Showing posts with label cloudburst. Show all posts
Showing posts with label cloudburst. Show all posts

Wednesday, December 13, 2023

BBC covers what the Indian National Media missed: The 04Oct2023 GLOF disaster in the Teesta valley

The BBC has today covered the 04Oct2023 GLOF disaster in the Teesta valley here and although the report by Cherylann Mollan, Mumbai has many glitches and errors, I welcome BBC's coverage merely because the National Media has covered it too sketchily or missed it out altogether and the Central and State Governments of Sikkim and W Bengal seem to think the GLOF incident was too insignificant, affecting too few to be bothered about.
Of the many errors in the report, I can point out a few glaring ones:

  • The 04Oct2023 disaster has somehow been named the 'Sikkim flood disaster' which precludes large downstream areas in Kalimpong district (W Bengal) which were also badly affected by the GLOF. This has been made worse by W Bengal government not even considering the event, a disaster.
  • In all probability, what triggered the GLOF was a large landslide or an avalanche and NOT a cloud burst as mentioned by the BBC. Read here
  • The GLOF which started from South Lhonak Lake (elevation approx 17,300') late in the night of 03Oct2023, wrecked many areas around Lachen but the first major town (not nearby village) it devastated was Chungthang (elevation 5,500') approximately 62km downstream and where the Sikkim Urja Stage III 1200MW dam was located. The dam was destroyed by the GLOF which hit Chungthang at 12.35am on 04Oct2023.
    What remains of the 1200MW SIkkim Urja StageIII dam at Chungthang (Photo date: 18Nov2023)

We were in North Sikkim between 17-19Nov2023 and our reports on the devastation in Chungthang town and its vicinity may be read here
Drone photo of devastation in Chungthang town (Photo date:18Nov2023)

I totally agree with Mathew Payne's (the School of Geography, Geology and the Environment at the University of Leicester) statement in the BBC article:

"This catastrophe is a stark reminder of the escalating challenges faced by the verdant Himalayan regions and the increasing magnitude of flooding events necessitates resilient infrastructure capable of tolerating climate-induced excessive rainfall"

which is why we emailed our report and recommendations on the 'Teesta valley GLOF disaster'  to the NDMA and SDMA's of Sikkim and W Bengal on 10Nov2023. The recommendations are essentially short term, aimed at tackling the Monsoons of 2024 which are just 3 months away.

We are yet to receive any reply to our report.

My thanks to BBC for this report on the 04Oct2023 Teesta Valley GLOF disaster.



Praful Rao
Kalimpong district
Darjeeling-Sikkim Himalaya
savethehills@gmail.com
0475033744

Thursday, October 5, 2023

Was there a cloud burst in Sikkim on 03Oct2023?

The media is howling about a cloud burst that occurred in North Sikkim around the 03Oct2023 and which triggered the GLOF (Glacial Lake Outburst Flood) at South Lhonak lake, which led to the terrifying devastation in Sikkim and Kalimpong district on 04Oct 2023.


To get to the truth of the matter let us first see what is a cloud burst:
As per IMD
'If 100mm rainfall is received at a station in one hour, the rain event is termed as cloud burst.'

Placed below is a map and the rainfall data of North Sikkim (and Gangtok) and of Darjeeling and Kalimpong for the period 01Oct to 04Oct2023.
What is apparent is that Darjeeling and Kalimpong received far more rain than North Sikkim during this period and to support this are placed the Infra Red cloud images of 03Oct2023. Sikkim
It is highly unlikely that the type of clouding seen in the vicinity of Lhonak glacier would trigger a cloud burst since such high intensity rain is normally associated with convective clouding and cumulonimbus (CB) clouds which generate a distinct white signature in IR satellite images.
What are cumulonimbus (CB) clouds and how do they appear on IR satellite images?
How CB clouds appear on satellite imagery

There is no doubt that a GLOF did occur at South Lhonak glacier on 03/04Oct2023 between midnight and around 1am on 04Oct2023 - satellite imagery and reports from people at Lachen confirm this.
However, the widely held belief that a cloudburst triggered the GLOF is probably incorrect and maybe ascribed to media loosely calling any 'heavy rain' event a 'cloud burst' just as many issues these days are conveniently labelled under the banner 'climate change' without any verification.

