Academic literature on the topic 'Capacity Utilization Factor (CUF)'

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Journal articles on the topic "Capacity Utilization Factor (CUF)"

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Salsabila Ayu, Laili Asdiyan, Ida Ayu Dwi Giriantari, and I. Nyoman Setiawan. "ANALISIS UNJUK KERJA PEMBANGKIT LISTRIK TENAGA SURYA (PLTS) ATAP ON-GRID 11,2 KWP DI RESIDENSIAL BUKIT GADING MEDITERANIA, JAKARTA UTARA." Jurnal SPEKTRUM 10, no. 1 (2023): 32. http://dx.doi.org/10.24843/spektrum.2023.v10.i01.p5.

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The implementation of PLTS as the utilization of EBT in Indonesia is still being developed. Government policy through KEN and RUEN targets a national PLTS capacity of 6.5 GW in 2025 and 45 GW in 2050. The PLTS system is implemented from the smallest scale, namely residential, with a new challenge, namely to maintain the performance of the PLTS system in good condition. The object of this research was carried out on an 11.2 kWp on-grid rooftop PV mini-grid system at the Bukit Gading Mediterania Residential. The performance of this rooftop PV system was analyzed using the PVsyst software to dete
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Amelia Hutagalung, Neysa, I. Nyoman Setiawan, and I. Wayan Sukerayasa. "ANALISIS UNJUK KERJA PEMBANGKIT LISTRIK TENAGA SURYA (PLTS) ATAP ON-GRID 463,25 kWp DI PERUSAHAAN FARMASI PADA KAWASAN PT JAKARTA INDUSTRIAL ESTATE PULOGADUNG, JAKARTA TIMUR." Jurnal SPEKTRUM 10, no. 2 (2023): 70. http://dx.doi.org/10.24843/spektrum.2023.v10.i02.p9.

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The number of PLTS installed on factory rooftops is growing. In Indonesia, the Directorate General of New, Renewable Energy estimates a total renewable energy potential of 442 GW, with solar energy holding the greatest potential. The performance of the PLTS system needs to be considered to ensure good performance in generating electricity. This research focuses on the rooftop on-grid PLTS system in a Pharmaceutical Company located in the PT Jakarta Industrial Estate Pulo Gadung area, with a capacity of 463.25 kWp. Electricity generation potential is modeled using PVSyst software for examinatio
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Tursunov, M. N., Kh Sabirov, T. Z. Axtamov, et al. "Capacity Utilization Factor (CUF) of the 70kW on-grid solar station in the dry climate of Termez." E3S Web of Conferences 401 (2023): 02059. http://dx.doi.org/10.1051/e3sconf/202340102059.

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The aim of the present study was to assess the installed capacity utilization factor and the suitability of a 70kW photovoltaic plant placed on the roof of a dormitory located at Termez city (Termez state university). We can report the energy to production directly through mobile devices. CUF is one of the quantities that shows the performance quality of each power generating station. The results of our research cover two months autumn and winter. Through this, the theoretically estimated minimum values of CUF on the least sunny days have also been proven in real values. It is estimated that t
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Chaudhari, Ramesh, Bharat Chaudhari, Pratiksinh Dilipsinh, and Vijya Leela bhai. "To Study the Temporal Variation of Capacity Utilization Factor (CUF) of PV Based Solar Power Plant with Respect to Climatic Condition." Current World Environment 11, no. 2 (2016): 654–61. http://dx.doi.org/10.12944/cwe.11.2.38.

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Performance, quality and reliability of technology are becoming more and more important for the emerging photovoltaic markets worldwide. In this experiment the monitoring of climatic factors like, solar radiation, Ambient Temperature, Module Temperature, Relative Humidity and Wind Speed was carried out on daily basis for six months, between 7:00 A.M to 6:00 P.M. Data was measured with SCADA system. This analysis was carried out by monitoring the fluctuation in power output of the system with climatic factors. From the results, there is direct proportionality between the power output of the sys
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Rafhel Panjaitan, Kavlin, Ida Ayu Dwi Giriantari, and I. Nyoman Setiawan. "ANALISIS UNJUK KERJA PLTS CARPORT 37,8 KWP DI AREA PERKANTORAN KEMENTERIAN ESDM REPUBLIK INDONESIA JAKARTA PUSAT." Jurnal SPEKTRUM 10, no. 1 (2023): 25. http://dx.doi.org/10.24843/spektrum.2023.v10.i01.p4.

