Auswahl der wissenschaftlichen Literatur zum Thema „River and harbor bills“

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Zeitschriftenartikel zum Thema "River and harbor bills"

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Cho, Yong-Sik. "Improvement of Water Quality at Dongbin Harbor with Construction of an Inland Canal, Korea." Scientific World Journal 2014 (2014): 1–6. http://dx.doi.org/10.1155/2014/721395.

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The behaviors of the water body of Dongbin Harbor located at Pohang City, Gyongpook Province, in Korea were numerically simulated in this study. A canal was planned to connect the harbor and the Hyeongsan River to improve water quality inside the harbor. The current system was first simulated by using a commercial program RMA2, with respect to both tidal currents and river flow. The progress inside the harbor from a supply of fresh water from the Hyeongsan River was then predicted by using RMA4. Both the present and future conditions (before and after construction of an inland canal) were take
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Dong, Cheng Di, Chih Feng Chen, and Chiu Wen Chen. "Evaluation of Mercury Contamination in Surface Sediments of Southern Kaohsiung Harbor, Taiwan." Advanced Materials Research 716 (July 2013): 459–64. http://dx.doi.org/10.4028/www.scientific.net/amr.716.459.

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Total mercury (T-Hg) concentration was determined to evaluation the distribution, enrichment, accumulation and potential ecological risk of mercury contamination in the surface sediments of southern Kaohsiung Harbor, Taiwan. Sediment samples from 12 locations located between the river mouths (i.e., Jen-Gen River and Salt River) and harbor entrance of southern Kaohsiung Harbor were collected and characterized for T-Hg, aluminum, water content, organic matter, and grain size. Results showed that the T-Hg concentrations varied from 0.190.45 mg/kg with an average of 0.28±0.09 mg/kg. The spatial di
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Krishna, Anirudh. "Demonetization in India: One More Rock in the River." Current History 116, no. 789 (2017): 154–56. http://dx.doi.org/10.1525/curh.2017.116.789.154.

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Dong, Cheng Di, Chih Feng Chen, and Chiu Wen Chen. "Evaluation of Cadmium Contamination in the Surface Sediments of Anping Harbor, Taiwan." Advanced Materials Research 807-809 (September 2013): 134–38. http://dx.doi.org/10.4028/www.scientific.net/amr.807-809.134.

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This study was conducted using the data collected at the Anping Harbor, Taiwan to investigate and analyze cadmium (Cd) contained in the sediments, and to evaluate the accumulation of Cr and the degree of its potential risk. The results show that samples collected at ten monitoring points contain 0.040.60 mg/kg of Cd with an average of 0.26±0.18 mg/kg. The spatial distribution of Cd reveals that the Cd concentration is relatively high in river mouth region, and gradually diminishes toward the harbor region. This indicates that upstream industrial and municipal wastewater discharges along the ri
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Ho, Chia-Ying, Tien-Hsi Fang, Cheng-Han Wu, and Hung-Jen Lee. "Interplay between Asian Monsoon and Tides Affects the Plume Dispersal of the New Hu-Wei River off the Coast of Midwest Taiwan." Water 14, no. 2 (2022): 152. http://dx.doi.org/10.3390/w14020152.

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In the coupled estuary–shelf system, plumes originating from the New Hu-Wei and Choshui rivers, consisting of many terrestrial materials, could contaminate the water of the Mailiao industrial harbor. To determine the contribution of the two rivers to pollution, the interaction between river-forced, tide-generating, and monsoon-driven water motions in and around the Mailiao industrial zone harbor was examined by performing a series of numerical model experiments. We used a three-dimensional general circulation model to examine the interplay between Asian monsoon-driven, river-forced, and tide-i
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Hsiao, Yu Sung, Yi Kuo Chang, Jiann Yuh Lou, Cheng Di Dong, Chih Feng Chen, and Chiu Wen Chen. "Chromium Contamination in Sediments of Anping Harbor, Taiwan." Applied Mechanics and Materials 535 (February 2014): 287–92. http://dx.doi.org/10.4028/www.scientific.net/amm.535.287.

