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Showing posts with label disaster management. Show all posts
Showing posts with label disaster management. Show all posts

Saturday, August 3, 2013

Philippines' low-cost landslide sensor

Low-cost landslide sensor tested in Philippines
                          Nora Gamolo
                          SciDev, 08/12/11

A low-cost sensor that can detect landslides has been developed in the Philippines and is being promoted as an alternative to expensive early warning systems manufactured overseas. The sensor costs less than US$1,000, in contrast to standard commercially available landslide sensors that can cost up to US$60,000 — excluding installation costs.

The Philippine system was developed through collaboration between the National Institute of Geological Studies (NIGS) and the Electrical and Electronics Engineering Institute, both part of the University of the Philippines.

Two prototype sensors were deployed 14 months ago in the upland province of Benguet, selected by the researchers because of its high vulnerability to landslides.

Ms. Ruffa Carreon, engineering student and research
assistant explaining the column part of the device
The sensor uses power available from an electric grid, but has a back-up battery in case of power failure. "The sensor is buried vertically in the bedrock of the areas that are being monitored for possible landslides," explained engineer and programme leader Joel Joseph Marciano Jr. 

The sensor logs ground movement electronically and transmits a report every ten seconds to the NIGS, which serves as a central base station. Geologists then process and analyse the data, measuring various parameters that affect the sturdiness of slopes, such as rainfall intensity and moisture content.

Sandra Catane, a NIGS geologist, said her team has already noted a displacement of 20 centimetres in Puguis, Benguet, since the sensors were deployed. But she admitted that, at present, they still have to identify the tipping point that indicates when a landslide is about to occur.

According to Catane, the project was initiated following a landslide in Southern Leyte in 2006 that buried the village of Guinsaugon, killing more than 1,100 people. "It was an experience that can occur in one in 1,000 cases, and [was] an eye-opener for us," she said.

Landslides occur because of loosened soil and rocks. Strong rains are the most common cause of landslides in the Philippines, although ground movement — for example, resulting from an earthquake — can increase the probability of a landslide occurring.

Catane said the eventual widespread deployment of the landslide sensors is also an opportunity to create a database on landslides in the country, and could trigger an interest in this area of geology.

But the project faces several problems, including the lack of trained geologists to carry out reconnaissance and choose the appropriate area for deployment of the sensors; interpret the results; and make a visual validation after the data has been logged.

Catane added that the copper wires attached to the deeply-buried sensors had already been stolen twice, apparently to be sold as scrap metal. She emphasized the need to make communities aware of the importance of sensors, and to train them to manage and secure sensors for their own safety.

The project is featured in this video.

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Philippine-made MOSES Tablet for DOST Project NOAH

When the weather remains to be unpredictable, there is no other way but to apply the most sophisticated scientific tool to mitigate, if not prevent, the negative impact of typhoons, floods, tsunamis and even volcanic eruptions and earthquakes.

This is the reason why the Department of Science and Technology (DOST) through Project NOAH (Nationwide Operational Assessment of Hazards) has come up with a tablet device aptly called MOSES or Mobile Operational System for Emergency Services.

DOST MOSES tablet for Project NOAH
MOSES is a tablet capable of receiving real-time weather and flood information reports from DOST’s Philippine Atmospheric, Geophysical and Astronomical Services Administration (PAGASA) and Project NOAH that local officials, down to the barangay level, can access for accurate decision-making eventually to prevent massive destruction and casualties.

The 8-inch mobile tablet is designed locally with assembled chipset and circuit boards to ensure the availability of spare parts as well as service support. It has a dual SIM function, television, and radio component and is packaged in a rugged shell with a long-life battery that can last up to three days. 

MOSES also provides Doppler radar sensor data, water level sensor data and measurements culled from gauges strategically located in different high-risk areas. Also available in the tablet is a hazard map that is updated in real time.

The tablet also comes with other disaster prevention apps like the Arko, which gives historic flood data on the areas in Metro Manila that can be used to predict the level of floods in several areas in the nation, Project NOAH, and the Flood Patrol.

