{"id":61630,"date":"2026-01-17T08:34:23","date_gmt":"2026-01-17T08:34:23","guid":{"rendered":"https:\/\/ingeoexpert.com\/en\/?p=61630"},"modified":"2026-01-17T08:43:14","modified_gmt":"2026-01-17T08:43:14","slug":"regulatory-requirement-and-case-studies","status":"publish","type":"post","link":"https:\/\/ingeoexpert.com\/en\/2026\/01\/17\/regulatory-requirement-and-case-studies\/","title":{"rendered":"Geotechnical instrumentation for construction sector: regulatory requirement and case studies"},"content":{"rendered":"<blockquote>\n<p align=\"justify\"><span data-path-to-node=\"2,1\"><span class=\"citation-728\">An analysis of global geotechnical regulations and the critical role of instrumentation in construction safety. Through international standards and case studies like the Nicoll Highway collapse, this article explores how independent monitoring and strict compliance provide the early warnings necessary to prevent catastrophic structural failures<\/span><\/span>. Find more about the <a href=\"https:\/\/ingeoexpert.com\/en\/courses-online\/geotechnical-instrumentation-for-construction-sector\/\" target=\"_blank\" rel=\"noopener\">Geotechnical instrumentation for construction sector <\/a>course.<\/p>\n<\/blockquote>\n<p align=\"justify\"><!--more--><\/p>\n<div id=\"model-response-message-contentr_a3d7b5de1da0bbbc\" class=\"markdown markdown-main-panel enable-updated-hr-color\" dir=\"ltr\" aria-live=\"polite\" aria-busy=\"false\">\n<ol>\n<li>REGULATORY CONTROL &#8211; INTERNATIONAL<\/li>\n<\/ol>\n<\/div>\n<div id=\"model-response-message-contentr_a3d7b5de1da0bbbc\" class=\"markdown markdown-main-panel enable-updated-hr-color\" dir=\"ltr\" aria-live=\"polite\" aria-busy=\"false\">\n<p data-path-to-node=\"7,0,1\"><span data-path-to-node=\"7,0,1,0\"><b data-path-to-node=\"7,0,1,0\" data-index-in-node=\"0\"><span class=\"citation-643\">United States:<\/span><\/b><span class=\"citation-643\"> The Federal Highway Administration (FHWA) in the U.S. has guidelines and requirements for geotechnical instrumentation in construction projects, particularly for transportation infrastructure such as highways, bridges, and tunnels<\/span><\/span><span data-path-to-node=\"7,0,1,1\"><span class=\"citation-643 citation-end-643\"><sup class=\"superscript\" data-turn-source-index=\"4\">4<\/sup><\/span><\/span><span data-path-to-node=\"7,0,1,2\">. <\/span><span data-path-to-node=\"7,0,1,4\"><span class=\"citation-642\">These guidelines provide detailed information on the types of instrumentation to be used, installation methods, monitoring frequency, and data reporting<\/span><\/span><span data-path-to-node=\"7,0,1,6\">.<\/span><\/p>\n<p data-path-to-node=\"7,1,1\"><span data-path-to-node=\"7,1,1,0\"><b data-path-to-node=\"7,1,1,0\" data-index-in-node=\"0\"><span class=\"citation-641\">United Kingdom:<\/span><\/b><span class=\"citation-641\"> The United Kingdom has regulatory requirements for geotechnical instrumentation in construction work, governed by organizations such as the British Standards Institution (BSI) and the Institution of Civil Engineers (ICE)<\/span><\/span><span data-path-to-node=\"7,1,1,2\">. <\/span><span data-path-to-node=\"7,1,1,4\"><span class=\"citation-640\">These requirements provide guidelines for the use of instrumentation in construction projects, including monitoring of soil and rock behavior, settlement, and pore water pressure<\/span><\/span><span data-path-to-node=\"7,1,1,6\">.