With the continuous improvement of permanent magnet(PM)wind generators'capacity and power density,the design of reasonable and efficient cooling structures has become a focus.This paper proposes a fully enclosed s...With the continuous improvement of permanent magnet(PM)wind generators'capacity and power density,the design of reasonable and efficient cooling structures has become a focus.This paper proposes a fully enclosed self-circulating hydrogen cooling structure for a originally forced-air-cooled direct-drive PM wind generator.The proposed hydrogen cooling system uses the rotor panel supports that hold the rotor core as the radial blades,and the hydrogen flow is driven by the rotating plates to flow through the axial and radial vents to realize the efficient cooling of the generator.According to the structural parameters of the cooling system,the Taguchi method is used to decouple the structural variables.The influence of the size of each cooling structure on the heat dissipation characteristic is analyzed,and the appropriate cooling structure scheme is determined.展开更多
[目的]随着“双碳”进程的推进,煤化工行业的减碳降排势在必行。煤化工过程用氢量大,且目前多以化石燃料转化的灰氢为主,造成了余碳排放。如果将零碳的绿电绿氢与煤化工耦合建设,既有利于煤化工行业节能减排,同时也能为绿电与绿氢的发...[目的]随着“双碳”进程的推进,煤化工行业的减碳降排势在必行。煤化工过程用氢量大,且目前多以化石燃料转化的灰氢为主,造成了余碳排放。如果将零碳的绿电绿氢与煤化工耦合建设,既有利于煤化工行业节能减排,同时也能为绿电与绿氢的发展提供巨大应用场景。[方法]在此背景下,以典型煤化工工艺煤制乙二醇为例,详细阐述了绿电与绿氢耦合煤制乙二醇的系统建设方案。[结果]分析表明绿氢的引入提高了煤制乙二醇的碳利用率,从传统工艺的21.1%提高到40.5%,而生产每吨成品乙二醇的碳排放强度从2.58 t CO_(2)降到了0.93 t CO_(2)。同时通过一体化建设可以降低二次系统建设、运维成本。[结论]绿电绿氢与煤化工耦合建设具有技术可行性,发展前景广阔,但还面临着诸多挑战。展开更多
基金supported in part by the“Chunhui Plan”Collaborative Research Project of Chinese Ministry of Education under Grant HZKY20220604by the National Natural Science Foundation of China under Grant 52107007。
文摘With the continuous improvement of permanent magnet(PM)wind generators'capacity and power density,the design of reasonable and efficient cooling structures has become a focus.This paper proposes a fully enclosed self-circulating hydrogen cooling structure for a originally forced-air-cooled direct-drive PM wind generator.The proposed hydrogen cooling system uses the rotor panel supports that hold the rotor core as the radial blades,and the hydrogen flow is driven by the rotating plates to flow through the axial and radial vents to realize the efficient cooling of the generator.According to the structural parameters of the cooling system,the Taguchi method is used to decouple the structural variables.The influence of the size of each cooling structure on the heat dissipation characteristic is analyzed,and the appropriate cooling structure scheme is determined.
文摘[目的]随着“双碳”进程的推进,煤化工行业的减碳降排势在必行。煤化工过程用氢量大,且目前多以化石燃料转化的灰氢为主,造成了余碳排放。如果将零碳的绿电绿氢与煤化工耦合建设,既有利于煤化工行业节能减排,同时也能为绿电与绿氢的发展提供巨大应用场景。[方法]在此背景下,以典型煤化工工艺煤制乙二醇为例,详细阐述了绿电与绿氢耦合煤制乙二醇的系统建设方案。[结果]分析表明绿氢的引入提高了煤制乙二醇的碳利用率,从传统工艺的21.1%提高到40.5%,而生产每吨成品乙二醇的碳排放强度从2.58 t CO_(2)降到了0.93 t CO_(2)。同时通过一体化建设可以降低二次系统建设、运维成本。[结论]绿电绿氢与煤化工耦合建设具有技术可行性,发展前景广阔,但还面临着诸多挑战。