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題名:基於透空式建築型態的街谷細懸浮微粒汙染物擴散數值模擬
書刊名:建築學報
作者:葉沛廷蘇瑛敏
作者(外文):Yeh, Pei-tingSu, Ying-ming
出版日期:2021
卷期:117
頁次:頁69-95
主題關鍵詞:透空式建築計算流體力學交通汙染物細懸浮微粒都市街谷離散相模型Opening buildingComputational fluid dynamicsTraffic pollutantsFine particulate matterPM₂.₅Urban street canyonDiscrete phase modelsDPM
原始連結:連回原系統網址new window
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期刊論文
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6.Chen, L.、Hang, J.、Sandberg, M.、Claesson, L.、Sabatino, S. D.、Wigo, H.(2017)。The impacts of building height variations and building packing densities on flow adjustment and city breathability in idealized urban models。Buildings and Environment,118,344-361。  new window
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10.王咏薇、蔣維楣、郭文利、王曉雲(2008)。城市佈局規模與大氣環境影響的數值研究。地球物理學報,51(1),88-100。  延伸查詢new window
11.任超、吳恩融、葉頌文、鄭世有(2017)。高密度城市氣候空間規劃與設計--香港空氣流通評估實踐與經驗。城市建築,2017(1),20-21。  延伸查詢new window
12.周姝雯、唐榮莉、張育新、馬克明(2017)。城市街道空氣汙染物擴散模型綜述。應用生態學報,28(3),1039-1048。  延伸查詢new window
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14.張麗麗、張光學、楊啟岳、丁麗霞(2018)。基於CFD模擬的城市街道PM2.5擴散研究。能源與環境,2018(3),66-70。  延伸查詢new window
15.張耀春、秦雲、王春剛(2004)。洞口設置對高層建築靜力風荷載的影響研究。建築結構學報,25(4),112-123。  延伸查詢new window
16.黃巍、龍恩深(2014)。成都PM2.5與氣象條件的關係及城市空間形態的影響。中國環境監測,2014(4),93-99。  延伸查詢new window
17.喬文佳、賀啟濱、齊亞茹、劉豔華(2015)。交通源顆粒物對社區內環境的影響。建築熱能通風空調,34(2),37-41。  延伸查詢new window
18.楚德見、金阿芳、沈廣旭(2018)。高層建築室外顆粒污染物擴散的數值模擬研究。新疆大學學報(自然科學版),35(2),248-252。  延伸查詢new window
19.葛亞寧、徐新良、李靜、蔡紅豔、張學霞(2016)。北京城市建築密度分布對熱島效應的影響研究。地球信息科學,18(12),1698-1706。  延伸查詢new window
20.鄭穎生、史源、任超、吳恩融(2016)。改善高密度城市區域通風的城市形態優化策略研究--以香港新界大埔墟為例。國際城市規劃,31(5),68-75。  延伸查詢new window
21.Blocken, B.、Vervoort, R.、Hooff, T. V.(2016)。Reduction of outdoor particulate matter concentrations by local removal in semi-enclosed parking garages: A preliminary case study for Eindhoven city center。Journal of Wind Engineering and Industrial Aerodynamics,159,80-98。  new window
22.Buccolieri, R.、Salim, S. M.、Leo, L. S.、Sabatino, S. D.、Chan, A.、Lelpo, P.、De Gennaro, G.、Gromke, C.(2010)。Analysis of local scale tree-atmosphere interaction on pollutant concentration in idealized street canyons and application to a real urban junction。Atmospheric Environment,45(9),1702-1713。  new window
23.Chavez, M.、Hajra, B.、Stathopoulos, T.、Bahloul, A.(2012)。Assessment of near-field pollutant dispersion: Effect of upstream buildings。Journal of Wind Engineering and Industrial Aerodynamics,104-106,509-515。  new window
24.Cheng, W. C.、Fernando, P. A.(2015)。Adjustment of turbulent boundary-layer flow to idealized urban surfaces: a large-eddy simulation study。Boundary-Layer Meteorol,155(2),249-270。  new window
25.Cui, P. Y.、Li, Z.、Tao, W. Q.(2016)。Buoyancy flows and pollutant dispersion through different scale urban areas: CFD simulations and wind-tunnel measurements。Building and Environment,104,76-91。  new window
26.Dai, Y. W.、Mak, M. C.、Ai, Z. T.、Hang, J.(2018)。Evaluation of computational and physical parameters influencing CFD simulations of pollutant dispersion in building arrays。Building and Environment,137,90-107。  new window
27.Eichhorn, J.、Kniffka, A.(2010)。The numerical flow model MISKAM: State of development and evaluation of the basic version。Meteorologische Zeitschrift,19(1),81-90。  new window
28.Dong, Q. C.、Lin, Y. G.、Huang, J. Y.、Chen, Z. F.(2020)。Has urbanization accelerated PM2.5 emissions? An empirical analysis with cross-country data。China Economic Review,59。  new window