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The utilization of PV in Indonesia increased significantly. Based on data submitted by the Director General of EBTKE, the PV capacity value until first semester of 2021 is 217 MW. New challenge has emerged, namely maintaining performance of the PV system in good condition. Performance of the PV Carport system is analyzed by simulating PV using PVSyst software to see the potential value of electricity production, then calculating the performance parameters of the PV system such as Yield Factor (Yf), Yield Reference (Yr), Performance Ratio (PR) and Capacity Factor (CUF). Then compared with the r
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Parul, Madan Nidhi Mehra. "Improved and Reliable Performance of Solar PV Systems Requires Energy Storage Technology." Scandinavian Journal of Information Systems 34, no. 2 (2023): 17–127. https://doi.org/10.5281/zenodo.7885741.

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At present large rating solar photovoltaic (PV) plants are now being installed worldwide. As these plants face the challenge of non dispatchable power in comparison to conventional, researchers has focused on energy storage technology. An energy storage technology not only provides the uninterrupted power supply but also reduces the chance of disconnection from load thus better reliability and robustness in combination with these systems. In this Paper an attempt is made to mimic the entire operation from designing of 5.2 kWp DC to AC system without storage, which supplies the power to a 5KVA
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Chakraborty, Suprava, and Pradip Sadhu. "Mathematical Methodology to Predict Energy Generation of Grid Connected PV Power Plants in India." Current World Environment 11, no. 1 (2016): 156–66. http://dx.doi.org/10.12944/cwe.11.1.20.

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This paper presents a reliable mathematical methodology to predict the energy generation from grid connected Photovoltaic plant of different technologies in India. Energy generation of different commercially used PV technologies in different locations of India is predicted using proposed mathematical method. This results show a decisive study to choose the best PV technology for particular location of India. Predicted energy generation is validated with the monthly generation for the whole year of 2014 from operational PV power plants of different technologies. Predicted generation is in good
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Thapa, Bhesh Raj, Baburam Paudel, Rabindra Karki, Manita Raut, Michael Scobie, and Erik Schmidt. "Is Solar Powered Irrigation Technology Sustainable Option for Groundwater Irrigation Management in Nepal’s Terai?" Journal of the Institute of Engineering 15, no. 3 (2020): 334–39. http://dx.doi.org/10.3126/jie.v15i3.32214.

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The most densely populated Terai Plains of Nepal with poor access to irrigation water in the dry season resulting the food insecure community. Several initiatives have been carried out to improve the irrigation facilities by extracting the ground water resources using solar, diesel, and grid operated electric pumps. Sustainability of all those initiatives and identifying the most viable solution is always in question. In this context, this study attempts to assess the cost effectiveness of these pumping technologies considering life cycle cost (LCC) in the context of Terai region of Nepal. Obs
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Minai, Ahmad Faiz, Tahsin Usmani, Majed A. Alotaibi, Hasmat Malik, and Mohammed E. Nassar. "Performance Analysis and Comparative Study of a 467.2 kWp Grid-Interactive SPV System: A Case Study." Energies 15, no. 3 (2022): 1107. http://dx.doi.org/10.3390/en15031107.

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This paper demonstrates the investigation of the acquired outcomes from consistent information observing a 467.2 kWp solar photovoltaic (SPV) framework commissioned on the roofs of three separate high-rise buildings, which are located at the location of 26.9585° N and 80.9992° E. Onside real-time performance for this system was investigated for three years, 2018–2020; this system contains 1460 SPV panels of 320 Wp each, having 20 PV panels per string, 09 DC/AC power conditioning units (PCU), and a SCADA (supervisory control and data acquisition) system for monitoring the other necessary parts
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Das, Alok, Hardik K. Jani, Surendra Singh Kachhwaha, and Garlapati Nagababu. "Assessment of Factors Affecting Onshore Wind Power Deployment in India." Environmental and Climate Technologies 24, no. 1 (2020): 185–208. http://dx.doi.org/10.2478/rtuect-2020-0012.

