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1

Jarungthammachote, Sompop. "Thermodynamic investigation of intercooling location effect on supercritical CO2 recompression Brayton cycle." Journal of Mechanical Engineering and Sciences 15, no. 3 (2021): 8262–76. http://dx.doi.org/10.15282/jmes.15.3.2021.05.0649.

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In S-CO2 recompression Brayton cycle, use of intercooling is a way to improve the cycle efficiency. However, it may decrease the efficiency due to increase of heat rejection. In this work, two S-CO2 recompression Brayton cycles are investigated using the thermodynamic model. The first cycle has intercoolings in a main compression and a recompression process (MCRCIC) and the second cycle has an intercooling in only the recompression process (RCIC). The thermal efficiencies of both cycles are compared with that of S-CO2 recompression Brayton cycle with intercooling in the main compression proces
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2

McAfee, Joshua R., Kevin J. Shinners, Joshua C. Friede, and Chase P. Walters. "Creating High-Density Large Square Bales by Recompression." Transactions of the ASABE 62, no. 2 (2019): 371–80. http://dx.doi.org/10.13031/trans.12898.

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Abstract. Creating high-density biomass bales would reduce the number of bales handled, stored, and transported to biorefineries, thereby reducing costs. Recompression of large square bales is one approach to increase bale density; however, recompression research on large bales is limited. Recompression of common biomass crops in 80 cm × 90 cm nominal cross-section bales was used to quantify pressure-density and stress relaxation relationships as well as restraining forces required to maintain compressed densities. Linear, power, and exponential models were fit to the pressure-density data, wi
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3

Sokolowski, Sofia A., Anne K. Räisänen-Sokolowski, Laura J. Tuominen, and Richard V. Lundell. "Delayed treatment for decompression illness: factors associated with long treatment delays and treatment outcome." Diving and Hyperbaric Medicine Journal 52, no. 4 (2022): 271–76. http://dx.doi.org/10.28920/dhm52.4.271-276.

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Introduction: Effectiveness of delayed hyperbaric oxygen treatment (HBOT) for decompression illness (DCI) and factors affecting treatment delays have not been studied in large groups of patients. Methods: This retrospective study included 546 DCI patients treated in Finland in the years 1999–2018 and investigated factors associated with recompression delay and outcome. Treatment outcome was defined as fully recovered or presence of residual symptoms on completion of HBOT. The symptoms, use of first aid oxygen, number of recompression treatments needed and characteristics of the study cohort we
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4

Jeż, Artur. "Recompression." Journal of the ACM 63, no. 1 (2016): 1–51. http://dx.doi.org/10.1145/2743014.

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5

Song, H. H., and C. F. Edwards. "Understanding chemical effects in low-load-limit extension of homogeneous charge compression ignition engines via recompression reaction." International Journal of Engine Research 10, no. 4 (2009): 231–50. http://dx.doi.org/10.1243/14680874jer03409.

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In-cylinder pre-processing (or recompression reaction) of pilot-injected fuel during negative value overlap (NVO) has been investigated as a method to extend the low-load limit of residual-effected homogeneous charge compression ignition (HCCI). In an effort to elucidate the chemical and thermal effects involved, model calculations have been performed on the recompression reaction and ignition delay of the recompression products using a reduced n-heptane mechanism (160 reactions, 1424 reactions) and a zero-dimensional kinetics model. Parametric studies were performed to cover possible operatin
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6

Dapena, Juan C., Corine A. Lansdorp, and Simon J. Mitchell. "Persistent extravascular bubbles on radiologic imaging after recompression treatment for decompression sickness: A case report." Diving and Hyperbaric Medicine Journal 50, no. 4 (2020): 424–30. http://dx.doi.org/10.28920/dhm50.4.424-430.

