Hauer, M. E. et al. Sea-level rise and human migration. Nat. Rev. Earth Environ. 1, 28–39 (2020).
Google Scholar
Duy, P., Chapman, L., Tight, M., Thuong, L. & Linh, P. Urban resilience to floods in coastal cities: Challenges and opportunities for Ho Chi Minh city and other emerging cities in southeast Asia. J. Urban Plan. Dev. 144, 05017018 (2018).
Google Scholar
Magno, R. et al. Semi-automatic operational service for drought monitoring and forecasting in the Tuscany region. Geosciences 8, 49 (2018).
Google Scholar
Rico, A., Olcina, J., Baños, C., Garcia, X. & Sauri, D. Declining water consumption in the hotel industry of mass tourism resorts: Contrasting evidence for Benidorm, Spain. Curr. Issues Tour. 23, 770–783 (2020).
Google Scholar
Hasnat, G. T., Kabir, M. A. & Hossain, M. A. Major environmental issues and problems of South Asia, particularly Bangladesh. Handb. Environ. Mater. Manag., 1–40 (2018).
Neumann, B., Vafeidis, A. T., Zimmermann, J. & Nicholls, R. J. Future coastal population growth and exposure to sea-level rise and coastal flooding—A global assessment. PLoS One 10, e0118571 (2015).
Google Scholar
Cao, A. et al. Future of Asian Deltaic Megacities under sea level rise and land subsidence: Current adaptation pathways for Tokyo, Jakarta, Manila, and Ho Chi Minh City. Curr. Opin. Environ. Sustain. 50, 87–97 (2021).
Google Scholar
Rahmasary, A. N. et al. Overcoming the challenges of water, waste and climate change in Asian cities. Environ. Manag. 63, 520–535 (2019).
Google Scholar
Smol, M., Adam, C. & Preisner, M. Circular economy model framework in the European water and wastewater sector. J. Mater. Cycles Waste Manag. 22, 682–697 (2020).
Google Scholar
Islam, M. F., Bhattacharya, B. & Popescu, I. Flood risk assessment due to cyclone-induced dike breaching in coastal areas of Bangladesh. Nat. Hazards Earth Syst. Sci. 19, 353–368 (2019).
Google Scholar
Salim, M. A. & Siswanto, A. B. Kajian Penanganan Dampak Banjir Kabupaten Pekalongan. Rang Tek. J. 4, 295–303 (2021).
Google Scholar
Endo, A. et al. Describing and visualizing a water–energy–food nexus system. Water 10, 1245 (2018).
Google Scholar
Gurdak, J. J., Geyer, G. E., Nanus, L., Taniguchi, M. & Corona, C. R. Scale dependence of controls on groundwater vulnerability in the water–energy–food nexus, California Coastal Basin aquifer system. J. Hydrol. Reg. Stud. 11, 126–138 (2017).
Google Scholar
Lu, J., Lin, Y., Wu, J. & Zhang, C. Continental-scale spatial distribution, sources, and health risks of heavy metals in seafood: Challenge for the water-food-energy nexus sustainability in coastal regions?. Environ. Sci. Pollut. Res. 28, 63815–63828 (2021).
Google Scholar
Miller-Robbie, L., Ramaswami, A. & Amerasinghe, P. Wastewater treatment and reuse in urban agriculture: Exploring the food, energy, water, and health nexus in Hyderabad, India. Environ. Res. Lett. 12, 075005 (2017).
Google Scholar
Taniguchi, M., Endo, A., Gurdak, J. J. & Swarzenski, P. Water-energy-food nexus in the Asia-Pacific region. J. Hydrol. 11, 1–8 (2017).
Bahri, M. Analysis of the water, energy, food and land nexus using the system archetypes: A case study in the Jatiluhur reservoir, West Java, Indonesia. Sci. Total Environ. 716, 137025 (2020).
Google Scholar
Lubis, R., Delinom, R., Martosuparno, S. & Bakti, H. Water-Food Nexus in Citarum Watershed, Indonesia Vol. 118, 012023 (IOP Publishing, 2018).
Pawitan, H., Delinom, R. & Taniguchi, M. The human–environment sustainability in Indonesia: The case of the Citarum basin Vol. 23 (UNESCO-IHP, 2015).
Carmichael, L. et al. Urban planning as an enabler of urban health: Challenges and good practice in England following the 2012 planning and public health reforms. Land Use Policy 84, 154–162 (2019).
Google Scholar
World Health Organization. Addressing the Social Determinants of Health: The Urban Dimension and the Role of Local Government (World Health Organization, 2012).
