• 沒有找到結果。

第六章 結論與建議

第二節 後續研究建議

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第二節 後續研究建議

本研究係透過實地量測、問卷調查、熱環境因子調查與 CFD 軟體模擬,驗 證校園開放空間步行環境高溫化的問題,並加以提出可行之改善策略,以供未來 都市開放空間步行環境規劃與都市設計審議時之參考依據,減少開放空間步行環 境規劃與設計不當造成的爭議。然而,本研究基於研究限制,仍尚有未臻完善之 處,故於此提出相關領域者可參酌之後續研究建議。

(一) 熱環境因子的高溫化影響程度

本研究建議後續可針對鋪面材質、人工發散熱、綠覆率、水體、建築物密 度與高度…等其他熱環境因子進行調查與複迴歸分析,以求取熱季開放空間步 行環境影響因子之權重關係。

(二) 步行環境色彩配置與熱舒適性關聯之探究

本研究之初步研究結果證實色彩與熱舒適性有一定程度的關聯性,然而其 確切的影響程度,或是最舒適的色彩配置比例,有待後續研究之進行與爬梳,

以釐清環境色彩配置對使用者的心理感受影響程度。

(三) 開放空間步行環境之熱舒適性評估準則之建立

開放空間步行環境之熱舒適性影響著使用者甚鉅,而目前關於步行環境的 政策與法規皆無將熱舒適性納入考量,建議後續之研究可將其法制化或是建立 相關之熱舒適性評估指標系統,以助益規劃者在設計步行環境能夠有所依從。

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Bell, A.,Greece, C.,Fisher, D. and Batum, A.著,1999,聶筱秋、胡中凡譯,2003,

『環境心理學』,臺北:桂冠出版社。

ASHRAE., 2010, ASHRAE Standard: Thermal Environmental Conditions for Human

Occupancy, Atlanta: American Society of Heating, Refrigerating and

Air-conditioning Engineers.

Brunswik, E., 1956, The conceptual framework of psychology, Chicago: University of Chicago Press.

Cranz, G., 1982, The Politics of Park Design: A History of Urban Parks in America, Cambridge: MIT Press.

Fanger, P.O., 1970, Thermal Comfort: Analysis and Applications in Environmental

Engineering, New York: McGraw-Hill Book Company.

Gerrig, R.J., 2012, Psychology and life – 20th

ed., London: Pearson Education.

Gibson, J.J., 1979, The Ecological Approach to Visual Perception, Boston: Houghton Mifflin.

Gold, S., 1980, Recreation planning and design. New York., McGraw Hill.

Heckscher, A., and Robinson, P., 1977, Open Spaces: The Life of American Cities, New York., Harper & Row.

Hoy, W.K., and Miskel, C.G., 2001, Educational Administration: Theory, Research and

Practice, New York: McGraw-Hill.

Russell, J.A., and Snodgrass, J.D., 1987, Handbook of environmental psychology, Altman: D Stokols and I.

ISO., 1998, Ergonomics of the thermal environment -- Instruments for measuring

physical quantities, Geneva.: International Organization for Standardization.

ISO., 2005, Ergonomics of the thermal environment — Analytical determination and

interpretation of thermal comfort using calculation of the PMV and PPD indices and local thermal comfort criteria, Geneva.: International Organization for

Standardization.

Fruin, J.J., 1971, Pedestrian planning and design, Metropolitan Association of Urban Designers and Environmental Planners.

Jacobs, J., 1961, The Death and Life of Great American Cities, New York: Random House.

Landsberg, H.E., 1981,The Urban Climate, New York:Academic Press.

Lynch, K., 1960, The Image of The City, Cambridge: MIT Press

Newman, O.,1972, Defensible Space: Crime Prevention Through Urban Design , London: Collier Books.

Spreireger, P.D., 1968, On the Art Of Design Cities: Selected Esays of Elbert, Cambridge: Mass.: M.I.I.Press.

Trancik, R., 1986, Finding Lost Space: Theories of Urban Design, New Jersey: John Wiley & Sons.

Woolley, H., 2003, Urban Open Spaces, UK: Taylor & Francis.

2. 期刊論文

Akbari, H., and Konopacki, S., 2004, “Energy effects of heat-island reduction strategies in Toronto”, Energy, 29(2):191-210.

Aynsley, R., and Sprill, M., 1990, “Thermal comfort models for outdoor thermal comfort in warm humid climates and probabilities of low wind speeds”, Journal

of Wind Engineering and Industrial Aerodynamics, 36(1): 481-488.

