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Amalava Bhattacharyya

Dados Biográficos

ID5601601
NOMEAmalava Bhattacharyya
PRENOMESAmalava
SOBRENOMEBhattacharyya
ASSINATURABHATTACHARYYA A
AFILIAÇÕESBirbal Sahni Institute of Palaeobotany, 53 University Road, Lucknow 226007, India
ORCID0000-0003-1031-7960
VERIFICADOSim
TOTAL DE OBRAS11
TOTAL DE CITAÇÕES1
TOTAL COMO AUTOR11
TOTAL COMO EDITOR0
PRIMEIRO ANO DE PUBLICAÇÃO1997
ANO MAIS RECENTE DE PUBLICAÇÃO2022
ÍNDICE H1
  • Reconstruction of pre-monsoon relative humidity since 1800 C.E. based on tree-ring data of Pinus roxburghii Sarg. (chir–pine) from Pithoragarh, Western Himalaya

    Open Access•Rupesh Dhyani, Mayank Shekhar et al.•ARTICLE•Quaternary International•2022

  • Age dependent growth response of Cedrus deodara to climate change in temperate zone of Western Himalaya

    Open Access•Rupesh Dhyani, Rajesh Joshi et al.•ARTICLE•Trees Forests and People•2022

    The recent warming in the mountain regions affect forest productivity in terms of tree growth, especially in the Himalayan region. However, the effects of climate change on the response of radial growth of different age-class trees in the Himalayan region remains unclear. The sensitivity of different age-class trees can differ from younger to old age-class tree growth which create uncertainty in tree-ring calibration against the climatic paramete…

  • Late Pleistocene - Holocene vegetation and climate from the palaeolake sediments, Rukti valley, Kinnaur, Himachal Himalaya

    Open Access•Parminder S Ranhotra, Jyoti Sharma et al.•ARTICLE•Quaternary International•2018

  • Tree-ring based reconstruction of winter drought since 1767 CE from Uttarkashi, Western Himalaya

    Open Access•Mayank Shekhar, Ashish K Pal et al.•ARTICLE•Quaternary International•2018

  • Analysis of the late Holocene climate vis-a-vis vegetation dynamics along the southwest coast of India

    Sandhya Misra, Amalava Bhattacharyya•ARTICLE•Quaternary International•2014

  • Anomalous distribution of Cedrus deodara and Pinus roxburghii in Parbati valley, Kullu, Western Himalaya

    Santosh K Shah, Mayank Shekhar et al.•ARTICLE•Quaternary International•2014

  • Reconstructing discharge of Beas river basin, Kullu valley, western Himalaya, based on tree-ring data

    Open Access•Santosh K Shah, Amalava Bhattacharyya et al.•ARTICLE•Quaternary International•2013

  • Potential for Developing Fire Histories in Chir Pine (Pinus roxburghii) Forests in the Himalayan Foothills

    Peter M Brown, Amalava Bhattacharyya et al.•ARTICLE•Tree-Ring Research•2011

    We report on the potential for developing long-term fire histories from chir pine (Pinus roxburghii Sarg.) forests in the Western Himalayan foothills based on a preliminary study from a stand located in the state of Uttarakhand in northern India. Rings from trees collected to develop a master skeleton plot chronology were generally complacent with false rings present during most years, but were crossdatable with only minor difficulty. The oldest …

  • Atmospheric 14 C Variability Recorded in Tree Rings from Peninsular India

    Open Access•Supriyo Chakraborty, Koushik Dutta et al.•ARTICLE•Radiocarbon•2008•Citada por: 1•Referências: 32

    Radiocarbon analysis in annual rings of a teak tree ( Tectona grandis ) is reported in comparison with previously published results. Samples (disks) were collected from Hoshangabad (22°30′N, 78°E), Madhya Pradesh, in central India. The previously published sample was collected from Thane (19°12′N, 73°E), Maharashtra, near the west coast of India (Chakraborty et al. 1994). Two short Δ 14 C time series were reconstructed with these tree samples to …

  • Spring-temperature variations in western Himalaya, India, as reconstructed from tree-rings

    Open Access•Ram R Yadav, Won-Kyu Park et al.•ARTICLE•The Holocene•1999•Referências: 2

    The Himalayan region plays a very important role in influencing the regional and extra-regional circulation system. Long-term instrumental or proxy climate records for this region are scant, but are essential for a global perspective of climate variability. A 598-year (AD 1390-1987) reconstruction of spring (March-May) temperature has been derived for the first time for the western Himalayan region, India using a well replicated ring-width chrono…

  • Dendroclimatic Reconstruction of April–May Temperature Fluctuations in the Western Himalaya of India Since A.D. 1698

    Open Access•Ram R Yadav, Won-Kyu Park et al.•ARTICLE•Quaternary Research•1997

    Ring-width chronologies of Himalayan cedar ( Cedrus deodara (D. Don.) G. Don.), Himalayan pine ( Pinus wallichiana A. B. Jackson), and Himalayan spruce ( Picea smithiana (Wall.) Boiss.) from the western Himalayan region, India, have been used to reconstruct mean April–May temperature back to A. D. 1698. The reconstruction correlates significantly with the average April–May instrumental temperature record ( r = +0.62, 1876–1988) and is characteriz…

  • Atmospheric 14 C Variability Recorded in Tree Rings from Peninsular India

    Open Access•Supriyo Chakraborty, Koushik Dutta et al.•ARTICLE•Radiocarbon•2008•Citada por: 1•Referências: 32

