:::

詳目顯示

回上一頁
題名:日照對薄層綠化屋頂植物生長與開花之影響
書刊名:造園景觀學報
作者:章錦瑜 引用關係陳國炎
作者(外文):Chang, Chin-yuChen, Gwo-yan
出版日期:2014
卷期:20:2
頁次:頁37-60
主題關鍵詞:光度綠覆率株高開花率LightGreen coverage ratePlant heightFlower percentage
原始連結:連回原系統網址new window
相關次數:
  • 被引用次數被引用次數:期刊(0) 博士論文(0) 專書(0) 專書論文(0)
  • 排除自我引用排除自我引用:0
  • 共同引用共同引用:7
  • 點閱點閱:3
植株低矮的地被頗適合屋頂薄層綠化應用,選擇賞花性高且花期長的植物,較能增進景觀品質。本研究針對8種常見地被植物,探討3種日照環境(100%、70%、40%)對其生長與開花之影響。採試驗方式,地點位於建物屋頂平台,以1年時間調查綠覆率、株高及開花率。結果發現賞花性較佳的是細葉雪茄花與麒麟花,全年開花不斷,於3種日照環境開花均佳,但麒麟花於日照100%開花明顯更多;即使40%日照,開花仍是其中較佳者。但麒麟花於3種日照均生長緩慢,1年都未滿覆,若需提早被覆地表,建議3吋盆苗定植株距需小於10cm;其他7種植物於第2季多已近滿覆狀況。植物於1年試驗期間株高多維持30cm以下,較低矮的是蔓花生與紅尾鐵莧,株高約10cm。本研究結果可提供末來於不同日照環境栽植賞花性地被之選種參考。
Low ground cover plants are suitable for thin green roof applications. Ground covers with flowers can even improve landscape aesthetics. This study discussed the effect of different light environments (sunlight exposure of 100%, 70% and 40%) on blossom of eight ground covers. The experimental site was located on the floor roof. The test items included: green coverage rate, plant height, and flower percentage. The research period was 1 year. The results showed that Cuphea hyssopifolia & Euphorbia milii had better flower percentage and bloomed all year round, and they are ideal ornamental ground covers. But Euphorbia milii was slowly growing, after a year was not covered all. The plant height of Arachis duranensis & Acalypha pendula are low, about 10cm. The results can serve as reference in selection of ornamental ground covers in different sunlight environments.
期刊論文
1.Jim, C. Y.(2012)。Effect of vegetation biomass structure on thermal performance of tropical green roof。Landscape and Ecological Engineering,8(2),173-187。  new window
2.Getter, K. L.、Rowe, D. B.(2006)。The role of extensive green roofs in sustainable development。Hort Science,41(5),1276-1285。  new window
3.王鶯璿、雷江麗、王有國(2012)。7種百合科園林地被植物抗旱性研究。安徽農業科學,40(26),12979-12983。  延伸查詢new window
4.夏文茹、葉德銘(20110300)。遮光對彩葉草葉色及生長之影響。臺灣園藝,57(1),53-64。  延伸查詢new window
5.張亞芬、潘李(2012)。溫州市公園綠地地被植物應用調查與研究。安徽農業科學,40(31),15327-15329。  延伸查詢new window
6.許玉妹(19890900)。改進玫瑰冬季切花產量之研究(1):遮蔭與夏季摘蕾對冬季切花產量之影響。中國園藝,35(3),204-210。  延伸查詢new window
7.陳永春(20011200)。地被植物之調查、蒐集與種類篩選試驗。行政院農業委員會臺東區農業改良場研究彙報,12,37-45。  延伸查詢new window
8.Kendrick, R. E.、童武夫(19830100)。植物生長與光照。科學教育,56,53-57。  延伸查詢new window
9.童開林(2012)。10種地被植物的耐陰性與園林適應性比較。西北林學院學報,27(4),234-237。  延伸查詢new window
10.黃彩明、曹平、蔣榮華(2008)。草坪延長綠色期的研究。安徽農業科學,36(24),10428-10430。  延伸查詢new window
11.薛彥斌、秦華、張科(2010)。三種藤本地被植物抗旱性比較。中國農學通報,26(9),239-243。  延伸查詢new window
12.魏雲華、張燕青、林魁(2012)。福州市彩葉地被植物應用現狀及探析。安徽農學通報,18(17),165-166。  延伸查詢new window
13.Ascione, F.、Nicola, Bianco N.(2013)。Green roofs in European climates. Are effective solutions for the energy savings in air-conditioning?。Applied Energy,104,845-859。  new window