So if a cloudburst did not trigger the GLOF, just what did?

That is a question which has still not been answered.



Praful Rao
Kalimpong district
Darjeeling-Sikkim Himalaya
savethehills@gmail.com
9475033744



Saturday, September 21, 2019

Extreme thunderstorm at Kalimpong (20Sep2019)

Photo credits : Ms Shreya Gurung

* Having worked on the landslide problem of this region, I am very worried when we have intense rainfall towards the end of the monsoons. Some of our major landslide events (Oct 1968, Sep2007) have taken place at this time when the soil is saturated in the months of monsoon rain and a heavy downpour occurs triggering slope failure.
Last evening, we were lucky - the rainfall was extreme and intense reaching 215mm/hr and staying over a 100mm/hr for a good 20mins. Maybe what saved us was:
a. The past 10days have seen deficient rainfall with the last 2 days being dry.
b. The storm quickly moved away from us and within an hour we were dry again.
* And this seems to be the new normal where we alternate between rainfall deficiencies and surplus, where we either have no water and our fields and springs are dry or when we have so much water that it causes landslides and death.
* Having said this, I would also like to bring to light the recent landslides in Tsong, Yuksom area of Sikkim where there was no warning of heavy rain in the area as in the case of Kalimpong yesterday. These small local weather events which can result in heavy downpours but do not show up on satellite imagery and therefore give no warning are increasingly the ones we must guard against.


Total rainfall in the thunderstorm on 20Sep2019 42.7mm



Praful Rao
Kalimpong district
Darjeeling-Sikkim Himalaya

Wednesday, July 1, 2015

01Jul2015 : 226mm of torrential rain over a 6 hr period in Darjeeling district

For a hellish 6 hr period Darjeeling district especially Kalimpong was pummeled by torrents of rain starting from approximately 2000hrs.
I watched the clouding as it formed over us and remained almost stationery much like the clouding over Uttarakhand in 2013. Kalimpong received almost half (226mm)the entire July month's average rainfall (548.7mm) in the 6hrs and it is confirmed that that there have been at least 6 deaths in Kalimpong, numerous landslides and all the road links from Kalimpong to Siliguri are now cut off by slides.
The worst part is we have at least 3 months of rainfall ahead.