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The distribution, enrichment, accumulation, and potential ecological risk of chromium (Cr) in the surface sediments of Anping Harbor, Taiwan, were investigated. Sediment samples from ten locations were collected and characterized for Cr, aluminum, water content, organic matter, and grain size. The results show that samples collected at all monitoring points contain 23.3–881.3 mg/kg of Cr with an average of 250.0±265.4 mg/kg. The spatial distribution of Cr reveals that the Cr concentration is relatively high in the Bamboo River mouth region, and gradually diminishes toward the harbor region. Th
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Lou, Jiann Yuh, Yi Kuo Chang, Yu Sung Hsiao, Cheng Di Dong, Chih Feng Chen, and Chiu Wen Chen. "Mercury Contamination of Sediments in the Anping Harbor, Taiwan." Advanced Materials Research 1030-1032 (September 2014): 544–48. http://dx.doi.org/10.4028/www.scientific.net/amr.1030-1032.544.

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This study was conducted using the data collected at the Anping Harbor, Taiwan to investigate and analyze mercury (Hg) contained in the sediments, and to evaluate the accumulation of Hg and the degree of its potential risk. The results show that samples collected at ten monitoring points contain 0.16–0.69 mg/kg of Hg with an average of 0.27±0.16 mg/kg. The spatial distribution of Hg reveals that the Hg concentration is relatively high in the Bamboo River mouth region, and gradually diminishes toward the harbor region. This indicates that upstream industrial and municipal wastewater discharges
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Dong, Cheng Di, Chih Feng Chen, and Chiu Wen Chen. "Distribution and Potential Risk of Copper in Surface Sediments of Anping Harbor, Taiwan." Applied Mechanics and Materials 376 (August 2013): 463–67. http://dx.doi.org/10.4028/www.scientific.net/amm.376.463.

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This study was conducted using the data collected at the Anping Harbor, Taiwan to investigate and analyze Copper (Cu) contained in the sediments, and to evaluate the accumulation of Cr and the degree of its potential risk. The results show that samples collected at ten monitoring points contain 23380 mg/kg of Cu with an average of 114±101 mg/kg. The spatial distribution of Cu reveals that the Cu concentration is relatively high in the Bamboo River mouth region, and gradually diminishes toward the harbor region. This indicates that upstream industrial and municipal wastewater discharges along t
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Chang, Yi Kuo, Yu Sung Hsiao, Jiann Yuh Lou, Cheng Di Dong, Chih Feng Chen, and Chiu Wen Chen. "Zinc Contamination in Sediments of Southern Kaohsiung Harbor, Taiwan." Applied Mechanics and Materials 535 (February 2014): 474–77. http://dx.doi.org/10.4028/www.scientific.net/amm.535.474.

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Major objectives of this study are to evaluation the enrichment, accumulation, and potential ecological risk of zinc (Zn) in the surface sediments of southern Kaohsiung Harbor, Taiwan. Twelve sampling locations were installed of southern Kaohsiung Harbor to collect sediment samples for analyzing Zn. Results showed that the Zn concentrations varied from 731–946 mg/kg with an average of 323±525 mg/kg. The spatial distribution of Zn reveals that the Zn concentration is relatively high in the river mouth region, and gradually diminishes toward the harbor entrance region. This indicates that upstre
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Chen, Chiu Wen, Chih Feng Chen, and Cheng Di Dong. "Distribution and Potential Ecological Risk Assessment of Copper in Surface Sediments of Southern Kaohsiung Harbor, Taiwan." Advanced Materials Research 811 (September 2013): 261–65. http://dx.doi.org/10.4028/www.scientific.net/amr.811.261.