14.Bernier, G.(1988)。The control of floral evocation and morphogenesis。Ann. Rev. Plant Physiol. Plant mol,39,175-219。  new window
15.Buhyoff, G. J.、Wellman, J. D.(1980)。The specification of a non-linear psychophysical function for visual landscape dimensions。Journal of Leisure Research,12,257-272。  new window
16.Byme, L. B.、Bruns, M. A.(2008)。Ecosystem Properties of Urban Land Covers at the Aboveground-Belowground Interface。Ecosystems,11(7),1065-1077。  new window
17.Chan, A. L. S.、Chow, T. T.(2013)。Energy and economic performance of green roof system under futureclimatic conditions in Hong Kong。Energy and Buildings,64,182-198。  new window
18.Emilsson, T.(2008)。Vegetation development on extensive vegetated green roofs: Influence of substrate composition, establishment method and species mix。Ecological Engineering,33(3),265-277。  new window
19.Fang, C. F.(2008)。Evaluating the thermal reduction effect of plant layers on rooftops。Energy and buildings,40,1048-1052。  new window
20.Golubiewski, N. E.(2006)。Urbanization increases grassland carbon pools: effects of landscaping in Colorado's front range。Applications,16,555-571。  new window
21.Jim, C. Y.、Peng, L. L. H.(2012)。Weather effect on thermal and energy performance of an extensive tropical green roof。Urban Forestry & Urban Greening,11,73-85。  new window
22.Liverman, J. L.(1955)。The physiology of flowering。Annual Review of Plant Physiology,6,177-210。  new window
23.Maclvor, J. S.(2011)。Performance of dryland and wetland plant species on extensive green roofs。Annals of Botany,107(4),671-679。  new window
24.On extensive green roofs : Effects of plant species, diversity and plant structure。Landscape and Urban Planning,104,356-363。  new window
25.Ouldboukhitine, S. E.(2012)。Characterization of green roof com-ponents: measurements of thermal and hydrological properties。Building and Environment,56,78-85。  new window
26.Razzaghmanesh, M.(2014)。The growth and survival of plants in urban green roofs in a dry climate。Science of the Total Environment,288-297。  new window
27.Strieg, R. G.(2001)。Soil respiration and photosynthetic uptake of carbon dioxide by ground-cover plants in four ages of jack pine forest。Can. J. For. Res,31,1540-1550。  new window
28.Wolf, D.、Lundholm, J. T.(2008)。Water uptake in green roof microcosms: Effects of plant species and water availability。Ecological Engineering,33(2),179-186。  new window
29.Wong, N. H.、Yok, T. P.(2007)。Study of thermal performance of extensive rooftop greenery systems in the tropical climate。Building and Environment,42,25-54。  new window
30.Zhao, M.(2014)。Effects of plant and substrate selection on thermal performance of green roofs during the summer。Building and Environment,12,1-13。  new window
