Mario Flores, Graduate Student Department of Applied Mathematics, UTSA. EES 5053: Remote Sensing

Similar documents
Instruction: proposal to class project

Activity 2.2: Recognizing Change (Observation vs. Inference)

Google Earth Engine: MODIS Land Surface Temperature (LST) Training Release IRI, Earth Institute, Columbia University

Software requirements * : Part III: 2 hrs.

Aniekan Eyoh 1* Department of Geoinformatics & Surveying, Faculty of Environmental Studies, University of Uyo, Nigeria

Seasonal Variations of the Urban Heat Island Effect:

Urban heat island in the metropolitan area of São Paulo and the influence of warm and dry air masses during summer

Interannual variation of MODIS NDVI in Lake Taihu and its relation to climate in submerged macrophyte region

Applications of GIS and Remote Sensing for Analysis of Urban Heat Island

Warming Earth and its Atmosphere The Diurnal and Seasonal Cycles

Lecture 4 Air Temperature. Measuring Temperature. Measuring Temperature. Surface & Air Temperature. Environmental Contrasts 3/27/2012

Study of Land Surface Temperature Variations with Distance from Hot Spots for Urban Heat Island Analysis

LAB J - WORLD CLIMATE ZONES

What is Climate? Understanding and predicting climatic changes are the basic goals of climatology.

Lech GAWUC, Joanna STRUZEWSKA. Meteorology Division Faculty of Environmental Engineering Warsaw University of Technology Warsaw, Poland

Energy Systems, Structures and Processes Essential Standard: Analyze patterns of global climate change over time Learning Objective: Differentiate

Comparison of NASA AIRS and MODIS Land Surface Temperature and Infrared Emissivity Measurements from the EOS AQUA platform

TILT, DAYLIGHT AND SEASONS WORKSHEET

LAB MODULE 5: GLOBAL TEMPERATURE PATTERNS

3 Temperate and Polar Zones

Meteorology Practice Test

The footprint of urban heat island effect in China

Learning Objectives. Thermal Remote Sensing. Thermal = Emitted Infrared

Comparing the diurnal and seasonal variabilities of atmospheric and surface urban heat islands based on the Beijing urban meteorological network

1. Introduction. Chaithanya, V.V. 1, Binoy, B.V. 2, Vinod, T.R. 2. Publication Date: 8 April DOI: /cloud.ijarsg.

LAB 19. Lab 19. Differences in Regional Climate: Why Do Two Cities Located at the Same Latitude and Near a Body of Water Have Such Different Climates?

Positional accuracy of the drainage networks extracted from ASTER and SRTM for the Gorongosa National Park region - Comparative analysis

SATELLITE DATA COLLECTION BY THE UPRM-TCESS SPACE INFORMATION LABORATORY

DEPENDENCE OF URBAN TEMPERATURE ELEVATION ON LAND COVER TYPES. Ping CHEN, Soo Chin LIEW and Leong Keong KWOH

Global Temperature Report: December 2018

Name Per Date Earth Science Climate & Insolation Test

Flux Tower Data Quality Analysis in the North American Monsoon Region

Spatio-Temporal Trends of Urban Heat Island and Surface Temperature in Izmir, Turkey

1 What Is Climate? TAKE A LOOK 2. Explain Why do areas near the equator tend to have high temperatures?

Over the course of this unit, you have learned about different

The Looming Threat of Rising Sea Levels to the Florida Keys

Which graph best shows the relationship between intensity of insolation and position on the Earth's surface? A) B) C) D)

MONITORING THE SURFACE HEAT ISLAND (SHI) EFFECTS OF INDUSTRIAL ENTERPRISES

CORRELATION BETWEEN URBAN HEAT ISLAND EFFECT AND THE THERMAL INERTIA USING ASTER DATA IN BEIJING, CHINA

Remote Sensing of Urban Surface Temperatures

Display and analysis of weather data from NCDC using ArcGIS

A new perspective on aerosol direct radiative effects in South Atlantic and Southern Africa

Study of Urban heat Island Effect on Ahmedabad City and Its Relationship with Urbanization and Vegetation Parameters

Climate.tgt, Version: 1 1

THE USE OF REMOTE SENSING AND GEOSPATIAL TECHNIQUES FOR URBAN CLIMATE ANALYSIS: A CASE STUDY OF ABU DHABI CITY AREA

ANALYSIS AND VALIDATION OF A METHODOLOGY TO EVALUATE LAND COVER CHANGE IN THE MEDITERRANEAN BASIN USING MULTITEMPORAL MODIS DATA

Fire Weather Drivers, Seasonal Outlook and Climate Change. Steven McGibbony, Severe Weather Manager Victoria Region Friday 9 October 2015

Third Grade Math and Science DBQ Weather and Climate/Representing and Interpreting Charts and Data - Teacher s Guide

URBAN HEAT ISLAND IN SEOUL

Prentice Hall EARTH SCIENCE

The Desert Biome Review

Recent Update on MODIS C6 and VIIRS Deep Blue Aerosol Products

Where is the tropical zone? What are three biomes found in the tropical zone?

