课题基金 / 基金详情

The FeTu roticulating concept - air compressor/supercharger feasibility study

The FeTu roticulating concept - air compressor/supercharger feasibility study
FeTu 旋转概念 - 空气压缩机/增压器可行性研究
批准号:
103809
负责人:
金额:
$40.12万
依托单位:
依托单位国家:
英国
项目类别:
Feasibility Studies
财政年份:
2017
资助国家:
英国
项目状态:
已结题
起止时间:
2017 至 --

项目摘要

项目成果

相关文献

中文摘要
翻译
Fetu Limited是Fetu‘Roticating’系统的创建者、知识产权所有者和开发商。FETU原理由一种全新的、破坏性的四腔式‘2移动部件’机械装置组成,能够在体积能源和旋转能源之间实现低损耗的能量转换。这是一种重量轻、紧凑、有弹性、功率密集的装置;目标是通过超过当前最先进的发动机、涡轮机、泵、压缩机和膨胀机的效率来大幅减少碳排放。通过使我们能够生产更多和使用更少的“能源”,直接瞄准“显著”的跨平台碳减排。FETU可以同时执行(高达三倍的比率)压缩和膨胀功能,似乎能够运行任何热力学循环(开环或闭环)。FETU是一种“正排量低速涡轮”,在某种程度上是涡轮和活塞发动机的混合体,将两者的优点结合到一个简单、可靠、可扩展、无压力的单元中;提供非常线性、均匀和不间断的媒体流。我们寻求克服一些适度的设计挑战,准备制造和测试一种‘压缩机’变种,所有验证直接转移到其非常令人兴奋的潜力,以改变整个能源部门的效率和清洁度。最终的亮点是我们的目标是将泵燃料车辆的效率提高一倍,并提供一个闭环系统,用于利用一系列热源(包括太阳能)进行超高效、电网、家用和便携式发电。
英文摘要
FeTu Limited are the creators, IP owners and developers of the FeTu 'Roticulating' system. The FeTu principle consists of an entirely novel & disruptive four chamber '2 moving part' mechanical device capable of low-loss energy conversion between volumetric and rotational energy sources. Such purports to a lightweight, compact, resilient, power dense, unit; targeting drastic carbon reduction by surpassing the efficiency of the current state-of-the-art, engines, turbines, pumps, compressors and expanders. Directly targeting 'significant' cross platform carbon reduction by enabling us to produce more & use less 'energy'. FeTu can simultaneously perform (up to triple ratio) compression and expansion functions and seemingly be able to run any thermodynamic cycle (open or closed loop). A 'positive displacement low-velocity turbine', FeTu is somewhat a hybrid between a turbine and piston engine, combining the best of each into a simple, reliable, scalable, sumpless, unit; offering very linear, uniform and uninterrupted media flow. We seek to overcome some moderate design challenges, being ready to build & test a 'compressor' variant, with all validation directly transferring to its very exciting potential to transform the efficiency and cleanliness of the entire energy sector. Ultimate highlights are our goal to double the efficiency of a pump fuelled vehicle and to provide a closed loop system for ultra-efficient, grid, domestic and portable electrical power generation from a range of heat sources (including solar).
期刊论文(0)
专著(0)
科研奖励(0)
会议论文