31.Zhou, Q.(1998)。On the ground estimation of vegetation cover in Australian rangelands。int j. remote sensing,19(9),1815-1820。  new window
32.Zieslin, N.(1990)。Light on roses:a review。Scientia Horticulturae,43(1/2),1-14。  new window
33.Brown, T. C.、Daniel, T. C.(1986)。Predicting Scenic Beauty of Timber Stands。Forest Science,32(2),471-487。  new window
34.Eumorfopoulou, Ekaterini、Aravantinos, Dimitris(1998)。The contribution of a planted roof to the thermal protection of buildings in Greece。Energy and Buildings,27(1),29-36。  new window
35.Nagase, A.、Dunnett, N.(2010)。Drought tolerance in different vegetation types for extensive green roofs。Landscape and Urban Planning,97(4),318-327。  new window
36.Wong, N. H.、Chen, Y.、Ong, C. L.(2003)。Investigation of thermal benefits of roof topgarden in the tropical environment。Building and Environment,38,261-270。  new window
37.方智芳(20111200)。臺灣中部地區生態屋頂減熱效果之研究。造園景觀學報,17(4),45-62。new window  延伸查詢new window
38.Niachou, A.、Papakonstantinou, K.、Santamouris, M.、Tsangrassoulis, A.、Mihalakakou, G.(2001)。Analysis of the green roof thermal properties and investigation of its energy performance。Energy and Buildings,33(7),719-729。  new window
39.蔡建泓、方智芳(20121200)。臺灣地區生態屋頂植物選種及灌溉管理之研究。造園景觀學報,18(4),23-44。new window  延伸查詢new window
研究報告
1.Daniel, T. C.、Boster, R. S.(1976)。Measuring Landscape Esthetics: The Scenic Beauty Estimation Method。Fort Collins, CO:Rocky Mountain Forest:Range Experiment Station Forest Service, U.S. Department of Agriculture。  new window
學位論文
1.王昭堡(1989)。水土保持草類對光度及酸鹼度之反應(碩士論文)。國立中興大學。  延伸查詢new window
2.吳淑均(1995)。溫度、遮陰、生長調節劑及修剪時期對仙丹花生長與開花的影響(碩士論文)。國立臺灣大學。  延伸查詢new window
3.李瑞美(2012)。光線、限水與乙烯釋放劑對九重葛‘台北紅’生長與開花之影響(碩士論文)。臺灣大學。  延伸查詢new window
4.徐步雲(2003)。光度、溫度及潮汐灌溉中氮肥濃度對常春藤生長之影響(碩士論文)。國立臺灣大學。  延伸查詢new window
5.張東港(2013)。台中地區公園地被植物之調查評估(碩士論文)。東海大學。  延伸查詢new window
6.陳俊宏(1999)。台北地區公園之綠籬、彩葉、耐陰植物應用現況調查研究(碩士論文)。臺灣大學。  延伸查詢new window
7.曾秀瓊(1980)。不同光對五種地被草種生長之影響(碩士論文)。國立臺灣大學。  延伸查詢new window
8.簡均珊(2011)。光度對非洲鳳仙花生長之影響及其防治方法研究(碩士論文)。中國文化大學。  延伸查詢new window
9.簡玲雅(2007)。台中市綠覆地之現況與影響要因之研究(碩士論文)。中興大學。  延伸查詢new window
10.魏晉興(2014)。屋頂薄層綠化採用低維護植物之降溫評估(碩士論文)。東海大學。  延伸查詢new window
圖書
1.章錦瑜(2013)。最新植栽設計手冊。台中:日之昇文化事業有限公司出版。  延伸查詢new window
2.蔡福貴(1993)。地被植物。臺北:地景企業股份受公司。  延伸查詢new window
3.賴明洲(2006)。植被復育重建生態工程。台中市:明文書局。  延伸查詢new window
4.Foster, R.(1980)。Try ground covers for low-maintenance urban landscaping。Amer:City and County。  new window
其他
1.行政院環境保護署(2014)。空品淨化區定義,http://ivy1.epa.gov.tw/air/a01.asp, 2014/04/12。  延伸查詢new window
圖書論文
1.Hui, S. C. M.(2009)。Study of thermal and energy performance of green roof systems。Final report, Department of Mechanical Engineering。The University of Hong Kong。  new window
 
 
 
 
第一頁 上一頁 下一頁 最後一頁 top
:::
無相關博士論文
 
無相關書籍
 
無相關著作
 
QR Code
QRCODE