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(Dapena JC, Lansdorp CA, Mitchell SJ. Persistent extravascular bubbles on radiologic imaging after recompression treatment for decompression sickness: A case report. Diving and Hyperbaric Medicine. 2020 December 20;50(4):424–430. doi: 10.28920/dhm50.4.424-430. PMID: 33325027.) Decompression sickness (DCS) is a condition arising when dissolved inert gas in tissue forms extravascular and/or intravascular bubbles during or after depressurisation. Patients are primarily treated with 100% oxygen and recompression, which is often assumed to lead to resolution of bubbles. After this, repeated hyperba
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7

Kitt, S. R., and B. D. Rose. "Foothills Decompression/Recompression Facilities—Unique Power Recovery Application in Gas Pipelines." Journal of Engineering for Gas Turbines and Power 116, no. 1 (1994): 143–51. http://dx.doi.org/10.1115/1.2906783.

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Foothills Pipe Lines Ltd. is the Canadian sponsor of the Alaska Natural Gas Transportation System (ANGTS), a pipeline project selected in Canada and the United States as the means for transporting Alaskan gas reserves to the lower 48 United States. Currently, certain Prebuild portions of the ANGTS are in operation delivering Canadian gas to U. S. markets. A recent system expansion of the Eastern Leg Prebuild to accommodate increased Canadian gas exports entailed the construction of Decompression/Recompression facilities at Empress, Alberta to enable high-pressure operation of the Foothills pip
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8

Doolette, David, and Simon Mitchell. "In-water recompression." Diving and Hyperbaric Medicine Journal 48, no. 2 (2018): 84–95. http://dx.doi.org/10.28920/dhm48.2.84-95.

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9

Klein, S. T. "Efficient Optimal Recompression." Computer Journal 40, no. 2 and 3 (1997): 117–26. http://dx.doi.org/10.1093/comjnl/40.2_and_3.117.

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10

Levashev, S. L., and O. S. Alekseeva. "Optimization of diver recompression methods after emergency ascent to prevent decompression sickness: experimental study." Marine Medicine 9, no. 1 (2023): 64–72. http://dx.doi.org/10.22328/2413-5747-2023-9-1-64-72.

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OBJECTIVE: Based on the analysis of national normative documents and a series of animal experiments to evaluate the effectiveness of a not common method of a diver’s recompression after emergency ascent, skipping all the mandatory decompression stops in order to prevent the development of decompression sickness. MATERIALS AND METHODS: In the study Wister rats (n = 30) were used. The animals were placed in the chamber and there was air compression up to 9 АТА with exposure under pressure within 15 min. Decompression was carried out by pressure release with imitation of emergency ascent. After 5
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11

Huang, Renlong, Chaoda Chen, Yage Wang, and Tianming Zhong. "Performance investigation of supercritical carbon dioxide power cycle with recuperative recompression technology." Journal of Physics: Conference Series 2418, no. 1 (2023): 012008. http://dx.doi.org/10.1088/1742-6596/2418/1/012008.

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Abstract The supercritical carbon dioxide power cycle is an advanced thermoelectric conversion technology due to its high-power generation efficiency and compact structure. However, basic supercritical carbon dioxide power cycle performance is limited to turbine outlet temperature. To further improve thermoelectric conversion efficiency, recuperative recompression in the supercritical carbon dioxide power cycle is investigated for efficient energy utilization. Recuperative technology can reduce the amount of heat released to the environment, and recompression can reduce Compression power consu
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12

Rodrigues, Danyelle Fialho de Souza, Arthur Siqueira Damasceno, Wagner Brandão Ramos, Romildo Pereira Brito, and Karoline Dantas Brito. "Evaluation of mechanical vapor recompression in the reactive distillation of the N-butanol esterification process." Research, Society and Development 10, no. 12 (2021): e243101220345. http://dx.doi.org/10.33448/rsd-v10i12.20345.

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The process of producing esters is usually performed through esterification in a reactor followed by a distillation column to separate the products. However, this design limits the reagent conversion. Reactive distillation is an alternative to get around this issue as it allows greater reagent conversions in reactions limited by chemical equilibrium. It is one of the most famous process intensification techniques. On the other hand, mechanical vapor recompression has been used to recycle waste heat to improve efficiency of conventional distillation columns. In this context, this work evaluated
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13

Krejčí, S., J. Komůrka, E. Gemza, J. Kašpar, and F. Wergner. "Vapour recompression by ejectors." Journal of Heat Recovery Systems 5, no. 5 (1985): 441–44. http://dx.doi.org/10.1016/0198-7593(85)90177-8.