Praful Rao,
Kalimpong,
Dist Darjeeling


Thursday, September 12, 2013

Challenges of Devastating Indian Landslides - an article by Dr RK Bhandari


It is all in the books that landslides are among the major hydro-geological hazards that affect large parts of India, especially the Himalayas, the northeastern hill ranges, the Western Ghats, the Nilgiris, the Eastern Ghats and the Vindhyas, in that order. In the Himalayas one could find landslides of every name, fame and description. India’s northeastern region, the Darjeeling district of West Bengal, Sikkim, Tripura, Meghalaya, Assam, Nagaland and Arunachal Pradesh are all landslide-prone. In Uttarakhand also, it would therefore be inappropriate to see the Kedarnath tragedy of 16–17 June 2013, as merely an isolated event frozen in time and space.
Whenever landslide disasters strike, we rush to lean on fixed ideas in our minds. From the school days we are tutored that events like landslides and earthquakes are only to be regarded as nature’s safety valves because we live on the surface of an unfinished planet. The fragile ecology, immature geology, meandering rivers, snow bodies, climatic variations and cloudbursts of the Himalayas are after all our inheritance without choice. For centuries, landslides have come and gone, and these can be explained by recounting a long list of causative factors. If and when our justification is not good enough, there is climate change to buttress our argumentation. But, by ignoring human violence against nature, we only speak the half truth. Let us always remember that ‘a scientific truth does not triumph by convincing its opponents and making them see the light, but rather because its opponents eventually die and a new generation grows up that is familiar with it’ [Max Planck].
Those who make off-the-cuff conclusions must know that the science of landslides has no contract with their way of thinking. It demands honest and comprehensive scientific studies. We can understand landslides only by elucidation of landslide boundary-shears, concurrent monitoring of time-dependent piezometric pressures, surface and subslope displacements and mapping of ground deformations and shear zones, plus behavioural studies of associated human settlements form an integral part of the landslide investigation. Sadly, success will continue to elude us so long as scientific landslide investigation does not precede landslide remediation. We have not been able to fix the landslides not because of lack of expertise or technology, but because we never had the will or direction to do so.
It has almost become ritualistic to name cloudburst to explain away cataclysmic floods and devastating landslide events, without even attempting to understand the slope dynamics in the ecological theatre of nature. We did so to explain the great Alaknanda tragedy of 20–21 July 1970 in Uttarakhand on the premise that the previous maxima of 200 mm rainfall recorded at Joshimath on 28 September 1924 was crossed by a new high of 212.8 mm. Further probe removed a layer to show that the tragedy was caused by the bursting of a landslide dam. The formation of the landslide dam on Alaknanda was then traced to the enormous sediment load brought by Patalganga. And this huge sediment load was in turn traced to numerous landslides in the Patalganga valley. Further, it became evident that these landslides themselves were the result of neglect, misuse and abuse of our lands for decades on end. But for the ecological neglect, the Alaknanda floods would not have hit the headlines.
We are yet again stumped by the ghastly Kedarnath tragedy and cajoled by the very same reason – cloudburst, which is in fact no more than the most visible trigger at the tipping point. Could we have anticipated the trouble? The answer is no, because we had neither fail-safe instrumentation nor real-time vigil on our glaciers, glacial lakes, moraine  accumulations, dormant and active landslides, rivers and their tributaries and unsafe housing stock. We plead for zero tolerance against mindless urbanization, but suffer it instead. We have mapped landslide hazards on the pilgrim routes many times over, but never placed a single user-friendly validated map in the hands of disaster managers. We should do it now.
We should not continue to ignore the gross disconnect between our scientific discourse and our approach to hazard-mapping. In scientific discourse, we dread factors such as climate change, exceptional rain, receding of glaciers, bursting of glacial lakes, poor road alignments, non-engineered constructions, earthquake-induced landslides, and overtopping of dams. However, in the case of hazard-mapping, we disregard all these factors and only account for lithology, structure, slope morphometry, relative relief, land use/land cover and hydro-geological condition India needs large-scale, validated and user-friendly hazard maps based on a scientific understanding of the multitude of factors, both natural and human induced.
