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    Green architecture

    Microcl imate Optimization

    Microclimate simulation to ensure optimal air circulation, temperature and humidity for maximum comfort.

  • Summer Microclimate
  • Winter Microclimate
  • Heat Radiation Optimization

    Ensuring the optimal planning of green roofs and solar panel placement.

  • Summer Heat Radiation
  • Winter Heat Radiation
  • Green Roofs

  • Green roofs are energy-efficient with a cooling effect, creating an optimal climate to rediscover the joy of the countryside. They effectively lower the roof temperature by 15 degrees and the indoor temperature by 3-5 degrees.
    The roof of your home becomes a green garden while shielding it from external heat and cooling its interior. Working in synergy with the overall energy-efficie nt design, the green roof absorbs as much carbon dioxide as 1.7 Da’an Forest Parks, protects the environment and reduces our carbon footprint, all the while offering a path on which to stroll up to the village’s highest point. By cultivating a rooftop garden, you can grow your own vegetables, enjoy a LOHAS lifestyle with the whole family and bring home food provided by mother nature as the evening breeze blows.

  • LEED Certification

  • Leadership in Energy and Environmental Design (LEED) is an internationally-recognised third party accreditation process that focuses on the assessment and accreditation of the design, construction and operation of high-performance green buildings. The seven key indicators include site sustainability, efficiency of water usage, energy and the atmosphere, materials and resources, quality of interior environment, revolution and design process, and regional priority. LEED-accredited buildings effectively reduce their negative impact on the environment and health of occupants, both during the construction process and upon completion.

    INTELLIGENT ARCHITECTURE & SMART COMMUNITY

  • ENERGY DASHBOARD
    The energy dashboard shows electricity consumption, carbon dioxide levels and water supply, and works as a constant reminder for the residents to save energy and promote carbon reduction for the benefit of the environment.

  • INDICATORS OF IMMEDIATE ENVIRONMENTAL CONDITIONS
    Leveraging the timeliness of IoT (Internet of Things) and cloud technologies, these indicators allow residents to easily keep track of conditions in their immediate environment, including temperature, humidity, oxygen content, air pollution (suspended particles), radiation, energy consumption, water usage and carbon dioxide levels, all on one simple platform. These indicators are ongoing reminders to contribute to sustainability, carbon reduction and environmentally friendly lifestyles.

  • SENDOR NETWORK / SECURITY MEASURES
    Security: Real-time and remote surveillance both indoors and outdoors, RFID door lock, air quality monitoring system, automatic maintenance notification.
    Energy saving: Intelligent grid, automatic air-conditioning controls, automatic ventilation windows, blinds, light switches, flexible ambient lighting systems, displays of energy consumption and energy savings.
    Convenience: Personal IoT (Internet of Things) management, 24-hour messaging, automatic communication with service centers.

  • SMART COMMUNITY

    Exception notifications

    Tracking and analysis

    Delivery notifications

    Cloud Community Bulletin

    Personalized Information Push

  • INTERNET OF THINGS
    With Smart Home Technology, it has never been easier to communicate with your devices and make them work better: from controlling energy use and monitoring your health to safeguarding your home, the Internet of Things at Huilanwan Sunrise Village will help you create a safe and convenient living environment.

    HUNDRED-YEAR BUILDINGS

    Creating “hundred-year buildings” is the goal of farsighted people who hope to create a sustainable environment. To this end, the Taiwan Land Development Group (TLDG) entrusted the structural engineering design of the Sunrise Villa to the ARUP, a world-renowned engineering consultancy group. The adoption of hill-shaped architecture and multi-layered construction systems by the ARUP improves structural stability, and earthquake as well as wind pressure resistance. Prior to construction, computer simulations were performed to carefully model various natural disasters to facilitate contingency plan preparations and ensure of comprehensive earthquake and typhoon protection.

    From large steel reinforcing bars, big tiles, to small lightbulbs and paints in house, all items have tracking records. Once any material needs repair, a mobile App notification will be automatically sent for maintenance. This prevents the tenants from large-scale renovations every 10 to 20 years and ensures the sustainability of hundred-year buildings.

  • ENERGY EFFICIENCY ANALYSIS
    Compared to the baseline annual average energy consumption for residential buildings in Taiwan, the average energy savings rate for Huilanwan Sunrise Village’s residential units ranges from 27% to 32%. Each unit can save between 804 kWh and 2,115 kWh per year.

  • SUSTAINABILITY AND ENERGY SAVING
    • Afforestation area over 95% of base measurements.
    • Energy conservation facilities in the community will save 27% energy.
    • To install solar panels can conserve electricity 58320 kWh.
    • To install water economizer and rain-storing and recycling system, can save 46,019 tons of water.
    • To reducing 709,863 kg of carbon dioxide emissions annually, can save $4,631,902 a year for the community.

  • ECO-FRIENDYLY CONSTRUCTION MATERIALS
    • Specially selected industry timber from regenerated forests.
    • Use of recycled materials.
    • Walls painted with low VOC (volatile organic compounds) paint.
    • Water recycling and purification system to reuse water for watering plants, cleaning floors etc.

  • STRUCTURE FOR SAFETY
    A hill-shaped structure that follows the order of nature improves structural stability and earthquake resistance. A multi-layered structure with beam-column joints in moment resisting frames, with reinforced concrete core and inclined shear walls, means the combined strength is much greater than that of ordinary framed structures, significantly reducing the impact of earthquakes. Huilanwan Sunrise Village is constructed on a gravel formation, with load-bearing layers consisting of 6000 PSI high-strength concrete and SD420W high tensile steel; this construction gives the LOHAS Village an increased load-bearing ability, hence reducing the impact in the event of an earthquake.