
Wednesday, August 4, 2010
Advocacy Guide for the Campaign for Safe Schools and Hospitals

Monday, July 19, 2010
Seismic Conceptual Design of Buildings
Sunday, June 20, 2010
Structural Engineering in the Philippines
For the protection of public life and property, the design of structures and the preparation of structural plans for their construction have to be controlled and regulated. In the Philippines, the National Structural Code of the Philippines (NSCP) is adapted as the referral code for structural design. The NSCP prescribes the minimum requirements in terms of strength, serviceability and ductility of buildings and other structures. There are two volumes of the NSCP – Volume 1 is for Buildings, Towers and Other Vertical Structures and Volume 2 is for Bridges. Although many provisions of the NSCP have been derived from codes developed in the United States like the Uniform Building Code (UBC), ACI code of the American Concrete Institute and codes of the American Society of Civil Engineers (ASCE), however, there also provisions that are adapted to Philippine conditions such as those related to wind loading, seismic design and timber design. The NSCP is continuously updated and published by the Association of Structural Engineers of the Philippines, Inc. (ASEP).
The Association of Structural Engineers of the Philippines, Inc. (A
SEP) was incorporated by 32 charter members in September 1961 with Ambrosio Flores as the founding president. Among the past ASEP presidents were Abelardo Carillo, Angel Lazaro Jr., Lauro Cruz, Cesar Caliwara, Octavio Kalalo, Ernesto Tabujara, Primo Alacantara and Ernesto de Castro. Aside from the NSCP, ASEP also published the Steel Handbook, Earthquake Design Manual, Proceedings of the ASEP International Conventions and other Conferences such as the Asia Conference on Earthquake Engineering (ACEE). After the 1990 Luzon Earthquake, ASEP also initiated the Disaster Quick Reaction Survey Teams for rapid documentation and assessment of structural and geotechnical damage to buildings, bridges and other structures after a disaster. ASEP collaborated with the Philippine Institute of Civil Engineers (PICE) in the Disaster Quick Reaction Program (DQRP). In July 28, 2006, the National Disaster Coordination Council (NDCC) of the Philippine Government recognized the efforts of ASEP and PICE through the Gawad Kalasag Award. In 2006, the PICE amended its by-laws creating five specialty divisions – one of them is Structural Engineering. Membership in the specialty divisions is open to Life members or Fellows in good standing of the PICE. A specialty examination is required for admission in the specialty divisions starting January 2008.
Friday, April 30, 2010
Recognizing Students' Outstanding Performance in Timber Design
- Jonathan Salumbides (Molave Structural Engineer Award) for outstanding analytical skills in Timber Design Exams and Quizzes
- Jet Tugado and El Rey Morales (Yakal Structural Design Award) for outstanding design projects in the Timber Design Laboratory
- Ammer Ali, Nieman Mayo and Aizel Llanes (Narra Group Research Award) for outstanding field and library research projects and teamwork
I presented a simple memento - a ceramic coaster - which they can display or use while they drink coffee while working as a civil engineer. Congratulations and hoping for a bright future.
Thursday, April 15, 2010
Are our schools and hospitals SAFE?

