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SDG 11

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20 AIT SUSTAINABILITY 22 REPORT

MAKE CITIES AND HUMAN SETTLEMENTS INCLUSIVE, SAFE, RESILIENT AND SUSTAINABLE

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n 2022, AIT Solutions participated in tests of structural performance in tall buildings located in the Philippines and Thailand with a view to ensuring public safety through seismic modeling and wind tunnel testing. In partnership with UNEP, AIT also organized a seminar on sustainable infrastructure for circular Cities and

innovations and startups in the water sector, including urban flood management in disaster-prone regions of Thailand, Pakistan, and Bangladesh. Another project addressed the issue of plastics leakage from industrial activities in Vietnam, the Philippines, Thailand, and Lao PDR.

STRUCTURAL PERFORMANCE-BASED SEISMIC DESIGN OF MERGENT PHASE 2, PHILIPPINES

Duration: March-August 2022 Description: AIT Solutions conducted Structural Performance-based Seismic Design of Mergent Phase 2, located in Makati City, Metro Manila, Philippines. The project is a residential development comprising two towers resting on a 10-level common podium developed by Alveo Land Corporation, Philippines. Tower B has 38 floors, and Tower C has 47 floors. Tower B is approximately 162.3 m tall, and Tower C is approximately 188.4 m tall from ground level. The site is located about 3.6 km from the West Marikina Valley Fault (WVF). The primary focus of the work was to evaluate the structural performance of the building. The emphasis is on its overall performance and reliability to determine if it can satisfy the public safety in terms of strength and serviceability requirements under the effects of gravity and different levels of earthquakes. Specifically, the scope of work that was carried out included:

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šŸ”’ Review the structural system concept šŸ”’ Develop

performance-based evaluation criteria, including seismic design methodology, seismic performance goals, acceptance criteria, mathematical modeling, and simulation

šŸ”’ Create finite element models of the building with varying

complexity and refinement suitable to understanding the response šŸ”’ Carry out the different types of analyses to evaluate

performance by progressively using linear-static, linear dynamic, and nonlinear-dynamic analyses, as appropriate šŸ”’ Carry out detailed studies of the response and

performance of primary structural members and systems in the structure šŸ”’ Report on the evaluation and recommendation based

on the results.


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EXPERIMENTAL SEISMIC FRAGILITY OF GYPSUM PARTITION WALLS

Duration: January-August 2022 Description: AIT Solutions conducted this project on behalf of Knauf R&D Center Co. Ltd. while keeping in view recent concerns over the seismic response of the nonstructural components of the buildings. This is due to relatively high investment costs for new construction and associated repair costs following earthquakes. Based on estimates from past earthquakes, nonstructural components and systems can account for more than half of the building’s economic losses.

Phase 2: Seismic performance evaluation of gypsum partition walls

The primary objective of the project was to carry out a seismic experiment with gypsum partition walls. The project was carried out in two phases:

evaluation and providing the overall technical advice as needed

The information gathered in Phase 1 was used to carry out the following work regarding the seismic performance evaluation of gypsum partitions walls: šŸ”’ Reviewing information from the seismic tests šŸ”’ Evaluating the seismic response, failure mechanisms,

and fragilities of the gypsum partition walls šŸ”’ Preparing a detailed report on the outcome of the

Phase 1: Cyclic tests of gypsum partition walls In this phase 10 specimens of gypsum partition walls were tested, with the following scope: šŸ”’ Installing gypsum wall specimens and setting up of

the testing equipment šŸ”’ Conducting seismic tests for gypsum partitions wall

specimens šŸ”’ Observing failure modes and gathering experimental

data for seismic evaluation

WIND ENGINEERING STUDY OF GRAND SOLAIRE PATTAYA

Duration: November-December 2022 Description: AIT Solutions conducted a wind tunnel study of 67-story Grand Solaire Tower. The building is located in Pattaya City, Chon Buri, Thailand 1.4 km away from the shoreline. Being the tallest in Pattaya City, the building has to withstand significant amounts of wind-induced structural load and cladding pressure. However, due to the structure’s irregular geometric shape and overall height, code-provisioned wind load and pressure may have been inadequate. In response, wind tunnel testing was required to determine the reliable wind loads and pressures to be used in the design. The scope of work that was carried out involved: 1. Development of wind tunnel models: Three types of physical models were developed: High frequency force model, Pressure model for target building, and Proximity model for surrounding buildings. 2. Laboratory tests

high-frequency force balance techniques. Existing surrounding buildings configuration were considered in the test. Future surrounding buildings configurations will be considered as separate scenarios in the test. 4. Cladding Pressure Test: Conduct cladding pressure study tests for target building for 36 wind directions to measure local pressures on the exterior surface of the building. Existing surrounding buildings configuration were considered in the test. Future surrounding buildings configurations will be considered as separate scenarios in the test. 3. Wind climate study and analysis of test data Wind climate study: Carried out wind climate study with statistical analysis. This analysis was done together with the historical wind speed information obtained from the local weather stations and roughness changes experienced by the wind passing by nearby buildings.

3. Structural Load Test: Conduct structural load study tests for the target building for 36 wind directions using

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20 AIT SUSTAINABILITY 22 REPORT

SDG HYBRID WEBINARS: INNOVATIONS FOR SUSTAINABILITY

Duration: 5 August 2022 Description: The UN Environment Programme (UNEP) in collaboration with the Asian Institute of Technology (AIT) organized an SDG hybrid webinar titled Innovations for Sustainability: Part 1 – Sustainable Infrastructure for Circular Cities and Part 2 – Innovations and Startups in the Water Sector on 5 August 2022 in the AIT Entrepreneurship Center and online. Sustainable Infrastructure for Circular Cities focused on building capacity to create an enabling environment (policies, financing, technologies, business models, and stakeholder engagement) to replicate and scale up good practices that support SDG 11. Innovations and Startup in the Water Sector provided a dialogue among various stakeholders to understand the drivers and challenges for innovations and startups to support SDG 6.