    Radiocarbon analysis in annual rings of a teak tree ( Tectona grandis ) is reported in comparison with previously published results. Samples (disks) were collected from Hoshangabad (22°30′N, 78°E), Madhya Pradesh, in central India. The previously published sample was collected from Thane (19°12′N, 73°E), Maharashtra, near the west coast of India (Chakraborty et al. 1994). Two short Δ 14 C time series were reconstructed with these tree samples to …

  • Dendroclimatic Reconstruction of April–May Temperature Fluctuations in the Western Himalaya of India Since A.D. 1698

    Open Access•Ram R Yadav, Won-Kyu Park et al.•ARTICLE•Quaternary Research•1997

    Ring-width chronologies of Himalayan cedar ( Cedrus deodara (D. Don.) G. Don.), Himalayan pine ( Pinus wallichiana A. B. Jackson), and Himalayan spruce ( Picea smithiana (Wall.) Boiss.) from the western Himalayan region, India, have been used to reconstruct mean April–May temperature back to A. D. 1698. The reconstruction correlates significantly with the average April–May instrumental temperature record ( r = +0.62, 1876–1988) and is characteriz…

  • Spring-temperature variations in western Himalaya, India, as reconstructed from tree-rings

    Open Access•Ram R Yadav, Won-Kyu Park et al.•ARTICLE•The Holocene•1999•Referências: 2

    The Himalayan region plays a very important role in influencing the regional and extra-regional circulation system. Long-term instrumental or proxy climate records for this region are scant, but are essential for a global perspective of climate variability. A 598-year (AD 1390-1987) reconstruction of spring (March-May) temperature has been derived for the first time for the western Himalayan region, India using a well replicated ring-width chrono…

  • Atmospheric 14 C Variability Recorded in Tree Rings from Peninsular India

    Open Access•Supriyo Chakraborty, Koushik Dutta et al.•ARTICLE•Radiocarbon•2008•Citada por: 1•Referências: 32

    Radiocarbon analysis in annual rings of a teak tree ( Tectona grandis ) is reported in comparison with previously published results. Samples (disks) were collected from Hoshangabad (22°30′N, 78°E), Madhya Pradesh, in central India. The previously published sample was collected from Thane (19°12′N, 73°E), Maharashtra, near the west coast of India (Chakraborty et al. 1994). Two short Δ 14 C time series were reconstructed with these tree samples to …

  • Potential for Developing Fire Histories in Chir Pine (Pinus roxburghii) Forests in the Himalayan Foothills

    Peter M Brown, Amalava Bhattacharyya et al.•ARTICLE•Tree-Ring Research•2011

    We report on the potential for developing long-term fire histories from chir pine (Pinus roxburghii Sarg.) forests in the Western Himalayan foothills based on a preliminary study from a stand located in the state of Uttarakhand in northern India. Rings from trees collected to develop a master skeleton plot chronology were generally complacent with false rings present during most years, but were crossdatable with only minor difficulty. The oldest …

  • Reconstructing discharge of Beas river basin, Kullu valley, western Himalaya, based on tree-ring data

    Open Access•Santosh K Shah, Amalava Bhattacharyya et al.•ARTICLE•Quaternary International•2013

  • Analysis of the late Holocene climate vis-a-vis vegetation dynamics along the southwest coast of India

    Sandhya Misra, Amalava Bhattacharyya•ARTICLE•Quaternary International•2014

  • Anomalous distribution of Cedrus deodara and Pinus roxburghii in Parbati valley, Kullu, Western Himalaya

    Santosh K Shah, Mayank Shekhar et al.•ARTICLE•Quaternary International•2014

  • Late Pleistocene - Holocene vegetation and climate from the palaeolake sediments, Rukti valley, Kinnaur, Himachal Himalaya

    Open Access•Parminder S Ranhotra, Jyoti Sharma et al.•ARTICLE•Quaternary International•2018

  • Tree-ring based reconstruction of winter drought since 1767 CE from Uttarkashi, Western Himalaya

    Open Access•Mayank Shekhar, Ashish K Pal et al.•ARTICLE•Quaternary International•2018

  • Reconstruction of pre-monsoon relative humidity since 1800 C.E. based on tree-ring data of Pinus roxburghii Sarg. (chir–pine) from Pithoragarh, Western Himalaya

    Open Access•Rupesh Dhyani, Mayank Shekhar et al.•ARTICLE•Quaternary International•2022

  • Age dependent growth response of Cedrus deodara to climate change in temperate zone of Western Himalaya

    Open Access•Rupesh Dhyani, Rajesh Joshi et al.•ARTICLE•Trees Forests and People•2022

    The recent warming in the mountain regions affect forest productivity in terms of tree growth, especially in the Himalayan region. However, the effects of climate change on the response of radial growth of different age-class trees in the Himalayan region remains unclear. The sensitivity of different age-class trees can differ from younger to old age-class tree growth which create uncertainty in tree-ring calibration against the climatic paramete…

Geography (11 obras) · Geology (8 obras) · Tree-ring climate responses (8 obras) · Physical geography (7 obras) · Climatology (6 obras) · Dendrochronology (6 obras) · Plant Water Relations and Carbon Dynamics (6 obras) · Climate change (5 obras) · Forestry (5 obras) · Geology and Paleoclimatology Research (5 obras)

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