Barnett, A.G., 2007, “Temperature and cardiovascular deaths in the US elderly:

changes over time”, Epidemiology, 18(3): 369-372.

Bates, G.M., and Miller, V., 2002, “Empirical validation of a new heat stress index”,

The Journal of Occupational Health and Safety-Australia, 18(2):145-153.

Blazejczyk, K., Epstein, Y., Jendritzky, G., Staiger, H., and Tinz, B., 2012, “Comparison of UTCI to selected thermal indices”, Appraisal Journal, 56(3): 515-535.

Bond, M.H., 2013, “Refining Lewin's formula: A general model for explaining situational influence on individual social behavior”, Asian Journal of Social

Psychology, 16(1): 1-15.

Brager, G.S., and Dear, R.J., 1998, “Thermal adaptation in the built environment: a literature review”, Energy and Buildings, 27(1):83-96.

Brake, D.J., and Bates, G.P., 1998, “Limiting Metabolic Rate (Thermal Work Limit) as

an Index of Thermal Stress”, Applied Occupational and Environmental Hygiene, 17(3):176-186.

Chan, S.Y., Chau, C.K., and Leung, T.M. 2017, “On the study of thermal comfort and perceptions of environmental features in urban parks: A structural equation modeling approach”, Building and Environment, 122: 171-183.

Cheng, V., and Ng, E., 2006, “Thermal Comfort in Urban Open Spaces for Hong Kong”,

Architectural Science Review, 49(3): 236-242.

Goshayeshi, D., Shahidan, M.D., Khafi, F., and Ehtesham, E., 2013, “A review of researches about human thermal comfort in semi-outdoor spaces”, Journal of

Natural and Social Sciences, 2(4): 516-523.

Proshansky, H.M., 1973, “The Environmental Crisis In Human Dignity”, Journal of

Social Issues, 29(4): 1-20.

Huang, C., Barnett, A.G., Wang, X., Vaneckova, P., FitzGeraid G., and Tong, S., 2011,

“Projecting future heat-related mortality under climate change scenarios: a systematic review”, Environmental Health Perspect, 119(12): 1681-1690.

Ichinose, T., Shimodozono, K., and Hanaki, K., 1990, “Impact of anthropogenic heat on urban climate in Tokyo”, Atmospheric Environment, 33(24-25): 3897-3909.

Ji, W., Cao, B., Luo, M., and Zhu, Y., 2017, “Influence of short-term thermal experience on thermal comfort evaluations: A climate chamber experiment”, Building and

Environment, 114: 246-256.

Johansson, E., Thorsson, S., Emmanuel, R., and Krüger, E., 2014, “Instruments and methods in outdoor thermal comfort studies – The need for standardization”,

Urban Climate, 10(2): 346-366.

Jonsson, P., 2004, “Vegetation as an urban climate control in the subtropical city of Gaborone”, International Journal of Climatology, 24(10): 1307-1322.

Knez, I., Thorsson, S., Eliasson I., and Lindberg F., 2009, “Psychological mechanisms in outdoor place and weather assessment: towards a conceptual model”,

International Journal of Biometeorol, 53: 101-111.

Krüger, E.L., Minella, F.O. and Rasia, F., 2011, “Impact of urban geometry on outdoor thermal comfort and air quality from field measurements in Curitiba, Brazil, Building and Environment”, Building and Environment, 46(3): 621-634.

Lin, T.P., Ho, Y.F., and Huang, Y.S., 2006, “Seasonal effect of pavement on outdoor thermal environments in subtropical Taiwan”, Building and Environment, 42(12):

4124-4131.

flows”, Computer Methods in Applied Mechanics and Engineering, 3(2): 269-289.

Magill, W., and Litton, B., 1986, “A color measuring system for landscape assessment”,

Landscape Journal, 5(1): 45-54.

Maruani, T., and Amit-Cohen, I., 2007, “Open space planning models: A review of approaches and methods”, Landscape and Urban Planning, 81(1-2): 1-13.

Nakamura, Y., and Oke, T.R., 1988, “Wind, temperature and stability conditions in an east-west oriented urban canyon”, Atmospheric Environment, 22(12): 2961-2700.

Nikolopoulou, M., and Steemers, K., 2003, “Thermal comfort and psychological adaptation as a guide for designing urban spaces”, Energy and Buildings, 35(1):

95-101.

Nikolopoulou, M., and Lykoudis, S., 2006, “Thermal Comfort in Outdoor Urban Spaces:

analysis across different European countries”, Building and Environment, 41:

1455-1470.

