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http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/37503完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 郭景宗 | |
| dc.contributor.author | Chih-Ming Chou | en |
| dc.contributor.author | 周志明 | zh_TW |
| dc.date.accessioned | 2021-06-13T15:30:29Z | - |
| dc.date.available | 2010-07-18 | |
| dc.date.copyright | 2008-07-18 | |
| dc.date.issued | 2008 | |
| dc.date.submitted | 2008-07-15 | |
| dc.identifier.citation | (1) 台灣電力公司(2007),再生能源,http://www.taipower.com.tw/left_bar/power_life/ power_development_plan/Regeneration_energy.htm
(2) Reed, T. B.; Levie, B.; Markson M. L. (1983) A mathematical model for stratified downdraft gasifier.; Solar energy research institute. pp. 410-420 (3) Reed, T. B.; Das, A. Handbook of biomass downdraft gasifier engine systems; The biomass energy foundation press: Golden, CO., USA, 1988. (4) Kuo, J. T. (1998) Estimation of burning rate in solid waste combustion furnaces. Combust. Sci and Tech., Vol. 137, pp. 1-29 (5] Di Blasi, C. (1999) Countercurrent Fixed-bed gasification of biomass at laboratory scale. Industrial and Engineering Chemistry Research. pp. 2571-2581 (6) Dogru M.; Howarth C. R.; Akay G..; Keskinler B.; Malik A. A. (2002) Gasification of hazelnut shells in a downdraft gasifier. Energy. pp. 415-427 (7) Zainal Z. A.; Rifau A., Quadir G. A.; Seetharamu K. N. (2002) Experimental investigation of a downdraft biomass gasifier. Biomass and Bioenergy. pp. 283-289 (8) Fiedler F. (2004) The state of the art of small-scale pellet-based heating systems and relevant regulations in Sweden, Austria and Germany. Renewable and sustainable energy reviews. pp. 201-221 (9) Barrio M.; Fossum M.; Hustad J. E. (2000) A small-scale stratified downdraft gasifier coupled to a gas engine for combined heat and power production. Progress in Thermochemical Biomass Conversion, Tyrol, Austria, 17-22 September (10) Lin J. C. (2007) Combination of a Biomass Fired Updraft Gasifier and a Stirling Engine for Power Production. Journal of Energy Resources Technology Vol. 129, Issue 1, pp. 66-70 (11)李永文,「小型生質燃料氣化爐設計製造與性能測試」,國立台灣大學,碩士論文,民國九十一年 (12)蔡尚貿,「下抽式木質燃料空氣氣化爐操作條件對產氣狀況之影響研究」,國立台灣大學,碩士論文,民國九十三年。 (13)劉秋豪,「向下氣流式木質燃料空氣氣化爐之空氣輸配及進料控制對產氣狀況之影響研究」,國立台灣大學,碩士論文,民國九十四年。 (14)張耀中,「下抽式氣化爐之空氣進氣及投料系統改良設計對產氣狀況之影響研究」,國立台灣大學,碩士 論文,民國九十六年 (15) Howard, J. B. (1969) Combustion of solid refuse. ASME Winter annual Meeting and Energy Systems Expositon, New York, N. Y. December 1-5 (16) Welker, J. R. (1970) The Pyrolysis and Ignition of Cellulosic Materials; a Literature Review. Journal of fire and Flammability (17) Nilsson T.; Waldheim L.(2001) Heating value of gases from biomass gasification. Report prepared for: IEA Bioenergy Agreement, Task 20 – Thermal Gasification of Biomass | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/37503 | - |
| dc.description.abstract | 本熱電共生系統利用燃燒機將向下氣流式生質氣化爐與史特靈引擎作結合。氣化爐上利用封閉式的儲料桶的代替電子進料系統,避免額外的能量輸入。史特靈引擎為分置式(γ–type),工作流體為空氣,並以水冷方式來冷卻。橋接氣化爐以及史特靈引擎的燃燒機,則透過回熱的設計,將高溫的廢氣用來加熱來自氣化爐的產氣及空氣以提昇效率。本研究主要是在探討氣化爐以及熱電共生系統的操作參數,如:進氣高度、點火高度、進氣風量、燃料消耗率、產氣熱值、燃燒室溫度、引擎的輸出功及力矩。氣化爐反應所用的的燃料尺寸與種類分別是邊長15mm與邊長10mm以及紅柳安木與白柳安木。
經由實驗結果發現,本氣化爐需將爐床位置降低來增加氣化長度以延長燃料在氣化區停留的時間。而點火高度位於進氣口位置時,可以降低氣化爐操作所需的穩定時間以及燃料消耗。本氣化爐最高產氣熱值為5081kJ/Nm3,其操作風量為14Nm3,並使用小尺寸燃料顆粒(邊長10mm)。在熱電共生實驗中可以發現氣化爐的產氣可以順利驅動史特靈引擎,並持續的運轉。引擎所能達到的最高轉速為463rpm,最高輸出軸功為3.12W。 | zh_TW |
| dc.description.abstract | A fixed-bed air-blown stratified downdraft biomass gasifier was built in this study. The gasifier was coupled to a Stirling engine via a burner to construct a combined heat and power system. An air-sealed hopper was used for fuel storage and feeding, rather than an electric feeding system, to reduce the energy consumption. A water-cooled gamma-type Stirling engine filled with air as working fluid was built in this study. A burner was designed to combine the gasifier with Stirling engine, and preheating the intake air with flue gas exhausted from the burner can improve the system efficiency. The main purpose of this study is to investigate the influences of operation parameters including the height of air inlet, height of fuel ignition, airflow rate, air-fuel ratio, and the fuel feeding rate, on the producer gas heating value, the temperature of gas inside the burner, and the torque and power of Stirling engine. Tests have been performed by using wooden cubes (10×10×10 and 15×15×15 mm) of Red Lauan and White Lauan as gasification feedstock.
