The impact of disruptive events on built environment degree apprenticeship delivery – a case study of COVID-19

IF 2.1 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
D. Oloke, Louis Gyoh, E. Daniel, O. Oladinrin, Nagwan Abdallah
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Abstract

PurposeThis study aims to understand the impact of the Covid-19 pandemic disruptive event on delivery of the built environment degree apprentice programme in higher education in the UK and identify the key strategies to minimise the effect.Design/methodology/approachA qualitative approach was used to collect and analyse data from a sample set of built environment degree apprenticeship stakeholders. Semi-structured interviews were conducted with 17 key stakeholders to collate emerging themes on their perceptions of the impacts of the pandemic and strategies to adopted to minimise it.FindingsThe investigation reveals that the core impacts of Covid-19 on the apprentices training programme are lack of access to the site, furlough, limited access to off the job training, limited interaction with tutors and peers, too much time on the screen, limited pastoral care and lack of contact with a mentor. The census from the research participants is that despite the development and gain with the various virtual platform used during pandemic physical meetings with their mentor remain pivotal to the built environment apprentices learning and training.Practical implicationsThe results provide relevant stakeholders and actors supporting degree apprentices training programmes (training providers and employers, among others) with the information needed to improve the delivery of built environment degree apprenticeship training programmes during a disruptive event Covid-19. The study identifies various strategies to minimise the impact of disruptive events on the apprentices training, including technology, regular meeting with mentors online, and personal and pastoral care.Originality/valueThe study is the first to document the impact of the Covid-19 pandemic on degree apprenticeship programs in the built environment. This study provides an in-depth understanding of how these programs have been affected and offers potential solutions to reduce or mitigate potential damage. The research will inform future policy decisions related to degree apprenticeship programs in the built environment.
破坏性事件对建筑环境学位学徒交付的影响——以2019冠状病毒病为例
本研究旨在了解2019冠状病毒病大流行破坏性事件对英国高等教育建筑环境学位学徒计划的影响,并确定将影响最小化的关键策略。设计/方法/方法采用定性方法收集和分析建筑环境学位学徒利益相关者样本集的数据。与17个主要利益攸关方进行了半结构化访谈,以整理新出现的主题,说明他们对大流行病影响的看法以及为尽量减少影响而采取的战略。调查显示,2019冠状病毒病对学徒培训计划的核心影响是无法进入现场、休假、获得非工作培训的机会有限、与导师和同龄人的互动有限、在屏幕上花费的时间过多、教牧关怀有限以及缺乏与导师的联系。研究参与者的调查结果显示,尽管在与导师进行流行病物理会议期间使用的各种虚拟平台取得了发展和收获,但对建筑环境学徒的学习和培训仍然至关重要。实际意义研究结果为支持学位学徒培训计划的相关利益攸关方和行为体(培训提供者和雇主等)提供了在破坏性事件期间改进建筑环境学位学徒培训计划所需的信息。该研究确定了各种策略,以尽量减少破坏性事件对学徒培训的影响,包括技术,定期与导师在线会面,以及个人和教牧关怀。该研究首次记录了2019冠状病毒病大流行对建筑环境中学位学徒计划的影响。这项研究深入了解了这些项目是如何受到影响的,并提供了减少或减轻潜在损害的潜在解决方案。这项研究将为未来与建筑环境中的学位学徒计划相关的政策决策提供信息。
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来源期刊
CiteScore
4.80
自引率
18.20%
发文量
76
期刊介绍: The International Journal of Building Pathology and Adaptation publishes findings on contemporary and original research towards sustaining, maintaining and managing existing buildings. The journal provides an interdisciplinary approach to the study of buildings, their performance and adaptation in order to develop appropriate technical and management solutions. This requires an holistic understanding of the complex interactions between the materials, components, occupants, design and environment, demanding the application and development of methodologies for diagnosis, prognosis and treatment in this multidisciplinary area. With rapid technological developments, a changing climate and more extreme weather, coupled with developing societal demands, the challenges to the professions responsible are complex and varied; solutions need to be rigorously researched and tested to navigate the dynamic context in which today''s buildings are to be sustained. Within this context, the scope and coverage of the journal incorporates the following indicative topics: • Behavioural and human responses • Building defects and prognosis • Building adaptation and retrofit • Building conservation and restoration • Building Information Modelling (BIM) • Building and planning regulations and legislation • Building technology • Conflict avoidance, management and disputes resolution • Digital information and communication technologies • Education and training • Environmental performance • Energy management • Health, safety and welfare issues • Healthy enclosures • Innovations and innovative technologies • Law and practice of dilapidation • Maintenance and refurbishment • Materials testing • Policy formulation and development • Project management • Resilience • Structural considerations • Surveying methodologies and techniques • Sustainability and climate change • Valuation and financial investment
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