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  • Climate impacts  (1)
  • deuteriohydrate  (1)
  • 1
    Publication Date: 2021-05-19
    Description: We explore the path between Indian Ocean observations and monsoon dynamics, the societal impacts of interannual climate variations and applications of resource predictions in southeastern Africa, the Mascarene Islands, India, southeast Asia and Australia. Recent progress in understanding ocean dynamics associated with SST variation is reviewed. The global El Niño-Southern Oscillation (ENSO) affects monsoon winds and ocean temperatures in a manner consistent with, but lagging, the Pacific. The ENSO influence often propagates across the tropical Indian Ocean from Africa to Indonesia, modulating the tropospheric moisture flux over the Indian Ocean and rainfall in surrounding continents. An east-west dipole in SST anomalies and monsoon rainfall is identified and related to the atmospheric Walker Cell. It appears partially in response to global ENSO conditions during build-up phase (July-Nov.). The eastern ‘node’ is confined near Sumatra, whilst the western centre of action extends from the Maldives to the Seychelles Islands. Correlations indicate that the strength of ENSO in the Indian Ocean region has decreased in recent decades, while large scale, spatial and temporal patterns suggest independent variations of the Indian Ocean. Apart from annual variations of the monsoon and year-to-year fluctuations of climate, short-term weather events have a dramatic impact on countries around the Indian Ocean. Recent floods in southern (2000) and eastern (1997- 98) Africa and southeast Asia (1998) are related to SST patterns and localised atmospheric responses. Predictions of the future availability of food and water resources, and short-term forecasts of storm events are some of the decision tools that can be offered through information from ocean data. The close relationship between regional SST anomalies and impacts on the food and water resources of surrounding countries provides a strong motivation for sustained observations in the Indian Ocean. A specific design plan for the observational network is proposed, linking eastern and western efforts in an efficient manner.
    Keywords: Indian Ocean ; Climate impacts ; SST patterns ; ENSO responses
    Repository Name: AquaDocs
    Format: 286391 bytes
    Format: application/pdf
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    International journal of thermophysics 10 (1989), S. 903-909 
    ISSN: 1572-9567
    Keywords: absorbance ; chemical potential ; deuteriohydrate ; heavy water ; lattice occupancy ; melting points ; tetrahydrofuran hydrate
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract Melting points for the tetrahydrofuran/D2O hydrate in equilibrium with the airsaturated liquid at atmospheric pressure are reported. The melting points were measured by monitoring the absorbance of the solution. Overall, the meltingpoint phase boundary curve is about 2.5 K greater than the corresponding curve for the H2O hydrate, with a congruent melting temperature of 281±0.5 K at a D2O mole fraction of 0.936. The phase boundary is predicted to within 5% if the assumption is made that the THF occupancy in the D2O and H2O hydrates is the same. We measure an occupancy of 99.9%. The chemical potential of the empty lattice in D2O is estimated to be 5% greater than in H2O.
    Type of Medium: Electronic Resource
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