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3 articles for “Shoreline Change”
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Seasonal Dynamics of Coastal Landscapes: A Critical Review Using Remote Sensing and GIS
Abstract: Coastal landscapes are among the most dynamic environments on Earth, undergoing continuous transformation due to both natural processes and anthropogenic activities. In India, particularly along the southern coastal regions of Andhra Pradesh, Tamil Nadu, and Kerala, shoreline morphology and sediment transport patterns are significantly influenced by seasonal monsoons, cyclones, storm surges, waves, tides, and changing river discharges. These factors contribute to varying rates of coastal erosion, accretion, inundation, and land- …
Published in Journal of Remote Sensing & GIS · Vol. 17, Issue 2, 2026 Read article
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Rising Temperatures and Surface Mass Loss in Greenland: Implications for Regional Glacier Dynamics and Global Sea Level Rise
Abstract: In Greenland, the ice sheet serves as one of the strongest indicators of global climate change, with consistently rising temperatures driving it toward an even more negative mass balance. Over the last two decades, warmer conditions have exacerbated surface melting, darkened ice, and resulted in feedback stimulating further loss. This study assesses how those temperature trends—particularly during summer peak months—have impacted the stability of Greenland's ice, and then, more importantly, …
Published in Journal of Offshore Structure and Technology · Vol. 12, Issue 3, 2025 · pp. 15–22 Read article
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Mangalore, Karnataka Fisheries Coast
Abstract: Mangalore, a major port city on India's southwest coast, is known as the Fisheries Coast of Karnataka due to its thriving marine business and historic fishing legacy. Mangalore's history, economy, and culture are tied to the fishing industry, making it a regional hub for fish landing, processing, and export. The city's Arabian Sea shoreline supports a large fisherfolk community and vital infrastructure such the Mangalore Fishing Harbour, ice plants, cold …
Published in International Journal of Marine Life · Vol. 2, Issue 2, 2025 Read article