Downloads provided by UsageCounts
{"references": ["ANDRADE, M. M. N.; SZLAFSZTEIN, C. F. Vulnerability assessment including tangible and intangible components in the index composition: An Amazon case study of flooding and flash flooding. Elsevier: Science of the Total Environment, ISSN: 1879-1026, v. 630, p. 903\u2013912, 2018.", "ASLAM, Rana Ammar; SHRESTHA, Sangam; PANDEY, Vishnu Prasad. Groundwater vulnerability to climate change: A review of the assessment methodology. Elsvier: Science of the Total Environment, ISSN: 1879-1026, v. 612, p. 853\u2013875, 2018.", "BRASIL. Minist\u00e9rio do Meio Ambiente - MMA. Associa\u00e7\u00e3o Brasileira de \u00c1guas Subterr\u00e2neas. Petrobras. \u00c1guas Subterr\u00e2neas um recurso a ser conhecido e protegido. Bras\u00edlia, 40 p., 2007. Dispon\u00edvel em Acesso em 12 de setembro de 2019.", "COMASSETTO, Vilmar; MATTHIENSEN, Alexandre; ALVES, Jonatas; FAVASSA, Cel\u00ed Teresinha Araldi; WASKIEWIC, Maikon Eduardo; B\u00d3LICO, Jackson. Diagn\u00f3stico dos po\u00e7os tubulares profundos e da qualidade das \u00e1guas subterr\u00e2neas no munic\u00edpio de Jabor\u00e1 (SC). Bras\u00edlia: XXI Simp\u00f3sio Brasileiro de Recursos H\u00eddricos, 22 a 27, 8 p., Nov., 2015. Dispon\u00edvel em: https://aguassubterraneas.abas.org/asubterraneas/article/view/28278", "COMINOLA, A.; GIULIANI, M.; PIGA, D.; CASTELLETTI, A.; RIZZOLI, A. E. Benefits and challenges of using smart meter for advancing residential water demand modeling and management: A review. Environmental Modelling & Software, ISSN: 1873-6726, v.72, p. 198-214, 2015.", "COSTA, Marcelo Pires da; ZOBY, Jos\u00e9 Luiz Gomes. (Coords.) Panorama do enquadramento dos corpos d'\u00e1gua do Brasil [e] Panorama da qualidade das \u00e1guas subterr\u00e2neas no Brasil. Bras\u00edlia: ANA, Cadernos de recursos h\u00eddricos, 5, ISBN 9788589629294, 123 p., 2007. Dispon\u00edvel em: Acesso em: 18 Set. 2019.", "FACCO, Janete. Os Usos e a Qualidade das \u00c1guas do Sistema Aqu\u00edfero Integrado Guarani/Serra Geral \u2013 SAIG/SG no munic\u00edpio de Chapec\u00f3-SC. Tese (Doutorado) \u2013 Universidade Federal de Santa Catarina, Centro de Filosofia e Ci\u00eancias Humanas, Programa de P\u00f3s-Gradua\u00e7\u00e3o em Geografia, Florian\u00f3polis, 314 p., 2018.", "FERNANDES, Lu\u00eds Filipe Sanches; CARDOSO, Leila Vanessa Rodrigues Queir\u00f3s; PACHECO, Fernando Ant\u00f3nio Leal; LEIT\u00c3O, S\u00e9rgio; MOURA, Joao Paulo. DRASTIC and GOD vulnerability maps of the Cabril River Basin, Portugal. Rem: Revista Escola de Minas, ISSN 1807-0353, v. 67, p. 133-142, 2014.", "FOSTER, Stephen; HIRATA, Ricardo; ROCHA, Ger\u00f4ncio Albuquerque. Riscos de Polui\u00e7\u00e3o de \u00c1guas Subterr\u00e2neas: uma proposta metodol\u00f3gica de avalia\u00e7\u00e3o regional. \u00c1guas Subterr\u00e2neas, ISSN 2179-9784, p. 175-185, 1988.", "FOSTER, Stephen; HIRATA, Ricardo; GOMES, Daniel; D'ELIA, M\u00f4nica; PARIS, Marta. Prote\u00e7\u00e3o da qualidade da \u00e1gua subterr\u00e2nea: um guia para empresas de abastecimento de \u00e1gua, \u00f3rg\u00e3os municipais e ag\u00eancias ambientais. S\u00e3o Paulo: Edi\u00e7\u00e3o brasileira: Servmar \u2013 Servi\u00e7os T\u00e9cnicos Ambientais Ltda. Banco Mundial, ISBN 0-8213-4951, 114 p., 2006.", "FOSTER, Stephen; HIRATA, Ricardo; GOMES, Daniel; D'ELIA, M\u00f4nica; PARIS, Marta. Groundwater Quality Protection: a guide for water utilities, municipal authorities and environment agencies. The Wolrd Bank: Washington, D.C., ISBN 0-8213-4951-1, 114 p., 2002.", "GONDIM, Joaquim; MARANH\u00c3O, Ney; COIMBRA, M\u00e1rcia Regina Silva Cerqueira; TR\u00d6GER, Fl\u00e1vio Hadler; FIOREZE, Ana Paula; AMORIM, Brandina de. Os efeitos das Mudan\u00e7as Clim\u00e1ticas sobre os recursos h\u00eddricos: desafios para a gest\u00e3o. Grupo de Trabalho sobre Mudan\u00e7as Clim\u00e1ticas (Portaria ANA n\u00b0 36, 26/01/2010). Ag\u00eancia Nacional de \u00c1guas (ANA), 20 p., 2010.", "GALLOP\u00cdN, Gilberto C. Linkages between vulnerability, resilience, and adaptive capacity.