Academic literature on the topic 'Generation Plant'

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Journal articles on the topic "Generation Plant"

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Storchai, E. I., A. I. Smorodin, M. M. Pashin, et al. "A New-Generation Pilot Ozone-Generating Plant." Chemical and Petroleum Engineering 50, no. 11-12 (2015): 784–90. http://dx.doi.org/10.1007/s10556-015-9979-1.

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Vlk, D., and J. Řepková. "Application of next-generation sequencing in plant breeding." Czech Journal of Genetics and Plant Breeding 53, No. 3 (2017): 89–96. http://dx.doi.org/10.17221/192/2016-cjgpb.

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In the past decade, next-generation sequencing (NGS) platforms have changed the impact of sequencing on our knowledge of crop genomes and gene regulation. These techniques are today acquiring a great potential in metagenomic and agrigenomic research while showing prospects for their utilization in plant breeding. We can now obtain new and beneficial information about gene regulation on the cellular as well as whole-plant level through RNA-sequencing and subsequent expression analyses of genes participating in plant defence reactions to pathogens and in abiotic stress tolerance. NGS has facilit
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Kumari, Jyoti, V. K. Sood, Sawan Kumar, S. K. Sanadya, Priyanka, and Rhitisha Sood. "Parent-offspring regression and intergeneration correlation analysis in powdery mildew resistance derived F4 and F5 generations of oat." Range Management and Agroforestry 45, no. 01 (2024): 57–64. http://dx.doi.org/10.59515/rma.2024.v45.i1.08.

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The present investigation was undertaken to determine the intergeneration correlation and parent-offspring regression in F4 and F5 generations of seven different oat crosses which were grown during Rabi 2019-20 and 2020-21, respectively, at Experimental Farm of Fodder Section, CSKHPKV, Palampur. Correlation studies revealed a negative correlation between crude protein yield per plant with grain yield per plant in F5 generation and a positive correlation between fresh fodder yield per plant and dry matter yield per plant in both generations, revealing crude protein yield as major forage yield c
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Kunal, Suryawanshi. "Hydroelectric Power Generation Plant." International Journal for Research in Applied Science and Engineering Technology 13, no. 5 (2025): 5659–62. https://doi.org/10.22214/ijraset.2025.71487.

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Hydroelectric power generation is one of the most sustainable and widely used renewable energy sources globally. This project explores the design, operation, and efficiency of a hydroelectric power generation plant. The system converts the potential energy of stored water into mechanical energy through turbines, which is then transformed into electrical energy using generators. Key components include the dam, reservoir, penstock, turbine, generator, and control systems. The project also discusses environmental impacts, cost efficiency, advantages over non-renewable sources, and integration int
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Tiwari, Shubham, Bharti Dwivedi, and M. P. Dave. "Opportunities vis-à-vis threat to thermal genera-tion due to rising renewable energy penetration." International Journal of Engineering & Technology 7, no. 1 (2017): 33. http://dx.doi.org/10.14419/ijet.v7i1.8460.

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An effort has been made to access what happens to prevailing thermal generation plants if the generation from renewable energy resources is increased above 20% of total generation. A test case has been taken where generation system comprising of ten thermal generating units is in conjunction with a 500 MW Wind Energy generation plant, and a 500 MW Solar Energy generation plant. It has been found that on one hand the cost of generation gets significantly reduced whereas, on the other hand few thermal generators are compelled to remain with no generation at all. The study reveals the peak load s
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Shuaibu, Sani, and Tijjani Saleh Bichi. "Environmental Impact Of Nuclear Power Plant For Electricity Generation." International Journal of Research Publication and Reviews 6, no. 4 (2025): 5794–814. https://doi.org/10.55248/gengpi.6.0425.14123.