<\/span><\/p>\n<p data-path-to-node=\"7,2,1\"><span data-path-to-node=\"7,2,1,0\"><b data-path-to-node=\"7,2,1,0\" data-index-in-node=\"0\"><span class=\"citation-639\">European Union (EU):<\/span><\/b><span class=\"citation-639\"> The EU has regulatory requirements for geotechnical instrumentation in construction projects, which are outlined in various standards and guidelines<\/span><\/span><span data-path-to-node=\"7,2,1,2\">. <\/span><span data-path-to-node=\"7,2,1,4\"><span class=\"citation-638\">These requirements provide guidance on the use of instrumentation for monitoring soil and rock behavior, settlement, and other geotechnical parameters<\/span><\/span><span data-path-to-node=\"7,2,1,5\"><span class=\"citation-638 citation-end-638\"><sup class=\"superscript\" data-turn-source-index=\"9\">9<\/sup><\/span><\/span><span data-path-to-node=\"7,2,1,6\">.<\/span><\/p>\n<p data-path-to-node=\"9\"><span data-path-to-node=\"9,1\"><span class=\"citation-637\">2. REGULATORY CONTROL &#8211; APA<\/span><\/span><\/p>\n<p data-path-to-node=\"10,0,1\"><span data-path-to-node=\"10,0,1,0\"><b data-path-to-node=\"10,0,1,0\" data-index-in-node=\"0\"><span class=\"citation-636\">Singapore:<\/span><\/b><span class=\"citation-636\"> Singapore is a highly developed island city-state known for its modern infrastructure and construction excellence<\/span><\/span><span data-path-to-node=\"10,0,1,2\">. <\/span><span data-path-to-node=\"10,0,1,4\"><span class=\"citation-635\">The Building and Construction Authority (BCA) in Singapore has regulations and guidelines for geotechnical instrumentation in construction projects, including requirements for monitoring of soil and rock behavior, ground settlement, and slope stability<\/span><\/span><span data-path-to-node=\"10,0,1,6\">.<\/span><\/p>\n<p data-path-to-node=\"10,1,1\"><span data-path-to-node=\"10,1,1,0\"><b data-path-to-node=\"10,1,1,0\" data-index-in-node=\"0\"><span class=\"citation-634\">Hong Kong:<\/span><\/b><span class=\"citation-634\"> Hong Kong is a Special Administrative Region (SAR) of China known for its skyscrapers and high-density urban development<\/span><\/span><span data-path-to-node=\"10,1,1,2\">. <\/span><span data-path-to-node=\"10,1,1,4\"><span class=\"citation-633\">The Geotechnical Engineering Office (GEO) under the Hong Kong Special Administrative Region Government has regulations and guidelines for geotechnical instrumentation in construction projects, including requirements for ground investigation, monitoring, and reporting<\/span><\/span><span data-path-to-node=\"10,1,1,6\">.<\/span><\/p>\n<p data-path-to-node=\"10,2,1\"><span data-path-to-node=\"10,2,1,0\"><b data-path-to-node=\"10,2,1,0\" data-index-in-node=\"0\"><span class=\"citation-632\">Japan:<\/span><\/b><span class=\"citation-632\"> Japan is known for its advanced technology and construction practices, particularly in earthquake-prone regions<\/span><\/span><span data-path-to-node=\"10,2,1,2\">. <\/span><span data-path-to-node=\"10,2,1,4\"><span class=\"citation-631\">The Japanese Geotechnical Society (JGS) and the Ministry of Land, Infrastructure, Transport and Tourism (MLIT) have regulations and guidelines for geotechnical instrumentation in construction projects, with a focus on earthquake-resistant design, ground improvement, and slope stability<\/span><\/span><span data-path-to-node=\"10,2,1,6\">.