29.Gallagher, J.、Lago, C.(2019)。How parked cars affect pollutant dispersion at street level in an urban street canyon? A CFD modelling exercise assessing geometrical detailing and pollutant decay rates。Science of the Total Environment,651,2410-2418。  new window
30.Gousseau, P.、Blocken, B. J. E.、Stathopoulos, T.、van Heijst, G. J. F.(2015)。Near-field pollutant dispersion in an actual urban area: Analysis of the mass transport mechanism by high-resolution Large Eddy Simulations。Computers& Fluids,114,151-162。  new window
31.Gousseau, P.、Blocken, B.、Stathopoulos, T.、Van Heijst, G. J. F.(2011)。CFD simulation of near-field pollutant dispersion on a high-resolution grid: A case study by LES and RANS for a building group in downtown Montreal。Atmospheric Environment,45(2),428-438。  new window
32.Grau-Bové, J.、Strlic, M.、Mazzei, L.、Malki-Epshtein, L.、Thickett, D.(2016)。Simulation of particulate matter ingress, dispersion and deposition in a historical building。Journal of Cultural Heritage,18,199-208。  new window
33.Guo, D. P.、Zhao, P.、Wang, R.、Yao, R. T.、Hu, J. M.(2020)。Numerical simulations of the flow field and pollutant dispersion in an idealized urban area under different atmospheric stability conditions。Process safety and environmental protection,136,310-323。  new window
34.Hang, J.、Li, Y. G.(2010)。Ventilation strategy and air change rates in idealized high-rise compact urban areas。Building and Environment,45(12),2754-2767。  new window
35.Hang, J.、Li, Y. G.(2011)。Age of air and air exchange efficiency in high-rise urban areas and its link to pollutant dilution。Atmospheric Environment,45(31),5572-5585。  new window
36.Hang, J.、Li, Y. G.(2012)。Macroscopic simulations of turbulent flows through high-rise building arrays using a porous turbulence model。Building and Environment,49,41-54。  new window
37.Hang, J.、Li, Y. G.、Sandberg, M.(2011)。Experimental and numerical studies of flows through and within high-rise building arrays and their link to ventilation strategy。Wind Engineering and Industrial Aerodynamics,99(10),1036-1055。  new window
38.Hang, J.、Li, Y. G.、Sandberg, M.、Claesson, L.(2010)。Wind conditions and ventilation in high-rise long street models。Building and Environment,45(6),1353-1365。  new window
39.Hang, J.、Li, Y. G.、Buccolieri, R.、Sandberg, M.、Sabatino, S. D.(2012)。On the contribution of mean flow and turbulence to city breathability: The case of long streets with tall buildings。Science of the Total Environment,416,362-373。  new window
40.Hang, J.、Sandberg, M.、Li, Y. G.(2009)。Effect of urban morphology on wind condition in idealized city models。Atmospheric Environment,43(4),869-878。  new window
41.Hang, J.、Sandberg, M.、Li, Y. G.(2009)。Age of air and air exchange efficiency in idealized city models。Building and Environment,44(8),1714-1723。  new window
42.Hang, J.、Wang, Q.、Chen, X. Y.、Sandberg, M.、Zhu, W.、Buccolieri, R.、Sabatino, S. D.(2015)。City breathability in medium density urban-like geometries evaluated through the pollutant transport rate and the net escape velocity。Building and Environment,94(1),166-182。  new window
43.Hao, C. R.、Xie, X. M.、Huang, Y.、Huang, Z.(2019)。Study on influence of viaduct and noise barriers on the particulate matter dispersion in street canyons by CFD modeling。Atmospheric Pollution Research,10(6),1723-1735。  new window
44.Hassan, A. M.、ELMokadem, A. A.、Megahed, N. A.、Abo Eleinen, Osama M.(2020)。Urban morphology as a passive strategy in promoting outdoor air quality。Journal of Building Engineering,29。  new window