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14

Liu, C. L., Z. Y. Li, N. Hao, W. J. Bian, and Q. Chen. "Supercritical CO2 recompression Brayton power cycle for hybrid concentrating solar and biomass power plant." Journal of Physics: Conference Series 2723, no. 1 (2024): 012007. http://dx.doi.org/10.1088/1742-6596/2723/1/012007.

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Abstract The supercritical CO2 Brayton cycle has great potential in various renewable energy systems. The supercritical CO2 recompression Brayton power cycle for hybrid concentrating solar and biomass power plant is proposed and analyzed in this paper. The supercritical CO2 is heated by both the molten salt and flue gas from the biomass boiler. The inlet temperature of the turbine in the supercritical CO2 recompression Brayton power cycle for hybrid power plant rises to 620 °C. The waste heat from the system is recovered by the steam turbine to improve energy utilization efficiency. The effici
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15

MATSUDA, HIROSHI, TRAN THANH NHAN, and RYOHEI ISHIKURA. "EXCESS PORE WATER PRESSURE ACCUMULATION AND RECOMPRESSION OF SATURATED SOFT CLAY SUBJECTED TO UNI-DIRECTIONAL AND MULTI-DIRECTIONAL CYCLIC SIMPLE SHEARS." Journal of Earthquake and Tsunami 07, no. 04 (2013): 1250027. http://dx.doi.org/10.1142/s1793431112500273.

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This paper is to investigate the effect of cyclic shear direction (or phase difference) on the accumulation of excess pore water pressure during cyclic shear and on the recompression after cyclic shear. Several series of uni-directional and multi-directional cyclic simple shear tests under undrained condition were carried out for normally consolidated Kaolin. From the test results it is shown that the accumulation of pore water pressure and the post-cyclic settlement increase with the shear strain amplitude and the phase difference. The values of the shear strain amplitude at which the effect
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16

Li, Zhuofeng, Yiwei Zhu, Chenggong Xu, Kaiwen Yang, Xiaobing Xu, and Huajian Fang. "Rebound Calculation for Deep Excavation in Soft Soil Based on Rebound-Recompression Method." Sustainability 15, no. 13 (2023): 10019. http://dx.doi.org/10.3390/su151310019.

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The excavation-induced stress relief and inward movement of the retaining wall will result in soil rebound deformation at the bottom of the excavation, adversely affecting nearby existing tunnels and foundation piles. Various existing methods for calculating the excavation rebound rely on rebound parameters and void ratio obtained from laboratory tests, without considering the effects of sampling, specimen preparation and laboratory procedures on the rebound parameters. As a result, a novel method is proposed in this article for calculating excavation rebound based on rebound-recompression met
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17

Gupta, Pradeep, Pramod Kumar, and Srisha M. V. Rao. "Low-frequency unsteadiness of recompression shock structures in the diffuser of supersonic ejectors." Physics of Fluids 35, no. 3 (2023): 036119. http://dx.doi.org/10.1063/5.0137051.

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Supersonic ejectors are passive gasdynamic devices that compress a low-pressure fluid by utilizing the kinetic energy of a high-pressure fluid in a variable area duct. The ejector consists of a primary supersonic nozzle in a mixing duct where the secondary flow is entrained and mixed. The mixed flow can undergo a series of recompression shocks resulting in a subsonic flow in the diverging portion to aid pressure recovery. Recompression shocks usually lead to unsteady shock boundary layer interactions. The performance of the ejector is influenced by shear layers, shock and expansion waves, and
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18

Al-Taie, Abbas, and Ahmed Al-Bayati. "APPLICATION OF ARTIFICIAL NEURAL NETWORKS TO PREDICT SOIL RECOMPRESSION INDEX AND RECOMPRESSION RATIO." Kufa Journal of Engineering 09, no. 4 (2018): 246–57. http://dx.doi.org/10.30572/2018/kje/090417.

