Sustainable solution for cooling application
Sustainable solution for cooling application
批准号:
10089491
负责人:
金额:
$37.78万
依托单位:
依托单位国家:
英国
项目类别:
Collaborative R&D
财政年份:
2024
资助国家:
英国
项目状态:
未结题
起止时间:
2024 至 --
中文摘要
间接蒸发冷却器(IEC)可以在空调部门脱碳方面发挥关键作用。它们消除了压缩机和化学制冷剂等主要部件,使IECS成为未来制冷供应的一项有吸引力的技术。传统的IECS基于在系统内保持较薄的水层的操作策略,使用复杂的亲水膜来最大化水的蒸发潜力。这种系统内部的亲水膜相互作用导致了制造和操作复杂、模具形成、维护成本高和设备寿命短等问题。它还需要广泛的洗涤剂泵送以进行膜清洗。这些限制是传统IEC商业化的主要障碍。在诺森布里亚大学北方加速器PoC资助下,我们开发了一种改变游戏规则的新型间接蒸发冷却器(NIEC),它消除了传统IEC的所有限制,节省了65%的能源,并消除了传统空调机组中使用的潜在全球变暖化学制冷剂。建议的NIEC设计基于简单的热交换器和加湿器,在引入工作通道之前,加湿器用于对系统外部的工作空气进行加湿。NIEC的这种简单的制造和操作使其最适合于未来的冷却供应,这在冰川对话中得到了证明。NIEC技术最适用于舒适的环境对人或机器的性能至关重要的领域,如家庭、数据中心、建筑工地和商业建筑。这个即插即用系统可以安装在任何地方,为舒适度提供设定的条件。技术和商业经验的完美结合,以及团队在冰雪之旅中的凝聚,证明了合作协议下的动力工作。我们计划通过与制造商和分销商达成协议的合作伙伴关系,同时进入国内和非国内市场,首先瞄准英国。我们拥有先发制人的优势,因为资本和运营成本低,这将使我们的客户受益。它将对英国产生社会(减少劳动力休假和死亡)、商业(国际出口)、区域(支持EDI,提供就业、培训和学徒机会,使东北部地区升级)、经济(刺激相关行业)和环境(通过本地生产和高效运营减少碳排放)的影响和好处。此外,它还将通过支持低碳技术的开发、制造和使用来支持清洁增长工业挑战,并为实现全球可持续发展和英国2050年净零目标做出贡献。
英文摘要
The indirect evaporative coolers (IEC) can play a crucial role in decarbonizing the air-conditioning sector. They eliminate the major component such as compressor and chemical refrigerant which makes IECs an attractive technology for future cooling supplies.Conventional IECs are based on operational strategy of maintaining thin water layer inside the system using complex hydrophilic membrane to maximize the water evaporative potential. This water- hydrophilic membrane interaction inside the system causes several issues including; complex manufacturing and operation, mold formation, high maintenance cost and short equipment life. It also need extensive detergent pumping for membrane cleaning \[1\]. These limitations are the major barriers in commercialization of the conventional IECs.At the Northumbria University under Northern Accelerator PoC grant, we have developed a game-changing novel indirect evaporative cooler (NIEC) which eliminate all the limitations of conventional IECs, save 65% energy and removes the need for global warming potential chemical refrigerants used in conventional AC units.The proposed NIEC design is based on simple heat exchanger integrated with humidifier which used to humidify the working air outside the system before introducing into working channel. This simple manufacturing and operation of NIEC makes it most suitable for future cooling supplies as evidenced during ICURe conversations. The NIEC technology is most applicable in areas where comfortable environment is important for human or machine performance such as household, data centers, construction sites and commercial buildings. This plug & play system can be installed at any location to provide set conditions for comfort level.There is an excellent mix of technical and commercial experience and the team have gelled during the ICURe journey, proving the dynamics work under partnership agreement in place. We plan to enter into domestic and non-domestic market in parallel, targeting initially the UK, through agreed partnership with manufacturer and distributors. We have early mover advantage as low capital and operational cost which will benefit our customers.It will have social (reduce days off in the workforce and deaths), commercial (international export), regional (support EDI, provide jobs, training and apprenticeship opportunities to level up the North-East), economic (stimulate relevant industries) and environmental (reduce carbon emission by local production and efficient operation) impact and benefits to UK. Additionally, it will support Clean Growth Industrial Challenge by supporting the development, manufacture and use of low-carbon technologies and contribute to achieve global sustainability and UK net zero 2050 goals.\[1\]Energy217(2021)19352
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
国内基金
海外基金
Navigating Sustainability: Understanding Environm ent,Social and Governanc e Challenges and Solution s for Chinese Enterprises
in Pakistan's CPEC Framew
ork
-
批准号:--
-
项目类别:外国学者研究基金项目
-
资助金额:--
-
批准年份:2024
-
负责人:Noshaba Aziz
-
依托单位:
Horndeski理论中Randall-Sundrum型厚膜解的研究
-
批准号:11605127
-
项目类别:青年科学基金项目
-
资助金额:18.0万元
-
批准年份:2016
-
负责人:钟渊
-
依托单位:
N-体问题的中心构型及动力系统的分支理论
-
批准号:10601071
-
项目类别:青年科学基金项目
-
资助金额:10.0万元
-
批准年份:2006
-
负责人:朱长荣
-
依托单位: