Publications

Detailed Information

Implementation and modification of an urban canopy parameterization in MM5/URBANIZED : 도시캐노피 밑 난류특성매개변수화를 고려한 중규모 모델개발 및 이를 이용한 도시특성 모의

DC Field Value Language
dc.contributor.advisor윤순창-
dc.contributor.author박서연-
dc.date.accessioned2017-07-14T00:39:28Z-
dc.date.available2017-07-14T00:39:28Z-
dc.date.issued2014-02-
dc.identifier.other000000016926-
dc.identifier.urihttps://hdl.handle.net/10371/121251-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 대기과학과, 2014. 2. 윤순창.-
dc.description.abstractThis study is carried out to simulate the flow and turbulence in urban area for air pollution modeling using a modified urbanized mesoscale model. The Urban Canopy Parameterization (UCP) of Dupont et al. (2004) implemented in MM5v3.7 mesoscale meteorological modeling system (MM5-UCP-Basic) is evaluated against the non-urbanized model (MM5-NoUCP) using measurements taken in urban Phoenix during two field studies. In general, MM5-UCP-Basic improved the predictions of typical meteorological parameters. Nevertheless, significant discrepancies still exist between observations and the predictions of MM5-UCP-Basic, and new parameterizations and land use classes are introduced to improve the model performance.
The parameterization of anthropogenic heat flux from buildings and roadways is also included. The land use classes in the improved model (MM5-UCP-MOD) represent roadways and rivers, in addition to five classes of buildings identified in MM5-UCP-Basic.
New parameterizations considered the appropriate roughness length, velocity decay during evening transition, and heat and momentum diffusivities for the nocturnal period so that account for different heat and momentum transfer rates under stable atmospheric conditions. Five nested grid domains are used for simulations, with the highest resolution (1km) implemented into the MM5-NoUCP, MM5-UCP-Basic and MM5-UCP-MOD.
Improved parameterizations were validated by detailed flow and turbulence measurements which were conducted as the Phoenix SUNRISE field experiment in 2001 (Lee et al., 2003
-
dc.description.abstractDoran et al., 2003) and TRANSFLEX in 2006 (Fernando et al., 2013).
This research was to refine the urban land use classification in MM5-UCP-Basic and modify the turbulence parameterizations to better represent surface fluxes and urban effect such as UHI and LLJs. The features of this modified model, MM5-UCP-MOD, are presented in this research together with its validation and comparisons with MM5-UCP-Basic and original MM5v3.7 (referred to as MM5-noUCP).
According to sensitivity tests for parameterization improvement, the parameterization changing the turbulence length scale in TKE is the most significant to develop the high performance of momentum flux in urban simulation.
In general, substantial improvements in the prediction of wind speed, temperature (especially during the nighttime) and momentum flux as well as a smaller improvement in the heat flux are noted, so that is pointing to possible further enhancement onto model performance by including the improved physics.
By the way, the MM5-UCP-MOD is useful to understand the UHI and urban meteorology so as to simulate and predict the nocturnal air pollution in the city, especially. The temperature field and heat flux including effect of UHI in urban center are better simulated by MM5-UCP-MOD with urban data for Phoenix than by the standard version of MM5 (MM5-NoUCP).
Besides, transient events of end of high mountainous area, which enclosed the downtown, are also accomplished to simulate by MM5-UCP-MOD. The transient events are typically developed by coupled effect of topographical condition of Phoenix and thermally driven flow in neighborhood scale. And it seems to be analyzed by drag force approach inside roughness sub-layer.
The budgets of turbulent kinetic energy near the boundary from output of MM5-UCP-MOD are able to understand the turbulent energy transform near the top of building canopy.
Since three-dimensional observations are not enough to verify the simulation and the use of urban and vegetation canopy morphology database with land use type are too simplified, validation of new parameterization is not enough.
Nevertheless, the formation of LLJ owing to UHI and transient events with nocturnal downslope flow in transient time can be explained using MM5-UCP-MOD. And also, this effect produced the nocturnal high ozone concentrations and can be only simulated by MM5-UCP-MOD. Although the limitation of comparison with measurement for ozone and PM10, the analysis of the model outputs emphasized that results from MM5-UCP-MOD and CMAQ are useful to understand and predict the urban meteorology and air pollution.
-
dc.description.tableofcontentsABSTRACT i
TABLE OF CONTENTS v
LIST OF FIGURES vii
LIST OF TABLES xiii

1. Introduction 1
1.1 Review of previous studies 1
1.1.1 Urbanized meso-scale meteorological model 1
1.1.2 Urban heat island (UHI) phenomena 6
1.2 Motivation and Objectives of research 8

2. Implementation of new Urban Canopy Parameterization 12
2.1 Introduction 12
2.2 Implementation of Urban Canopy Parameterization (UCP) in MM5 for Phoenix in MM5 18

3. Application and modification of turbulence parameterization in MM5-UCP-Basic 28
3.1 Setup and simulation condition in MM5 28
3.2 Comparison of simulations with surface observations 30
3.3 Modification of turbulence parameterizations in MM5-UCP -Basic 38
3.3.1 Brief description of turbulence parameterization in DA-SM2-U 38
3.3.2 Issues of original MM5-UCP-Basic and modifications 45

4. Validation and sensitivity of MM5-UCP-MOD 53
4.1 Comparison of simulations with surface observations 53
4.1.1 Field experiments 53
4.1.2 Numerical simulations 58
4.2 Sensitivity to each improvement 59
4.3 Simulation results of modified version, MM5-UCP-MOD 63

5. Application of MM5-UCP-MOD to Urban Effects simulations 72
5.1 Impacts of urban heat island effect 72
5.2 Urban effect on transient event 86
5.3 Effect on air pollution distribution 96
5.3.1 Air pollution modeling 96
5.3.2 Results of air pollution modeling 97

6. Summary and conclusion 105

REFERENCES 109
국문 초록 119
-
dc.formatapplication/pdf-
dc.format.extent5121035 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectUrban Canopy Parameterization-
dc.subjectmodification of eddy diffusivity-
dc.subjectmomentum and heat flux parameterization-
dc.subjectmodification of roughness length scale-
dc.subjectUHI-
dc.subjecttransient events-
dc.subjecthigh ozone concentration in nighttime-
dc.subject.ddc550-
dc.titleImplementation and modification of an urban canopy parameterization in MM5/URBANIZED-
dc.title.alternative도시캐노피 밑 난류특성매개변수화를 고려한 중규모 모델개발 및 이를 이용한 도시특성 모의-
dc.typeThesis-
dc.description.degreeDoctor-
dc.citation.pagesxiii, 122-
dc.contributor.affiliation자연과학대학 대기과학과-
dc.date.awarded2014-02-
Appears in Collections:
Files in This Item:

Altmetrics

Item View & Download Count

  • mendeley

Items in S-Space are protected by copyright, with all rights reserved, unless otherwise indicated.

Share