Safety is a human concern – this concern must be taken more decisively by school and hospital communities given that they are in the business of caring for the young and in preserving lives. It is a concern that must be taken seriously and strive continually to achieve at all times especially during emergencies. A school or hospital and the highly vulnerable occupants – the children and the sick - are best protected by ensuring that the physical environment – the buildings, surroundings and facilities are safe, and secured by implementing regular maintenance of physical facilities and by preparing a systematic and well-documented safety and disaster preparedness plan.
Safety Check: Are the basic conditions and necessities in place in your school or hospital to provide for the health, security and safety of the occupants? Take a walk around your school campus or health facility and observe the items listed in the checklist. After this brief safety check, ask yourself the following questions: Is my school or hospital safe? What policies and actions should be done to improve the safety conditions in my school or hospital?
A Sample Checklist on Basic Safety Requirements
- Is water suitable for food preparation and drinking available?
- Is water suitable for personal hygiene and cleaning available?
- Is adequate lighting in all areas of the building and surroundings provided?
- Is a manual fire alarm system in place?
- Are fire extinguishers found in corridors, exit routes and high risk rooms?
- Are floors clean, non-slippery, without splinters and holes?
- Is there access for the disabled?
- Are corridors are wide and spacious, free from obstructions especially during an emergency?
- Are roofing materials completely and securely fastened and leak proof?
- Can room doors be opened from the inside for emergency exit purposes?
- Are stairways safe with adequate secured railings?
- Are electrical wires and cables properly fastened and secured?
- Are doors securely attached to jambs?
- Are entrance and exit points secured?
- Are proper exit markings provided to assist people that are not familiar where exits/ emergency exits are located?
- Are combustible and hazardous chemicals and gases safely and appropriately located?
- Are functional electrical and emergency lights with battery back-up in all critical areas available especially in hospitals?
- Are regular emergency drills (e.g. fire, earthquake drills) conducted?
- Are emergency evacuation maps posted in critical areas?
- Are periodic inspection, repair and maintenance of facilities and surroundings done?
If your answer to any of the questions is NO, then you must be concerned with the safety of your school or hospital. Providing the basic safety features in schools and hospitals is actually not enough to protect people and property especially in a hazard-prone environment. Hazards such as earthquakes, floods, fires, typhoons, landslides, etc. pose greater risks to schools or hospitals if interventions are not done to limit and/or mitigate the vulnerability to these hazards.
You can make schools and hospitals safer esepcially before a disaster strikes by acting now. The first step is visit the website of the One Million Safe Schools and Hospitals Campaign at http://www.safe-schools-hospitals.net/ and make a pledge.. You can pledge in any of the following roles:
- As an advocate for safe schools and hospitals
- As a leader for emergency and disaster preparedness
- As a champion for disaster risk reduction
Make a pledge, Save a Life!
The life that you may save maybe your loved ones or yours.
* Reference: 1 Million Safe Schools and Hospitals ADVOCACY Guide by UNISDR 2010
Wednesday, March 17, 2010
Popsicle Stick Bridges by DLSU students
Thirteen entries from DLSU competed in the Popsicle Stick Bridge Building Contest hosted by The Civil Engineering Society (CES). Unfortunately, no entry made it in the winning bridges. The DLSU bridges were also good and well-made. Bridge no. 18 actually garnered the largest load of 111 kg with a displacement of about 25.5 mm, but it was too heavy at 1138 g making a score of only 3.82. DLSU ranked 8th in the design category (Bridge No. 23) and ranked 10th in the strength category (Bridge No. 19).Congratulations to all DLSU participants!
Tuesday, March 2, 2010
The winning popsicle stick bridges!
Congratulations to the winners and all participants. You were all winners!
Monday, February 22, 2010
Best Bridge Designs at the 2010 Contest

- Creativity and Innovativeness in the design and form: 30%
- Application of bridge design principles: 30%
- Practicality and implementability: 20%
- Neat and well-polished bridge: 20%
There is only one winner in the design category which was the entry from the Technological Institute of the Philippines - Manila. The other entries which ranked 2nd and third came from PLM and TIP-Manila, respectively.
Tuesday, January 19, 2010
Are you ready for the Struct-Whiz Challenge?


The topics of the quiz contest are Engineering Mechanics, Strength of Materials, Theory of Structures, Structural Design (Concrete, Steel, Timber), Design Codes(NSCP2001), Soil Mechanics & Foundation Design and Miscellaneous topics (e.g. Wind and Earthquake Loads, Principles of Bridge Design). Round 1 is written exam open to all participants. The top 20 examinees will qualify to Round 2 and 3.
Wednesday, January 13, 2010
Popsicle Truss Bridge Building Contest 2010
The Civil Engineering Society of De La Salle University-Manila is again inviting civil engineering students from Philippine CE schools to join the Bridge Building Contest. The challenge is to create a popsicle truss bridge which will span a given distance subject to the bridge specifications or limitations in weight, heigth, width and length. The rules can be viewed in the slide show embedded here. There are also tips on how to make your bridge win the strength competition. The deadline and testing of the bridges is on Feb . 13, 2010. You may read related blog posts here such as the testing of the bridges, truss analysis and winning bridges in the last competition. Happy Bridge Building. For more details, join the yahoo group: http://groups.yahoo.com/group/bridgebuilding10.
Thursday, December 17, 2009
Experiments & Modeling of Steel Beam-To-Column Connections