Nikolopoulou, M., Baker, N., and Steemers, K., 2001, “Thermal comfort in outdoor urban spaces: understanding the human parameter”, Solar Energy, 70(3): 227-235.

Oke, T. R., 1988, “The urban energy balance”, Progress in Physical Geography, 12(4):

471-508.

Perini, K., and Magliocco, A., 2014, “Effects of vegetation, urban density, building height, and atmospheric conditions on local temperatures and thermal comfort”,

Urban Forestry & Urban Greening, 13(3): 495-506.

Ramsey, J.D., Burford, C.L., and Jansen, R.C., 1983 ,“Effects of workplace thermal conditions on safe work behavior, Journal of Safety Research, 14(3): 105-114.

Shashua-Bar, L.and Hoffman, E., 2000, “Vegetation as a climatic component in the design of an urban street”, Energy and Buildings, 31(3): 221-235.

Spagnolo, J., and de Dear, R.,2003, “A field study of thermal comfort in outdoor and semi-outdoor environments in subtropical Sydney Australia”, Building and

Environment, 38(5): 721-738.

Steadman, R.G., 1984, “A Universal Scale of Apparent Temperature”, Journal of

Climate and Applied Meteorology, 5(4): 89-100.

Sun, C.Y., 2017, “Thermal Environment Simulation of an East-Wast Street in Taipei”,

International review for Spatial Planning and Sustainable Development, 5(4):

89-100.

Taha, H., 1997, “Urban climates and heat islands: albedo, evapotranspiration, and

anthropogenic heat”, Energy and Buildings, 25(2): 99-103.

Tankel, S.B., 1963, “The importance of open space in the urban pattern, ” Cities and

Space,(1): 57-71.

Thom, E.C., 1959, “The Discomfort Index”, Weatherwise,12(2): 57-61.

Xue, S., and Xiao, Y., 2016, “Study on the Outdoor Thermal Comfort Threshold of Lingnan Garden in Summer”, Procedia Engineering, 169: 422-430.

Yao, R., Li, B., and, Liu, J., 2009, “A theoretical adaptive model of thermal comfort – Adaptive Predicted Mean Vote (aPMV)”, Building and Environment, 44(10):

2089-2096.

Yeo, T.P., 2004, “Heat Stroke - A Comprehensive Review”, AACN Advanced Critical

Care, 15(2): 280-293.

3. 其他

Nikolopoulou, M., Baker, N., and Steemers, K., 1999, “Thermal comfort in outdoor urban spaces: different forms of adaptation”, International Conference: The Cities

of Tomorrow.

網頁參考文獻

Safety-in-Heat,取用日期:2017 年 10 月 5 日

https://www.haad.ae/Safety-in-Heat/Default.aspx?tabid=63 Standards & Guidelines,取用日期:2017 年 10 月 5 日

https://www.ashrae.org/standards-research--technology/standards--guidelines

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附錄一 熱舒適性問卷

敬啟者:

您好,這是國立政治大學地政學系所設計之學術用問卷。目的在探討校園 戶外開放空間步行環境的熱舒適性。本問卷採匿名方式,您所填答的資料僅供 學術研究參考,不會轉供其他用途,敬請安心填答。感謝您的協助,使本研究 能順利進行。

敬祝

健康 順遂

指導教授 孫振義 研究生:溫靖儒 0988898013 信箱:[email protected]

第一部分:基本資料填答

1. 請問您的生理性別

男性 女性 2. 請問您的年齡

 18 – 24 歲  25 - 31 歲 3. 請問您的身分為

 大學生  研究生 4. 您身上穿著的衣服為 (請複選)

 深色上衣  淺色上衣

 短袖上衣  長袖上衣  短褲  長褲  外套  帽子

是否願意參與抽獎,若願意,請留下您的學號:__________________

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1. 請圈選一個最符合您現在生理感受的值。

2. 您覺得此處的微氣候需要 (勾選最適合的答案)

 再暖一點  不變  再涼一點

3. 您覺得此處的微氣候需要 (勾選最適合答案)

 多一點風  不變 少一點風

4. 您覺得此處的微氣候需要 (勾選最適合答案)

 多一點太陽 不變 多一點陰影

5. 請問此處的微氣候感受,會讓您會聯想到下列何種區塊的顏色?(請勾選)

6. 請圈選一個最符合您現在對於此處微氣候滿意程度感受的值。

7. 在熱季校園開放空間中,哪一個環境因素會最讓您感覺到舒適?

A.建築物陰影下 B.風大之處 C.水池旁 D.綠化量大的地方

 >  >  > 

此份問卷已結束,謝謝您的填答