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Major objectives of this study are to evaluation the enrichment, accumulation, and potential ecological risk of copper (Cu) in the surface sediments of southern Kaohsiung Harbor, Taiwan. Twelve sampling locations were installed of southern Kaohsiung Harbor to collect sediment samples for analyzing Cu. Results showed that the Cu concentrations varied from 6.0953 mg/kg with an average of 132±165 mg/kg. The spatial distribution of Cu reveals that the Cu concentration is relatively high in the river mouth region, and gradually diminishes toward the harbor entrance region. This indicates that upstr
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Dissertationen zum Thema "River and harbor bills"

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Liu, Hui. "The Development of a Water Quality Model in Baltimore Harbor, Back River, and the Adjacent Upper Chesapeake Bay." W&M ScholarWorks, 2002. https://scholarworks.wm.edu/etd/1539617784.

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Adcock, Ambre Michelle. "Predictors of Management Preferences Among Riverfront Landowners and Boaters on The Great Egg Harbor River: A Study of Stakeholders in a Multi-Jurisdictional Setting." Thesis, Virginia Tech, 1999. http://hdl.handle.net/10919/35855.

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The purpose of this study was twofold: (1) to determine the extent to which boaters and riverfront landowners on the Great Egg Harbor River are similar or different in perceptions of environmental and social conditions and preferences for management; and (2) to explore factors that contribute to riverfront landowners' and visitors' opinions about possible management decisions for the river. The Great Egg Harbor River represents a complex challenge, with designation as a unit of the Wild and Scenic River system, overseen by the National Park Service, but ownership by twelve municipalities and
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Tamura, Hitoshi. "State (Hydrodynamics) Identification in the Lower St. Johns River using the Ensemble Kalman filter." Master's thesis, University of Central Florida, 2012. http://digital.library.ucf.edu/cdm/ref/collection/ETD/id/5524.

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This thesis presents a method, Ensemble Kalman Filter (EnKF), applied to a high-resolution, shallow water equations model (DG ADCIRC-2DDI) of the Lower St. Johns River with observation data at four gauging stations. EnKF, a sequential data assimilation method for non-linear problems, is developed for tidal flow simulation for estimation of state variables, i.e., water levels and depth-integrated currents for overland unstructured finite element meshes. The shallow water equations model is combined with observation data, which provides the basis of the EnKF applications. In this thesis, EnKF
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松原, 輝男, та Teruo Matsubara. "近世信州大河原山より切り出した材木の流失史". 名古屋大学情報文化学部・名古屋大学大学院人間情報学研究科, 1999. http://hdl.handle.net/2237/5306.

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Lee, Chi Chung, and 李紀忠. "Mercury Pollution at Kaohsiung River and its Harbor area, southern Taiwan." Thesis, 1996. http://ndltd.ncl.edu.tw/handle/12581349390186711115.

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Huang, Hung-hsiang, and 黃鴻翔. "Modeling Nutrient Dynamics in Love River and Kaohsiung Harbor due to Sewerage Diversion." Thesis, 2014. http://ndltd.ncl.edu.tw/handle/87223611315283957774.

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碩士<br>國立中山大學<br>海洋環境及工程學系研究所<br>103<br>Kaohsiung Harbor was a narrow coastal lagoon. It has become the most important harbor in Taiwan, even internationally important, through a century development since the Japanese colonial period. The water quality of the harbor and the Love River became worse and worse due to intensive industrial developments since 1970. The sewerage system of Kaohsiung was not properly constructed before 1990, which cause the water seriously polluted. Since 1990, Kaohsiung city government started the interceptor project to improve the water quality of the Love River and t
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Yen, Chih-Chun, and 嚴之君. "Study of Biomarker Compounds of Oily Pollutants in the Sediment of Harbor and River-mouth." Thesis, 2016. http://ndltd.ncl.edu.tw/handle/63245384300441125223.

