Submitted:
18 June 2024
Posted:
19 June 2024
You are already at the latest version
Abstract
Keywords:
1. Introduction
2. Data and Method
2.1. Data Used in This Study
2.2. Southerly Surge Identification
2.3. Extreme Rainfall, Integrated Water Vapor Transport, and Convective Instability
3. Result and Discussion
3.1. Climatology of SS and Large-Scale Atmospheric Condition
3.1.1. Climatology of the Rainfall and SS
3.1.2. Large-Scale, MJO and Monsoon Conditions Associated with SS
3.2. Rainfall Response to Southerly Surges
3.2.1. Rainfall Patterns during MJO Condition
3.2.2. Extreme Rainfall Response
3.2.3. Cross-Section Analysis for Rainfall Diurnal Variations
3.2.4. Time Series Analysis for Rainfall Diurnal Variations
3.3. Atmospheric Processes of SSs Governing Rainfall Systems
3.3.1. Integrated Water Vapor Transport (IVT)
3.3.2. Convective Instability
4. Conclusion
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
References
- Air Weather Service: The Use of Skew-T Log-P Diagram in Analysis and Forecasting, Technical Report No. AWS/TR-79/006 Rev., 1979.
- Aldrian, E., and Susanto, R. D.: Identification of three dominant rainfall regions within Indonesia and their relationship to sea surface temperature, Int. J. Climatol., 23, 1435–1452, 2003. [CrossRef]
- Amelia, Y.: Study of Variations in January Rainfall Patterns in the Asian Monsoon Region of Australia and Their Relation to the Southerly Surge Phenomenon, Final Assignment of the Meteorology Study Program in Bandung Institute of Technology, 2010.
- Bui, H. T., Ishidara, H., and Shaowei, N.: Evaluation of the use of global satellite–gauge and satellite-only precipitation products in stream flow simulations, Appl. Water Sci., 9, 52, 2019. [CrossRef]
- Chang, C. P., Harr, P. A., McBride, J., and Hsu, H. H.: Maritime Continent monsoon: Annual cycle and boreal winter variability, East Asian Monsoon, World Scientific, 107–150, 2004. [CrossRef]
- Chang, C. P., Harr, P. A., and Chen, H. J.: Synoptic disturbances over the equatorial South China Sea and western Maritime Continent during boreal winter, Mon. Wea. Rev., 2005a. [CrossRef]
- Chang, C. P., McBride, J., and Liu, C. H.: Annual cycle of Southeast Asia—Maritime Continent rainfall and the asymmetric monsoon transition, J. Climate, 18, 287-301, 2005b.
- Chang, C. P., Wang, Z., and Hendon, H.: The Asian winter monsoon, in: The Asian Monsoon, Springer, Berlin, 89-127, 2006.
- Chen, T. C., Yen, M. C., Huang, W. R., and Gallus Jr, W. A.: An East Asian cold surge: case study, Mon. Wea. Rev., 130, 2271-2290, 2002. [CrossRef]
- Chou, C., and Neelin, J. D.: Mechanisms of global warming impacts on regional tropical precipitation, J. Clim., 17, 2688–2701, 2004. [CrossRef]
- Da Silva, N. A., and Matthews, A. J.: Impact of the Madden–Julian Oscillation on extreme precipitation over the western Maritime Continent and Southeast Asia, Quart. J. R. Meteorol. Soc., 147, 3434–3453, 2021. [CrossRef]
- Davidson, NE.: Short-term fluctuations in the Australian monsoon during winter Monex. Mon. Weath. Ret, 112, 1697–708, 1984.
- Davidson, N. E., McBride, J. L., and McAvaney, B. J.: The onset of the Australian monsoon during winter MONEX: Synoptic aspects, Mon. Wea. Rev., 111, 496–516, 1983. [CrossRef]
- DeAngelis, A. M., Qu, X., Zelinka, M. D., and Hall, A.: An observational radiative constraint on hydrologic cycle intensification, Nature, 528, 249–253, 2015. [CrossRef]
- Fukutomi, Y., and Yasunari, T.: Southerly Surges on Submonthly Time Scales over the Eastern Indian Ocean during the Southern Hemisphere Winter, Mon. Wea. Rev., 133, 1637-1629, 2005.
- Fukutomi, Y.: Tropical synoptic-scale waves propagating across the Maritime Continent and northern Australia, J. Geophys. Res.: Atmos., 124, 7665–7682, 2019. [CrossRef]
- Gray, W.M. dan Jacobson, R. W.: Diurnal Variation of Deep Convective System in The Tropics. Mon, Weather Rev., 105, 1171 – 1188, 1977.