Trencher, G. & Karvonen, A. Stretching, “smart”: Advancing health and well-being through the smart city agenda. Local Environ. 24, 610–627 (2019).
Google Scholar
Yang, L. et al. Can an island economy be more sustainable? A comparative study of Indonesia, Malaysia, and the Philippines. J. Clean. Prod. 242, 118572 (2020).
Google Scholar
Choirunisa, A. K. & Giyarsih, S. R. Kajian Kerentanan Fisik, Sosial, dan Ekonomi Pesisir Samas Kabupaten Bantul Terhadap Erosi Pantai. J. Bumi Indones. 5 (2016).
Gumay, A. Validity and reliability maritime English seafarers proficiency test. INFERENCE J. Engl. Lang. Teach. 3, 64–69 (2021).
Google Scholar
Tarigan, M. S. Perubahan garis pantai di wilayah pesisir perairan Cisadane, Provinsi Banten. Makara J. Sci. (2010).
Pruss-Ustun, A., Corvalán, C. F., World Health Organization. Preventing Disease Through Healthy Environments: Towards an Estimate of the Environmental Burden of Disease (World Health Organization, 2006).
Baasanjargal, T., Soon-Joo, A. & Mi-Jeong, K. Comparative analysis of Indonesian Batik traditional patterns: Focused on patterns of Yogyakarta and Pekalongan in Java Island. 한복문화 22, 75–91 (2019).
Rismawati, S. D., Sofiani, T. & Rahmawati, D. R. Legal culture of religious capitalism on Batik business (a case study in Pekalongan Indonesia). JL Pol. Glob. 33, 107 (2015).
Pekalongan, B. K. Kota Pekalongan dalam Angka 2021 (2021).
Google Maps. Pekalongan, Central Java (2022).
Sunarjo, W. A., Ilmiani, A. & Ardianingsih, A. Analisis SWOT Sebagai Pengembangan UMKM Berbasis Ekonomi Kreatif Destinasi Pariwisata Batik Kota Pekalongan. Pena J. Ilmu Pengetah. Dan Teknol. 33, 34–43 (2019).
Google Scholar
Perpustakaan Provinsi Jawa Tengah. Museum Batik Pekalongan (2017).
Brzezina, N. et al. Development of organic farming in Europe at the crossroads: Looking for the way forward through system archetypes lenses. Sustainability 9, 821 (2017).
Google Scholar
Gillies, A. & Maliapen, M. Using healthcare system archetypes to help hospitals become learning organisations. J. Model. Manag. (2008).
Braun, W. The System Archetypes. The Systems Modeling Workbook, 1–26 (2002).
Sterman, J. System Dynamics: Systems thinking and modeling for a complex world (2002).
Islam, M. & Raja, D. R. Waterlogging risk assessment: An undervalued disaster risk in coastal urban community of Chattogram, Bangladesh. Earth 2, 151–173 (2021).
Google Scholar
Brzezina, N., Kopainsky, B. & Mathijs, E. Can organic farming reduce vulnerabilities and enhance the resilience of the European food system? A critical assessment using system dynamics structural thinking tools. Sustainability 8, 971 (2016).
Google Scholar
Nguyen, N. C. & Bosch, O. J. A systems thinking approach to identify leverage points for sustainability: A case study in the Cat Ba Biosphere Reserve, Vietnam. Syst. Res. Behav. Sci. 30, 104–115 (2013).
Google Scholar
Maani, K. E. & Cavana, R. Y. Systems Thinking, System Dynamics: Managing Change and Complexity (Pearson Prentice Hall, 2007).
Braun, W. The System Archetypes-the Systems Modeling Workbook. Available Wwwu Uniklu Ac Atgossimitpapsdwbsysarch Pdf (2002).
Senge, P. M. The Fifth Discipline: The Art and Practice of the Learning Organization (Currency, 2006).
Bahri, M. et al. Deliverable 3.3: Integrated model with ad-hoc systems model of urban water supply (2018).
Pekalongan, B. P. P. D. K. Pekalongan dalam Angka (2021).
Fajar, M., Mediani, A. & Finesa, Y. Analisis Peranan IPAL dalam Strategi Penanganan Limbah Industri Batik di Kota Pekalongan. in Prosiding Seminar Nasional Geografi UMS X 2019 (2019).
Kartika, F. D. S. & Helmi, M. Meta-analysis of Community’s Adaptation Pattern with Tidal Flood in Pekalongan City, Central Java, Indonesia Vol. 125, 09001 (EDP Sciences, 2019).
