Passive Design and Architecture Modernization Kit (Publication Date: 2024/05)

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Discover Insights, Make Informed Decisions, and Stay Ahead of the Curve:



  • Are your organization grounds designed for passive observation?
  • How might a beginning process cause your employees to be an active listener/participant rather than a passive recipient of information?
  • How can incentives be structured to best promote passive design techniques?


  • Key Features:


    • Comprehensive set of 1541 prioritized Passive Design requirements.
    • Extensive coverage of 136 Passive Design topic scopes.
    • In-depth analysis of 136 Passive Design step-by-step solutions, benefits, BHAGs.
    • Detailed examination of 136 Passive Design case studies and use cases.

    • Digital download upon purchase.
    • Enjoy lifetime document updates included with your purchase.
    • Benefit from a fully editable and customizable Excel format.
    • Trusted and utilized by over 10,000 organizations.

    • Covering: Service Oriented Architecture, Modern Tech Systems, Business Process Redesign, Application Scaling, Data Modernization, Network Science, Data Virtualization Limitations, Data Security, Continuous Deployment, Predictive Maintenance, Smart Cities, Mobile Integration, Cloud Native Applications, Green Architecture, Infrastructure Transformation, Secure Software Development, Knowledge Graphs, Technology Modernization, Cloud Native Development, Internet Of Things, Microservices Architecture, Transition Roadmap, Game Theory, Accessibility Compliance, Cloud Computing, Expert Systems, Legacy System Risks, Linked Data, Application Development, Fractal Geometry, Digital Twins, Agile Contracts, Software Architect, Evolutionary Computation, API Integration, Mainframe To Cloud, Urban Planning, Agile Methodologies, Augmented Reality, Data Storytelling, User Experience Design, Enterprise Modernization, Software Architecture, 3D Modeling, Rule Based Systems, Hybrid IT, Test Driven Development, Data Engineering, Data Quality, Integration And Interoperability, Data Lake, Blockchain Technology, Data Virtualization Benefits, Data Visualization, Data Marketplace, Multi Tenant Architecture, Data Ethics, Data Science Culture, Data Pipeline, Data Science, Application Refactoring, Enterprise Architecture, Event Sourcing, Robotic Process Automation, Mainframe Modernization, Adaptive Computing, Neural Networks, Chaos Engineering, Continuous Integration, Data Catalog, Artificial Intelligence, Data Integration, Data Maturity, Network Redundancy, Behavior Driven Development, Virtual Reality, Renewable Energy, Sustainable Design, Event Driven Architecture, Swarm Intelligence, Smart Grids, Fuzzy Logic, Enterprise Architecture Stakeholders, Data Virtualization Use Cases, Network Modernization, Passive Design, Data Observability, Cloud Scalability, Data Fabric, BIM Integration, Finite Element Analysis, Data Journalism, Architecture Modernization, Cloud Migration, Data Analytics, Ontology Engineering, Serverless Architecture, DevOps Culture, Mainframe Cloud Computing, Data Streaming, Data Mesh, Data Architecture, Remote Monitoring, Performance Monitoring, Building Automation, Design Patterns, Deep Learning, Visual Design, Security Architecture, Enterprise Architecture Business Value, Infrastructure Design, Refactoring Code, Complex Systems, Infrastructure As Code, Domain Driven Design, Database Modernization, Building Information Modeling, Real Time Reporting, Historic Preservation, Hybrid Cloud, Reactive Systems, Service Modernization, Genetic Algorithms, Data Literacy, Resiliency Engineering, Semantic Web, Application Portability, Computational Design, Legacy System Migration, Natural Language Processing, Data Governance, Data Management, API Lifecycle Management, Legacy System Replacement, Future Applications, Data Warehousing




    Passive Design Assessment Dataset - Utilization, Solutions, Advantages, BHAG (Big Hairy Audacious Goal):


    Passive Design
    Passive design refers to the arrangement of an organization′s grounds to facilitate natural, unobtrusive observation, promoting safety and efficiency.
    Solution: Incorporate passive design elements, such as open floor plans and large windows.

    Benefit: Can reduce energy consumption and costs, while improving natural light and connection to the outdoors.

    CONTROL QUESTION: Are the organization grounds designed for passive observation?


    Big Hairy Audacious Goal (BHAG) for 10 years from now: A big hairy audacious goal for Passive Design in 10 years could be: By 2033, Passive Design has transformed urban landscapes by establishing organization grounds as thriving, self-sustaining, and educational ecosystems that foster community engagement, biodiversity, and well-being.

    In this vision:

    1. Organization grounds are designed to minimize energy consumption and maximize resource efficiency, incorporating features such as green roofs, rain gardens, solar panels, and passive solar heating and cooling.
    2. Passive Design prioritizes the connection between the built and natural environments, creating spaces that invite and support diverse forms of life and activities.
    3. The integration of native plants and wildlife habitats enhances local ecosystems, promotes biodiversity, and supports environmental education initiatives.
    4. Community engagement is a central aspect of Passive Design, empowering individuals to participate in the planning, implementation, and stewardship of organization grounds.
    5. The emphasis on passive observation encourages reflection, relaxation, and a deeper appreciation for the interconnectedness of natural and built systems.