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Barrera-Irigoyen, Cesar Augusto, Aureliano Peña-Lomelí, Natanael Magaña-Lira, Jaime Sahagún-Castellanos, and Mario Pérez-Grajales. "Study of inbreeding in tomatillo (Physalis ixocarpa Brot. ex Horm.)." Revista Chapingo Serie Horticultura 27, no. 3 (2021): 185–98. http://dx.doi.org/10.5154/r.rchsh.2021.03.006.

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Only intervarietal and interfamilial hybridization can be carried out in tomatillo. Therefore, the objective was to study the effect of inbreeding in families of four varieties of tomatillo obtained through three generations of mating by fraternal and plant-to-plant crosses. The varieties studied were Tecozautla, Diamante, Manzano and Morado, each represented by three maternal half-sib families (Generation 1). In 2018, plant-to-plant and fraternal crosses were made in selected plants within each family, resulting in full-sib (FSF) and maternal half-sib (MHSF) families, respectively (Generation
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Nirmala, Soren. "Optimization of Standalone Hybrid Power Plant using ABC algorithm." International Journal of Scientific Development and Research 9, no. 5 (2024): 1402–12. https://doi.org/10.5281/zenodo.11473077.

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 Abstract: Renewable energy systems are proving to be promising and environment friendly sources of electricity generation, particularly, in countries with inadequate fossil fuel resources. In recent years, wind, solar photovoltaic (PV) and biomass based systems have been drawing more attention to provide electricity to isolated or energy deficient regions. Solar and wind energy systems are omnipresent, freely available, environmental friendly, and they are considered as promising power generating sources due to their availability and topological advantages for local power generations. Hy
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Tomar, Amit, Manish Srivastava, and Mahak Singh. "Selection parameter analysis in Indian mustard (Brassica juncea L. Czern and Coss)." International Journal of Agricultural Invention 4, no. 02 (2019): 222–28. http://dx.doi.org/10.46492/ijai/2019.4.2.16.

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High heritability estimates were observed for days to maturity, number of siliquae per plant, number of seeds per siliquae, seed yield per plant and oil content in both the generations and number of secondary branches and plant height only F1 generation In F2 generation, high heritability was observed for plant height, number of seeds per siliqua and number of secondary branches. The maximum genetic advance coupled with high heritability was observed for number of siliquae per plant in F2 generation. Correlation study indicated that Seed yield per plant showed a positive and highly significant
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Vyas, Sanjay R., and Dr Ved Vyas Dwivedi. "Genetic Algorithm for Plant Generation Schedule in Electrical Power System." Paripex - Indian Journal Of Research 2, no. 1 (2012): 52–53. http://dx.doi.org/10.15373/22501991/jan2013/19.

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Dissertations / Theses on the topic "Generation Plant"

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Materechera, Simeon Albert. "Generation of soil structure by plant roots." Adelaide Thesis (Ph.D.) -- University of Adelaide, Department of Soil Science, 1993. http://hdl.handle.net/2440/21654.

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Title page, contents and abstract only. The complete thesis in print form is available from the University Library.<br>Thesis (Ph.D.)--University of Adelaide, Dept. of Soil Science, Waite Agricultural Research Institute, 1994
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Weng, Li. "Efficient and flexible algorithm for plant layout generation." Morgantown, W. Va. : [West Virginia University Libraries], 1999. http://etd.wvu.edu/templates/showETD.cfm?recnum=1167.

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Thesis (Ph. D.)--West Virginia University, 1999.<br>Title from document title page. Document formatted into pages; contains x, 148 p. : ill. (some col.). Includes abstract. Includes bibliographical references (p. 120-131).
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Kola, Ramya Sree. "Generation of synthetic plant images using deep learning architecture." Thesis, Blekinge Tekniska Högskola, Institutionen för datavetenskap, 2019. http://urn.kb.se/resolve?urn=urn:nbn:se:bth-18450.