Kartika, F. D. S., Helmi, M. & Amirudin, A. Analisis Perubahan Penggunaan Lahan di Wilayah Pesisir Kota Pekalongan Menggunakan Citra Lansat 8, vol. 1 (2019).
Damayanti, M. & Latifah, L. Strategi Kota Pekalongan dalam pengembangan wisata kreatif berbasis industri batik. J. Pengemb. Kota 3, 100–111 (2017).
Google Scholar
Pekalongan, B. K. Kota Pekalongan dalam Angka 2002 (2002).
Andreas, H., Abidin, H. Z., Sarsito, D. A. & Pradipta, D. Adaptation of ‘early climate change disaster’ to the Northern coast of Java Island Indonesia. Eng. J. 22, 207–219 (2018).
Google Scholar
Marfai, M. A. et al. The impact of tidal flooding on a coastal community in Semarang, Indonesia. Environmentalist 28, 237–248 (2008).
Google Scholar
Chaussard, E., Amelung, F., Abidin, H. & Hong, S.-H. Sinking cities in Indonesia: ALOS PALSAR detects rapid subsidence due to groundwater and gas extraction. Remote Sens. Environ. 128, 150–161 (2013).
Google Scholar
Andreas, H., Abidin, H. Z., Sarsito, D. A. & Pradipta, D. Remotes Sensing Capabilities on Land Subsidence and Coastal Water Hazard and Disaster Studies Vol. 500, 012036 (IOP Publishing, 2020).
Shofiana, R., Subardjo, P. & Pratikto, I. Analisis perubahan penggunaan lahan di wilayah pesisir Kota pekalongan menggunakan data landsat 7 etm+. J. Mar. Res. 2, 35–43 (2013).
Wijaya, A. Analisis Dinamika Pola Spasial Penggunaan Lahan Pada Wilayah Terdampak Kenaikan Muka Air Laut di Kota Pekalongan (2017).
El-Fath, D. D. I., Atmodjo, W., Helmi, M., Widada, S. & Rochaddi, B. Analisis Spasial Area Genangan Banjir Rob Setelah Pembangunan Tanggul di Kabupaten Pekalongan, Jawa Tengah. Indones. J. Oceanogr. 4, 96–110 (2022).
Novita, M. G., Helmi, M., Widiaratih, R., Hariyadi, H. & Wirasatriya, A. Mengkaji Area Genangan Banjir Pasang Terhadap Penggunaan Lahan Pesisir Tahun 2020 Menggunakan Metode Geospasial di Kabupaten Pekalongan, Provinsi Ja. Indones. J. Oceanogr. 3, 14–26 (2021).
Google Scholar
Salim, M. A. Penanganan Banjir dan Rob di Wilayah Pekalongan. J. Tek. Sipil 11, 15–23 (2018).
Jumatiningrum, N. & Indrayati, A. Strategi Adaptasi Masyarakat Kelurahan Bandengan Kecamatan Pekalongan Utara dalam Menghadapi Banjir Pasang Air Laut (Rob). Edu Geogr. 9, 136–143 (2021).
BNPB. Data Kebencanaan Nasional (BNPB, 2021).
Giampietro, M., Aspinall, R. J., Ramos-Martin, J. & Bukkens, S. G. Resource Accounting for Sustainability Assessment: The Nexus Between Energy, Food, Water and Land Use (Routledge, 2014).
Google Scholar
Meadows, D. H., Randers, J. & Meadows, D. L. The Limits to Growth (1972) (Yale University Press, 2013).
Google Scholar
Albrecht, T., Crootof, A. & Scott, C. Trends in the development of water–energy–food nexus methods (2017).
Leck, H., Fitzpatrick, D. & Burchell, K. Energy, water and food: Towards a critical nexus approach. in Handbook on the Geographies of Energy (Edward Elgar Publishing, 2017).
Scott, C. A., Kurian, M. & Wescoat, J. L. The water–energy–food nexus: Enhancing adaptive capacity to complex global challenges. in Governing the Nexus 15–38 (Springer, 2015).
Wanty, E. E. Analisis Produksi Batik Cap Dari UKM Batik Kota Pekalongan (Studi Pada Sentra Batik Kota Pekalongan-Jawa Tengah, 2006).
Mankiw, N. G. Macroeconomics Vol. 41 (Worth Publishers, 2003).
Shen, J. & Kee, G. Development and Planning in Seven Major Coastal Cities in Southern and Eastern China (Springer, 2017).