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AbstractThe Present study focuses on the impact of various factors on the growth of wind power generation in seven most wind energy prone states of India, that contain 97 % of India’s total wind power potential. The impact of state-wise policy parameters Feed-in Tariff (FIT) rate, Renewable Purchase Obligations (RPO) and Power Purchase Agreement (PPA) are evaluated in terms of aggregate policy indices that indicate the likelihood of wind power deployment in that state, through multivariate statistical analysis. The wind energy technology with reference to wind turbine specific policies, scalin
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Dissertations / Theses on the topic "Capacity Utilization Factor (CUF)"

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Lucas, D. Pulane. "Disruptive Transformations in Health Care: Technological Innovation and the Acute Care General Hospital." VCU Scholars Compass, 2013. http://scholarscompass.vcu.edu/etd/2996.

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Advances in medical technology have altered the need for certain types of surgery to be performed in traditional inpatient hospital settings. Less invasive surgical procedures allow a growing number of medical treatments to take place on an outpatient basis. Hospitals face growing competition from ambulatory surgery centers (ASCs). The competitive threats posed by ASCs are important, given that inpatient surgery has been the cornerstone of hospital services for over a century. Additional research is needed to understand how surgical volume shifts between and within acute care general hospitals
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Books on the topic "Capacity Utilization Factor (CUF)"

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Vega, Luis A. Cabezas. Factor substitution, capacity utilization, and total factor productivity growth in the Peruvian manufacturing industry. Nationalekonomiska institutionen, Handelshögskolan vid Göteborgs universitet, 1994.

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Prucha, Ingmar R. Endogenous capital utilization and productivity measurement in dynamic factor demand models: Theory and an application to the U.S. electrical machinery industry. National Bureau of Economic Research, 1991.

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Book chapters on the topic "Capacity Utilization Factor (CUF)"

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Khosla, Rajiv, and Rajinder Singh Bawa. "Total Factor Productivity Growth and Capacity Utilization in Manufacturing Industries in India." In Eurasian Studies in Business and Economics. Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-67916-7_24.

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Järvinen, Mika, Hanna Paulomäki, Rogier Ralph Floors, et al. "Wind Energy." In Green Energy and Technology. Springer Nature Switzerland, 2025. https://doi.org/10.1007/978-3-031-69856-9_5.

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Abstract Wind power is a mature technology that has been harnessed by humans for millennia, offering numerous environmental advantages over the use of fossil fuels. This chapter on wind power focuses on horizontal axis technology, covering the technical operating principles, basic design of turbine blades, an analysis of wind as an energy resource, and aspects of turbine siting and wake effects in the design of on- and offshore wind-power plants. Additionally, the utilization of wind atlases is described, along with methodologies for estimating the capacity factor, defined as the proportion of
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Kannan, Balaraman, and Bastin Jeyaraj. "Low Specific Power Wind Turbines for Reduced Levelized Cost of Energy." In Wind Turbines - Advances and Challenges in Design, Manufacture and Operation [Working Title]. IntechOpen, 2022. http://dx.doi.org/10.5772/intechopen.103139.

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Wind turbines with Low Specific Power (LSP) are envisaged as one of the modern-day manifestations to reduce the variability in wind generation, lower the cost of energy, increase the penetration to larger areas and better utilize the transmission system. In this regard, this chapter analyzes the characteristics of a LSP turbine synthesized close to a target Specific Power of 100 W/m2 (LSP-105) based on ground-based measurements at varying site conditions representing various IEC wind classes. The overall analysis suggests that, under reasonable scenarios, low-specific power turbines could play
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Dawes, Peter A. "Development, technology, and utilization of capillary columns for gas chromatography." In Gas Chromatography. Oxford University PressOxford, 1994. http://dx.doi.org/10.1093/oso/9780199632725.003.0003.

