강호정・고동욱・김은숙・박상규・박수진・박은진・안창우・옥기영・유경수・이윤덕회(역), 2001, 소리 잃은 강, 대형 댐의 생태와 정치 사회학, 智識工作所, 서울. (McCully, P., 1996, Silenced Rivers: The Ecology and Politics of Large Dams, Zed Books, New York.)
구도완, 2010, “댐을 넘어서 지역만들기로, 오비타니 히로아키 지음, 시민환경연구소 옮김, 2010, [댐 건설을 둘러싼 환경운동과 지역발전], 잉걸,” 환경사회학연구 ECO, 14(2), 233-242.
박범순・김용진(역), 2024, 인류세 책 행성적 위기의 다면적 시선, 이음, 서울 (Thomas, J. A., Williams, M., and Zalasiewicz, J., 2020, The Anthropocene: A Multidisciplinary Approach, Polity Press, Cambridge).
선명수, 2010, “일본은 '하천 민주주의'…한국은 '4대강 독재',” 프레시안, 7월 7일, https://www.pressian.com/pages/articles/101428, 2026년 3월 17일 접속.
양훈도, 2018, 댐이 된 근로보국대의 땀, 가평 청평댐, 지역N문화, 4월 28일, https://ncms.nculture.org/legacy/story/2788, 2026년 3월 17일 접속.
오세현, 2023, “[소양강댐의 빛과 그림자] 4.소양강댐 건설 비화,” 강원도민일보, 2월 13일, https://www.kado.net/news/articleView.html?idxno=1166517, 2026년 3월 17일 접속.
윤정환, 2022, “냉전시대 일본 근대 산업화의 표상 - 1945-60년 일본 원자력・수력 발전의 수용배경과 역사를 중심으로 -,” 日本學硏究, 65, 67-97.
10.18841/2022.65.04인교준, 2002, “<물의 날 특집> (下) 한국-중국-일본의 댐 건설현황,” 연합뉴스, 3월 20일, https://www.yna.co.kr/view/AKR20020319007400003, 2026년 3월 17일 접속.
有働恵子・武田百合子・横尾善之, 2016, “日本全国の河川から海岸への土砂供給ポテンシャルと砂浜侵食との関係,” 土木学会論文集B2(海岸工学), 72(2) 799-804.
10.2208/kaigan.72.I_799Chakrabarty, D., 2009, The climate of history: Four theses, Critical inquiry, 35(2), 197-222.
10.1086/596640Chatterjee, E. and Pandey-Geeta Mantraraj, S., 2025, Dams and the Deep Earth: The 1967 Koyna Earthquake and Human Agency in the Anthropocene, Past & Present, 268(1), 181-224.
10.1093/pastj/gtae037Chatterjee, E., 2020, The Asian anthropocene: Electricity and fossil developmentalism, The Journal of Asian Studies, 79(1), 3-24.
10.1017/S0021911819000573Dryzek, J. S., 2016, Institutions for the Anthropocene: Governance in a changing earth system, British Journal of Political Science, 46(4), 937-956.
10.1017/S0007123414000453Dryzek, J. S. and Pickering, J., 2018, The Politics of the Anthropocene, Oxford University Press, Oxford.
10.1093/oso/9780198809616.001.0001Dudgeon, D., 2011, Asian river fishes in the Anthropocene: Threats and conservation challenges in an era of rapid environmental change, Journal of Fish Biology, 79(6), 1487-1524.
10.1111/j.1095-8649.2011.03086.xGärdebo, J., Marzecova, A. and Knowles, S. G., 2017, The orbital technosphere: The provision of meaning and matter by satellites, The Anthropocene Review, 4(1), 44-52.
10.1177/2053019617696106Ha, K., Jang, M. H. and Joo, G. J., 2003, Winter Stephanodiscus bloom development in the Nakdong River regulated by an estuary dam and tributaries, Hydrobiologia, 506(1), 221-227.
10.1023/B:HYDR.0000008564.64010.4cHaddad, M. A. and Harrell, S., 2021, The evolution of the East Asian eco-developmental state, Asia-Pacific Journal, 19(6), e1.
10.1017/S155746602103093XHaff, P., 2014, Humans and technology in the Anthropocene: Six rules, The Anthropocene Review, 1(2), 126-136.
10.1177/2053019614530575Han, M., Fukushima, M., Kameyama, S., Fukushima, T. and Matsushita, B., 2008, How do dams affect freshwater fish distributions in Japan? Statistical analysis of native and nonnative species with various life histories, Ecological Research, 23(4), 735-743.
