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ROLE OF TIBET

  • The Tibetan Plateau is an enormous block of highland acting as a formidable barrier.
  • Due to its protruded height it receives 2-3°C more insolation than the neighboring areas.
  • The plateau affects the atmosphere in two ways: (a) as a mechanical barrier, and (b) as a high- level heat sources.
  • At the beginning of June the subtropical jet stream is completely withdrawn from India and occupies a position along 40° N (to the north of Tibetan Plateau).
  • The plateau accentuates the northward displacement of the jet stream. Hence the burst of monsoon in June is prompted by the Himalayas and not by the thermally induced low pressure cell over Tibet. (Tibetan plateau is responsible for south-west monsoons. But it is the STJ that facilitates sudden outburst of monsoons with its sudden northward migration)
  • In the middle of October the plateau proves to be the most important factor in causing the advance of the jet south of the Himalayas or bifurcating it into two parts.
  • The winter Tibetan Plateau cools rapidly and produces a high pressure cell. (Cyclonic condition over Tibet ceases and an anticyclonic condition is established). The high pressure cell over Tibet strengthens N-E monsoons.
  • Tibet gets heated in summer and is 2°C to 3°C warmer than the air over the adjoining regions.
  • Because the Tibet Plateau is a source of heat for the atmosphere, it generates an area of rising air (convergence)(intense low pressure cell).
  • During its ascent the air spreads outwards in upper troposphere (divergence) and gradually sinks (subsidence) over the equatorial part of the Indian Ocean.
  • It finally approaches the west coast of India as a return current from a south-westerly direction and is termed as equatorial westerlies.
  • It picks up moisture from the Indian Ocean and causes rainfall in India and adjoining countries.

The document Monsoon Role of Tibet | Geography for UPSC CSE is a part of the UPSC Course Geography for UPSC CSE.
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FAQs on Monsoon Role of Tibet - Geography for UPSC CSE

1. How does the Tibetan Plateau influence monsoon patterns in South Asia?
Ans. The Tibetan Plateau, often referred to as the "Third Pole," plays a crucial role in shaping the monsoon patterns in South Asia. Its high altitude and vast expanse create a significant thermal anomaly during the summer months, leading to the formation of low-pressure systems that attract moisture-laden winds from the Indian Ocean. This interaction is essential for the onset and intensity of the Indian monsoon.
2. What are the effects of climate change on the monsoon in relation to Tibet?
Ans. Climate change is impacting the Tibetan Plateau and subsequently affecting monsoon patterns. Rising temperatures lead to the melting of glaciers, altering water resources in the region. This can result in unpredictable monsoon behavior, such as changes in rainfall timing, intensity, and distribution, which may have severe implications for agriculture and water management in South Asia.
3. Why is the Tibetan Plateau referred to as the "water tower" of Asia?
Ans. The Tibetan Plateau is often called the "water tower" of Asia because it is the source of many of the continent's major rivers, including the Indus, Ganges, and Yangtze. The snow and glaciers on the plateau store vast amounts of freshwater, which is released gradually, supporting millions of people downstream and significantly influencing the monsoon system.
4. How do variations in the Tibetan Plateau's surface temperature affect monsoon rainfall?
Ans. Variations in the surface temperature of the Tibetan Plateau can greatly influence monsoon rainfall. An increase in temperature can intensify the thermal gradient between the plateau and surrounding areas, potentially enhancing the monsoon winds. Conversely, cooling could lead to weaker monsoon systems, resulting in reduced rainfall and affecting agricultural productivity across the region.
5. What role do the Himalayas play in the monsoon system related to Tibet?
Ans. The Himalayas act as a barrier that influences the monsoon system associated with Tibet. They intercept the monsoon winds, causing them to rise and cool, leading to condensation and precipitation on the southern slopes. This orographic effect is essential for delivering substantial rainfall to the Indian subcontinent, making the interplay between the Himalayas, Tibet, and the monsoon vital for the region’s climate.
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