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碩士<br>國立東華大學<br>自然資源與環境學系<br>104<br>In the past decades, Sediment Quality Guidelines (SQGs) were normal adopted in the USA and Canada to protect the aquatic organisms. The concept of SQGs is built on assessment which chemical contaminants enter into aquatic organisms to evaluate the adverse effects. Taiwan had not built up the related sediment regulations until year 2011. However, existed regulations are still insufficient to solve the polluted situation of Taiwan. Therefore, it is necessary to apply different research which is adopted into foundation of new regulations to improve the pollute
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Wen, Dah Jye, and 溫大杰. "The Reproductive Biology of Chelon macrolepis and C. subviridis in Kaohsiung River and its Harbor area, Taiwan." Thesis, 1996. http://ndltd.ncl.edu.tw/handle/41064653588768582523.

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碩士<br>國立中山大學<br>海洋資源學系<br>84<br>This study investigated the reproductive biology of Chelon fishes in Kaohsiung river and its harbor area. Fish samples were collected monthly from various sources. Between Jan. 1992 to Mar. 1993, Chelon specimens were provided by anglers who angled at Kaohsiung river. From Dec. 1993 to Jun. 1995, monthly sampling were carried out by used gill net, at Kaohsiung river and Harbor. Additional offshore samples were collected by beach seine at the coast of Hsi-Tsu-
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Chang, Ming-Dung, and 張銘棟. "Study of Factors Affecting Taiwanese Logistics Companies’Location Selection of Harbor-based Logistics Center at Yangtze River Delta in China." Thesis, 2014. http://ndltd.ncl.edu.tw/handle/93283623619155176734.

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碩士<br>國立交通大學<br>管理學院運輸物流學程<br>102<br>Under the invincible influence of globalization, corporations are incessantly adjusting their operation and flow of supply chain between manufacturing and sales to increase their competitiveness. With its advantages of market, manpower and land, China has attracted companies across the world to invest and establish headquarters and manufacturing bases in China. With foreign capital and technology as well as its resources, China still maintains its economic growth at a high level. Besides, establishment of manufacturing centers brings in satellite factories
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Dunlap, Patrick John. "Evaluating organic compound sorption to several materials to assess their potential as amendments to improve in-situ capping of contaminated sediments." Thesis, 2011. http://hdl.handle.net/2152/ETD-UT-2011-05-3594.

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Contaminated sediments represent a common environmental problem because they can sequester large quantities of contaminants which can remain long after the source of pollution has been removed. From the sediment these hazardous compounds are released into the sediment porewater where it can partition into organisms in the sediment and bioaccumulate up the food web; leading to an ecological and human health concern. The objective of this work is to investigate an emerging option in contaminated sediment remediation; specifically an option for in-situ treatment known as active capping. Conven
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Bücher zum Thema "River and harbor bills"

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United States. Forest Service. Bessemer Ranger District., ed. Black River Harbor. Forest Service, Dept. of Agriculture, Bessemer Ranger District, 1995.

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Bessemer Ranger District (Mich.), ed. Black River Harbor. Bessemer Ranger District, 1996.

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United States. Forest Service. Bessemer Ranger District, ed. Black River Harbor: Waterfalls. Forest Service, Dept. of Agriculture, Bessemer Ranger District, 1995.

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Assembly, Canada Legislature Legislative. Bill: An act for the protection of bridges over the River Welland. J. Lovell, 2002.

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Assembly, Canada Legislature Legislative. Bill: An act for the protection of bridges over the River Welland. J. Lovell, 2003.

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Canada. Parliament. House of Commons. Bill: An act to incorporate the Detroit River Railway Bridge Company. I.B. Taylor, 2002.

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Canada. Parliament. House of Commons. Bill: An act to incorporate the Kettle River Valley Railway Company. S.E. Dawson, 2003.

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Assembly, Canada Legislature Legislative. Bill: An act to authorize Paul Girard to construct a toll-bridge over the River Etchemin. Hunter, Rose & Lemieux, 2003.

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Bottin, Robert R. Noyo River and Harbor, California, design for harbor entrance protection: Coastal model investigation. U.S. Army Engineer Waterways Experiment Station, 1994.