\u00a0Global environmental change, ISSN 1872-9495, v. 16, n. 3, p. 293-303, 2006.", "HUANG, Lu; ZENG, Guangming; LIANG, Jie; HUA, Shanshan; YUAN, Yujie; LI, Xiaodong; DONG, Haoran; LIU, Jiayu; NIE, Shuang; LIU, Junfeng. Combined impacts of land use and climate change in the modeling of future groundwater vulnerability. Journal of Hidrogeological Engineering, ISSN 1943-5584, 22(7), 11 p., 2017.", "IPCC.\u00a0Climate Change 2007: Synthesis Report. Contribution of Working Groups I, II and III to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change\u00a0[Core Writing Team, Pachauri, R.K and Reisinger, A. (eds.)]. IPCC, Geneva, Switzerland, ISBN 92-9169-122-4, 104 p., 2007.", "KUNDZEWICZ, Zbigniew W. e D\u00d6LL, Petra. Will groundwater ease freshwater stress under climate change? Hydrological Sciences Journal, ISSN 2626667, 54:4, p. 665-675, 2009.", "LI, Roupu; MERCHANT, James W. Modeling vulnerability of groundwater to pollution under future scenarios of climate change and biofuels-related land use change: a case study in North Dakota, USA. Elsevier: Science of the total environment, ISSN: 1879-1026, p. 32-45, 2013.", "LOPES, Andr\u00e9a Regina de Britto Costa. Recursos h\u00eddricos e uso da terra na bacia do Rio do Peixe/SC, mapeamento das \u00e1reas de vulnerabilidade e risco de contamina\u00e7\u00e3o do Sistema Aqu\u00edfero Serra Geral. 317 p. Tese (Doutorado) \u2013 Universidade Federal de Santa Catarina, Centro de Filosofia e Ci\u00eancias Humanas. Programa de P\u00f3s-Gradua\u00e7\u00e3o em Geografia. 2012.", "LOPES, A. R. DE B. C.; SCHEIBE, L. F. Vulnerabilidade e risco de contamina\u00e7\u00e3o das \u00e1guas do Sistema Aqu\u00edfero Serra Geral na Bacia do Rio do Peixe/SC. Revista Brasileira de Recursos H\u00eddricos, ISSN 2318-0331, v. 30, n. 3, p. 560-570, 2015.", "MYERS, B., FISHER, R., PAUL, T., WURM. P., CAMPBELL, A. The vulnerability of groundwater resources to climate change in Timor-Lest. Prepared by Research Institute for the Environment and Livelihoods. Charles Darwin University for the Australian Government, Department of Climate Change and Energy Efficiency, Camberra. 74 p., 2011. Dispon\u00edvel em: https://www.researchgate.net/publication/273767119_The_Vulnerability_of_Groundwater_Resources_to_Climate_Change_in_Timor-Leste", "NISTOR, Margarit-Mircea. Groundwater vulnerability in Europe under climate change. Elsevier: Quaternary International, ISSN 1040-6182, p. 12, Abr., 2019.", "NISTOR, Margarit-Mircea; DEZSI, Stefan; CHEVAL, Sorin; BACIU, Madalina. Climate change effects on groundwater resources: a new assessment method through climate indices and effective precipitation in Belis district, Western Carpathins. Meteorological Aplications, ISSN 1469-8080, 23:554-561, 2016.", "PEIXOTO, Filipe da Silva; CAVALCANTE, Itabaraci Nazareno. Vulnerabilidade aqu\u00edfera e risco de contamina\u00e7\u00e3o da \u00e1gua subterr\u00e2nea em meio urbano. S\u00e3o Paulo, Geologia USP, S\u00e9rie Cient\u00edfica, ISSN 2316-9095, v. 19, n. 2, p. 29-40, Jun. 2019.", "PETTENGELL, Catherine. Climate Change Adaptation: Enabling people living in poverty to adapt. Oxfam Research Report, p. 48, 2010.", "REDE GUARANI/SERRA GERAL (RGSG). Blocos hidrogeol\u00f3gicos, vulnerabilidade natural e risco \u00e0 contamina\u00e7\u00e3o do Sistema Aqu\u00edfero Integrado Guarani/Serra Geral em Santa Catarina. Laborat\u00f3rio de An\u00e1lise Ambiental e Laborat\u00f3rio de Hidrogeologia da UFSC. Nota T\u00e9cnica. 