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Abstract The concept of using hollow tubes as chromatography separation columns stemmed from a theoretical mathematical investigation and later experimental work by Marcel Golay in 1957. The more correct terminology for this invention is open tubular capillary column but the shortened and more general terminology of ‘capillary column’ has found its way into common use. The most obvious benefit of capillary columns over packed columns was the increased resolving capacity. An examination of the van Deemter equation will yield several reasons why a capillary column can have higher resolving power
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Haile, Abera. "Investigation of WDM-EPON Integrated with Optical Wireless Channel for 5G Optical Communication." In 5G and 6G Enhanced Broadband Communications. IntechOpen, 2025. https://doi.org/10.5772/intechopen.104835.

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With the advancement in communication systems, there is a need for large bandwidth to send more data at a higher speed. Wavelength division multiplexing (WDM)-ethernet passive optical network (EPON) is important due to its efficiency, higher bandwidth, low-cost passive connection, and reduced complexity of deployment and maintenance of the network. The implementation of radio over fiber in wireless communication achieved a high data rate and high capacity due to the utilization of high-capacity optical fiber and the flexibility of wireless networks. Optical wireless channel (OWC) is the techni
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Chernov, Dmitry, Galina Deryugina, Nikita Karpov, Mikhail Tyagunov, and Haiyang He. "Factors Affecting the Power-Efficient Operation of Wind-Diesel Complexes." In Advances in Computer and Electrical Engineering. IGI Global, 2019. http://dx.doi.org/10.4018/978-1-5225-9179-5.ch010.

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The purpose of this chapter is to compare the design and operational parameters of energy efficiency (power generation, capacity utilization factor) of a wind power plant (WPP) in order to improve the accuracy of the design parameters estimation at the preliminary design stage. Recommendations have been given for accounting different factors influencing on energy efficiency and economic indicators of a WPP. In this chapter, the research is carried out on the example of existing wind-diesel complexes (WDC) in the settlement of Ust-Kamchatsk (Kamchatka Krai), Novikovo (Sakhalin Oblast), and proj
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Thakur, Ganesh, Xuejia Du, and Sabyasachi Prakash. "Implementing Carbon Storage Technology to Combat Climate Change." In Carbon Odyssey - A Journey Through Earth’s Carbon Cycle [Working Title]. IntechOpen, 2025. https://doi.org/10.5772/intechopen.1006915.

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Injecting CO2 into depleted oil reservoirs is a key strategy for mitigating excess atmospheric carbon. In India, where Carbon Capture, Utilization, and Storage (CCUS) incentives are limited, CO2 EOR (Enhanced Oil Recovery) serves as a commercially viable method for carbon storage. Effective reservoir management (RM) is critical to ensuring the success of CO2 injection, as it integrates insights from primary, secondary, and EOR/EOR+ phases. This study introduces an integrated carbon storage development strategy tailored for a mature Indian oilfield, employing both analytical and numerical tools
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Mayer Peter-M., Libreros Ana, Niklasch Christoph, and Klotz Claudia. "Considerations of new approaches for TBM tunnel design." In Proceedings of the 17th International Conference on Soil Mechanics and Geotechnical Engineering. IOS Press, 2009. https://doi.org/10.3233/978-1-60750-031-5-2524.

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Advances in the design and reliability of tunnel boring machines have led to a significant increase in their utilization in recent decades. One consequence has been the increased demand for mechanisation and automation of the entire tunnelling process. It was observed in many tunnel projects that cracking (damage) of the rings has direct influence of the bearing capacity of the concrete lining and represents an important factor for the major loss of lining quality with a detrimental influence on the long-term behavior of segments. A large part of the damage to segments occurs during the constr
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Zaicenco Anton and Alkaz Vasile. "GIS Application for the Assessment of Seismic Damage to Buildings." In NATO Science for Peace and Security Series - E: Human and Societal Dynamics. IOS Press, 2009. https://doi.org/10.3233/978-1-58603-948-6-29.