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Bottin, Robert R. Noyo River and Harbor, California, design for harbor entrance protection: Coastal model investigation. U.S. Army Engineer Waterways Experiment Station, 1994.

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Buchteile zum Thema "River and harbor bills"

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Duckert, Lowell. "Arctic-Oceanic New York." In Oceanic New York. punctum books, 2015. https://doi.org/10.21983/p3.0112.1.04.

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In the summer of 1609, under orders from theDutch East India Company to venture north by northeast towards the Russian archipelago of Novaya Zemlya, the English navigator Henry Hudson erred: thwarted by icepack, and unwilling to return so soon to his Dutch patrons, he sailed west instead, journeying down the North American coast that his friend John Smith had described to him. Entering what we now know as New York Harbor in September 1609, he sailed up a river called the North River, a waterway that Italian explorer Giovanni da Verrazano sighted in 1524 but never In the summer of 1609, under o
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Maiti, D. K., Vallam Sundar, and S. A. Sannasiraj. "Design of a Minor Fishing Harbor in India with Special Reference to Training of the Mouth of River Chapora." In Lecture Notes in Civil Engineering. Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-8506-7_6.

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"Pigs in the River." In Doubtful Harbor. Ohio University Press, 2018. http://dx.doi.org/10.2307/j.ctv224tt9b.24.

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"Harbor, River,and Estuary Structures." In Construction of Marine and Offshore Structures, Third Edition. CRC Press, 2007. http://dx.doi.org/10.1201/9781420004571.ch9.

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"Harbor, River,and Estuary Structures." In Construction of Marine and Offshore Structures, Third Edition. CRC Press, 2007. http://dx.doi.org/10.1201/9780849330520.ch9.

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"Harbor, River, and Estuary Structures." In Construction of Marine and Offshore Structures, Second Edition. CRC Press, 1999. http://dx.doi.org/10.1201/9781420049602.ch9.

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Zelleg, M., I. Said, E. Hamdi, and Z. Lafhaj. "Sediment transport and silting in Zarzis commercial harbor (Tunisia)." In River Sedimentation. CRC Press, 2016. http://dx.doi.org/10.1201/9781315623207-93.

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"The Creative Destruction of the Chicago River Harbor." In Liquid Capital. University of Pennsylvania Press, Inc., 2017. http://dx.doi.org/10.2307/j.ctv16t6cz8.6.

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"Thoughts from a Harbor on the Yellow River." In Laughing Lost in the Mountains. University Press of New England, 2023. http://dx.doi.org/10.2307/jj.2840649.98.

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"Chapter 3. The Creative Destruction of the Chicago River Harbor." In Liquid Capital. University of Pennsylvania Press, 2018. http://dx.doi.org/10.9783/9780812294583-004.

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Konferenzberichte zum Thema "River and harbor bills"

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Fernández, R., M. García, and G. Parker. "Mississippi riverbank harbor siltation study." In The International Conference On Fluvial Hydraulics (River Flow 2016). CRC Press, 2016. http://dx.doi.org/10.1201/9781315644479-195.

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Fenical, S., V. Shepsis, K. Merkel, J. Amdur, and B. Hawkins-Bowman. "Design, Numerical Modeling and Monitoring Port of Oakland Middle Harbor Habitat." In Wetlands Engineering and River Restoration Conference 2001. American Society of Civil Engineers, 2001. http://dx.doi.org/10.1061/40581(2001)127.

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Fuller, Dwayne, Jim Leech, and Martin Ahmann. "Adult Fish Passage at Ice Harbor Lock and Dam, Snake River." In Wetlands Engineering and River Restoration Conference 1998. American Society of Civil Engineers, 1998. http://dx.doi.org/10.1061/40382(1998)119.