2020. 155p. il. mapas. Dispon\u00edvel em:.", "RIBEIRO, Daniela Menezes; ROCHA, Washington Franca, GARCIA, Antonio Jorge Vasconcellos. Vulnerabilidade natural \u00e0 contamina\u00e7\u00e3o dos aqu\u00edferos da subbacia do rio Siriri, Sergipe. \u00c1guas Subterr\u00e2neas, ISSN 2179-9784, v.25, n.1, p.91-102, 2011.", "SCHMITZ, Arno; BITTENCOURT, Mauricio V. L. Crescimento econ\u00f4mico e press\u00e3o sobre recursos h\u00eddricos. S\u00e3o Paulo: Estudos Econ\u00f4micos, ISSN 1980-5357, v. 47, n. 2, 2017.", "SENER, E.; DAVRAZ, A. Assessment of groundwater vulnerability based on a modified DRASTIC model, GIS and an analytic hierarchy process (AHP) method: the case of Egirdir Lake basin (Isparta, Turkey). Hydrogeology Journal, ISSN 1435-0157, v. 21, p. 701-714, 2013.", "THIRUMALAIVASAN, D.; KARMEGAM, M.; VENUGOPAL, K. AHP-DRASTIC: software for specific aquifer vulnerability assessment using DRASTIC model and GIS.\u00a0Environmental Modelling & Software, ISSN 1873-6726, v. 18, n. 7, p. 645-656, 2003.", "TORCELLINI, Paul; LONG, Nicholas; JUDKOFF, Ron.\u00a0Consumptive water use for US power production. National Renewable Energy Lab., Golden, CO (US), 2003. Dispon\u00edvel em: https://www.osti.gov/servlets/purl/15005918.", "TURRAL, Hugh; BURKE, Jacob; FAUR\u00c8S, Jean-Marc. Climate Change, Water and Food Security. Rome: Food and Agriculture Organization of the United Nations \u2013 FAO, ISSN 1020-1203, 200 p., 2011.", "VIEIRA, Valter Afonso. Meta-An\u00e1lise: metodologia, pesquisa e an\u00e1lise de dados. Florian\u00f3polis: Ed. da UFSC, ISBN 9786558050070, 111p., 2017.", "WRATHALL, David J.; HOEK, Jamon Van Den; WALTERS, Alex; DEVENISH, Alan. Water stress and human migration: a global, georeferenced review of empirical research. Rome: Food and Agriculture Organization of the United Nations (FAO). Glorbal water paternship, ISSN 1729-0554, 27 p., 2018.", "[34] YANG. Jin; CHEN, Bin. Energy\u2013water nexus of wind power generation systems. Applied Energy, ISSN 1872-9118, v. 169, p. 1-13, 2016."]}
O conceito de vulnerabilidade contempla diferentes entendimentos dependendo do objeto foco de análise e nesta pesquisa é abordada a análise da vulnerabilidade das águas subterrâneas aos impactos das mudanças climáticas. A vulnerabilidade às mudanças climáticas considera o grau a que um sistema é suscetível aos efeitos adversos das mudanças climáticas, ou incapaz de lidar com os mesmos. Objetiva evidenciar as diferentes abordagens acerca da vulnerabilidade das águas subterrâneas diante das mudanças climáticas e destaca os principais métodos utilizados para analisar a vulnerabilidade de aquíferos. Para tal, foi utilizada a revisão sistemática da bibliografia como método de pesquisa. A análise das fontes deixou evidente que os métodos de análise da vulnerabilidade de aquíferos não contemplam de forma explícita, em sua maioria, o componente ‘mudanças climáticas’, e considerando o atual cenário mundial de intensificação dos eventos extremos e de pressão sobre as águas subterrâneas, entende-se necessário o desenvolvimento de pesquisas e métodos que sejam capazes de fazer essa avaliação integrada mais efetiva.
Águas subterrâneas, Aquíferos, Mudanças climáticas, Métodos de análise
Águas subterrâneas, Aquíferos, Mudanças climáticas, Métodos de análise
| selected citations These citations are derived from selected sources. This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | 0 | |
| popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network. | Average | |
| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Average | |
| impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network. | Average |
| views | 9 | |
| downloads | 13 |

Views provided by UsageCounts
Downloads provided by UsageCounts