References
- [1] SURABAYA CENTRAL BUREAU OF STATISTICS. Statistik Kota Surabaya, Surabaya City Statistics, in Indonesian. BPS, Surabaya, 2019.
- [2] PAMUNGKAS, A. – IRANATA, D. – YUWONO, J. – JAELANNI, L. M.: An Insight on Surabaya Development: Pre-Colonials, Colonial, Post-Colonial and Current Era. IOP Conference Series: Earth and Environmental Science, Surabaya, Indonesia, 2018, p. 012002.
- [3] JUODKIENË, V.: GIS In Tourism Development Using Spatial Modelling. Civil and Environmental Engineering, Vol. 10, Iss. 2, 2014, pp. 98-104.10.2478/cee-2014-0018
- [4] PUTRI, D. A.: Kawasan Industri Rungkut Tahun 1965-1980. Rungkut Industrial Estate in 1965-1980, in Indonesian. Avatara, E-Journal Pendidikan Sejarah, Vol. 6, Iss. 2, 2018, pp. 68-74.
- [5] HEYDARI, M. M. – ABBASI, A. – ROHANI, S. M. – HOSSEINI, S. M. A.: Correlation Study and Regression Analysis of Drinking Water Quality in Kashan City, Iran. Walailak J. Sci. & Tech. Vol. 10, Iss. 3, 2013 pp. 315-324.
- [6] GOPINATH, R. – BANERJEE, A. – SACHIN, S. – TIWARI, P. – WILSON, S.: Real-Time Thermal Mapping for Heat & Cool Archipelagos of Bengaluru, India. Civil and Environmental Engineering, Vol. 13, Iss. 2, 2017, pp. 106-111.10.1515/cee-2017-0014
- [7] PETKOVA-SLIPETS, R. – ZLATEVA, P.: Thermal Insulating Properties of Strawfilled Environmentally Friendly Building Materials. Civil and Environmental Engineering, Vol. 13, Iss. 1, 2017, pp. 52-57.10.1515/cee-2017-0006
- [8] PIROUZ, B. – MAIOLO, M.: The Role of Power Consume and Type of Air Conditioner in Direct and Indirect Water Consumption. J. Sustain. Dev. Energy Water Environ. Syst. Vol. 6, Iss. 4, 2018, pp. 665-73.10.13044/j.sdewes.d6.0202
- [9] FITRIATIEN, S. R. – IRAWAN, M. I. – KARNANINGROEM, N.: Pola Sebaran Polutan di Kali Surabaya Menggunakan Jaringan Kohonen. Pattern of Pollutant Distribution in Surabaya River Using Kohonen Network (in Indonesian). Prosiding Seminar Teknologi Lingkungan, Surabaya, Indonesia. 2014, pp. 148-55.
- [10] RUAIRUEN, W. – JAROENSUTASINEE, K. – JAROENSUTANEE, M.: Flash Flooding Area Prediction by GOES-9 Satellite Data. Walailak J. Sci. & Tech. Vol. 2, Iss. 2, 2005, pp. 135-48.
- [11] PRASTOWO. Daya Dukung Lingkungan Aspek Sumberdaya Air. Environmental Carrying Capacity of Water Resources Aspects (in Indonesian). IPB University, Bogor, 2010.
- [12] ARTHA, E. U. – RAHADI, B. – SUHARTO, B.: Evaluasi Daya Dukung Lingkungan Berbasis Neraca Air di Kota Batu. Evaluation of Carrying Capacity Based on Water Balance in Batu City (in Indonesian). Jurnal Sumberdaya Alam dan Lingkungan, Vol. 1, Iss. 3, 2014, pp. 68-74.
- [13] TALENT, M.: Smarter Cities: Cleaning Electricity, Gas and Water Metered Consumption Data for Social and Urban Research. J. Sustain. Dev. Energy Water Environ. Syst. Vol. 7, Iss. 3, 2019, pp. 466-81.10.13044/j.sdewes.d6.0242
- [14] MOHAMMADIAN, Z. – SHAHBAZI, M.: Study of the Effect of Sustainable Architecture on the Design of Residential Buildings (Case Study: Qazvin Pardis Complex). Civil and Environmental Engineering, Vol. 14, Iss. 2, 2018, pp. 91-98.10.2478/cee-2018-0012
- [15] SEMERTZIDIS, Z. – SPATARU, C. – BLEISCHWITZ, R.: The Nexus: Estimation of Water Consumption For Hydropower In Brazil. J. Sustain. Dev. Energy Water Environ. Syst., Vol. 7, Iss. 1, 2019, pp. 122-138.10.13044/j.sdewes.d6.0229
- [16] CARVALHO, P. – SPATARU, C. – BLEISCHWITZ, R.: Integration of Water and Energy Planning to Promote Sustainability. J. Sustain. Dev. Energy Water Environ. Syst., Vol. 7, Iss. 2, 2019, pp. 229-252.10.13044/j.sdewes.d6.0246
- [17] SHARMA, S. – SWAYNE, D. A. – OBIMBO, C.: Trend Analysis and Change Point Techniques: A Survey. Energ. Ecol. Environ., Vol. 1, Iss. 3, 2016, pp. 123–130.10.1007/s40974-016-0011-1
- [18] HASANAH, N. A. I. – SETIAWAN, B. I. – ARIF, C. – WIDODO, S.: SRI Paddy Growth Simple Prediction Model. IJCIET, Vol. 8, Iss. 6, 2017, pp. 423–429.
