References

  1. C. Shenbin, L. Yunfeng, A. Thomas, Climatic change on the Tibetan Plateau: potential evapotranspiration trends from 1961–2000, Clim. Change, 76 (2006) 291–319.
  2. H.J. Baek, M.K. Kim, W.T. Kwon, Observed short- and longterm changes in summer precipitation over South Korea and their links to large-scale circulation anomalies, Int. J. Climatol., 37 (2017) 972–986.
  3. S.S. Aung, S. Yu, O. Shin, N. Itaru, T. Shiro, Short-term prediction of localized heavy rain from radar imaging and machine learning, IEIE Trans. Smart Process. Comput., 7 (2018) 107–215.
  4. Y.-S. Chung, M.-B. Yoon, H.-S. Kim, On climate variations and changes observed in south Korea, Clim. Change, 66 (2004) 151–161.
  5. A. Fewkes, D. Butler, Simulating the performance of rainwater collection and reuse systems using behavioural models, Build. Serv. Eng. Res. Technol., 21 (2000) 99–106.
  6. E.L. Villarreal, A. Dixon, Analysis of a rainwater collection system for domestic water supply in Ringdansen, Norrköping, Sweden, Build. Environ., 40 (2005) 1174–1184.
  7. E. Ghisi, D.F. Ferreira, Potential for potable water savings by using rainwater and greywater in a multi-storey residential building in southern Brazil, Build. Environ., 42 (2007) 2512–2522.
  8. K.T. Lee, C.D. Lee, M.S. Yang, C.C. Yu, Probabilistic design of storage capacity for rainwater cistern systems, J. Agric. Eng. Res., 77 (2000) 343–348.
  9. M.D. Su, C.H. Lin, L.F. Chang, J.L. Kang, M.C. Lin, A probabilistic approach to rainwater harvesting systems design and evaluation, Resour. Conserv. Recycl., 53 (2009) 393–399.
  10. O.O. Aladenola, O.B. Adeboye, Assessing the potential for rainwater harvesting, Water Resour. Manage., 24 (2010) 2129–2137.
  11. E. Eroksuz, A. Rahman, Rainwater tanks in multi-unit buildings: a case study for three Australian cities, Resour. Conserv. Recycl., 54 (2010) 1449–1452.
  12. J.-m. Mwenge Kahinda, A.E. Taigbenu, J.R. Boroto, Domestic rainwater harvesting to improve water supply in rural South Africa, Phys. Chem. Earth Parts A/B/C, 32 (2007) 1050–1057.
  13. D.R. Marlow, M. Moglia, S. Cook, D.J. Beale, Towards sustainable urban water management: a critical reassessment, Water Res., 47 (2013) 7150–7161.
  14. M. van Roon, Water localisation and reclamation: steps towards low impact urban design and development, J. Environ. Manage., 83 (2007) 437–443.
  15. W. Ahmed, H. Brandes, P. Gyawali, J.P.S. Sidhu, S. Toze, Opportunistic pathogens in roof-captured rainwater samples, determined using quantitative PCR, Water Res., 53 (2014) 361–369.
  16. Y. Zhang, D. Chen, L. Chen, S. Ashbolt, Potential for rainwater use in high-rise buildings in Australian cities, J. Environ. Manage., 91 (2009) 222–226.
  17. A. Fewkes, Modelling the performance of rainwater collection systems: towards a generalised approach, Urban Water, 1 (2003) 323–333.
  18. C.L. Cheng, M.C. Liao, Regional rainfall level zoning for rainwater harvesting systems in northern Taiwan, Resour. Conserv. Recycl. 53 (2009) 421–428.
  19. L.S. Hanson, R.M. Vogel, Generalized storage-reliability-yield relationships for rainwater harvesting systems, Environ. Res. Lett., 9 (2014), doi: 10.1088/1748-9326/9/7/075007.
  20. R.G. Allen, S.P. Luis, D. Raes, M. Smith, Crop Evapotranspiration – Guidelines for Computing Crop Water Requirements, FAO Irrigation and Drainage Paper No. 56, Food and Agriculture Organization, Rome, 1998.
  21. C.-Y. Xu, L. Gong, J. Tong, D. Chen, V.P. Singh, Analysis of spatial distribution and temporal trend of reference evapotranspiration and pan evaporation in Changjiang (Yangtze River) catchment, J. Hydrol., 327 (2006) 81–93.
  22. W.H. Nam, E.M. Hong, J.Y. Choi, Has climate change already affected the spatial distribution and temporal trends of reference evapotranspiration in South Korea?, Agric. Water Manage., 150 (2015) 129–138.
  23. J.R.M. Hosking, L-Moments: analysis and estimation of distributions using linear combinations of order statistics, J. R. Stat. Soc. Ser. B., 52 (1990) 105–124.
  24. J.R.M. Hosking, J.R. Wallis, Some statistics useful in regional frequency analysis, Water Resour. Res., 29 (1993) 271–281.