INTEGRATED MANAGEMENT OF FLOOD AND DROUGHT IN THE MUN RIVER BASIN IN THAILAND

Duration: October 2021-March 2022 Description: The overall aim of the project is to build a strong basis for the development of an integrated approach to the long-term management of both drought and flooding in the Mun basin. The objectives of the study were to: (i) assess flood and drought risks in the Mun River basin for current and future climate with a 30-year time horizon (until 2050); (ii) develop a framework for integrated management of flood and drought in the Mun basin; and (iii) formulate adaptation strategies that will take into account connections between diverse hydrometeorological extremes.

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AIT SUSTAINABILITY REPORT PROFESSIONAL MANAGEMENTā€

TRAINING

COURSE

ON

ā€œSTRATEGIC

LEADERSHIP

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Duration: 18-26 March 2022 Description: Training is teaching, or developing in oneself or others any skills and knowledge or fitness that relate to specific useful competencies. The purpose of training is to improve one’s capability, capacity, productivity, and performance. Training may continue beyond initial competency to retain, enhance, and update abilities throughout one’s working life in addition to the fundamental training necessary for a trade, occupation, or profession. This one-week training program was designed to transfer knowledge and skills to individuals and government institutions, enabling them to manage and lead positive changes, solving problems, delivering good services, and improving performance of the professionals involved in public utility management to benefit the operations of the Dhaka Power Distribution Company Limited (DPDC). The proposal was prepared for the DPDC as one of the courses in accordance with the Contract of Services between DPDC and AIT Extension for delivering customized professional development courses. Web link: 🌐 https://extension.ait.ac.th/news/professional-

development-course-strategic-leadership-andmanagement

THE AIT RRC.AP SPEARHEADED THE VIRTUAL KICK-OFF CUM CONSULTATION FOR THE ERIA PROJECT ON DEVELOPMENT AND DISSEMINATION OF TECHNICAL GUIDELINES FOR PLASTICS AND RESIN PELLETS LEAKAGE PREVENTION FROM FACTORIES AND INFORMAL RECYCLING SECTOR IN ASEAN, VIRTUAL MEETING

Duration: 6 May 2022 Description: The AIT-RRC.AP spearheaded the virtual Kick-off and Consultation for the ERIA project on the development and dissemination of technical guidelines for plastics and resin pellets leakage prevention from factories and informal recycling sector in ASEAN, which was convened on May 6, 2022. About 22 participants from relevant local city stakeholders/partners including City Government Officers (from Manila, Vientiane, and Pattaya City), associations of plastic recyclers and plastic industries, and representatives from the Regional Knowledge Centre for Marine Plastic

Debris (RKC-MPD) of the Economic Research Institute for ASEAN and East Asia (ERIA) participated the meeting. The Kick-Off meeting presented and discussed the project’s scope and detailed work plan with project collaborators and other key stakeholders involved in the project. The meeting obtained the involvement of the core project team and set the course for successful and smooth project collaboration with key stakeholders from project cities (Hanoi, Iloilo City, Manila, Nonthaburi, Pattaya, and Vientiane). The project will sustain the built momentum by

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20 AIT SUSTAINABILITY 22 REPORT interfacing with key stakeholders and gathering relevant background data and surveys to understand the situation of plastic leakage hotspots in the sector. In addition, the project team will hold a series of technical meetings with country partners to incorporate inputs from the Kick-off meeting. Weblink: 🌐 http://www.rrcap.ait.ac.th/news/Pages/vol23no2-06.

aspx

PREPARATION OF AN INVENTORYING OF INDUS EMBANKMENTS AND BREACHING SECTIONS TO DOCUMENT THEIR CURRENT CONDITION AND FOR INFORMED DISASTER RISK & HAZARD MAPPING UNDER THE SINDH RESILIENCE PROJECT (IRRIGATION COMPONENT)

Duration: 22 July 2022-31 October 2023 Description: The province of Sindh is situated in a subtropical region lying between two monsoons; the southwest monsoon from the Indian Ocean and the northeast or retreating monsoon, deflected towards it by the Himalayan Mountains. The geography of Sindh along with the climatic conditions, being the lowest riparian in the Indus basin, render it vulnerable to various natural disasters. Sindh experienced major floods in 1973, 1976, 1992, 1994, 1995, 2003, 2005, 2007, 2010, 2011, 2012, 2013, 2015, and 2022. Beside riverine floods primarily involving the Indus River, torrential flash floods have also severely impacted parts of Sindh. Floods in 2010 and 2011 were among the most devastating in the history of the region. Since mid-June 2022, Sindh Province has been drenched by extreme monsoon rains that have led to the province’s worst flooding disaster in decades. Heavy rains, or about three times the volume of the 30-year average rainfall,

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have resulted in torrential flash floods along with urban and riverine floods that caused acute damage to the irrigation network in Sindh Province, impacting millions of people. The core objective of this study is to conduct a detailed survey, field investigation, flood hazard mapping, and prepare an inventory of Indus River embankments lying within Sindh Province in order to identify critical hotspots that may affect a highly vulnerable population of over 13 million living along both the left and right banks of the Indus River. This will involve implementing an Environmental and Social Management Plan for vulnerable hotspots and flood water management in order to create resilient and sustainable infrastructure that will help protect human settlements and agricultural land and to produce a set of implementation protocols for stakeholders to combat climate change and its impacts in the region.


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