Climate change phenomena and its impact on water cycle have been in recent decades. Due to climate change effects, temperature and its daily extreme as well as rainfall are changing. Bukit Merah is a focal point for the tourism sector and agriculture (paddy irrigation). However, this area is affected by climate change when it is affected by low water levels in the dry season and dangerous water levels in monsoon that cause floods. This study describes the application of statistical downscaling model (SDSM) models for prediction of future rainfall at Kurau river basin. The SDSM has been calibrated and validated future temperature and rainfall simulation. This study predicted the future rainfall and temperature of Kurau river basin for 30 years (2020-2050). From the result, the minimum temperature from year 2020 to 2035 is expected to be within the range of 2l°C to 22.5°C and the maximum temperature will be in the range of 3l°C to 35°C. For the year range 2036 to 2050, the minimum temperature are predicted to be within the range 2l°C to 23°C and the maximum temperature will be the range of 30°C to 36°C. For the rainfall, from the year 2020 to 2035, the average annual rainfall is expected to be 40l9 mm/year and 2036 to 2050 predicted to increase continuously reaching 4053.l7 mm/year.
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7 November 2022
10TH INTERNATIONAL CONFERENCE ON APPLIED SCIENCE AND TECHNOLOGY
25–26 October 2021
Kuala Lumpur, Malaysia
Research Article|
November 07 2022
Prediction of future temperature and rainfall characteristics using statistical downscaling model (SDSM) for Pondok Tanjung station in Kurau river basin
Muhammad Shafiq Amir Bin Kamarazaman;
Muhammad Shafiq Amir Bin Kamarazaman
a)
1
Department of Civil Engineering Technology, Faculty of Engineering Technology Universiti Tun Hussein Onn Malaysia
, Pagoh Higher Education Hub, KM1, Jalan Panchor,84600 Pagoh, Johor, Malaysia
,
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Nuramidah Binti Hamidon;
Nuramidah Binti Hamidon
b)
1
Department of Civil Engineering Technology, Faculty of Engineering Technology Universiti Tun Hussein Onn Malaysia
, Pagoh Higher Education Hub, KM1, Jalan Panchor,84600 Pagoh, Johor, Malaysia
,b)Corresponding author: [email protected]
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Nur Aini Binti Mohd Arish;
Nur Aini Binti Mohd Arish
c)
1
Department of Civil Engineering Technology, Faculty of Engineering Technology Universiti Tun Hussein Onn Malaysia
, Pagoh Higher Education Hub, KM1, Jalan Panchor,84600 Pagoh, Johor, Malaysia
,
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Mariah Awang;
Mariah Awang
d)
1
Department of Civil Engineering Technology, Faculty of Engineering Technology Universiti Tun Hussein Onn Malaysia
, Pagoh Higher Education Hub, KM1, Jalan Panchor,84600 Pagoh, Johor, Malaysia
,
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Hasnida Harun;
Hasnida Harun
e)
1
Department of Civil Engineering Technology, Faculty of Engineering Technology Universiti Tun Hussein Onn Malaysia
, Pagoh Higher Education Hub, KM1, Jalan Panchor,84600 Pagoh, Johor, Malaysia
,
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Noor Yasmin Zainun;
Noor Yasmin Zainun
g)
1
Department of Civil Engineering Technology, Faculty of Engineering Technology Universiti Tun Hussein Onn Malaysia
, Pagoh Higher Education Hub, KM1, Jalan Panchor,84600 Pagoh, Johor, Malaysia
,
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Mohammad Ashraf Abdul Rahman;
Mohammad Ashraf Abdul Rahman
h)
1
Department of Civil Engineering Technology, Faculty of Engineering Technology Universiti Tun Hussein Onn Malaysia
, Pagoh Higher Education Hub, KM1, Jalan Panchor,84600 Pagoh, Johor, Malaysia
,
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Faridahanim Ahmad;
Faridahanim Ahmad
h)
2
School of Civil Engineering, Universiti Teknologi Malaysia
, 81310 UTM Johor Bahru, Johor, Malaysia
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Kamaruzaman Musa;
Kamaruzaman Musa
i)
1
Department of Civil Engineering Technology, Faculty of Engineering Technology Universiti Tun Hussein Onn Malaysia
, Pagoh Higher Education Hub, KM1, Jalan Panchor,84600 Pagoh, Johor, Malaysia
,
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Fatimah Mohamed Yusof;
Fatimah Mohamed Yusof
j)
1
Department of Civil Engineering Technology, Faculty of Engineering Technology Universiti Tun Hussein Onn Malaysia
, Pagoh Higher Education Hub, KM1, Jalan Panchor,84600 Pagoh, Johor, Malaysia
,
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Suraya Hani Adnan;
Suraya Hani Adnan
k)
1
Department of Civil Engineering Technology, Faculty of Engineering Technology Universiti Tun Hussein Onn Malaysia
, Pagoh Higher Education Hub, KM1, Jalan Panchor,84600 Pagoh, Johor, Malaysia
,
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Mohd Syafiq Syazwan Mustafa
Mohd Syafiq Syazwan Mustafa
l)
1
Department of Civil Engineering Technology, Faculty of Engineering Technology Universiti Tun Hussein Onn Malaysia
, Pagoh Higher Education Hub, KM1, Jalan Panchor,84600 Pagoh, Johor, Malaysia
,
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AIP Conf. Proc. 2644, 030032 (2022)
Citation
Muhammad Shafiq Amir Bin Kamarazaman, Nuramidah Binti Hamidon, Nur Aini Binti Mohd Arish, Mariah Awang, Hasnida Harun, Noor Yasmin Zainun, Mohammad Ashraf Abdul Rahman, Faridahanim Ahmad, Kamaruzaman Musa, Fatimah Mohamed Yusof, Suraya Hani Adnan, Mohd Syafiq Syazwan Mustafa; Prediction of future temperature and rainfall characteristics using statistical downscaling model (SDSM) for Pondok Tanjung station in Kurau river basin. AIP Conf. Proc. 7 November 2022; 2644 (1): 030032. https://doi.org/10.1063/5.0105577
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