The Research of Small Wind Turbine and PVT Hybrid System to water electrolysis for hydrogen production

碩士 === 國立臺南大學 === 綠色能源科技學系碩士班 === 103 === The modeling and control of a hybrid wind and PVT distributed generation system is addressed in this dissertation. The photovoltaic thermal system is established for advance hydrogen production. Simulation hydrogen produce in hydrogen station for fuel cell v...

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Main Authors: Zong-Dain Wu, 吳宗典
Other Authors: Jenn-Kun Kuo
Format: Others
Language:zh-TW
Published: 2015
Online Access:http://ndltd.ncl.edu.tw/handle/z8hy3n
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spelling ndltd-TW-103NTNT01600122019-06-27T05:25:02Z http://ndltd.ncl.edu.tw/handle/z8hy3n The Research of Small Wind Turbine and PVT Hybrid System to water electrolysis for hydrogen production 小型風機與太陽能熱電系統應用於電解產氫之研究 Zong-Dain Wu 吳宗典 碩士 國立臺南大學 綠色能源科技學系碩士班 103 The modeling and control of a hybrid wind and PVT distributed generation system is addressed in this dissertation. The photovoltaic thermal system is established for advance hydrogen production. Simulation hydrogen produce in hydrogen station for fuel cell vehicles (FCEV). Modeling and simulations are performed using MATLAB/Simulink and results are presented to verify the effectiveness of the proposed system. Using the concept of micro-grid to simulate complex situation of renewable energy distributed generation systems for hydrogen production in hydrogen station. Successfully simulate the actual situation and the relationship between power generation at a controlled temperature electrolyzer hydrogen production situation and temperature. Simulate electrolyzer temperature at 40 ℃, 60 ℃ and 80 ℃, the distributed renewable energy generation system to produce hydrogen. Results show when the rated power 12kW small wind generation system and 18kW solar photovoltaic systems while operating a total power output of 30kW, photovoltaic thermal system improve the operation of the electrolyzer temperature to 60 ℃, can improve the efficiency of electrolytic hydrogen production. If compared with 40 ℃ per second hydrogen production efficiency increase of nearly 0.1%. Jenn-Kun Kuo 郭振坤 2015 學位論文 ; thesis 63 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺南大學 === 綠色能源科技學系碩士班 === 103 === The modeling and control of a hybrid wind and PVT distributed generation system is addressed in this dissertation. The photovoltaic thermal system is established for advance hydrogen production. Simulation hydrogen produce in hydrogen station for fuel cell vehicles (FCEV). Modeling and simulations are performed using MATLAB/Simulink and results are presented to verify the effectiveness of the proposed system. Using the concept of micro-grid to simulate complex situation of renewable energy distributed generation systems for hydrogen production in hydrogen station. Successfully simulate the actual situation and the relationship between power generation at a controlled temperature electrolyzer hydrogen production situation and temperature. Simulate electrolyzer temperature at 40 ℃, 60 ℃ and 80 ℃, the distributed renewable energy generation system to produce hydrogen. Results show when the rated power 12kW small wind generation system and 18kW solar photovoltaic systems while operating a total power output of 30kW, photovoltaic thermal system improve the operation of the electrolyzer temperature to 60 ℃, can improve the efficiency of electrolytic hydrogen production. If compared with 40 ℃ per second hydrogen production efficiency increase of nearly 0.1%.
author2 Jenn-Kun Kuo
author_facet Jenn-Kun Kuo
Zong-Dain Wu
吳宗典
author Zong-Dain Wu
吳宗典
spellingShingle Zong-Dain Wu
吳宗典
The Research of Small Wind Turbine and PVT Hybrid System to water electrolysis for hydrogen production
author_sort Zong-Dain Wu
title The Research of Small Wind Turbine and PVT Hybrid System to water electrolysis for hydrogen production
title_short The Research of Small Wind Turbine and PVT Hybrid System to water electrolysis for hydrogen production
title_full The Research of Small Wind Turbine and PVT Hybrid System to water electrolysis for hydrogen production
title_fullStr The Research of Small Wind Turbine and PVT Hybrid System to water electrolysis for hydrogen production
title_full_unstemmed The Research of Small Wind Turbine and PVT Hybrid System to water electrolysis for hydrogen production
title_sort research of small wind turbine and pvt hybrid system to water electrolysis for hydrogen production
publishDate 2015
url http://ndltd.ncl.edu.tw/handle/z8hy3n
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