It allows its user to take pictures of calamities and its effects such as flooded areas, fires, and landslides. The pictures are then uploaded and sent to the command center via 3G or Wifi. Photos of specific locations such as schools, houses, and hospitals can also be taken and sent immediately for reporting.

The photos will help pinpoint the location of search-and-rescue facilities, as well as blocked access routes and emergency access routes, giving visually accurate information on the situation in each barangay. The central command center can then send messages containing advisories or warnings back to the barangays. 

DOST aims to provide the 42,028 barangays with this tablets. For the pilot test, 1,000 units are expected to be distributed to different barangays in Metro Manila.

So if Moses could wave his staff and part the Red Sea, MOSES may be the answer to scientifically managing disasters and allow us to rise above the floods.

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Project NOAH (Nationwide Operational Assessment of Hazards): Philippines' advanced disaster prevention and mitigation system

Project NOAH is the Department of Science and Technology’s (DOST) response to the call of President Benigno S. Aquino III for a more accurate, integrated, and responsive disaster prevention and mitigation system, especially in high-risk areas throughout the Philippines.

The Project will harness technologies and management services for disaster risk reduction activities offered by the DOST through PAGASA, PHIVOLCS, and the DOST-Advanced Science and Technology Institute (ASTI), in partnership with the UP National Institute of Geological Sciences and the UP College of Engineering.

A screenshot of Project NOAH website

The Project has the following components:

Distribution of Hydrome-teorological Devices in hard-hit areas in the Philippines (Hydromet). A total of 600 automated rain gauges (ARG) and 400 water level monitoring stations (WLMS) will be installed along the country’s 18 major river basins (RBs) by December 2013 to provide a better picture of the country’s surface water in relation to flooding. 

Disaster Risk Exposure Assessment for Mitigation – Light Detection and Ranging (DREAM-LIDAR) Project. The project, which is targeted to be completed by December 2013, aims to produce more accurate flood inundation and hazard maps in 3D for the country’s flood-prone and major river systems and watersheds. 

Enhancing Geohazards Mapping through LIDAR. The project, which is targeted to be completed by December 2014, shall use LIDAR technology and computer-assisted analyses to identify exact areas prone to landslides. 

Coastal Hazards and Storm Surge Assessment and Mitigation (CHASSAM). CHASSAM, which is targeted to be completed by December 2014, will generate wave surge, wave refraction, and coastal circulation models to understand and recommend solutions for coastal erosion. 

Flood Information Network (FloodNET) Project. Targeted to be completed by December 2013 is a flood center that will provide timely and accurate information for flood early warning systems. The FloodNET Project will come up with computer models for the critical RBs, automate the process of data gathering, modeling and information output, and release flood forecasts. 

Local Development of Doppler Radar Systems (LaDDeRS). LaDDeRS seeks to develop local capacity to design, fabricate, and operate sub-systems of Doppler radars for remotely sensing the dynamic parameters of sea surface such as wave, wind field, and surface current velocity. 

Landslide Sensors Development Project. This project is a low-cost, locally developed, sensor-based early monitoring and warning system for landslides, slope failures, and debris flow. As of May 2012, ten sensors have been installed in San Francisco, Surigao del Norte; Tago, Surigao del Sur; Tublay, Bugias, and Bokod in Benguet; Guihulngan City, Negros Occidental; St. Bernard, Southern Leyte; and Tubungan, Iloilo. Additional sensors are expected to be deployed to not less than 50 sites by 2013. 

Weather Hazard Information Project (WHIP). WHIP involves the utilization of platforms such as television (DOSTv) and a web portal (http://noah.dost.gov.ph), which display real-time satellite, Doppler radar, ARG, and WLMS data to empower LGUs and communities to prepare against extreme natural hazards. This is complemented by activities, such as: a) conducting of IEC (Information, Education, and Communication) activities; and b) the processing and packaging of relevant and up-to-date information for public use.

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