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Geographical Information Systems (GIS) have been found to be very useful in seismic hazard and risk assessment studies. GIS can be used to integrate vast amounts of data geographically, take the spatial distribution of phenomena into consideration and communicate the results graphically, performing analysis of complex mathematical models. The central part of Chisinau (6.3 km2site), capital of the Republic of Moldova, has been the case study in a project aimed at the assessment of vulnerability of buildings to seismic impact. The city is exposed to Vrancea earthquakes experiencing PGA &cong
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Conference papers on the topic "Capacity Utilization Factor (CUF)"

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Sahu, Swapnil Kumar, Ayush Chokhani, Harshita Nehra, et al. "Analysis of Capacity Utilization Factor of Decentralized Solar Generators: A Case Study." In 2025 IEEE International Students' Conference on Electrical, Electronics and Computer Science (SCEECS). IEEE, 2025. https://doi.org/10.1109/sceecs64059.2025.10940468.

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Lopez-Basto, Erik, Eliana Lozano Sanchez, Samantha Eleanor Tanzer, and Andrea Ramirez. "System analysis and optimization of replacing surplus refinery fuel gas by coprocessing with HTL bio-crude off-gas in oil refineries." In The 35th European Symposium on Computer Aided Process Engineering. PSE Press, 2025. https://doi.org/10.69997/sct.152452.

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This study evaluates the introduction of Carbon Capture and Utilization (CCU) process in two Colombian refineries, focusing on their potential to reduce CO2 emissions and their associated impacts under a scenario aligned with the Net Zero Emissions by 2050 Scenario defined in the 2023 IEA report. The work uses a MILP programming tool (Linny-R) to model the operational processes of refinery sites, incorporating a net total cost calculation to optimize process performance over five-year intervals. This optimization was constrained by the maximum allowable CO2 emissions. The methodology includes
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Tabata, Hiro, Satoshi Ohara, Yuichiro Kanematsu, Heng Yi Teah, and Yasunori Kikuchi. "Life-Cycle Assessment of Chemical Sugar Synthesis Based on Process Design for Biomanufacturing." In The 35th European Symposium on Computer Aided Process Engineering. PSE Press, 2025. https://doi.org/10.69997/sct.124214.

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The growing demand for sustainable alternatives to petroleum-based products drives the development of biomanufacturing using agriculture-based sugars. However, agricultural sugar production faces significant challenges due to limited production capacity and potential negative environmental impacts. This research examines chemical sugar synthesis as an alternative, assessing its environmental impact with conventional agricultural production methods through life cycle assessment. As formaldehyde serves as a primary substrate in chemical synthesis, four production cases were evaluated�comprising
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Conlon, Terence M., Vijay Modi, and Michael B. Waite. "The Value of Energy Flexibility: Integrating Wind Resources in New York State." In ASME 2018 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/imece2018-87521.

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This paper explores the effects of energy system flexibility on the contribution of wind generation to the New York State (NYS) electricity generation mix. First, the benefits of NYS-specific flexible hydropower are investigated. For all simulations, a mixed integer linear program minimizes net load to determine the maximum aggregate capacity factor for the installed wind power. A similar routine explores the benefits of three different types of energy flexibility: flexible supply, flexible demand, and bidirectional flexibility (i.e. energy storage). To compare across technologies, a novel met
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Khalil, Essam E. "Ten Tips for Energy-Efficient Air-Conditioned Buildings." In ASME 2010 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. ASMEDC, 2010. http://dx.doi.org/10.1115/detc2010-28348.

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The Developing communities in their path for rapid development is endeavoring to make all necessary and appropriate measures to enhance the efficiency of energy utilization and increase the beneficiation of the energy resources. The energy production, transmission, distribution and utilization efficiency becomes a vital factor and measure of national development. Governmental organizations were established earlier to be responsible for energy planning and efficient utilization, information dissemination and capacity building as well as devising the necessary codes and standards. Energy rationa
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Li, Dexuan, and Hamid Emami-Meybodi. "Hydrogen Mixing Dynamics in Depleted Gas Reservoirs." In SPE Annual Technical Conference and Exhibition. SPE, 2024. http://dx.doi.org/10.2118/220710-ms.