<\/span><\/p>\n<p data-path-to-node=\"12\"><span data-path-to-node=\"12,1\"><span class=\"citation-630\">3. CONSEQUENCES FOR FAILURE TO COMPLY\u00a0<\/span><\/span><\/p>\n<p data-path-to-node=\"13\"><span data-path-to-node=\"13,1\"><span class=\"citation-629\">Failure to comply with regulatory requirements for geotechnical instrumentation in construction work can have various consequences, depending on the specific regulations and the severity of the non-compliance<\/span><\/span><span data-path-to-node=\"13,3\">. Potential consequences may include:<\/span><\/p>\n<p data-path-to-node=\"14,0,1\"><span data-path-to-node=\"14,0,1,0\"><b data-path-to-node=\"14,0,1,0\" data-index-in-node=\"0\"><span class=\"citation-628\">Legal and Regulatory Penalties:<\/span><\/b><span class=\"citation-628\"> Non-compliance with regulatory requirements may result in fines, penalties, or legal consequences imposed by the relevant regulatory authorities<\/span><\/span><span data-path-to-node=\"14,0,1,2\">. <\/span><span data-path-to-node=\"14,0,1,4\"><span class=\"citation-627\">These penalties can vary in severity depending on the jurisdiction and the nature of the violation<\/span><\/span><span data-path-to-node=\"14,0,1,6\">.<\/span><\/p>\n<div class=\"source-inline-chip-container ng-star-inserted\"><span data-path-to-node=\"14,1,1,0\"><b data-path-to-node=\"14,1,1,0\" data-index-in-node=\"0\"><span class=\"citation-626\">Project Delays and Cost Overruns:<\/span><\/b><span class=\"citation-626\"> Failure to comply with geotechnical instrumentation requirements may result in delays in project timelines and additional costs associated with retrofitting or reworking construction elements<\/span><\/span><span data-path-to-node=\"14,1,1,2\">. <\/span><span data-path-to-node=\"14,1,1,4\"><span class=\"citation-625\">Non-compliance may also result in increased liability and insurance costs<\/span><\/span><span data-path-to-node=\"14,1,1,6\">.<\/span><\/div>\n<div><\/div>\n<p data-path-to-node=\"14,2,1\"><span data-path-to-node=\"14,2,1,0\"><b data-path-to-node=\"14,2,1,0\" data-index-in-node=\"0\"><span class=\"citation-624\">Safety Risks:<\/span><\/b><span class=\"citation-624\"> Geotechnical instrumentation plays a crucial role in ensuring the safety of construction projects by monitoring ground movement, slope stability, and other factors<\/span><\/span><span data-path-to-node=\"14,2,1,2\">. <\/span><span data-path-to-node=\"14,2,1,4\"><span class=\"citation-623\">Failure to comply with regulatory requirements may result in increased safety risks, potentially leading to accidents, injuries, or even fatalities<\/span><\/span><span data-path-to-node=\"14,2,1,6\">.<\/span><\/p>\n<\/div>\n<p data-path-to-node=\"14,2,1\"><a href=\"https:\/\/ingeoexpert.com\/en\/wp-content\/uploads\/sites\/2\/2026\/01\/Opt-1-1.webp\"><img fetchpriority=\"high\" decoding=\"async\" class=\"size-large wp-image-61631 aligncenter\" src=\"https:\/\/ingeoexpert.com\/en\/wp-content\/uploads\/sites\/2\/2026\/01\/Opt-1-1-800x395.webp\" alt=\"\" width=\"800\" height=\"395\" srcset=\"https:\/\/ingeoexpert.com\/en\/wp-content\/uploads\/sites\/2\/2026\/01\/Opt-1-1-800x395.webp 800w, https:\/\/ingeoexpert.com\/en\/wp-content\/uploads\/sites\/2\/2026\/01\/Opt-1-1-360x178.webp 360w, https:\/\/ingeoexpert.com\/en\/wp-content\/uploads\/sites\/2\/2026\/01\/Opt-1-1-768x379.webp 768w, https:\/\/ingeoexpert.com\/en\/wp-content\/uploads\/sites\/2\/2026\/01\/Opt-1-1-450x222.webp 450w, https:\/\/ingeoexpert.com\/en\/wp-content\/uploads\/sites\/2\/2026\/01\/Opt-1-1.webp 1503w\" sizes=\"(max-width: 800px) 100vw, 800px\" \/><\/a><\/p>\n<div id=\"model-response-message-contentr_a3d7b5de1da0bbbc\" class=\"markdown markdown-main-panel