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19

Wu, Pan, Chuntian Gao, Yanping Huang, Dan Zhang, and Jianqiang Shan. "Supercritical CO2 Brayton Cycle Design for Small Modular Reactor with a Thermodynamic Analysis Solver." Science and Technology of Nuclear Installations 2020 (January 24, 2020): 1–16. http://dx.doi.org/10.1155/2020/5945718.

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Coupling supercritical carbon dioxide (S-CO2) Brayton cycle with Gen-IV reactor concepts could bring advantages of high compactness and efficiency. This study aims to design proper simple and recompression S-CO2 Brayton cycles working as the indirect cooling system for a mediate-temperature lead fast reactor and quantify the Brayton cycle performance with different heat rejection temperatures (from 32°C to 55°C) to investigate its potential use in different scenarios, like arid desert areas or areas with abundant water supply. High-efficiency S-CO2 Brayton cycle could offset the power conversi
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20

Ai, Songhui, Baolong Wang, Xianting Li, and Wenxing Shi. "Comparison of mechanical vapor recompression technology for solution regeneration in heat-source tower heat pumps." Building Services Engineering Research and Technology 40, no. 3 (2018): 360–78. http://dx.doi.org/10.1177/0143624418817461.

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Solution regeneration of the heat-source tower is significant to guarantee the normal operation of the heat-source tower. Mechanical vapor recompression system is an efficient system for evaporation of solution. In this paper, mechanical vapor recompression system is applied to regenerate solution of heat-source tower. To clarify the merits of mechanical vapor recompression solution regeneration system, several typical solution regeneration systems are modelled. As a result, mechanical vapor recompression shows 35.7%, 73.5% and 91.2% energy saving compared to air-driven heat pump, three-effect
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21

Kim, Woo-Jeong. "Recompression Therapy in Decompression Sickness." Journal of Medicine and Life Science 3, no. 1 (2005): 51–58. http://dx.doi.org/10.22730/jmls.2005.3.1.51.

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Purpose: Decompression sickness (DCS) is a spectrum of clinical illness that result from the formation of small bubbles of nitrogen gas in the blood and tissue. The purpose of this study was to find the characteristics of DCS in Jeju.Methods: A total of 44 cases that were treated with recompression therapy for DCS in Cheju National University Hospital from February 2002 to May 2005 were reviewed retrospectively. According to professional diving, professional group (n=27) and non-professional group (n=17) were compared. Also, according to DCS type, DCS type I group (n=21) and DCS type II group
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22

Bergmüller, Thomas, Eleftherios Christopoulos, Kevin Fehrenbach, Martin Schnöll, and Andreas Uhl. "Recompression effects in iris recognition." Image and Vision Computing 58 (February 2017): 142–57. http://dx.doi.org/10.1016/j.imavis.2016.08.003.

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23

Riffat, S. B., N. J. Shankland, and C. W. Wong. "Rotary absorption - recompression heat pump." Building Services Engineering Research and Technology 15, no. 1 (1994): 27–30. http://dx.doi.org/10.1177/014362449401500105.

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24

Riffat, S. B., and C. W. Wong. "Gas-driven absorption/recompression system." Heat Recovery Systems and CHP 14, no. 2 (1994): 165–71. http://dx.doi.org/10.1016/0890-4332(94)90007-8.

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25

Bethge, D. "Energy recovery using vapour recompression." Vakuum in Forschung und Praxis 18, no. 2 (2006): 8–10. http://dx.doi.org/10.1002/vipr.200600285.

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26

Valencia-Ochoa, Guillermo, Jorge Duarte-Forero, and Daniel Mendoza-Casseres. "Multi-Objective Optimization of the Energy, Exergy, and Environmental Performance of a Hybrid Solar–Biomass Combined Brayton/Organic Rankine Cycle." Energies 18, no. 1 (2025): 203. https://doi.org/10.3390/en18010203.