SEASONAL AND DAILY TEMPERATURES

One of the coldest places in the country - Peter Sinks yet again sets this year s coldest temperature record for the contiguous United States.

Climate Change. Grades 5-8. Written by Darcy J. Gentleman Illustrated by S&S Learning Materials. ISBN Copyright 2008

LESSON PLAN. In Portugal there is sun all along the year. To prove our partners that we don t have sun all along the year.

DEPARTMENT OF EARTH & CLIMATE SCIENCES Name SAN FRANCISCO STATE UNIVERSITY Nov 29, ERTH 360 Test #2 200 pts

Data Visualization and Evaluation

CLIMATE. UNIT TWO March 2019

Prentice Hall EARTH SCIENCE

A) usually less B) dark colored and rough D) light colored with a smooth surface A) transparency of the atmosphere D) rough, black surface

RESEARCHER ESTIMATION OF EVAPORATION LOSSES FROM LAKE NASSER USING REMOTE SENSING AND GIS RASTER CALCULATOR MODEL

Preparation and dissemination of the averaged maps and fields of selected satellite parameters for the Black Sea within the SeaDataNet project

High-resolution simulations of the Urban Heat Island

Agricultural Science Climatology Semester 2, Anne Green / Richard Thompson

- satellite orbits. Further Reading: Chapter 04 of the text book. Outline. - satellite sensor measurements

SIMPLE ESTIMATION OF AIR TEMPERATURE FROM MODIS LST IN GIFU CITY, JAPAN

Global temperature record reaches one-third century

Which Earth latitude receives the greatest intensity of insolation when Earth is at the position shown in the diagram? A) 0 B) 23 N C) 55 N D) 90 N

LAND USE LAND COVER, CHANGE DETECTION OF FOREST IN KARWAR TALUK USING GEO-SPATIAL TECHNIQUES

Name Date. What s the weather like today? Watch the beginning of the video Basics of geography- climate.

Analyzing Solar Energy Graphs: MY NASA DATA

NES: Weather and Climate: Satellite Meteorology

330: Daytime urban heat island intensity in London during the winter season

Analyzing the Earth Using Remote Sensing

Making Rain on Arid Regions The GESHEM Rain System

Climate Impacts to Southwest Water Sector. Dr. Dave DuBois New Mexico State Climatologist

All objects emit radiation. Radiation Energy that travels in the form of waves Waves release energy when absorbed by an object. Earth s energy budget

My Community vs. Nunavut Weather and Climate

Atmospheric Composition and Structure

Physical Geography Lab Activity #16

Sunlight and Temperature

RESEARCH METHODOLOGY

MODIS-based snow cover variability of the Upper Rio Grande Basin

Mapping Global Carbon Dioxide Concentrations Using AIRS

Satellites, Weather and Climate Module 1: Introduction to the Electromagnetic Spectrum

Climates of Earth. Lesson Outline LESSON 1. A. What is climate? 1. is the long-term average weather conditions that occur in a particular region.

Seasonal & Diurnal Temp Variations. Earth-Sun Distance. Eccentricity 2/2/2010. ATS351 Lecture 3

How to display RGB imagery by SATAID

Third Grade Math and Science DBQ Weather and Climate/Representing and Interpreting Charts and Data

Institut national des sciences appliquées de Strasbourg GENIE CLIMATIQUE ET ENERGETIQUE APPENDICES

Case Study Las Vegas, Nevada By: Susan Farkas Chika Nakazawa Simona Tamutyte Zhi-ya Wu AAE/AAL 330 Design with Climate

Changes in Seasonal Albedo with Land Cover Class

March was 3rd warmest month in satellite record

1 What Is Climate? TAKE A LOOK 2. Explain Why do areas near the equator tend to have high temperatures?

Mapping Coastal Change Using LiDAR and Multispectral Imagery

Which map shows the stream drainage pattern that most likely formed on the surface of this volcano? A) B)