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Background: Generative Adversarial Networks (Goodfellow et al., 2014) (GANs)are the current state of the art machine learning data generating systems. Designed with two neural networks in the initial architecture proposal, generator and discriminator. These neural networks compete in a zero-sum game technique, to generate data having realistic properties inseparable to that of original datasets. GANs have interesting applications in various domains like Image synthesis, 3D object generation in gaming industry, fake music generation(Dong et al.), text to image synthesis and many more. Despite h
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Emelianova, Katie. "Using next generation sequencing to investigate the generation of diversity in the genus Begonia." Thesis, University of Edinburgh, 2017. http://hdl.handle.net/1842/29584.

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Begonia is one of the most diverse genera on the planet, with a species count approaching 2000 and a distribution across tropics in South America, Africa and South East Asia. The genus has occupied a vast range of niches; many highly variable growth forms can be found across the distribution, and species exhibit very diverse morphologies, even in closely related species. A recent study has revealed a putative whole genome duplication (WGD) event in the evolutionary history of Begonia, which has prompted an interest in investigating the impact gene and genome duplication has had on the diversif
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Raineri, D. M. "The generation and characterization of Nicotiana cybrids." Thesis, University of Southampton, 1988. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.234446.

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Scimone, Tommaso. "Energy Storage in Electric Power Generation Plant from Renewable Sources." Thesis, Università degli Studi di Catania, 2011. http://hdl.handle.net/10761/228.

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During last years the utilization of renewable energy resources has received considerable attention because of the adverse environmental impacts and cost escalation of conventional fuel generation plants. Solar photovoltaic and wind energy industries are two sectors very rapidly growing, and both of them are attracting investments of billions of dollars. However, photovoltaic and wind, like most of the renewable energy sources are characterized by high variability and discontinuity. The high unpredictability of the primary resource makes diffi-cult to forecast the energy production. This is a
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Grant-Downton, Robert. "Epigenetics and the understanding of the generation of plant hybrid phenotypes." Thesis, University of Oxford, 2003. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.398132.

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Qin, Guixiang. "Development of advanced ferritic steels for high efficiency power generation plant." Thesis, University of Leicester, 2009. http://hdl.handle.net/2381/9944.

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E911 creep samples exposed to temperatures of 600˚C, 625˚C and 650˚C at differing stress levels were supplied by CORUS. The hardness of the gauge length that experienced both creep strain and temperature was found to be lower than that of the head where thermal softening only can be assumed. The changes in the morphology and size of precipitates were observed qualitatively by optical microscopy and Scanning Electron Microscopy. A creep fracture mechanism map of E911 steel was constructed with two modes of creep (transgranular and intergranular ). A fitted ellipse shape was used to characterise
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Bruce, Robert Alasdair Wilson. "Impacts of variable renewable generation on thermal power plant operating regimes." Thesis, University of Edinburgh, 2016. http://hdl.handle.net/1842/20387.

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The integration of variable renewable energy sources (VRE) is likely to cause fundamental and structural changes to the operation of future power systems. In the United Kingdom (UK), large amounts of price-insensitive and variable-output wind generation is expected to be deployed to contribute towards renewable energy and carbon dioxide (CO2) emission targets. Wind generation, with near-zero marginal costs, limited predictability, and a limited ability to provide upward dispatch, displaces price-setting thermal power plants, with higher marginal costs, changing flexibility and reserve requirem
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Vianna, Regina Ferreira. "Qualitative reasoning methodology for the generation of process plant operating procedures." Thesis, University of Leeds, 1995. http://etheses.whiterose.ac.uk/745/.

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The analysis of operating procedures in the early stages of design can lead to safer and higher performance plants. Qualitative reasoning techniques hold considerable promise in supporting generations of operating procedures, since they are able to describe possible trajectories of a system based on non-quantitative information and provide explanation about process behaviour in a way which gives insight into the underlying physical processes. Despite this potential, existing techniques still present limitations related to the tendency for generating non-real behaviour patterns and the inabilit
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Books on the topic "Generation Plant"

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MSI Marketing Research for Industry LTD., ed. Power generation plant, UK. MSI Marketing Research for Industry (UK), 1997.