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Felhofer, Samantha, Kaleigh Kraft, Reilly Flynn, Amanda Mudlaff, Brett Samuelson, and Subha Kumpaty. "Kinnikinnic River Trash Collector Design." In ASME 2019 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2019. http://dx.doi.org/10.1115/imece2019-10467.

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Abstract A senior design team from the Milwaukee School of Engineering assisted the Milwaukee Harbor District with a trash collecting solution for the Kinnickinnic River. The design objectives were: the use of solar panels to generate charge for the continuous operation of the trash solution, an innovative and cost-efficient way to clear debris blockages from the conveyor, low cost, and a design that can operate as autonomously as possible to require the least amount of human intervention. The Kinnickinnic River experiences a reverse flow and a substantial rise in water level during and after
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Doctors, Lawrence J. "The Wave System of the Sydney Harbor RiverCat Ferry." In SNAME International Conference on Fast Sea Transportation. SNAME, 2021. http://dx.doi.org/10.5957/fast-2021-007.

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We revisit here the hydrodynamics supporting the design and development of the RiverCat class of catamaran ferries operating in Sydney Harbor since 1991. The design of the ferry was strongly influenced by the requirement to limit the erosion of the banks on the sides of the Parramatta River along which these ferries operate. More advanced software is used here. This software accounts for the hydrodynamics of the transom stern which create a hollow in the water. This hollow causes an effective hydrodynamic lengthening of the vessel. This leads to a reduction in the generation of the wave system
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Wu, Kang, Jiangbin Zhao, Bin Wu, Yang Wang, and Lei Xie. "Price leverage based optimization of anchorage resource allocation in upstream harbor district of Yangtze River." In 2015 International Conference on Transportation Information and Safety (ICTIS). IEEE, 2015. http://dx.doi.org/10.1109/ictis.2015.7232150.

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Miller, Bradford A., and Tennyson M. Muindi. "Three Trenchless Crossings - One Urban Waterway: Subsurface Engineering Geology at Chelsea River, Boston Harbor, Massachusetts." In Pipelines 2013. American Society of Civil Engineers, 2013. http://dx.doi.org/10.1061/9780784413012.085.

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Hanebuth, Till J. J., Ezekiel W. Meyers, and Ezekiel W. Meyers. "CHRONIC SILTING WITHIN A HUMAN-CREATED OXBOW ALONG A HISTORIC HARBOR FRONT (SAMPIT RIVER, GEORGETOWN, SC)." In Joint 72nd Annual Southeastern/ 58th Annual Northeastern Section Meeting - 2023. Geological Society of America, 2023. http://dx.doi.org/10.1130/abs/2023se-386120.

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Liu, Xiaohai, Michael B. Kabiling, and Steven M. Bratos. "Evaluation of the Impact on St. Johns River Circulation and Salinity for the Jacksonville Harbor Deepening Project." In Proceedings of Ports '13: 13th Triennial International Conference. American Society of Civil Engineers, 2013. http://dx.doi.org/10.1061/9780784413067.041.

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Nathaniel O Bailey. "Caloosahatchee River Basin Total Maximum Daily Load Assessments: Computer Model Comparison." In TMDL 2010: Watershed Management to Improve Water Quality Proceedings, 14-17 November 2010 Hyatt Regency Baltimore on the Inner Harbor, Baltimore, Maryland USA. American Society of Agricultural and Biological Engineers, 2010. http://dx.doi.org/10.13031/2013.35733.

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Berichte der Organisationen zum Thema "River and harbor bills"

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Brown, Robin F., Steve J. Jeffries, and Bryan E. Wright. Conductivity-Temperature-Depth Profiling of the Columbia River Mouth Using Pacific Harbor Seals as Sampling Platforms. Defense Technical Information Center, 2013. http://dx.doi.org/10.21236/ada598459.

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Semler, M., and R. Blanchard. Radiological surveys of naval facilities in the New London Harbor and on the Thames River, Connecticut. Office of Scientific and Technical Information (OSTI), 1991. https://doi.org/10.2172/10137365.