ECNU WORKSHOP LAB ONE 2011/05/25)

Why the Earth has seasons. Why the Earth has seasons 1/20/11

Transcription:

Mario Flores, Graduate Student Department of Applied Mathematics, UTSA Miguel Balderas, E.I.T., Graduate Student Department of Civil/Environmental Engineering, UTSA EES 5053: Remote Sensing REMOTE SENSING URBAN HEAT-ISLAND DETECTED BY MODIS/TERRA AND MODIS/AQUA TEMPERATURE PRODUCT IN THE TEXAS CITY OF EL PASO REPORT December 7, 2008 University of Texas San Antonio

REMOTE SENSING URBAN HEAT-ISLAND DETECTED BY MODIS/TERRA AND MODIS/AQUA TEMPERATURE PRODUCT IN THE TEXAS CITY OF EL PASO Mario Flores, Graduate Student Department of Applied Mathematics, UTSA Miguel Balderas, E.I.T., Graduate Student Department of Civil/Environmental Engineering, UTSA ABSTRACT This paper shows the application of MODIS/Terra and MODIS/Aqua temperature products (every 8 days with a 1 km spatial resolution and with day @ 1:30 pm EST and night data @ 1:30am EST) of time period July 2002 to December 2003 to study the urban heat island phenomenon of the city of El Paso, Texas. INTRODUCTION The temperature of an urban area is often higher than the surrounding rural areas. It looks like a hot island standing out in a sea of relative cool areas. This phenomenon is called urban heat island (UHI) effect, an anthropogenically induced climate feature associated with the contrast surface characteristics between urban and rural areas [Sturman and Tapper, 2006]. This phenomenon is due to the increase of local surface and atmospheric temperatures in urban areas when compare to those temperatures in rural areas. This increase in temperature results mainly from the concentration of population and the type of land use in cities like buildings, parking lots, roads which reduce the tree, grass and water surface which otherwise reduce the temperature by evapotranspiration, and the materials used retain the heat from the sun. STUDY AREA The study area is the city of El Paso, Texas and its surrounding area. El Paso is located at 31 47 25 N 106 25 24 W / 31.79028, -106.42333 (31.790208, -106.423242).[1] It lies at the intersection of the states of Texas, New Mexico and Chihuahua and the countries of USA and Mexico. The city's elevation is 3,800 feet (1140 m) above mean sea level. According to the United States Census Bureau, the city has a total area of 250.5 square miles (648.9 km²). El Paso has an arid, warm climate (Koppen climate classification BWh) with very hot summers (with little or no humidity) and mild, dry winters. Temperatures range from an average high of 55 F (13 C) and an average low of 28 F ( 2 C) in January to an average high of 97 F (36 C ) in June and an average low of

68 F (20 C) in August. The city's record high is 114 F (45.5 C), and its record low is 8 F ( 22 C). (2) Temperature differences between the built-up city and the scarce populated Chihuahuan Desert shows the urban heat island effect. The image 1 is a MODIS image of the city of El Paso and image number 1a better definition image. We can see the white area to the left that represents higher temperatures. Image 3 shows a zoom with a vector layer of the city of El Paso. Image 1 Image 2. The complete data set. The city of El Paso, Texas is at the lower right in green.

Image 3. The roads in the city of El Paso, Texas METHODOLOGY Data The data was obtained from NASA s two MODIS sensors on board of Terra Earth Observing Satellites (EOS) launched in December 1999 and Aqua Earth Observing Satellites (EOS) launched in February 2002. The MODIS instrumentation provides radiometric sensitivity of 12 bits in 36 spectral bands in the range of wavelengths of 0.4 micro meters to 14.4 micrometers. One of the products that MODIS provides is the surface temperature product MOD11A1 of Aqua and Terra which is a 8 day I km spatial resolution of land surface temperature with accuracy of 1 degree Kelvin (Wan et al. 2002a, 2004a) with day time (1:30 pm EST) and night time (1:30 AM EST) data. This project uses the MODIS Terra MOD11A1 and MODIS Aqua MOD11A1 products to study temperature in the city of El Paso and surrounding areas (Figure 1). Data was gathered from June 2002 to November 2008, but the period under investigation is from to June 2002 to December 2003. The series were ordered at https://wist.echo.nasa.gov/api/. Image 4 shows the Internet interface that allows the order of this data.