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McClements, David Julian, and Lutz Grossmann. Next-Generation Plant-based Foods. Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-96764-2.

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P, Winkle, ed. Power generation retrofitting: Optimizing power plant performance. Professional Engineering Pub., 2002.

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Chen, M. J. Generation systems software: Steam, gas and diesel plant. Chapman & Hall, 1996.

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Canada. Industry, Science and Technology Canada. Power generation equipment. Industry, Science and Technology Canada, 1991.

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Canada. Industry, Science and Technology Canada. Power generation equipment. Industry, Science and Technology Canada, 1988.

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Govil, Keshavendra K. Electricity generation: Policy, technology, and economy. Venus Pub. House, 1998.

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Gowdra Mallikarjuna, Mallana, S. Chandra Nayaka, and Tanushri Kaul, eds. Next-Generation Plant Breeding Approaches for Stress Resilience in Cereal Crops. Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-1445-4.

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Stjepandić, Josip, Johannes Lützenberger, and Philipp Kremer. Generation and Update of a Digital Twin in a Process Plant. Springer International Publishing, 2024. http://dx.doi.org/10.1007/978-3-031-47316-6.

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Kiameh, Philip. Power generation handbook: Fundamentals of low-emission, high-efficiency power plant operation. 2nd ed. McGraw-Hill, 2012.

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Book chapters on the topic "Generation Plant"

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Ahuja, M. R. "Next Generation Plant Biotechnology." In Sustainable Development and Biodiversity. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-09381-9_6.

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Ordys, Andrzej W., A. W. Pike, Michael A. Johnson, Reza M. Katebi, and Michael J. Grimble. "Power Generation Plant Control." In Modelling and Simulation of Power Generation Plants. Springer London, 1994. http://dx.doi.org/10.1007/978-1-4471-2114-5_2.

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De Filippis, L. F. "Plant Bioinformatics: Next Generation Sequencing Approaches." In Plant Bioinformatics. Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-67156-7_1.

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Bhugra, Swati, Siddharth Srivastava, Vinay Kaushik, Prerana Mukherjee, and Brejesh Lall. "Plant Data Generation with Generative AI: An Application to Plant Phenotyping." In Applications of Generative AI. Springer International Publishing, 2024. http://dx.doi.org/10.1007/978-3-031-46238-2_26.

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Milne, Iain, Micha Bayer, Gordon Stephen, Linda Cardle, and David Marshall. "Tablet: Visualizing Next-Generation Sequence Assemblies and Mappings." In Plant Bioinformatics. Springer New York, 2016. http://dx.doi.org/10.1007/978-1-4939-3167-5_14.

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Serra, Heïdi, Radim Svačina, Jan Bartoš, and Pierre Sourdille. "Generation of Deletion Lines in Allohexaploid Bread Wheat." In Plant Gametogenesis. Springer US, 2022. http://dx.doi.org/10.1007/978-1-0716-2253-7_14.

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Burger, Johan T., and Hans J. Maree. "Metagenomic Next-Generation Sequencing of Viruses Infecting Grapevines." In Plant Pathology. Springer New York, 2015. http://dx.doi.org/10.1007/978-1-4939-2620-6_23.

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Ravi, Maruthachalam, and Simon W. L. Chan. "Centromere-Mediated Generation of Haploid Plants." In Plant Centromere Biology. Wiley-Blackwell, 2013. http://dx.doi.org/10.1002/9781118525715.ch13.

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Rehman, Abdul, Hafiza Iqra Almas, Abdul Qayyum, et al. "Future Prospects of Next-Generation Sequencing." In Plant-Microbe Interactions. CRC Press, 2022. http://dx.doi.org/10.1201/9781003171416-10.

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Till, Bradley J., Sneha Datta, and Joanna Jankowicz-Cieslak. "TILLING: The Next Generation." In Plant Genetics and Molecular Biology. Springer International Publishing, 2018. http://dx.doi.org/10.1007/10_2017_54.