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This research proposes integrating a combined system from a supercritical Brayton cycle (SBC) at extremely high temperatures and pressures and a conventional ORC cycle. The ORC cycle was evaluated with three working fluids: acetone, toluene, and cyclohexane. Of these, the cyclohexane, thanks to its dry fluid condition, obtained the best result in the sensitivity analysis for the energetic and exergetic evaluations with the most relevant (net power and exergy destruction) for the variation in the most critical performance parameter of the system for both the configuration with reheat and the co
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Correa, Faustino, Rodrigo Barraza, Yen Chean Soo Too, Ricardo Vasquez Padilla, and José M. Cardemil. "Optimized operation of recompression sCO2 Brayton cycle based on adjustable recompression fraction under variable conditions." Energy 227 (July 2021): 120334. http://dx.doi.org/10.1016/j.energy.2021.120334.

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28

Liu, Qingzhong. "An approach to detecting JPEG down-recompression and seam carving forgery under recompression anti-forensics." Pattern Recognition 65 (May 2017): 35–46. http://dx.doi.org/10.1016/j.patcog.2016.12.010.

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29

Tsompanoglou, Konstantinos, Olga P. Koutsou, and Athanasios S. Stasinakis. "Evaluating the Operation of a Full-Scale Sequencing Batch Reactor–Reverse Osmosis–Evaporation System Used to Treat Landfill Leachates: Removal of Pollutants, Energy Consumption and Greenhouse Gas Emissions." Energies 16, no. 19 (2023): 6872. http://dx.doi.org/10.3390/en16196872.

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Limited information is available in the literature regarding the energy consumption and the greenhouse gases emitted during landfill leachates treatment. A full-scale landfill leachates treatment system that included primary sedimentation, biological treatment in sequencing batch reactors, reverse osmosis and mechanical vapor recompression evaporation was monitored and evaluated for the removal of major pollutants, energy consumption and greenhouse gas emissions. Samples were taken during a period of two years from different points of the system, while the actual power consumption was calculat
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30

Bebendorf, M., and S. Kunis. "Recompression techniques for adaptive cross approximation." Journal of Integral Equations and Applications 21, no. 3 (2009): 331–57. http://dx.doi.org/10.1216/jie-2009-21-3-331.

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31

Muhrer, Cristian A., Michael A. Collura, and William L. Luyben. "Control of vapor recompression distillation columns." Industrial & Engineering Chemistry Research 29, no. 1 (1990): 59–71. http://dx.doi.org/10.1021/ie00097a010.

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32

Wu, S., and I. W. Eames. "A novel absorption–recompression refrigeration cycle." Applied Thermal Engineering 18, no. 11 (1998): 1149–57. http://dx.doi.org/10.1016/s1359-4311(98)00041-6.

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33

Nonaka, Yosuke. "Operating Experience of Vapor Recompression Evaporator." JAPAN TAPPI JOURNAL 72, no. 5 (2018): 473–76. http://dx.doi.org/10.2524/jtappij.72.473.

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34

Bauschke, H. H., C. H. Hamilton, M. S. Macklem, J. S. McMichael, and N. R. Swart. "Recompression of JPEG images by requantization." IEEE Transactions on Image Processing 12, no. 7 (2003): 843–49. http://dx.doi.org/10.1109/tip.2003.812375.

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35

Jun, Deuk Soo, Do Hyun Moon, Young Kyu Ko, et al. "Vertebral Recompression after Vertebroplasty or Kyphoplasty." Journal of the Korean Fracture Society 28, no. 2 (2015): 110. http://dx.doi.org/10.12671/jkfs.2015.28.2.110.

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36

Grasedyck, L. "Adaptive Recompression of -Matrices for BEM." Computing 74, no. 3 (2004): 205–23. http://dx.doi.org/10.1007/s00607-004-0103-1.

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37

Siddiqui, Muhammad Ehtisham, and Khalid H. Almitani. "Proposal and Thermodynamic Assessment of S-CO2 Brayton Cycle Layout for Improved Heat Recovery." Entropy 22, no. 3 (2020): 305. http://dx.doi.org/10.3390/e22030305.