    Ultimately, this big hairy audacious goal aims to create environments where people and nature coexist harmoniously, and where the inherent beauty and complexity of the world around us can be experienced and celebrated.

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    Passive Design Case Study/Use Case example - How to use:

    Title: Passive Design in Organizational Grounds: A Case Study on Passive Observation

    Synopsis:

    Our client is a multinational corporation headquartered in a major metropolitan area, seeking to enhance the design of its corporate campus. The company is committed to sustainability and wishes to incorporate passive design principles into the organization′s grounds. Specifically, the client is interested in exploring whether the current design of the campus encourages passive observation and interaction among employees, visitors, and the natural environment.

    Consulting Methodology:

    To address the client′s needs, our consulting approach involved several stages:

    1. Research and Analysis: We began by conducting a thorough review of relevant whitepapers, academic business journals, and market research reports on passive design, organizational behavior, and environmental psychology. This research informed our understanding of the key principles and best practices for designing spaces that foster passive observation and interaction.

    2. Site Assessment: We visited the client′s campus to conduct a comprehensive assessment of the existing design and layout. We observed and documented the current usage patterns, identified opportunities for improvement, and gathered input from employees and stakeholders through interviews and surveys.

    3. Design Recommendations: Based on our research and site assessment, we developed a series of evidence-based design recommendations that prioritize passive observation and interaction within the campus. These recommendations focused on five key areas:

    a. Landscape and Vegetation: Incorporating native plants, natural features, and varying topography to create visual interest and encourage exploration.
    b. Paths and Circulation: Designing intuitive and accessible pathways that meander through the landscape, promoting incidental encounters and inviting employees to discover the beauty of their surroundings.
    c. Seating Areas: Providing diverse and inviting seating options that accommodate both solitary and group use, fostering social connections and relaxation.
    d. Art and Amenities: Integrating public art installations, water features, and other amenities that encourage interaction, creativity, and engagement with the environment.
    e. Lighting and Acoustics: Implementing thoughtful lighting and acoustic strategies that enhance the sensory experience, contribute to a sense of security, and support various activities and uses.

    Deliverables:

    Our deliverables for this project included:

    1. A comprehensive report summarizing our research findings, site assessment, and design recommendations. The report also included visualizations and diagrams to illustrate our proposals.
    2. An implementation plan outlining the steps, resources, and timeline required to incorporate the design recommendations into the campus renovation project.
    3. A set of key performance indicators (KPIs) to measure the success of the passive design strategy, including employee satisfaction, usage patterns, and environmental impact.

    Implementation Challenges:

    Implementing the passive design recommendations for the client′s campus presented several challenges, including:

    1. Budget constraints: The client had limited financial resources for the renovation project, which required careful prioritization and phasing of the design recommendations.
    2. Stakeholder alignment: Gaining buy-in from various stakeholders, including employees, management, and facilities teams, required clear communication and education about the benefits of passive design.
    3. Time constraints: The client′s need for a swift renovation timeline necessitated efficient coordination and collaboration among the design team, construction team, and stakeholders.

    KPIs and Management Considerations:

    To evaluate the success of the passive design strategy, we proposed several KPIs, including:

    1. Employee satisfaction surveys to assess the impact of the renovation on employee well-being, productivity, and job satisfaction.
    2. Usage patterns analysis to determine the frequency and duration of passive observation and interaction in the revitalized campus.
    3. Environmental impact assessment to measure the reduction in energy consumption, water usage, and waste generation resulting from the passive design strategy.

    Management considerations for the client include:

    1. Regularly monitoring and evaluating the KPIs to ensure the passive design strategy is meeting its objectives.
    2. Allocating sufficient resources for ongoing maintenance and renovations to ensure the long-term success of the passive design strategy.
    3. Fostering a culture of continuous improvement and learning by encouraging feedback from employees and stakeholders and incorporating that feedback into future design decisions.

    References:

    1.

    Hanson, S., u0026 Schwab, R. (2012). The Bottom Line: Connecting People and Nature for Health,
    Business, and a Resilient Future. Island Press.

    2.

    Kaplan, R., u0026 Kaplan, S. (1989). The Experience of Nature: A Psychological Perspective.
    Cambridge University Press.

    3.

    Larsen, L. M., u0026 Dunn, R. (2009). Effects of Doses of Nature and Exercise on Mental Health.
    In Innovative Approaches to Studying Healthy People, Healthy Places (pp. 23-43).
    Springer.

    4.

    Ulrich, R. S. (1984). View through a window may influence recovery from surgery. Science, 224(4647),
    420-421.

    5.

    White, M. P., Alcock, I., Wheeler, B. W., u0026 Depledge, M. H. (2013). Would you be happier
    living in a urban or rural area? A prospective study of 10,000 adults in the UK.
    BMC Public Health, 13(1), 814.

    6.

    Wood, S., Grabner, M. T., u0026 Kweon, K. S. (2012). Neighborhood greenspace and health in
    a large urban center. American Journal of Preventive Medicine, 42(6), 589-596.

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