10.1007/s11284-007-0432-6Hausknost, D., 2025, The state in the Anthropocene, in Machin, A. (ed.), Handbook of Environmental Political Theory in the Anthropocene, Edward Elgar Publishing, Cheltenham.
10.4337/9781802208955.00032Head, M., McNeill, J. R. and Zalasiewicz, J., 2025, The great acceleration, in Brian, D. F. (ed.), Encyclopedia of Ecology, 3rd Edition, Elsevier, Amsterdam.
10.1016/B978-0-443-21964-1.00039-2Hwang, J. T., 2016, The Chun Doo-Hwan authoritarian regime's securitisation of water: The case of the Peace Dam, South Korea, Scottish Geographical Journal, 132(3), 234-245.
10.1080/14702541.2016.1178799Hwang, J. T., 2021, Theorizing the more-than-human state, The Professional Geographer, 73(4), 641-649.
10.1080/00330124.2021.1933548Itsukushima, R., 2023, Historical development and the present status of Japanese dams, River Research and Applications, 39(6), 1136-1147.
10.1002/rra.4129Jennerjahn, T. C., 2012, Biogeochemical response of tropical coastal systems to present and past environmental change, Earth-Science Reviews, 114(1-2), 19-41.
10.1016/j.earscirev.2012.04.005Kawara, O., Yura, E., Fujii, S. and Matsumoto, T., 1998, A study on the role of hydraulic retention time in eutrophication of the Asahi River Dam reservoir, Water Science and Technology, 37(2), 245-252.
10.2166/wst.1998.0146Kim, J., Lee, G., Han, S., Kim, M. J., Shin, J. H. and Lee, S., 2023, Microbial communities in aerosol generated from cyanobacterial bloom-affected freshwater bodies: An exploratory study in Nakdong River, South Korea, Frontiers in Microbiology, 14, 1203317.
10.3389/fmicb.2023.120331737520352PMC10374321Ko, E. J., Gim, J. S., Hong, S., Jo, H., Kim, J. Y., Hirose, M., Won, D. H., Kim, H.W. and Joo, G. J., 2019, Distribution and growth of non-native bryozoan Pectinatella magnifica (Leidy, 1851) in four large rivers in South Korea, Aquatic Invasions, 14(2), 384-396.
10.3391/ai.2019.14.2.14McCormack, G., 1995, Growth, construction, and the environment: Japan's construction state, Japanese Studies, 15(1), 26-35.
10.1080/10371399508571519Michaud, M., 2015, Dam building and the over-concretization of Japan, Kwansei Gakuin University social sciences review, 20, 93-103.
Nakamura, S., Tanaka, T., Iizumi, Y., Kubota, T., Kimura, M., Yoshida, T., Katsuyama, M. and Teramura, J., 2025, Emergence of, and developments in, hydrology (suimongaku) in Japan from the late 19th century to 1970, Hydrological Sciences Journal, 70(8), 1237-1247.
10.1080/02626667.2025.2482107Nakazawa, S., 2007, The development of modern river management in Japan, Tijdschrift voor Waterstaatsgeschiedenis, 16(1), 34-45.
Nilsson, C., Reidy, C. A., Dynesius, M. and Revenga, C., 2005, Fragmentation and flow regulation of the world's large river systems, Science, 308(5720), 405-408.
10.1126/science.1107887Park, S., 2025, Behind the artificial mountain: The consequences of the choice of raw materials for South Korea's Soyang Dam, 1967-72, Technology and Culture, 66(4), 1079-1107.
10.1353/tech.2025.a971302Poeppl, R. E., Keesstra, S. D. and Hein, T., 2015, The geomorphic legacy of small dams - An Austrian study, Anthropocene, 10, 43-55.
10.1016/j.ancene.2015.09.003Sippel, P., 2000, Controlling the Nagara: Changing approaches to water management in Japan, Water Policy, 2(4-5), 283-297.
10.1016/S1366-7017(00)00011-8Skalak, K. J., Benthem, A. J., Schenk, E. R., Hupp, C. R., Galloway, J. M., Nustad, R. A. and Wiche, G. J., 2013, Large dams and alluvial rivers in the Anthropocene: The impacts of the Garrison and Oahe Dams on the Upper Missouri River, Anthropocene, 2, 51-64.
10.1016/j.ancene.2013.10.002Sneddon, C. and Fox, C., 2008, Struggles over dams as struggles for justice: The World Commission on Dams (WCD) and anti-dam campaigns in Thailand and Mozambique, Society and Natural Resources, 21(7), 625-640.