Experimental results of the gasifier indicate that reducing the height of grate to increase the length of gasification zone is required for prolonging the retention time of fuel in gasification region. Ignition of fuel at the height of air intake can shorten the time required for start-up and consequently reduce the consumption of fuel and energy during the start-up period. An optimum mean producer gas HHV of 5081 kJ/Nm3 was obtained as the gasifier was operated with small-sized fuels (10×10×10 mm ) at an airflow rate of 14 Nm3/h. Test results of the combined heat and power system indicate that the Stirling engine can run smoothly and be continuously driven by the combustion heat of the syngas produced by the gasifier. A maximum engine speed of 463 rpm and a maximum shaft power of 3.12 W were reached in the tests performed. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-13T15:30:29Z (GMT). No. of bitstreams: 1 ntu-97-R95522114-1.pdf: 2312419 bytes, checksum: 2c15ec602842aa15b9645ad4a5821b65 (MD5) Previous issue date: 2008 | en |
| dc.description.tableofcontents | 誌謝 I
摘要 II Abstract III 目錄 IV 表目錄 VI 圖目錄 VII 符號說明 IX 第一章 緒論 1 1-1 前言 1 1-2 研究動機 2 1-3 研究目的 2 1-4 文獻回顧 3 第二章 氣化爐理論基礎 6 2-1 氣化爐基本原理 6 2-1.1 乾燥區 7 2-1.2 熱解區 8 2-1.3 燃燒區 8 2-1.4 氣化區 9 2-2 燃燒過程之理論分析 9 第三章 熱電共生設備與實驗步驟 12 3-1 氣化爐本體及週邊設備 12 3-1.1 爐體 13 3-1.2 儲料桶與煙霧阻擋裝置 15 3-1.3 冷卻裝置 16 3-1.4 防架橋裝置 17 3-1.5 燃料前處理設備 17 3-2 量測與分析設備 18 3-2.1 溫度量測系統 18 3-2.2 氣體採樣裝置 18 3-2.3 重量量測設備 19 3-2.4 氣體分析設備 19 3-3 引擎本體設計與週邊設備 21 3-4 燃燒機設計 23 3-5 實驗步驟 23 3-5.1 氣化爐實驗操作步驟 23 3-5.2 熱電共生系統操作步驟 25 第四章 實驗結果與討論 27 4-1 實驗操作結果 27 4-2 進氣高度實驗 29 4-2.1 進氣高度實驗之操作結果 30 4-2.2 進氣高度實驗之結果討論 31 4-3 點火高度測試 32 4-3.1 點火高度測試之操作結果 33 4-3.2 點火高度測試之結果討論 33 4-4 風量實驗 34 4-4.1 風量實驗之操作結果 35 4-4.2 風量實驗之結果討論 37 4-5 熱電共生實驗 38 4-5.1 熱電共生實驗之操作結果 40 4-5.2 熱電共生實驗之結果討論 41 第五章 結論 43 5-1 進氣高度實驗之結論 43 5-2 點火高度測試之結論 43 5-3 風量實驗之結論 44 5-4 熱電共生實驗之結論 44 5-5 爐體設計之結論 45 參考文獻 74 | |
| dc.language.iso | zh-TW | |
| dc.subject | 熱電共生系統 | zh_TW |
| dc.subject | 史特靈引擎 | zh_TW |
| dc.subject | 向下氣流式氣化爐 | zh_TW |
| dc.subject | combined heat and power system | en |
| dc.subject | downdraft gasifier | en |
| dc.subject | Stirling engine | en |
| dc.title | 生質燃料氣化熱電共生系統之燃燒控制研究 | zh_TW |
| dc.title | Combustion Control in a Biomass Gasifier of a Combined Heat and Power System | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 96-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 許智倫,蔡建雄 | |
| dc.subject.keyword | 向下氣流式氣化爐,史特靈引擎,熱電共生系統, | zh_TW |
| dc.subject.keyword | downdraft gasifier,Stirling engine,combined heat and power system, | en |
| dc.relation.page | 75 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2008-07-15 | |
| dc.contributor.author-college | 工學院 | zh_TW |
| dc.contributor.author-dept | 機械工程學研究所 | zh_TW |
| 顯示於系所單位: | 機械工程學系 | |
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