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This article deals with the thermodynamic assessment of supercritical carbon dioxide (S-CO2) Brayton power cycles. The main advantage of S-CO2 cycles is the capability of achieving higher efficiencies at significantly lower temperatures in comparison to conventional steam Rankine cycles. In the past decade, variety of configurations and layouts of S-CO2 cycles have been investigated targeting efficiency improvement. In this paper, four different layouts have been studied (with and without reheat): Simple Brayton cycle, Recompression Brayton cycle, Recompression Brayton cycle with partial cooli
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38

Song, Ping, Zhenxing Zhao, Lie Chen, et al. "Research on Dynamic Modeling of the Supercritical Carbon Dioxide Power Cycle." Processes 9, no. 11 (2021): 1946. http://dx.doi.org/10.3390/pr9111946.

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The supercritical carbon dioxide (SCO2) Brayton cycle, as a substitute for the steam cycle, can be widely used in a variety of power generation scenarios. However, most of the existing SCO2 cycle studies are restricted to basic thermodynamics research, parameter optimizations, system design in different application fields, and even economic analysis. Considering the load variability and control flexibility of the power generation system, the dynamic performance research of the SCO2 cycle is also crucial, but the work done is still limited. Based on the previous studies, Simulink software is us
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Brown, Jeffrey A., Catherine Coursaget, Mark C. Preul, and Devdutta Sangvai. "Mercury water and cauterizing stones: Nicolas André and tic douloureux." Journal of Neurosurgery 90, no. 5 (1999): 977–81. http://dx.doi.org/10.3171/jns.1999.90.5.0977.

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✓ In his 1756 text, Observations pratiques sur les maladies de l'urèthre et sur plusiers faits convulsifs, Nicolas André coined the term “tic douloureux.” He believed that this pain originated from compression of facial sensory peripheral nerves. Using scientific observation and experimentation to confirm this hypothesis, he reproduced the tic pain and treated it by using careful efforts to remove adhesions from the nerve with a caustic solution of mercury water. Believing that recurrence of the pain was a result of early closure of the wound, with recompression of the nerve being the direct c
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Yang, Xiaoping, and Zhuodi Cai. "Thermodynamic performance analysis of supercritical carbon dioxide Brayton cycle." Thermal Science, no. 00 (2020): 294. http://dx.doi.org/10.2298/tsci200314294y.

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S-CO2 (supercritical carbon dioxide) is used as working fluid for power system cycle. This paper presents thermodynamic performance analysis results on S-CO2 Brayton cycle. Based on the assumptions of the relevant initial parameters, the mathematical models of compressor, turbine, recuperator and heater are constructed, and the thermal efficiency of regenerative Brayton cycle and recompression Brayton cycle are calculated and analyzed. The results reveal that the efficiency of the recompression cycle is higher than that of the simple regenerative cycle. The effects of inlet temperature, inlet
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41

Hyldegaard, O., D. Kerem, and Y. Melamed. "Effect of combined recompression and air, oxygen, or heliox breathing on air bubbles in rat tissues." Journal of Applied Physiology 90, no. 5 (2001): 1639–47. http://dx.doi.org/10.1152/jappl.2001.90.5.1639.

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The fate of bubbles formed in tissues during the ascent from a real or simulated air dive and subjected to therapeutic recompression has only been indirectly inferred from theoretical modeling and clinical observations. We visually followed the resolution of micro air bubbles injected into adipose tissue, spinal white matter, muscle, and tendon of anesthetized rats recompressed to and held at 284 kPa while rats breathed air, oxygen, heliox 80:20, or heliox 50:50. The rats underwent a prolonged hyperbaric air exposure before bubble injection and recompression. In all tissues, bubbles disappeare
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42

Wu, Minjian, Yixing Geng, Dahui Wang, and Yanying Zhao. "A Sub-Picosecond Laser System Based on High-Energy Yb:YAG Chirped-Pulse Regenerative Amplification." Photonics 11, no. 1 (2024): 90. http://dx.doi.org/10.3390/photonics11010090.