Google Scholar
Xu, C., Haase, D., Su, M. & Yang, Z. The impact of urban compactness on energy-related greenhouse gas emissions across EU member states: Population density vs physical compactness. Appl. Energy 254, 113671 (2019).
Google Scholar
Marfai, M. A. & Cahyadi, A. Dampak bencana banjir pesisir dan adaptasi masyarakat terhadapnya di kabupaten Pekalongan (2017).
Wartadesa.net. Tiga hari banjir rendam Pekalongan (2018).
Google Maps. A dike in Pekalongan (n.d).
Anindita, R. M., Susilowati, I. & Muhammad, F. Analisis Efektifitas Tanggul Laut di Pesisir Pekalongan Terhadap Penurunan Intensitas Banjir, vol. 2 80–88 (2020).
Taniguchi, M. Groundwater and Subsurface Environments: Human Impacts in Asian Coastal Cities (Springer Science & Business Media, 2011).
Google Scholar
Baños, C. J., Hernández, M., Rico, A. M. & Olcina, J. The hydrosocial cycle in coastal tourist destinations in Alicante, Spain: Increasing resilience to drought. Sustainability 11, 4494 (2019).
Google Scholar
Sauda, R. H. & Nugraha, A. L. Kajian pemetaan kerentanan banjir rob di kabupaten pekalongan. J. Geod. Undip 8, 466–474 (2019).
Wartadesa.net. Ratusan warga Sragi masih mengungsi (2022).
Buchori, I. et al. Adaptation to coastal flooding and inundation: Mitigations and migration pattern in Semarang City, Indonesia. Ocean Coast. Manag. 163, 445–455 (2018).
Google Scholar
Setiadi, R. & Nalau, J. Can urban regeneration improve health resilience in a changing climate? (2015).
Isham, A., Mair, S. & Jackson, T. Wellbeing and productivity: A review of the literature (2020).
Banson, K. E., Nguyen, N. C. & Bosch, O. J. Using system archetypes to identify drivers and barriers for sustainable agriculture in Africa: A case study in Ghana. Syst. Res. Behav. Sci. 33, 79–99 (2016).
Google Scholar
Lavrnić, S., Zapater-Pereyra, M. & Mancini, M. Water scarcity and wastewater reuse standards in Southern Europe: Focus on agriculture. Water. Air Soil Pollut. 228, 1–12 (2017).
Google Scholar
Tortajada, C. & Nam Ong, C. Reused water policies for potable use (2016).
Murali, R. M., Riyas, M., Reshma, K. & Kumar, S. S. Climate change impact and vulnerability assessment of Mumbai city, India. Nat. Hazards 102, 575–589 (2020).
Google Scholar
Abdullah, A. Y. M. et al. Spatio-temporal patterns of land use/land cover change in the heterogeneous coastal region of Bangladesh between 1990 and 2017. Remote Sens. 11, 790 (2019).
Google Scholar
Ginanjar, A., Rezagama, A. & Handayani, D. S. Rencana Induk Sistem Penyediaan Air Minum Kota Pekalongan (2015).
Reiblich, J., Hartge, E., Wedding, L., Killian, S. & Verutes, G. Bridging climate science, law, and policy to advance coastal adaptation planning. Mar. Policy 104, 125–134 (2019).
Google Scholar
Cook, B. I. et al. Revisiting the leading drivers of Pacific coastal drought variability in the contiguous United States. J. Clim. 31, 25–43 (2018).
Google Scholar
Jodar-Abellan, A., Valdes-Abellan, J., Pla, C. & Gomariz-Castillo, F. Impact of land use changes on flash flood prediction using a sub-daily SWAT model in five Mediterranean ungauged watersheds (SE Spain). Sci. Total Environ. 657, 1578–1591 (2019).
Google Scholar
Thanvisitthpon, N., Shrestha, S. & Pal, I. Urban flooding and climate change: A case study of Bangkok, Thailand. Environ. Urban. Asia 9, 86–100 (2018).
Google Scholar
Laksmi, G. S. Dampak Alih Fungsi Lahan dan Curah Hujan terhadap Banjir di Kota Pekalongan, Jawa Tengah, 382–391 (2020).
Dhiman, R., VishnuRadhan, R., Eldho, T. & Inamdar, A. Flood risk and adaptation in Indian coastal cities: Recent scenarios. Appl. Water Sci. 9, 1–16 (2019).
Google Scholar
Bahri, M. & Cremades, R. The Urban Drought Nexus Tool. Zenodo (2021).
Source: Ecology - nature.com