百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

Energy Efficiency: A pathway to Lower Carbon Emissions

City University of Hong Kong (CityUHK) is spearheading several initiatives to enhance energy efficiency in buildings, focusing on modern technological applications and comprehensive monitoring strategies. These efforts highlight CityUHK's comprehensive approach to improving energy performance and reducing energy consumption across its facilities.

In addition to building management, the University has also employed data-driven analytics for maintenance to optimise energy management processes.

By adopting sustainable and environmentally friendly practices, the university is setting a benchmark in energy efficiency and carbon reduction on campus.

Sustainable Building Services Systems

Initiatives to Enhance Energy Efficiency and Processes to Reduce Carbon Emissions

Integrating Renewable Energy Sources

  • Application of Photovoltaic (PV) Panels
    CityUHK has partnered with local power utilities to install thousands of PV panels on campus. These panels will generate up to 1.15GWh of electricity annually which is equivalent to the power consumptions of 280 households while reducing carbon emissions by about 450 tonnes each year. The project will also test innovative, electricity-free passive radiative cooling paint developed by i2Cool to enhance solar power generation efficiency.
PV panels

Enhancing Energy Efficiency

  • Design Standards of Building Services Systems
    CityUHK has established Design Standards of Building Services Systems for new buildings and renovation projects. The Design Standards Manual has been revised to incorporate advancements in building digitalisation.
  • Upgrading Air Handling Units
    CityUHK has been upgrading the air handling units (AHUs) with electronically commutated (EC) motor fans. This initiative forms part of a comprehensive strategy aimed at reducing energy consumption and improving operational efficiency.
  • Implementing IoT Technology
    Web-based Building Management Systems (BMS) and Internet of Things (IoT) technology enhance the flexibility of managing lighting and air conditioning systems through various IoT sensors, including motion sensors. The installation of IoT Fan Coil Unit (FCU) controllers allows for schedule control, temperature reset, and adaptive control. This approach has demonstrated a pay-back period of less than two years, making it a cost-effective solution for energy management.
  • Predictive Maintenance to Chiller Plants
    Predictive maintenance is applied to chiller plants. Maintenance and replacement of system components are based on key performance indicators (KPIs) rather than the number of years in service. This approach ensures that resources are allocated appropriately.
Enhancing Energy Efficiency

Reducing Energy Consumption

  • Adopting Smart Lighting Systems
    All new renovations and constructions adopt LED lighting systems. When compared to fluorescent lighting systems, LEDs can reduce energy consumption by up to 50%. Furthermore, IoT motion sensors are incorporated to switch off LED lighting systems when areas are unoccupied, further minimising the energy usage.

Identifying and Minimising Energy Wastage

  • Web-based Monitoring System
    The existing BMS systems, IoT devices, and Power Monitoring Systems are connected to form a single web-based BMS systems. Customised dashboards are developed to enable engineers for real-time monitoring and monthly energy analysis, which generates maintenance recommendations and ensures efficient energy management.
Reducing Energy Consumption

Adopting Innovative Technologies

  • Low-carbon construction techniques
    The construction of the student Hostel (SH5) utilised Modular Integrated Construction (MIC) techniques, which significantly reduced the construction period by two years. Moreover, this approach minimised local waste and conserved materials used for concrete works, demonstrating a sustainable and efficient method in lowering carbon impact in construction.

Raising Environmental Awareness

  • CityUHK actively promotes environmental awareness and education by offering workshops, training programs, and easily accessible resources to encourage eco-conscious behaviour among students, faculty, and staff. By creating a culture of environmental responsibility, the university encourages individuals to adopt greener lifestyles and contribute to collective efforts in combating climate change.
Workshops
百家乐官网比较好的网站| 大发888免费送奖金| 蓝盾百家乐娱乐场开户注册| 太阳城娱乐城官方网| 太阳城百家乐官网娱乐官方网| 百家乐平注法技巧| 大发888安装需要多久| ea百家乐官网打水| 百家乐押注最多是多少| 沙洋县| 百家乐官网资深| 大发888娱乐日博备用| 新思维百家乐官网投注法| 金沙百家乐娱乐城场| 大发888游戏平台电子| 百家乐官网二十一点游戏| 百家乐稳赢秘诀教学| 大发888全球顶级游戏平台| 百家乐官网游戏作弊| 威尼斯人娱乐信誉| 鄂州市| 百家乐3号眨眼技术| 星期八娱乐城官网| 大亨百家乐游戏| 瑞丰娱乐| 风水罗盘24方位| 德州扑克3d豪华版| 百家乐官网如何捕捉长龙| 大发888游戏代充省钱技巧| 百家乐官网三国| 百家乐翻天下载| 山西百家乐官网用品| 永利高投注网哪个好| 百家乐官网的看路技巧| 大发888平台| 至尊百家乐官网娱乐场| 大发888中文版下载| 百家乐官网可以破解吗| 大发888合作伙伴| 君怡百家乐官网的玩法技巧和规则| bet365金融|