The main reason why the natural landslide hazards are turning into man-made disasters is because people have not only moved in large numbers to the remotest of the mountain slopes where no one ever lived before, but the violence they have unleashed against nature is unprecedented. There is a Chinese saying that ‘a man who removes a mountain begins by carrying away small stones’. We have been removing, not small stones, but mountains of rocks for building townships, roads, dams and reservoirs. Many of the landslides we know are the result of these very actions, and they in turn remove from slopes incredibly large amount of sediments, loading rivers, silting reservoirs and creating new land masses in the sea. Little do we realize that when a slope gets robbed of one inch of its soil cover, Nature may take nearly 1000 years to replenish it! It is time therefore to revive the Chipko Movement and reverse the trend of slope degradation.
One vexing question which often haunts us is whether a landslide can be predicted and a landslide disaster averted? In Uttarakhand, some of the landslides occur annually. We do not need any rocket science to predict them; simple slope instrumentation and monitoring would do. Similarly, mountain slopes supporting human habitat with visible signs of instability like tilting of trees, bulging of retaining walls and widespread ground subsidence are already on the verge of failure. What more early warning do we need to predict a landslide in such situations? It is a scientifically proven fact that even the first time landslides are predictable provided we probe deep enough to arrive at the bottom of the truth, through studies, instrumentation and monitoring. Like human beings, a slope also has a heart that beats! Let us recall Terzaghi, who more than six decades ago said that ‘If a landslide comes as a surprise to eye witnesses, it would be more accurate to say that the observers failed to detect the phenomena which preceded the slide.’
Today, we have the knowledge, tools and experience we need to predict and avert most, if not all, landslides. By tapping the phenomenal power of geotechnology, instrumentation, remote sensing, integrated GPS and information communication systems, we can monitor unstable areas in real time even during unfavourable weather conditions. It is time therefore to launch selected mission-mode projects to initially cover timely prediction of (a) possible reactivation of major old, dormant and seasonal landslides, (b) landslides and floods due to bursting of glacial lakes, (c) flash floods due to bursting of landslide dams, (d) first-time landslides in urban and strategically important areas falling in the zone of exceptional landslide hazard and (e) rockfalls. But, why is this not happening?
The criteria for early warning against landslides we use must be credible. The direct connection between ‘incidence’ of a landslide and ‘rainfall’ may look both obvious and simple, and may even work in cases where ground conditions are already bad enough and rainfall exceptional. There is a strong case to position monitoring stations to advance on-line rainfall forecasting procedures using digital radar data and an on-line run-off forecasting procedure based on space techniques to enhance lead time. The early warning criteria we aim should be rooted in holistic and concurrent interpretation of real-time rainfall records, seismic records, spatial piezometric variations, slope surface and subsurface movements and movement rates on discrete boundary shears, runout effects and other collateral threats in the catchment and on the higher slopes. We should refrain from over-simplifying the criteria for early warning to minimize bogus forecasts and it must be continuously put to test. We must prepare ourselves to effectively utilize every second of the available lead time.
We have all agreed time and again that landslide disaster management should be integrated with development planning. The vast potential for hydro-power in Uttarakhand is in a sense a big blessing, but the way it is being exploited is a curse as hydro-power schemes are no longer environment-friendly and power generation is no longer based on natural flows and sound engineering. Unless safety issues appear continuously on RADAR, mega projects like the Tehri dam will always keep us on tenterhooks.
Dozens of landslides in India, like the one at Kaliasaur on the Srinagar–Rudraprayag highway, are quite old. We should fix them once for all. A township on a landslide infested mountain slope can be best tackled by looking at the stability of the mountain as a whole rather than frittering away the resources in fixing landslides affecting individual buildings. We need breed the culture of truth-seeking rather than data-seeking nature of landslide investigations. Our reports and papers by hindsight reflect more of perceptions inspired by loyalty to the accepted trends than science. In many cases, truth eludes us because vital field evidences get erased even before landslide investigations begin.