- [19] BHAKAR, S. R. – IQBAL, M. – DEVANDA, M. – CHHAJED, N. – BANSAL, A. K.: Probablity Analysis of Rainfall at Kota. Indian J. Agric. Res., Vol. 42, Iss. 3, 2008, pp. 201-206.
- [20] JUWONO, P. T. – LIMANTARA, L. M. – ROSIADI, F.: Optimization of irrigation Cropping Pattern By Using Linear Programming: Case Study on Irrigation Area of Parsanga, Madura Island, Indonesia. Journal of Water and Land Development, Vol. 39, Iss. X-XII, 2018, pp. 51-60.10.2478/jwld-2018-0058
- [21] SNI 19-6728.1-2002: Penyusunan Neraca Sumber Daya – Bagian 1: Sumber Daya Air Spasial (Compilation of Resource Balance - Part 1: Spatial Water Resources, in Indonesian). Badan Standardisasi Nasional, Jakarta, 2002.
- [22] ALLEN, R. G. – PEREIRA, L. S. – RAES, D. – SMITH, M.: Crop Evapotranspiration (Guidelines for Computing Crop Water Requirements). FAO, Rome, 2006.
- [23] HASANAH, N. A. I. – SETIAWAN, B. I. – ARIF, C. – WIDODO, S.: Muka Air Optimum Pada System of Rice Intensification (SRI) [Optimum Water Level for System of Rice Intensification (SRI), in Indonesian]. Irigasi, Vol. 12, Iss. 1, 2017, pp. 55-64.10.31028/ji.v12.i1.55-64
- [24] DOORENBOS, J. – PRUITT, W. O.: Guidelines for Predicting Crop Water Requirements. FAO, Rome, 1977.
- [25] WANG, L. – WANG, Z. – LIU, X.: Water Resources Carrying Capacity Analysis of YarLung Tsangpo River Basin I. Water, Vol. 10, Iss. 1131, 2018, pp. 1-15.
- [26] PRIAMBODO, S. – SUHARDJONO – MONTARCIH, L. – SUHARTANTO, E.: Hourly Rainfall Distribution Patterns in Java Island. MATEC Web of Conferences 276; ICAnCEE 2018, Bali, Indonesia. 2019, p.04012.10.1051/matecconf/201927604012
- [27] AVIA, L. Q.: Diurnal Patterns of Cloud Top Temperature and Rainfall for Three Types of Rainfall Inindonesia. SNSAA Proceeding, Bandung, Indonesia. 2014, pp. 287-297.
- [28] ZHANG, W. – ZHOU, T.: Increasing Impacts from Extreme Precipitation on Population over China with Global Warming. Science Bulletin, Vol. 65, 2020, pp. 243-252.10.1016/j.scib.2019.12.002
- [29] MARGANINGRUM, D. – SANTOSO, H.: Evapotranspiration of Indonesian Tropical Area. Jurnal Presipitasi, Vol 16, No 3, 2019, pp. 106-116.10.14710/presipitasi.v16i3.106-116
- [30] LI, M. – FINLAYSON, B. – WEBBER, M. – BARNETT, J. – WEBBER, S. – ROGERS, S. – CHEN, Z. – WEI, T. – CHEN, J. – WU, X. – WANG, M.: Estimating Urban Water Demand under Conditions of Rapid Growth: The Case of Shanghai. Reg Environ Change, Published online Januari, 2017, pp. 1-9.10.1007/s10113-016-1100-6
- [31] GRIMMOND, C. S. B.: Evapotranspiration Rates in Urban Areas. In: Proceedings of IUGG 99 Symposium HS5, Birmingham. 1999, pp. 235-243.
- [32] SURYA, B. – AHMAD, D. N. A. – SAKTI, H. H. – SAHBAN, H.: Land Use Change, Spatial Interaction, and Sustainable Development in the Metropolitan Urban Areas, South Sulawesi Province, Indonesia. Land, Vol. 9, Iss. 95, 2020, pp. 1-43.10.3390/land9030095
- [33] ZEISL, P. – MAIR, M. – KASTLUNGER, U. – BACH, P. M. – RAUCH, W. – SITZENFREI, R. – KLEIDORFER, M.: Conceptual Urban Water Balance Model for Water Policy Testing: An Approach for Large Scale Investigation. Sustainability, Vol. 10, Iss. 716, 2018, pp. 1-24.10.3390/su10030716
- [34] BIJL, D. L. – BIEMANS, H. – BOGAART, P. W. – DEKKER, S. C. – DOELMAN, J. C. – STEHFEST, E. – VAN VUUREN, D. P.: A Global Analysis of Future Water Deficit Based On Different Allocation Mechanisms. Water Resources Research, Published online 2018, pp. 5803-5824.10.1029/2017WR021688
- [35] AIT-AOUDIA, M. N. – BEREZOWSKA-AZZAG, E.: Water Resources Carrying Capacity Assessment: The Case of Algeria's Capital City. Habitat International, 58, 2016, pp. 51-58.10.1016/j.habitatint.2016.09.006
- [36] FITRIANINGTYAS, R. – SLAMET, A.: Studi Pemetaan Persebaran Sedimen Boezem Morokrembangan [Study of Boezem Morokrembangan Sediment Distribution Mapping, in Indonesian]. Jurnal Teknik ITS, Vol. 7, Iss. 1, 2018, pp. 2337-3520.10.12962/j23373539.v7i1.28904
- [37] LOENS, S.: Thirsty Cities: Learning From Dutch Water Supply Heritage. In: C Hein (eds) Adaptive Strategies for Water Heritage. Springer, Cham, 2020.