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Abstract Depleted gas reservoirs are suggested as a suitable choice for the sessional storage and utilization of hydrogen (H2) with the presence of surface infrastructure, large storage capacity, and available history data. However, hydrogen mixing with in-situ natural gas and cushion gas leads to contamination and subsequent loss of hydrogen. Hydrodynamic dispersion is an important driving mechanism for gas mixing during cyclic hydrogen injection/withdrawal. Accordingly, we investigate the mixing dynamics of hydrogen, cushion gas, and in-situ gas and their impacts on the recovery factor and p
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Nasralla, Ramez, Rouhi Farajzadeh, Samir Ketkar, Johannes Van Wunnik, Dawood Mahruqi, and Rifaat Al Mjeni. "Towards Low Carbon Oil – A Comprehensive Portfolio Analysis for CO2 EOR/CCUS Opportunities in Oil Reservoirs in the Sultanate of Oman." In ADIPEC. SPE, 2022. http://dx.doi.org/10.2118/210944-ms.

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Abstract It is evident that there is an urgent need to lower the Green-House-Gas (GHG) emissions in all industrial sectors, including oil and gas. One of the solutions to produce low-carbon oil is the utilization of CO2 for Enhanced Oil Recovery. Injection of CO2 for EOR leads to retention of a considerable amount of the injected CO2 in the reservoir, which ultimately results in CO2 storage. Therefore, in efforts of Petroleum Development Oman Company (PDO) to lower GHG from its own operations and produce low-carbon oil, a portfolio review study was conducted to identify, assess, and rank the c
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Yin, Decao, Ivar Fylling, Halvor Lie, Rolf J. Baarholm, and Timothy E. Kendon. "On the Design Considerations of New Offloading Hose Applied on a Turret Moored FPSO." In ASME 2017 36th International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers, 2017. http://dx.doi.org/10.1115/omae2017-61410.

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Offloading hoses are used to transfer crude oil or liquid petroleum products from a fixed offshore production platform/floating production, storage and offloading (FPSO) unit to shuttle tankers. The hoses are subjected to environmental loads that are mainly waves, current, and vessel motions from both FPSO and the shuttle tanker. New offloading hoses were planned to be applied in a FPSO in harsh environment, and a design analysis was done in this connection. Numerical simulations were performed on ultimate limit state (ULS), serviceability limit state (SLS) and accidental limit state (ALS) by
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Cunqi, Jia, Alsousy Abdulhamid, and Sepehrnoori Kamy. "Mechanism Comparisons of Underground Hydrogen Storage in Heterogeneous Aquifers." In 57th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2023. http://dx.doi.org/10.56952/arma-2023-0519.

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ABSTRACT Hydrogen provides a practical solution to reduce climate crisis causing by utilization of fossil fuels. Underground spaces provides a practical solution to large-scale and long-time of hydrogen storage. This work is motivated to study the influence of different physical mechanisms on the underground storage process, including geomechanical process, hydrogen adsorption on solid phase, hydrogen dissolution in water phase, hydrogen diffusion in water phase, hysteresis (relative permeability and capillary pressure), and capillary trapping. Results show that an obvious difference exists in
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Parker, Ken R., Jeff Allen, and Anupam Sanyal. "Benchmarking Software for Slagging, Fouling and Other Parameters to Improve Coal-Fired Power Plant Load Factor, Efficiency and Emission." In ASME 2006 Power Conference. ASMEDC, 2006. http://dx.doi.org/10.1115/power2006-88249.

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For a 500 MW unit, a 1 % reduction in boiler efficiency equates to a coal cost in the order of $ 1/2 million/annum, while a 5 % unit derate, needed to meet emission compliance, can equate to an annual revenue loss of up to $ 12 million. Many software products are in use, which based on the present plant performance, identify and optimize the operational parameters for the best plant capacity, utilization and efficiency. While they are effective in tuning up the unit, they are applied to an operating plant firing a given coal for the given performance. But what if there were a means of predicti
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