts are required to address this multi-faceted complex problem of great importance to the future development of India. While the context of this paper is India, many of the observations may be valid and useful for other earthquake-prone countries.

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Citations
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Analysis of bridge failures in India from 1977 to 2017

TL;DR: The data related to the failure of bridges that occurred during the period 1977-2017 in India have been collected from various sources, including print and electronic media as mentioned in this paper, and the data have been clas...
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Damage study and seismic vulnerability assessment of existing masonry buildings in Northeast India

TL;DR: In this article, the authors evaluated the vulnerability of existing low-rise URM buildings in Agartala, the capital city of Tripura, which in a broader sense represents the buildings of the entire Northeast region of India, through fragility analysis.
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Time windows of opportunities to fight earthquake under-insurance: evidence from Google Trends

TL;DR: In this paper, the authors explore potential triggers and dynamic patterns of online interest in earthquake insurance at daily time-scale through the lens of Big Data and propose a methodology to move from a top-down conceptual approach to a bottom-up/data-enabled one.
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Probabilistic seismic risk assessment of India

TL;DR: The risk model and the underlying datasets are intended to be used as tools to quantitatively assess the earthquake risk across India and also compare with other countries to develop risk-informed building design guidelines, for more careful land-use planning, to optimize earthquake insurance pricing, and to enhance general earthquake risk awareness and preparedness.
Journal ArticleDOI

Living with earthquake hazards in South and South East Asia

TL;DR: In this article, a large number of geological studies have shown that most of the Asian regions are prone to earthquake risks, and this is particularly significant in SE Asia, and previous studies have suggested that scientists and administrative authorities should work together to map the actual vulnerabilities on ground and simultaneously educate people about the probable causes of earthquakes and how to minimize the destruction.
References
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Journal ArticleDOI

Himalayan Seismic Hazard

TL;DR: Bilham et al. as discussed by the authors analyzed historic earthquakes and concluded that several major earthquakes are overdue in this region but that recent low activity has focused attention away from the Himalayan arc, and predicted that just one of the possibly overdue Himalayan earthquakes may lead to 200,000 predictable fatalities.
Journal ArticleDOI

Historical and modern seismicity of Pakistan, Afghanistan, northwestern India, and southeastern Iran

TL;DR: In this paper, both historical and modern data are compiled and critically reviewed to document the seismicity of Pakistan, Afghanistan, northwestern India, southeastern Iran, and neighboring areas, and the usefulness of the documented seismicity to locate the sites of future large earthquakes in this part of the world is limited.
BookDOI

The Making of India

K.S. Valdiya
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