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McCollum, Randy A., Jose A. Sanchez, and Lisa C. Roig. Ship Navigation Simulation Study, Jacksonville Harbor, St. Johns River, Florida; Volume 1: Main Text and Appendix A. Defense Technical Information Center, 1998. http://dx.doi.org/10.21236/ada336670.

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Sunda, William G., and Susan A. Huntsman. Interactions Among Chemical Speciation, Algal Accumulation, and Biogeochemical Cycling of Toxic Metals in a Major U.S. Naval Harbor (Elizabeth River, VA). Defense Technical Information Center, 2000. http://dx.doi.org/10.21236/ada610048.

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Sunda, William G., and Susan A. Huntsman. Interactions Among Chemical Speciation, Algal Accumulation, and Biogeochemical Cycling of Toxic Metals in a Major US Naval Harbor (Elizabeth River, VA). Defense Technical Information Center, 2001. http://dx.doi.org/10.21236/ada626698.

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Martin, S., Jennifer McAlpin, Mary Allison, et al. Inner Harbor Navigation Canal Lock replacement study : hydrodynamic modeling and ship simulation. Engineer Research and Development Center (U.S.), 2025. https://doi.org/10.21079/11681/49816.

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The Inner Harbor Navigation Canal (IHNC) Lock connects the Mississippi River to the Gulf Intracoastal Waterway, surrounded by developed areas in New Orleans, Louisiana. Tow transit times through the current IHNC lock take up to 20 hours. The US Army Corps of Engineers, New Orleans District, has proposed constructing a new lock to reduce tow transit times significantly. However, the new lock will have potential effects on vehicle traffic patterns due to the three bridges across IHNC. To address potential navigation issues, hydrodynamic modeling and ship simulations of the study area were conduc
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Word, J. Q., J. A. Ward, and A. L. Squires. Results of chemical, toxicological, and bioaccumulation evaluations of dioxins, furans, and guaicol/organic acids in sediments from the Grays Harbor/Chehalis River area. Office of Scientific and Technical Information (OSTI), 1990. http://dx.doi.org/10.2172/6364326.

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Donat, John R., and David J. Burdige. Interactions Among Ligand Production, Chemical Complexation and Speciation, Algal Accumulation, and Sediment-Water Cycling of Toxic Metals in a Major US Naval Harbor (Elizabeth River, VA). Defense Technical Information Center, 2001. http://dx.doi.org/10.21236/ada628178.

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Wadman, Heidi, and Jesse McNinch. Use of chirp sub-bottom acoustics to assess integrity of water-control structures : Inner Harbor Navigation Canal Lock, New Orleans. Engineer Research and Development Center (U.S.), 2024. http://dx.doi.org/10.21079/11681/49198.

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The US Army Corps of Engineers (USACE)-maintained lock on the Inner Harbor Navigation Canal serves as a critical navigation link between Lake Pontchartrain to the north and the Mississippi River to the south. Extensive slumping has been observed on the earthen embankment on each side of the lock, suggesting that internal pathways for water to escape through the lock’s concrete walls or joints are present. Unfortunately, traditional methods often used to identify cracks in the concrete (e.g., sidescan sonar) or water-filled voids under or behind the structure (e.g., ground-penetrating radar) di
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Smith, Adam, and Megan Tooker. Character-defining features of the Buffalo south mole (south pier), NY. Engineer Research and Development Center (U.S.), 2023. http://dx.doi.org/10.21079/11681/46743.

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The US Congress codified the National Historic Preservation Act of 1966 (NHPA), the nation’s most effective cultural resources legislation to date, mostly through establishing the National Register of Historic Places (NRHP). The NHPA requires federal agencies to address their cultural resources, which are defined as any prehistoric or historic district, site, building, structure, or object. The precursor to the Corps of Engineers erected the mole (a.k.a., the south pier) in the early 1820s at the entrance to the Buffalo harbor. The area on top of and surrounding the mole was modified through t
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