enable-updated-hr-color\" dir=\"ltr\" aria-live=\"polite\" aria-busy=\"false\">\n<p data-path-to-node=\"14,3,1\"><span data-path-to-node=\"14,3,1,0\"><b data-path-to-node=\"14,3,1,0\" data-index-in-node=\"0\"><span class=\"citation-622\">Poor Project Performance:<\/span><\/b><span class=\"citation-622\"> Geotechnical instrumentation helps in evaluating the performance of construction elements, such as foundations, retaining walls, and slopes<\/span><\/span><span data-path-to-node=\"14,3,1,2\">. <\/span><span data-path-to-node=\"14,3,1,4\"><span class=\"citation-621\">Failure to comply with regulatory requirements may result in poor performance of these elements, leading to reduced structural integrity, reduced functionality, or premature failure<\/span><\/span><span data-path-to-node=\"14,3,1,6\">.<\/span><\/p>\n<p data-path-to-node=\"14,4,1\"><span data-path-to-node=\"14,4,1,0\"><b data-path-to-node=\"14,4,1,0\" data-index-in-node=\"0\"><span class=\"citation-620\">Reputational Damage:<\/span><\/b><span class=\"citation-620\"> Non-compliance with regulatory requirements can result in reputational damage for construction companies, contractors, and project owners<\/span><\/span><span data-path-to-node=\"14,4,1,2\">. <\/span><span data-path-to-node=\"14,4,1,4\"><span class=\"citation-619\">This can impact future business opportunities, relationships with stakeholders, and overall industry reputation<\/span><\/span><span data-path-to-node=\"14,4,1,6\">.<\/span><\/p>\n<p data-path-to-node=\"14,5,1\"><span data-path-to-node=\"14,5,1,0\"><b data-path-to-node=\"14,5,1,0\" data-index-in-node=\"0\"><span class=\"citation-618\">Legal Liability:<\/span><\/b><span class=\"citation-618\"> Failure to comply with regulatory requirements may result in legal liability for construction companies, contractors, and project owners<\/span><\/span><span data-path-to-node=\"14,5,1,2\">. <\/span><span data-path-to-node=\"14,5,1,4\"><span class=\"citation-617\">This can include lawsuits, claims, or legal disputes related to construction defects, property damage, or personal injuries<\/span><\/span><span data-path-to-node=\"14,5,1,6\">.<\/span><\/p>\n<div class=\"source-inline-chip-container ng-star-inserted\"><span class=\"button-label gds-label-m ng-star-inserted\">4. <\/span><span data-path-to-node=\"16,1\"><span class=\"citation-616\">WHY NEED TO BE REGULATED? <\/span><\/span><\/div>\n<div><\/div>\n<p data-path-to-node=\"17\"><span data-path-to-node=\"17,1\"><span class=\"citation-615\">Refer to example of major construction accidents worldwide below:<\/span><\/span><\/p>\n<p data-path-to-node=\"18,0,1\"><span data-path-to-node=\"18,0,1,0\"><b data-path-to-node=\"18,0,1,0\" data-index-in-node=\"0\"><span class=\"citation-614\">Collapse of the Hyatt Regency walkway in Kansas City, United States (1981):<\/span><\/b><span class=\"citation-614\"> The collapse of the suspended walkways at the Hyatt Regency hotel during a tea dance event resulted in 114 deaths and over 200 injuries<\/span><\/span><span data-path-to-node=\"18,0,1,2\">. <\/span><span data-path-to-node=\"18,0,1,4\"><span class=\"citation-613\">The failure was attributed to a design change that compromised the structural integrity of the walkway<\/span><\/span><span data-path-to-node=\"18,0,1,6\">.