45.Hassan, A. M.、Mokadem, A. A. F. E.、Megahed, N. A.、Eleinen, O. M. A.(2020)。Improving outdoor air quality based on building morphology: Numerical investigation。Frontiers of Architectural Research,9(2),319-334。  new window
46.Karkoulias, V. A.、Marazioti, P. E.、Georgiou, D. P.、Maraziotis, E. A.(2020)。Computational Fluid Dynamics modeling of the trace elements dispersion and comparison with measurements in a street canyon with balconies in the city of Patras, Greece。Atmospheric Environment,223。  new window
47.Keshavarzian, E.、Jin, R.、Dong, K.、Kwok, K. C. S.、Zhang, Y.、Zhao, M.(2020)。Effect of pollutant source location on air pollutant dispersion around a high-rise building。Applied Mathematical Modelling,81,582-602。  new window
48.Kikumoto, H.、Ooka, R.(2012)。A study on air pollutant dispersion with bimolecular reactions in urban street canyons using large-eddy simulations。Journal of Wind Engineering and Industrial Aerodynamics,104-106,516-522。  new window
49.Lai, D.、Liu, W.、Gan, T.、Liu, K.、Chen, Q.(2019)。A review of mitigating strategies to improve the thermal environment and thermal comfort in urban outdoor spaces。Science of the Total Environment,661,337-353。  new window
50.Liu, Y. S.、Cui, G. X.、Wang, Z. S.、Zhang, Z. S.(2011)。Large eddy simulation of wind field and pollutant dispersion in downtown Macao。Atmospheric Environment,45(17),2849-2859。  new window
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54.Mu, D.、Gao, N. P.、Zhu, T.(2018)。CFD investigation on the effects of wind and thermal wall-flow on pollutant transmission in a high-rise building。Building and Environment,137,185-197。  new window
55.Nazarian, N.、Kleissl, J.(2015)。CFD simulation of an idealized urban environment: Thermal effects of geometrical characteristics and surface materials。Urban Climate,12,141-159。  new window
56.Tominaga, Y.、Stathopoulos, T.(2018)。CFD simulations of near-field pollutant dispersion with different plume buoyancies。Building and Environment,131,128-139。  new window
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58.Tao, Y.、Zhang, Z.、Ou, W. X.、Guo, J.、Pueppke, S. G.(2020)。How does urban form influence PM2.5 concentrations: Insights from 350 different-sized cities in the rapidly urbanizing Yangtze River Delta region of China, 1998-2015。Cities,98。  new window
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會議論文
1.Davenport, A. G.、Grimmond, C. S.、Oke, T. R.(2020)。Estimating the roughness of cities and sheltered country。12th Conf. Apply Climate。Boston:American Meteorological Society。  new window
研究報告
1.何明錦(2013)。都市街廓空氣汙染擴散與街地風環境評估之實驗研究。  延伸查詢new window
2.何明錦、方富民(2015)。都市地區風環境流通效應影響評估分析研究。  延伸查詢new window
3.吳義林、蔡德明、王錫豐(2015)。臺灣細懸浮微粒(PM2.5)成分與形成速率分析。行政院環境保護署。  延伸查詢new window
學位論文
1.徐本宗(2014)。臺北都會區交通汙染源PM2.5、黑碳濃度和微粒數目濃度及其相關性探討(碩士論文)。明志科技大學。  延伸查詢new window
圖書
1.歐陽嶠暉(2005)。都市環境學。台北市:詹氏圖書。  延伸查詢new window
2.任超(2016)。城市風環境評估與風道規劃--打造"呼吸城市"。中國建築工業出版社。  延伸查詢new window
3.楊俊宴、張濤、傅秀章(2016)。城市中心風環境與空間型態耦合機理及優化設計。東南大學出版社。  延伸查詢new window
4.劉加平(2011)。城市環境物理。中國建築工業。  延伸查詢new window
5.蕭慧娟(2007)。空氣品質監測。財團法人孫運璿學術基金會。  延伸查詢new window
6.聯合國經濟和社會事務部(2019)。2018年世界城市化前景修訂。聯合國經濟和社會事務部。  延伸查詢new window
7.Architectural Institute of Japan(2016)。AIJ Benchmarks for Validation of CFD Simulations Applied to Pedestrian Wind Environment around Buildings。Architectural Institute of Japan。  new window
8.Jörg, F.、Hellsten, A.、Schlünzen, H.、Carissimo, B.(2007)。Best Practice Guideline for the CFD Simulation of Flows the Urban Environment。COST。  new window
 
 
 
 
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