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Conference papers on the topic "Generation Plant"

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Pangampe, Sahid, Ikhlas Kitta, Arham Amri, and Keisha Mahira Ikhra. "Planning for Additional Power Generation Capacity in the South Sulawesi Area Based on the OseMOSYS Model." In International Conference on Research in Engineering and Science Technology (IC-REST) 2023. Trans Tech Publications Ltd, 2025. https://doi.org/10.4028/p-t0qjao.

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The forecast for electrical energy demands in the South Sulawesi area in 2060 is 198,353 GWh, so the electricity generation capacity required under the Business As Usual scenario is 38.68 GW in that year. If this demand is connected to the scenario of limiting the construction and operation of coal-fired power plants, then the capacity required is 41.02 GW. This article provides an overview of the value of electrical energy demand and generating capacity in South Sulawesi where the method used to plan additional electricity generating capacity is based on the OSeMOSYS model. The generating cap
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Zabic, Miroslav, Louis Gemmerlé, Kilian Stöckemann, et al. "Generation of laser-induced microcracks in apple fruit cuticles." In Photonic Technologies in Plant and Agricultural Science II, edited by Dag Heinemann and Gerrit Polder. SPIE, 2025. https://doi.org/10.1117/12.3045955.

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Rios-PeÑaloza, Juan Diego, Gabriel García-Gutierrez, Milan Prodanović, and Javier Roldán-Pérez. "Power Plant Control with Configurable Reserves for Grid-Forming Solar Power Plants with Hybrid Storage." In 2024 IEEE 15th International Symposium on Power Electronics for Distributed Generation Systems (PEDG). IEEE, 2024. http://dx.doi.org/10.1109/pedg61800.2024.10667456.

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Mei, Yan, Boqi Zhang, Daqian Liu, Ningting Yuan, and Zitong Guo. "Method of Intelligent Monitoring and Emergency Plan Generation for Electrochemical Energy Storage Power Plant." In 2024 2nd International Conference on Artificial Intelligence and Automation Control (AIAC). IEEE, 2024. https://doi.org/10.1109/aiac63745.2024.10899621.

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Gonzalez, Joel. "Generation of agglutinin free-soybean getypes by geme editing." In ASPB PLANT BIOLOGY 2020. ASPB, 2020. http://dx.doi.org/10.46678/pb.20.1053441.

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Wolff, David E., William Bailey, and Tom Skoczylas. "Hydrogen Generation Can Reduce New Plant Design and Building Costs." In ASME 2013 Power Conference. American Society of Mechanical Engineers, 2013. http://dx.doi.org/10.1115/power2013-98018.

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Large electric power plant generators typically use gaseous hydrogen to remove heat from the generator windings and deliver the heat to the cooling water. Hydrogen is used in a closed cycle, and only a modest amount of makeup hydrogen is used daily to make up for hydrogen losses — typically about 300 to 700 scf/d. The range of hydrogen usage depends on several factors. In addition to hydrogen used for makeup, all power plants using hydrogen-cooled generators must plan for hydrogen supply to re-gas a generator after the generator has been degassed. Typical generator re-gas quantities are in the
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Shahnazari, Mohammad R., and Abbas Abbassi. "Repowering an Existing Power Generating Plant." In International Joint Power Generation Conference collocated with TurboExpo 2003. ASMEDC, 2003. http://dx.doi.org/10.1115/ijpgc2003-40006.

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A common repowering option is converting a fossil-fired steam unit to a gas-fired combined-cycle plant by addition of a combustion turbine and a Heat Recovery Steam Generator. In this approach the existing steam turbine and related auxiliaries are typically retained and some plant modification is applied. This paper intends to study this option for two old power plants. In this study the HRSGs are modeled, designed and their costs are estimated. Total generating cost for both plants are calculated in order to show whether or not the final cost is competitive with the cost of a new combined cyc
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Clark, M. A., R. Browne, M. Flaman, E. M. LeHockey, and I. Thompson. "Power Plant Life/Risk Assessment Techniques." In 2002 International Joint Power Generation Conference. ASMEDC, 2002. http://dx.doi.org/10.1115/ijpgc2002-26101.