<\/span><\/p>\n<p data-path-to-node=\"18,1,1\"><span data-path-to-node=\"18,1,1,0\"><b data-path-to-node=\"18,1,1,0\" data-index-in-node=\"0\"><span class=\"citation-612\">Collapse of the Rana Plaza building in Dhaka, Bangladesh (2013):<\/span><\/b><span class=\"citation-612\"> The collapse of the eight-story Rana Plaza building, which housed garment factories, resulted in over 1,100 deaths and numerous injuries<\/span><\/span><span data-path-to-node=\"18,1,1,2\">. <\/span><span data-path-to-node=\"18,1,1,4\"><span class=\"citation-611\">The failure was attributed to poor construction practices, substandard materials, and structural overload<\/span><\/span><span data-path-to-node=\"18,1,1,5\"><span class=\"citation-611 citation-end-611\"><sup class=\"superscript\" data-turn-source-index=\"36\">36<\/sup><\/span><\/span><span data-path-to-node=\"18,1,1,6\">.<\/span><\/p>\n<p data-path-to-node=\"18,2,1\"><span data-path-to-node=\"18,2,1,0\"><b data-path-to-node=\"18,2,1,0\" data-index-in-node=\"0\"><span class=\"citation-610\">Fukushima Daiichi nuclear disaster in Fukushima, Japan (2011):<\/span><\/b><span class=\"citation-610\"> The Fukushima Daiichi nuclear disaster was triggered by a magnitude 9.0 earthquake and tsunami, resulting in meltdowns, explosions, and releases of radioactive materials<\/span><\/span><span data-path-to-node=\"18,2,1,2\">. <\/span><span data-path-to-node=\"18,2,1,4\"><span class=\"citation-609\">The failure was attributed to inadequate design, poor disaster preparedness, and inadequate safety measures<\/span><\/span><span data-path-to-node=\"18,2,1,6\">.<\/span><\/p>\n<p data-path-to-node=\"18,3,1\"><span data-path-to-node=\"18,3,1,0\"><b data-path-to-node=\"18,3,1,0\" data-index-in-node=\"0\"><span class=\"citation-608\">Collapse of the Morandi Bridge in Genoa, Italy (2018):<\/span><\/b><span class=\"citation-608\"> The collapse of the Morandi Bridge resulted in 43 deaths and extensive damage<\/span><\/span><span data-path-to-node=\"18,3,1,2\">. <\/span><span data-path-to-node=\"18,3,1,4\"><span class=\"citation-607\">The failure was attributed to design deficiencies, lack of maintenance, and corrosion of steel components<\/span><\/span><span data-path-to-node=\"18,3,1,6\">.<\/span><\/p>\n<p data-path-to-node=\"18,4,1\"><span data-path-to-node=\"18,4,1,0\"><b data-path-to-node=\"18,4,1,0\" data-index-in-node=\"0\"><span class=\"citation-606\">Collapse of Nicoll Highway in Singapore (2004):<\/span><\/b><span class=\"citation-606\"> The collapse of Nicoll Highway resulted in a 30-metre (98 ft) deep cave-in that spread across six lanes of Nicoll Highway<\/span><\/span><span data-path-to-node=\"18,4,1,2\">. <\/span><span data-path-to-node=\"18,4,1,4\"><span class=\"citation-605\">The collapse killed four people and injured three<\/span><\/span><span data-path-to-node=\"18,4,1,6\">. <\/span><span data-path-to-node=\"18,4,1,8\"><span class=\"citation-604\">The failure was attributed to a combination of factors, including design errors, inadequate construction practices, and unforeseen ground conditions<\/span><\/span><span data-path-to-node=\"18,4,1,10\">.<\/span><\/p>\n<p data-path-to-node=\"20\"><span data-path-to-node=\"20,0\"><b data-path-to-node=\"20,0\" data-index-in-node=\"0\"><span class=\"citation-603\">What can geotechnical instrumentation help?<\/span><\/b><span class=\"citation-603\"> Early warning to reduce fatality rate and to have suffice time for contingency\/remedy actions that could prevent the accidents<\/span><\/span><span data-path-to-node=\"20,2\">.