10.1080/08941920701744231Song, C., Gardner, K. H., Klein, S. J., Souza, S. P. and Mo, W., 2018, Cradle-to-grave greenhouse gas emissions from dams in the United States of America, Renewable and Sustainable Energy Reviews, 90, 945-956.
10.1016/j.rser.2018.04.014Steele, W., 2017, Constructing the construction state: Cement and postwar Japan, Asia-Pacific Journal, 15(11), 1-11.
10.1017/S1557466017013584Steffen, W., Broadgate, W., Deutsch, L., Gaffney, O. and Ludwig, C., 2015, The trajectory of the Anthropocene: The great acceleration, The anthropocene review, 2(1), 81-98.
10.1177/2053019614564785Steffen, W, Sanderson, R. A., Tyson, P. D., Jäger, J., Matson, P. A., Moore III, B., Oldfield, F., Richardson, K., Schellnhuber, H. -J., Turner, B. L. and Wasson, R. J., 2005, Global Change and the Earth System: A Planet Under Pressure, Springer-Verlag, Heidelberg.
10.1007/b137870Sun, X., Tian, L., Fang, H., Walling, D. E., Huang, L., Park, E., Li, D., Zheng, C. and Feng, L., 2025, Changes in global fluvial sediment concentrations and fluxes between 1985 and 2020, Nature Sustainability, 8(2), 142-151.
10.1038/s41893-024-01476-7Syvitski, J. P. and Kettner, A., 2011, Sediment flux and the Anthropocene, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 369(1938), 957-975.
10.1098/rsta.2010.0329Syvitski, J., Waters, C. N., Day, J., Milliman, J. D., Summerhayes, C., Steffen, W., Zalasiewicz, J., Cearreta, A., Gałuszka, A., Hajdas, I., Head, M. J., Leinfelder, R., McNeill, J. R., Poirier, C., Rose, N. L., Shotyk, W., Wagreich, M. and Williams, M., 2020, Extraordinary human energy consumption and resultant geological impacts beginning around 1950 CE initiated the proposed Anthropocene Epoch, Communications Earth & Environment, 1(1), 32.
10.1038/s43247-020-00029-yTakahasi, Y., 2009, History of water management in Japan from the end of World War II, Water Resources Development, 25(4), 547-553.
10.1080/07900620903274091Takahasi, Y. and Uitto, J. I., 2004, Evolution of river management in Japan: From focus on economic benefits to a comprehensive view, Global Environmental Change, 14, 63-70.
10.1016/j.gloenvcha.2003.11.005The World Commission on Dams, 2000, Dams and Development - A New Framework for Decision-Making, Earthscan Publications, London.
Twardek, W. M., Cowx, I. G., Lapointe, N. W. R., Paukert, C., Beard, T. D., Bennett, E. M., Browne, D., Carlson, A. K., Clarke, K. D., Hogan, Z., Lorenzen, K., Lynch, A. J., McIntyre, P. B., Pompeu, P., Rogers, M., Sakas, A., Taylor, W. W., Ward, T. D., Basher, Z. and Cooke, S. J., 2022, Bright spots for inland fish and fisheries to guide future hydropower development, Water Biology and Security, 1(1), 100009.
10.1016/j.watbs.2022.100009Vörösmarty, C. J., McIntyre, P. B., Gessner, M. O., Dudgeon, D., Prusevich, A., Green, P., Glidden, S., Bunn, S. E., Sullivan, C. A., Reidy Liermann, C. and Davies, P. M., 2010, Global threats to human water security and river biodiversity, Nature, 467(7315), 555-561.
10.1038/nature09440Washitani, I., 2007, Restoration of biologically-diverse floodplain wetlands including paddy fields, Global Environmental Research, 11(2), 135-140.
Wildcat, D. R. and Schneider, T., 2025, The Geography of nowhere in the Anthropocene technosphere, Journal of Geography, 124(6), 171-181.
10.1080/00221341.2025.2575938Winemiller, K. O., McIntyre, P. B., Castello, L., Fluet-Chouinard, E., Giarrizzo, T., Nam, S., Baird, I. G., Darwall, W., Lujan, N. K., Harrison, I., Stiassny, M. L. J., Silvano, R. A. M., Fitzgerald, D. B., Pelicice, F. M., Agostinho, A. A., Gomes, L. C., Albert, J. S., Baran, E., Petrere, M., Jr., Zarfl, C., Mulligan, M., Sullivan, J. P., Arantes, C. C., Sousa, L. M., Koning, A. A., Hoeinghaus, D. J., Sabaj, M., Lundberg, J. G., Armbruster, J., Thieme, M. L. et al., 2016, Balancing hydropower and biodiversity in the Amazon, Congo, and Mekong, Science, 351(6269), 128-129.