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Many fossil power plants in N. America are now required to operate in excess of 20 years beyond their original design life. To ensure safe reliable operation, life assessment of key high-risk components is required. Life assessment of older power plant requires the application of many diverse techniques and the integration of several engineering disciplines with plant operations experience. Traditional approaches to life assessment of high temperature components will be described and illustrated with examples taken from experience on large coal fired plants from the old Ontario Hydro system. T
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Speh, R. M., and M. Bellmer. "Power plant control systems - quo vadis." In IET Seminar on Power Generation Control. IEE, 2006. http://dx.doi.org/10.1049/ic:20060379.

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Bostick, Gary W., and Russ Tinkham. "Digital Controls Retrofit of a 290MW Combined Cycle Power Generation Plant." In 1989 Joint Power Generation Conference: GT Papers. American Society of Mechanical Engineers, 1989. http://dx.doi.org/10.1115/89-jpgc/gt-2.

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Public Service Company of Oklahoma (PSO) operates a combined cycle, Westinghouse PACE generating station which was commissioned in 1972. The plant consists of two Westinghouse 501B6 gas turbines, two heat recovery steam generation units with afterburners, and a single 120MW steam turbine generator. PSO made the decision to upgrade the complete plant control with a state-of-the-art triple modular redundant control system, designed to provide entire control of the generating station. The paper describes the overall retrofit project, from project conception and justification through installation,
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Reports on the topic "Generation Plant"

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Boyd, Tonya. Geothermal Power Generation Plant. Office of Scientific and Technical Information (OSTI), 2013. http://dx.doi.org/10.2172/1163767.

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Schultz, Richard R., Abderrafi M. Ougouag, David W. Nigg, et al. Next Generation Nuclear Plant Methods Technical Program Plan. Office of Scientific and Technical Information (OSTI), 2010. http://dx.doi.org/10.2172/911934.

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Richard R. Schultz, Abderrafi M. Ougouag, David W. Nigg, et al. Next Generation Nuclear Plant Methods Technical Program Plan. Office of Scientific and Technical Information (OSTI), 2010. http://dx.doi.org/10.2172/1009143.

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Dr. David A. Petti. The Next Generation Nuclear Plant. Office of Scientific and Technical Information (OSTI), 2009. http://dx.doi.org/10.2172/968555.

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P. E. MacDonald. Next Generation Nuclear Plant Research and Development Program Plan. Office of Scientific and Technical Information (OSTI), 2005. http://dx.doi.org/10.2172/911012.

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Author, Not Given. Next Generation Nuclear Plant Research and Development Program Plan. Office of Scientific and Technical Information (OSTI), 2005. http://dx.doi.org/10.2172/859112.

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King, R. B., A. D. Jr King, and N. K. Bhattacharyya. Hanford Waste Vitrification Plant hydrogen generation. Office of Scientific and Technical Information (OSTI), 1996. http://dx.doi.org/10.2172/207649.

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Skone, Timothy J. Generation III Nuclear Power Plant, Construction. Office of Scientific and Technical Information (OSTI), 2010. http://dx.doi.org/10.2172/1509384.

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R. Doug Hamelin and G. O. Hayner. Next Generation Nuclear Plant Materials Selection and Qualification Program Plan. Office of Scientific and Technical Information (OSTI), 2004. http://dx.doi.org/10.2172/910945.

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G. O. Hayner and E.L. Shaber. Next Generation Nuclear Plant Materials Research and Development Program Plan. Office of Scientific and Technical Information (OSTI), 2004. http://dx.doi.org/10.2172/910957.

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