<\/span><\/p>\n<p data-path-to-node=\"22\"><span data-path-to-node=\"22,1\"><span class=\"citation-602\">5. CASE STUDIES 1: Nicoll Highway Collapse <\/span><\/span><\/p>\n<p data-path-to-node=\"23\"><span data-path-to-node=\"23,1\"><span class=\"citation-601\">The Nicoll Highway collapse was a construction accident that occurred on 20 April 2004 in Singapore when a tunnel being constructed for use by MRT trains collapsed<\/span><\/span><span data-path-to-node=\"23,2\"><span class=\"citation-601 citation-end-601\"><sup class=\"superscript\" data-turn-source-index=\"46\">46<\/sup><\/span><\/span><span data-path-to-node=\"23,3\">. <\/span><span data-path-to-node=\"23,5\"><span class=\"citation-600\">The tunnel was part of the construction of the underground Circle Line, near Nicoll Highway Station<\/span><\/span><span data-path-to-node=\"23,7\">. <\/span><span data-path-to-node=\"23,9\"><span class=\"citation-599\">The supporting structure for the deep excavation work failed during construction, resulting in a 30-metre (98 ft) deep cave-in that spread across six lanes of Nicoll Highway<\/span><\/span><span data-path-to-node=\"23,11\">. <\/span><span data-path-to-node=\"23,13\"><span class=\"citation-598\">The collapse killed four people and injured three<\/span><\/span><span data-path-to-node=\"23,15\">.<\/span><\/p>\n<p data-path-to-node=\"25\"><span data-path-to-node=\"25,0\"><span class=\"citation-597\">Telltale Signs and Lessons Learnt<\/span><\/span><span data-path-to-node=\"25,2\">:<\/span><\/p>\n<ul data-path-to-node=\"26\">\n<li>\n<p data-path-to-node=\"26,0,0\"><span data-path-to-node=\"26,0,0,1\"><span class=\"citation-596\">Wall deflection was more than 400 millimeters, which did not appear to be alarming to the project parties<\/span><\/span><span data-path-to-node=\"26,0,0,3\">.<\/span><\/p>\n<\/li>\n<li>\n<p data-path-to-node=\"26,1,0\"><span data-path-to-node=\"26,1,0,1\"><span class=\"citation-595\">There were signs that the strutting system was under distress, manifested by stiffener plates buckling and kingposts deformed beyond vertical alignment<\/span><\/span><span data-path-to-node=\"26,1,0,3\">.<\/span><\/p>\n<\/li>\n<li>\n<p data-path-to-node=\"26,2,0\"><span data-path-to-node=\"26,2,0,1\"><span class=\"citation-594\">In C824, the immense pressures of cost and time impelled the builder to take unnecessary risks, even to the extent of not stopping work in the face of warning signs, hoping to complete the work quickly<\/span><\/span><span data-path-to-node=\"26,2,0,3\">.<\/span><\/p>\n<\/li>\n<li>\n<p data-path-to-node=\"26,3,0\"><span data-path-to-node=\"26,3,0,1\"><span class=\"citation-593\">This mindset to rush work and complete work to achieve safety is a dangerous fallacy<\/span><\/span><span data-path-to-node=\"26,3,0,2\"><span class=\"citation-593 citation-end-593\"><sup class=\"superscript\" data-turn-source-index=\"54\">54<\/sup><\/span><\/span><span data-path-to-node=\"26,3,0,3\">. <\/span><span data-path-to-node=\"26,3,0,5\"><span class=\"citation-592\">The more secure way would be to cease work and strengthen the weak areas to ensure safety and stability<\/span><\/span><span data-path-to-node=\"26,3,0,7\">.<\/span><\/p>\n<\/li>\n<\/ul>\n<p data-path-to-node=\"28\"><span data-path-to-node=\"28,1\"><span class=\"citation-591\">6. KEY REGULATORY CHANGES<\/span><\/span><\/p>\n<ul data-path-to-node=\"29\">\n<li>\n<p data-path-to-node=\"29,0,0\"><span data-path-to-node=\"29,0,0,1\"><span class=\"citation-590\">A proper reporting structure and regulatory requirement to comply<\/span><\/span><span data-path-to-node=\"29,0,0,3\">.