R. K. Bhandari

Forum on Engineering Interventions in Disaster

Mitigation,

Indian National Academy of Engineering,

New Delhi 110 016, India

e-mail: rajmee@yahoo.com

Comment by Praful Rao
Dr RK Bhandari, is long acknowledged to be one of the foremost authorities on landslides in the world. STH is proud to be associated with him from several years back.

Tuesday, July 30, 2013

History revisited : Slideshow on the Darjeeling Disaster of 1950.

The Jun1950 Darjeeling Disaster


More PowerPoint presentations from praful rao


Human memory of disasters is often flawed and very short-lived. As such it is important to chronicle and preserve these records as accurately as possible and the above slideshow on the ‘Jun1950 Darjeeling Disaster ’ is an effort this direction.
Not much data exists on the Jun1950 disaster which struck the Darjeeling district and whatever is available is, at best sketchy :-

  •   The ‘Report of the Expert Committee on Landslides in the Darjeeling Hills’ states that 127 people died, mostly in Darjeeling town. No information is available on casualty figures in Darjeeling district or in Sikkim.
  •   ‘Floods, Flood plains and Environmental Myths’, a CSE document, talks of a cloud burst in the Teesta valley which dumped 546mm of rain on 12Jun1950 whereas the official government website pegs the rainfall at 965mm for the whole month of June1950.
While rummaging through records for this event on the internet, I stumbled onto the ‘Annual Report of 1950’ of St Joseph’s School, Darjeeling which had a rather quaint account of the disaster – that of a student in the school and I have included it in the slideshow.
I also was extremely fortunate to discover that Mr Durga Das Pradhan of DAS Studio, Darjeeling, who had given me these photographs sometime back, was also the photographer who had taken these images more than 60yrs ago! As such I was lucky that he could pinpoint the locations where the landslides had taken place in the vicinity of Darjeeling town.

Praful Rao,
Kalimpong,
Darjeeling district

Sunday, July 7, 2013

Uttarakhand Cloudburst Jun2013



Uttarakhand Cloud Burst


 More PowerPoint presentations from praful rao 

Technical advice from Dr B Nandi
About Dr B Nandi :


Dr Nandi is a renowned Aviation Meteorologist in India. He has served Indian Air Force for 33 years in various capacities. He is the founder Director of Centre for Numerical Weather Prediction for Air Force. He is an Alumni of Ramakrishna Mission Vidyapith, Purulia; Ramakrishna Mission College Narendrapur, Kolkata University; Burdwan University and Centre for Atmospheric Science, IIT, Delhi. Currently engaged as Chief  Meteorologist for Indigo Airlines for last 7 years.

Praful Rao,
Kalimpong,
Dist Darjeeling

Thursday, June 27, 2013

Focus on Uttarakhand 4 - Images of Kedarnath temple area



Placed on top is an image of the Kedarnath temple before and after the GLOF. 

Placed below is a still from the animation of the National Remote Sensing Centre (NRSC), India

For those interested , there are some excellent articles on the 'Down To Earth' website on the Uttarakhand tragedy.


Praful Rao,
Kalimpong,

Darjeeling district

Wednesday, June 19, 2013

Focus on Uttarakhand


"I do believe that the time has come for a paradigm shift in disaster management from a 'relief-centric' and 'post-event' response, to a regime that lays greater emphasis on preparedness, prevention and mitigation"
-  Dr Manmohan Singh
Prime Minister
1st India Disaster Management Congress (29Nov2006)
Vigyan Bhavan
New Delhi





STH has been following the events in Uttarakhand and Himachal Pradesh (HP) states of India closely.
The death toll has notched up steadily and now stands at 130 with 500 people missing and  73,000 (many of them pilgrims visiting  holy Hindu places in the mountains) stranded at many places.

Here are some facts on the rainfall :-
  •  Most of the rainfall came down between 15-17Jun2013.
  •  Dehradun recorded an astounding 338mm of rainfall in 24hrs on 17Jun2013 (see AWS data above).
  • For the period 01Jun-18Jun2013, Uttarakhand rainfall was 440% above the normal and that of HP was 316% above normal (see map above). 
  • In these 18 days, Uttarakhand and HP have received more than 31% and 20% of the rainfall for the entire 4 month monsoon period.
  • The monsoons have just started and we still have more than 3 months of heavy rains ahead and extreme events, the world over are becoming more frequent!
Having followed this keenly, I am filled with a sense of dread because we went thru this entire grim scenario last year when Uttarakhand was battered by rain and landslides in August and Sep2012.
Meanwhile, the blame game has started. But living in a land where destiny, fate and karma can just as easily be held culpable, I doubt if we will ever get down to a more serious way of managing our disasters.
Pity, we never seem to learn and the PM's wonderful words, spoken 7 yrs ago in the 1st India Disaster Congress ring hollow.

Praful Rao,
Kalimpong