Sunday, November 8, 2009
Scholarships for future Earthquake Engineers & Seismologists

Applications for the Masters in Earthquake Engineering and/or Engineering Seismology (MEEES), approved and financially supported by the European Commission under the framework of the Erasmus Mundus II programme, have just opened, with a deadline of 31st of December 2009.
The Masters is organised by a consortium of European University/Research Institutions, led by the Centre for Post-Graduate Training and Research in Earthquake Engineering and Engineering Seismology (ROSE School, www.roseschool.it) and featuring also the participation of the University of Patras (Greece), the University of Grenoble Joseph Fourier (France) and the Middle East Technical University of Ankara (Turkey).
The MEEES programme is an Erasmus Mundus Masters Course, that aims to provide higher-level education in the field of Earthquake Engineering and Engineering Seismology. Graduate students involved in this Erasmus Mundus Masters course have the possibility of following a 18-month MSc programmes on either Earthquake Engineering or Engineering Seismology. In addition, the proposed EM Masters course envisages also the possibility of students following a 18-month study programme that leads to the attainment of a Masters degree on Earthquake Engineering and Engineering Seismology.
A relatively large number of scholarships, ranging from 15000 to 38000 Euro, are available to applicants from all nationalities.
Full details on the programme, as well as online application procedure, can be found on its website: http://www.meees.org/
Wednesday, October 28, 2009
Jerry and his Mission
- The Philippines was even worse than military-ruled Burma (Myanmar) in coping with natural calamities
- Studies projected a massive destruction of Philippine rice crops in a little over a decade owing to climate change, and severe flooding in Metro Manila affecting 2.5 million people by the year 2080.
- The Philippines ranked 12th among 200 countries at risk from tropical, cyclones, floods, earthquakes and landslides.
- In coping capacity to disasters, the Philippines ranks seventh among the 10 members of the Association of Southeast Asian Nations (ASEAN), just behind Laos, Malaysia and Burma.
- The coping capacity refers to a country’s capacity for hazard evaluation, structural defenses, early warning, emergency response, insurance and disaster funds, and reconstruction and rehabilitation planning.
- The “deadly trio” that worsen natural disasters were “poor urban government, unstable rural livelihood, and ecosystem decline.” So it’s not God who is doing it. It’s man who is at fault.
- A single event cannot be attributed to climate change because the climate system is in constant state of flux and has always exhibited natural fluctuations and extreme conditions.
- With the signing into law of the Philippine Climate Change Act of 2009, hopes are high that the new law’s focus on strong government-wide coordination, high-level leadership, links to science, and local level action, will be necessary ingredients to ensure immediate, comprehensive and sustained action by the Philippines in the face of this climate crisis. It is one of the most comprehensive and the most integrated legislation so far in the region. We now wait with breathless anticipation.
Monday, October 12, 2009
Role of Civil Engineering in Poverty Alleviation
Sunday, September 27, 2009
Green Buildings and Structural Engineering
The main theme of the 33rd IABSE Symposium at Bangkok (Sept. 9-11, 2009) is "Sustainable Infrastructure." The International Association of Bridge and Structural Engineers (IABSE) recognizes the important role of structural engineers in ensuring sustainability in their creations to ensure that energy and natural resources are still available for the future generations. (a) Building reuse - instead of demolition, the building structure or shell is reused.
(b) Construction waste management - diverting construction and demolition waste from ladfill into other uses
(c) Materials reuse - a portion of the materials of the project must be salvaged or recycled
(d) Recycled content - use of materials with "recyled content"
(e) Regional materials - use of local materials will reduce transport and energy cost
Structural engineers should design building which are adaptable to provide for ease of alteration or amendment in use. Buildings which consists of elements that can easily be deconstructed are preferrable for possible reuse. By proper planning and efficient design and knowledgeable of sustainability concepts, green buildings can be successfully built.