- Hattori, M., Mori, S., and Matsumoto, J.: The cross-equatorial northerly surge over the maritime continent and its relationship to precipitation patterns, J. Meteorol. Soc. Japan Ser. II, 89, 27-47, 2011. [CrossRef]
- Hermawanto, A.: Study of the Break Period During the Winter Asian Monsoon in Indonesia, Thesis, Bandung Institute of Technology, 2011.
- Hersbach, H., Bell, B., Berrisford, P., et al.: The ERA5 global reanalysis, Q. J. R. Meteorol. Soc., 146, 1999–2049, 2020. [CrossRef]
- Hidayat, R., and Kizu, S.: Influence of the Madden–Julian Oscillation on Indonesian rainfall variability in austral summer, Int. J. Climatol., 30, 1816-1825, 2010. [CrossRef]
- Houze, R. A., Jr., S. G. Geotis, F. D. Marks, Jr., and A. K. West.: Winter monsoon convection in the vicinity of north Borneo. Part I: Structure and time variation of the clouds and precipitation. Mon. Wea. Rev., 109, 1595-1614, 1981.
- Hu, H., Li, Y., Yang, X.-Q., Wang, R., Mao, K., and Yu, P.: Influences of oceanic processes between the Indian and Pacific basins on the eastward propagation of MJO events crossing the Maritime Continent, J. Geophys. Res.: Atmospheres, 128, e2022JD038239, 2023. [CrossRef]
- Kajikawa, Y., Wang, B., and Yang, J.: A Multi time Scale Australian Monsoon Index, Int. J. Climatol., 30, 1114-1120, 2009. [CrossRef]
- Koseki, S., Koh, T. Y., and Teo, C. K.: Borneo vortex and mesoscale convective rainfall, Atmos. Chem. Phys., 14, 4539-4562, 2014. [CrossRef]
- Lawrence, M. G.: The Relationship between Relative Humidity and the Dewpoint Temperature in Moist Air: A Simple Conversion and Applications, Bull. Am. Meteorol. Soc., 86, 225–234, 2005.
- Lim, S. Y., Marzin, C., Xavier, P., Chang, C.-P., and Timbal, B.: Impacts of boreal winter monsoon cold surges and the interaction with MJO on Southeast Asia rainfall, J. Climate, 30, 4267–4281, https://doi.org/10.1175/JCLI-D-16-0546.1, 2017. [CrossRef]
- Liebmann, B., and Smith, C. A.: Description of a complete (interpolated) outgoing longwave radiation dataset, Bull. Am. Meteorol. Soc., 77, 1275-1277, 1996.
- Love, B. S., Matthews, A. J., and Lister, G. M. S.: The diurnal cycle of precipitation over the maritime continent in a high-resolution atmospheric model, Q. J. R. Meteorol. Soc., 137, 934–947, 2011. [CrossRef]
- Matthews, A. J., Pickup, G., Peatman, S. C., Clews, P., and Martin, J.: The effect of the Madden-Julian Oscillation on station rainfall and river level in the Fly River system, Papua New Guinea, J. Geophys. Res.: Atmospheres, 118, 10–926, 2013. [CrossRef]
- McBride, J. L.: The Australian summer monsoon, in: Monsoon Meteorology, edited by: Chang, C.-P. and Krishnamurti, T. N., Oxford University Press, 203–231, 1987.
- Moncrieff, M. W., and Miller, M. J.: The dynamics and simulation of tropical cumulonimbus and squall lines, Q. J. R. Meteorol. Soc., 102, 373–394, 1976.
- Muhammad, F. R., Lubis, S. W., and Setiawan, S.: Impacts of the Madden–Julian oscillation on precipitation extremes in Indonesia, Int. J. Climatol., 41, 1970-1984, 2021. [CrossRef]
- Murakami, M.: Analysis of the deep convective activity over the western Pacific and Southeast Asia. Part I: Diurnal variation. J. Meteor. Soc. Japan, 61, 60–75, 1983.
- Nesbitt SW, Zipser EJ.: The diurnal cycle of rainfall and convective intensity according to three years of TRMM measurements. Journal of Climate 16: 1456–1475. 2003.
- Peatman, S. C., Matthews, A. J., and Stevens, D. P.: Propagation of the Madden–Julian oscillation through the Maritime Continent and scale interaction with the diurnal cycle of precipitation, Quart. J. Roy. Meteorol. Soc., 140, 814–825, 2014. [CrossRef]
- Ren, H.-L., and Ren, P.: Impact of Madden-Julian Oscillation upon winter extreme rainfall in Southern China: Observations and predictability in CFSv2, Atmosphere, 8, 192, 2017. [CrossRef]
- Romps, D. M.: Exact Expression for the Lifting Condensation Level, J. Atmos. Sci., 74, 3891–3900, 2017.