Image 4. The WIST website by NASA Method The tool for re-projection MODIS Re-projection tool (MRT) was used to process the data. It is a free software program provided by NASA for the proper map projection and datum. Below are the steps used to obtain the desired data. (a) Select only night time LST (land surface temperature) and day time LST images (b) Clip the images to study area (c) Project to UTM zone 13 with WGS84 datum (d) Using ENVI the series of images were stacked into two images: daytime image and nighttime image (i.e. all day time LST image time series into the daytime image, all night time LST image series into the nighttime image). (e) These two stacked images were then converted to real temperature (Kelvin) by multiply the scale factor of 0.02. (f) Then the images were classified using the density slice showed in image 5.

Image 5 Image 6. El Paso at August 5, 2002. Heat Island Phenomenon. The white or bright areas represent higher temperatures. Image 5 Density Slice for the stacked images (g) Every LST image was individually checked visually to find if it was affected by clouds. If the image had too many no value data due to cloud coverage then the image could not be used for the analysis. Image 5 shows the heat island phenomenon. The white area is at higher temperatures. As we can see in Image 6 the phenomenon is greater at the city of Ciudad Juarez, Mexico. Image 7 shows the frequencies in the values of temperature for image 3. Image 7. Temperature (K) against Frequency in image 3

Image 8 shows the statistics for JUL 12 2002 in red and DEC 19 2002 in white. We can see the differences in temperature for these dates. Image 8 (h) Using the shapefile from ArcGIS the roads vector layer of the city of El Paso was obtain from the Texas roads shapefile and added to the stacked images. Also ARC Info version 9.2 was used to format some of the images (scale, orientation, text). RESULTS AND DISCUSSION Dr. Xie and his proceeding classes will continue working with this project the rest of this semester and into the next coming year (2009). As up to today this work shows a Heat island characterization map in the city of El Paso for the period of June 2002 to December 2003. Image 9 shows an example of characterization of heat island of the city of El Paso. We can see that the area of downtown El Paso show clearly the phenomenon.

Image 9. September 30 2002. Image 10 shows the phenomenon on day 353 almost at the end of the year, We can see in this image that there are more dark areas which show less temperature. However still we can see the heat island phenomenon. Image 10. December 19, 2002. Image 11 and 12 shows the density slices for July 12, 2002 at day and night. We can see almost no difference at the heat island in the downtown area during the winter season. However there area some black spots in the night image that do not represent bad measurements. We observed during the day during the summer months that the heat island effect is not visible during the day. Due to the dessert climate in El Paso, Texas the surface temperature/emissivity is greater in the area outside the cities (El

Paso, Cuidad Juarres) or urban areas because the urban areas are absorbing most of the heat while the light colored sand areas in the dessert reflect it back causing the surface temperature to be greater in those areas. At night during the summer months the heat island is visible because the heat absorbed by the urban area is being released while the surrounding dessert areas lose their heat almost instantly causing the effect (Image 13). Another reason for the night heat island effect can be attributed to the fact that these two cities (El Paso and Ciudad Juarez) are industrial cities. Many major companies and corporations (i.e. Sony) operate on a 24-hour production cycle thus intensifying the heat island effect. Image 11

Image 12 Image 13

Approximately 80 good MODIS images (both daytime and nighttime) for the study periods (July to December) of 2002-2003 have been analyzed. The existence of a heat island (HI) of the El Paso downtown area was clearly shown in ~ 80% of the available cloud-free (or near free) data. It is especially prevalent in the night-time imagery than in the daytime imagery. Overall, during nighttime (daytime), the HI is about 4-5 K (6-8 K) higher than the average T of the area and 5-6 K (8-11 K) higher than the rural area. We can assume that the rest of the data collected and analyzed to November of 2008 would yield fairly the same results. If anomalies or abnormal results are shown for a period of time, one would then have to look into the weather conditions during that time frame. A rain event lasting several days may taint some of the abnormal data. With further time and analysis one can absolutely show the heat island effect on El Paso, Texas and its sister city Ciudad Juarez, Mexico.

1 "US Gazetteer files: 2000 and 1990". United States Census Bureau (2005 05 03). Retrieved on 2008 01 31. 2 http://en.wikipedia.org/wiki/el_paso,_texas 3 HEAT ISLAND OF SAN ANTONIO, TEXAS DETECTED BY MODIS/AQUA TEMPERATURE PRODUCT Hongjie Xie, Huade Guan, and Sandra Ytuarte. Laboratory for Remote Sensing and Geoinformatics. Department o f Earth and Environment Science University of Texas at San Antonio. San Antonio, TX 78249.