<\/span><\/p>\n<\/li>\n<li><span data-path-to-node=\"29,1,0,1\"><span class=\"citation-589\">Instrumentation Contractor to be appointed independently by project owner to eliminate the conflict-of-interest issue under Civil Builder<\/span><\/span><span data-path-to-node=\"29,1,0,3\">.<\/span><\/li>\n<\/ul>\n<ul>\n<li data-path-to-node=\"29,2,0\"><span data-path-to-node=\"29,2,0,1\"><span class=\"citation-588\">Both Instrumentation Contractor and Civil Builder are supervised under Qualified Person (Supervision) team to ensure the compliance of procedures<\/span><\/span><span data-path-to-node=\"29,2,0,3\">.<\/span><\/li>\n<\/ul>\n<ul data-path-to-node=\"29\">\n<li>\n<p data-path-to-node=\"29,3,0\"><span data-path-to-node=\"29,3,0,1\"><span class=\"citation-587\">Stringent Stop Work Procedure to pulse the construction activities for verification and mitigation actions<\/span><\/span><span data-path-to-node=\"29,3,0,3\">.<\/span><\/p>\n<\/li>\n<li>\n<p data-path-to-node=\"29,4,0\"><span data-path-to-node=\"29,4,0,1\"><span class=\"citation-586\">Qualified Person (Supervision) act as eyes of BCA to receive report of instrumentation breaching or non-compliance of construction activities<\/span><\/span><span data-path-to-node=\"29,4,0,3\">.<\/span><\/p>\n<div class=\"source-inline-chip-container ng-star-inserted\"><\/div>\n<\/li>\n<\/ul>\n<p data-path-to-node=\"31\"><span data-path-to-node=\"31,1\"><span class=\"citation-585\">7. CASE STUDIES 2: Clementi Slope Failure <\/span><\/span><\/p>\n<p data-path-to-node=\"32\"><span data-path-to-node=\"32,1\"><span class=\"citation-584 interactive-span-hovered\">The Clementi Slope Failure was an incident that occurred on 2 September 2022 in Singapore where a slope near a housing apartment construction failed<\/span><\/span><span data-path-to-node=\"32,3\">. <\/span><span data-path-to-node=\"32,5\"><span class=\"citation-583\">The slope failure completely blocked the flow of the Ulu Pandan Canal<\/span><\/span><span data-path-to-node=\"32,7\">. <\/span><span data-path-to-node=\"32,9\"><span class=\"citation-582\">The collapse injured one park goer<\/span><\/span><span data-path-to-node=\"32,11\">. <\/span><span data-path-to-node=\"32,13\"><span class=\"citation-581\">Initial investigation find the frequent rains are the major cause for the collapse<\/span><\/span><span data-path-to-node=\"32,15\">.<\/span><\/p>\n<p data-path-to-node=\"34\"><span data-path-to-node=\"34,0\"><b data-path-to-node=\"34,0\" data-index-in-node=\"0\"><span class=\"citation-580\">Observation:<\/span><\/b><span class=\"citation-580\"> Based on understanding of HDB project where no deep excavation, geotechnical instrumentation only limited to the perimeter of the site which no instrumentation on slopes are highly likely<\/span><\/span><span data-path-to-node=\"34,2\">. <\/span><span data-path-to-node=\"34,4\"><span class=\"citation-579\">As additional surcharge and long-term construction activities near the slope might weaken the slope, coupled with raining seasons that liquidized the soil movement at slope failure envelope, as no instrumentation such as inclinometer, piezometer, settlement monitoring at the top and bottom of slope, no early warning triggered<\/span><\/span><span data-path-to-node=\"34,6\">.<\/span><\/p>\n<div class=\"source-inline-chip-container ng-star-inserted\"><\/div>\n<p data-path-to-node=\"36\">\n<\/div>\n","protected":false},"excerpt":{"rendered":"<p>An analysis of global geotechnical regulations and the critical role of instrumentation in construction safety. 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