- Satiadi, D., Purwaningsih, A., Harjupa, W., Trismidianto, Andarini, D. F., Nauval, F., Saufina, E., Harjana, T., Risyanto, Rahmatia, F., Pratama, R., Devianto, D., and Yollanda, M.: Impacts of CENS and MJO phenomena on diurnal cycle of local convection, moisture convergence, and rainfall over land, coast, and sea areas in the western part of Java Island, Meteorol. Atmos. Phys., 2023. [CrossRef]
- Seto, T. H., Yamamoto, M. K., Hashiguchi, H., and Fukao, S.: Convective activities associated with intraseasonal variation over Sumatera, Indonesia, observed with the equatorial atmosphere radar, Ann. Geophys., 3899–3916, 2004.
- Singh, C., Ganguly, D., and Dash, S. K.: Dust load and rainfall characteristics and their relationship over the South Asian monsoon region under various warming scenarios, J. Geophys. Res.: Atmos., 122, 7896–7921, 2017. [CrossRef]
- Sui, C. H., X. Li, and K.-M. Lau.: Radiativeconvective processes in simulated diurnal variations of tropical oceanic convection. J. Atmos. Sci., 55, 2345–2357, 1998.
- Suppiah, R., and Wu, X.: Surges, cross-equatorial flows and their links with the Australian Summer Monsoon Circulation and Rainfall, Aust. Meteorol. Mag., 47, 2, 1998.
- Tao, W, K., S, Lang, J. Simpson, C, H. Sui, B. Ferrier, and M, -D. Chou.: Mechanisms of cloud-radiation interaction in the tropics and midlatitude. J. Atmos. Sci., 53. 2624-2651, 1996.
- Taryono: Study of Cold Surge and Southerly Surge Activities During the Winter Asian Monsoon in the Java Region, Thesis, Bandung Institute of Technology, 2012.
- Trismidianto, Andarini, D. F., Muharsyah, R., Purwaningsih, A., Risyanto, Nauval, F., Fathrio, I., Harjupa, W., Nuryanto, D. E., Harjana, T., Satiadi, D., Saufina, E., and Praja, A. S.: Interactions among Cold Surge, Cross-Equatorial Northerly Surge, and Borneo Vortex in influencing extreme rainfall during Madden–Julian oscillation over the Indonesia Maritime Continent, Meteorol. Atmos. Phys., 2023. [CrossRef]
- Vincent, C. L., and T. P. Lane.: Evolution of the diurnal precipitation cycle with the passage of a Madden–Julian oscillation event through the Maritime Continent. Mon. Wea. Rev., 144, 1983–2005, 2016. [CrossRef]
- Wheeler, M. C., and Hendon, H. H.: An all-season real-time multivariate MJO index: Development of an index for monitoring and prediction, Mon. Wea. Rev., 132, 1917–1932, 2004. [CrossRef]
- Wheeler, M. C., Hendon, H. H., Cleland, S., Meinke, H., and Donald, A.: Impacts of the Madden-Julian oscillation on Australian rainfall and circulation, J. Climate, 22, 1482–1498, 2009. [CrossRef]
- Woolnough S. J., Slingo J. M., and Hoskins B. J.: The Relationship between Convection and Sea Surface Temperature on Intraseasonal Timescales, J. Climate, 2086–2104, 2000. [CrossRef]
- Xavier, P., Rahmat, R., Cheong, W. K., and Wallace, E.: Influence of Madden-Julian Oscillation on Southeast Asia rainfall extremes: Observations and predictability, Geophys. Res. Lett., 41, 4406–4412, 2014. [CrossRef]
- Xavier, P., Lim, S. Y., Ammar Bin Abdullah, M. F., Bala, M., et al.: Seasonal Dependence of Cold Surges and their Interaction with the Madden–Julian Oscillation over Southeast Asia, J. Climate, 33, 2467-2482, 2020. [CrossRef]
- Yamanaka, M. D.: Physical climatology of Indonesian maritime continent: An outline to comprehend observational studies, Atmos. Res., 178, 231-259, 2016.
- Zawadzki, I., Torlaschi, E., and Sauvageau, R.: The relationship between mesoscale thermodynamic variables and convective precipitation, J. Atmos. Sci., 38, 1535–1540, 1981. [CrossRef]
- Zhou, L., and Y. Wang.: Tropical Rainfall Measuring Mission observation and regional model study of precipitation diurnal cycle in the New Guinean region. J. Geophys. Res., 111, D17104, 2006. [CrossRef]
- Zhou, S., L’Heureux, M., Weaver, S., and Kumar, A.: A composite study of the MJO influence on the surface air temperature and precipitation over the continental United States, Clim. Dyn., 38, 1459–1471, 2012. [CrossRef]

















Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2024 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).