10.1126/science.aac7082Wohl, E., 2020, Rivers in the Anthropocene: The US perspective, Geomorphology, 366, 106600.
10.1016/j.geomorph.2018.12.001Wu, H., Chen, J., Xu, J., Zeng, G., Sang, L., Liu, Q., Yin, Z., Dai, J., Yin, D., Liang, J. and Ye, S., 2019, Effects of dam construction on biodiversity: A review, Journal of Cleaner Production, 221, 480-489.
10.1016/j.jclepro.2019.03.001Yoon, J. D., Jang, M. H., Jo, H. B., Jeong, K. S., Kim, G. Y. and Joo, G. J., 2016, Changes of fish assemblages after construction of an estuary barrage in the lower Nakdong River, South Korea, Limnology, 17(2), 183-197.
10.1007/s10201-015-0476-1Zalasiewicz, J., Head, M. J., Waters, C. N., Summerhayes, C., Turner, S., Wagreich, M., Aquilina, L., Cearreta, A., Chakraborty, A., Gałuszka, A., Hajdas, I., Ivar do Sul, J., Leinfelder, R., Magny, M., McCarthy, F. M. G., McNeill, J. R., Park, B. S., Pöschl, U., Renn, J., Robin, L., Saito, Y., Sörlin, S., Thomas, J. A., Trischler, H., Williams, M., Wallenhorst, N. and Will, F., 2025, Reply to Edgeworth et al.(2024): The Anthropocene is a time interval, and more besides, Earth's Future, 13(9), e2024EF005612.
10.1029/2024EF005612국토교통부 국토지리정보원, 수문의 역사, 2020, http://nationalatlas.ngii.go.kr/pages/page_179.php, 2026년 3월 17일 접속.
국토연구원, 2차 국토종합개발계획(1981~1992), 국토종합계획의 변천, https://www.krihs.re.kr/menu.es?mid=a70203000000, 2026년 3월 17일 접속.
환경부, 환경부, 기후대응댐 후보지(안) 14곳 발표, 2024년 7월 30일 등록, https://www.mcee.go.kr/home/web/board/read.do?pagerOffset=1600&maxPageItems=10&maxIndexPages=10&menuId=10598&boardMasterId=939&boardId=1689830, 2026년 8월 20일 접속.
国土交通省, 戦後の我が国の全国総合開発計画、国土利用計画のあゆみ, 2001년 3월 15일, https://www.mlit.go.jp/singikai/kokudosin/kihon/1/images/sankou3.pdf, 2026년 8월 20일 접속.
村田啓之, 佐藤彰, 「ダム再生」~既設ダムの有効活用~, 2017년 9월, https://kenmane.kensetsu-plaza.com/bookpdf/222/ai_03.pdf, 2026년 8월 20일 접속.
安田成夫, 日本の河川とダム, 2023, https://www.jdec.or.jp/files/libs/1664/202309071624564786.pdf, 2026년 8월 20일 접속.
Le Delliou, P., The History of the World Register of Dams, 2025, https://www.icold-cigb.org/userfiles/files/CIGB/History%20of%20the%20WRD-PleDelliou.pdf, 2026년 8월 20일 접속.
ICOLD/CIGB, World Register of Dams/Registre Mondial des Barrages, 2025, https://www.icold-cigb.org/GB/world_register/world_register_of_dams.asp, 2026년 8월 20일 접속.
Japan Commission on Large Dams, Dams in Japan Overview 2025, 2025, https://jcold.or.jp/cm/wp-content/uploads/2025/05/Dams-in-Japan-2025.0.pdf, 2026년 8월 20일 접속.
- Publisher :The Korean Geographical Society
- Publisher(Ko) :대한지리학회
- Journal Title :Journal of the Korean Geographical Society
- Journal Title(Ko) :대한지리학회지
- Volume : 61
- No :4
- Pages :561-581
- Received Date : 2026-03-24
- Revised Date : 2026-08-10
- Accepted Date : 2026-08-14
- DOI :https://doi.org/10.22776/kgs.2026.61.4.561


Journal of the Korean Geographical Society