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In this study, we have successfully demonstrated a high-energy subpicosecond Yb:YAG laser system based on chirped-pulse regenerative amplification. Our experimental results demonstrate a pulse energy of 3 mJ with a pulse duration of 829.8 fs and a repetition rate of 1 kHz. Additionally, we conducted an extensive investigation into the system’s recompression capability under various modulation and seeding conditions. Our findings suggest that the system can achieve effective recompression over a broad range of parameters, with the ability to compensate for a considerable degree of chirp. Our st
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43

Li, Kai, and Kai Sun. "Influence of Supercritical Carbon Dioxide Brayton Cycle Parameters on Intelligent Circulation System and Its Optimization Strategy." Journal of Physics: Conference Series 2066, no. 1 (2021): 012074. http://dx.doi.org/10.1088/1742-6596/2066/1/012074.

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Abstract The supercritical carbon dioxide (SCO2) Brayton cycle takes advantage of the special physical properties of carbon dioxide near the critical point (31.1 °C, 7.39MPa), and has higher energy conversion efficiency than the current large-scale steam power cycle. This cycle can be widely used in the field of power generation, but a lot of research work is still needed in terms of component parameters and layout under different working conditions. In this regard, the purpose of this paper is to study the influence of supercritical carbon dioxide Brayton cycle parameters on cycle efficiency
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44

Chin, Walter, Ellie Joo, Scott Ninokawa, Daniel A. Popa, and Derek B. Covington. "Efficacy of the U.S. Navy Treatment Tables in treating DCS in 103 recreational scuba divers." Undersea and Hyperbaric Medicine 44, no. 5 (2017): 399–405. http://dx.doi.org/10.22462/9.10.2017.5.

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Despite the fact that current decompression schedules reduce the risk of decompression sickness (DCS), recreational scuba divers continue to experience DCS. Therapy outcomes in these divers are difficult to track. Our study aims to understand the efficacy of the United States Navy (USN) Treatment Tables (5, 6, 6A, 9) in providing symptomatic relief among recreational scuba divers. We conducted a single-center retrospective review of recreational divers treated from 2003 to 2013. A total of 187 divers were identified: 84 divers were excluded, and the charts of the remaining 103 divers were inde
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Wołowicz, Marcin, Jarosław Milewski, and Gabriel Ziembicki. "Influence of selected cycle components parameters on the supercritical CO2 power unit performance." MATEC Web of Conferences 240 (2018): 05035. http://dx.doi.org/10.1051/matecconf/201824005035.

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The paper presents the influence of selected components parameters on the performance of supercritical carbon dioxide power unit. For this analysis mathematical model of supercritical recompression Brayton cycle was created. The analysis took into consideration changes in the net cycle power and efficiency for different compressor inlet temperatures. The results were obtained for a fixed minimum pressure of 7.4 MPa and fixed recompression split ratio. The studies conducted in this paper included also consideration of sensitivity of the cycle efficiency to a change in recuperators heat transfer
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Ma, Yuegeng, Tatiana Morozyuk, and Jiping Liu. "Development of operation strategy for recompression supercritical CO2 cycle with intercooled main compressor under off-design condition." E3S Web of Conferences 137 (2019): 01020. http://dx.doi.org/10.1051/e3sconf/201913701020.

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The supercritical carbon dioxide (S-CO2) cycle is regarded as a potential option for the next generation power conversion system. Concentrated solar power (CSP) plant is one of the promising scenarios to adopt the S-CO2 cycle due to the appealing thermal efficiency and the ability to integrate thermal storage and dry cooling. Among various cycle configurations of S-CO2 cycle, the recompression S-CO2 cycle with intercooled main compressor is one of the optimal choices that can provide superior efficiency and a large enough temperature differential for thermal input, which together contribute to
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47

Mitchell, Simon, Michael Bennett, Phillip Bryson, et al. "Consensus guideline: Pre-hospital management of decompression illness: expert review of key principles and controversies." Undersea and Hyperbaric Medicine 45, no. 3 (2018): 273–86. http://dx.doi.org/10.22462/05.06.2018.3.

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Guidelines for the pre-hospital management of decompression illness (DCI) had not been formally revised since the 2004 Divers Alert Network/Undersea and Hyperbaric Medical Society workshop held in Sydney, entitled “Management of mild or marginal decompression illness in remote locations.” A contemporary review was initiated by the Divers Alert Network and undertaken by a multinational committee with members from Australasia, the USA and Europe. The process began with literature reviews by designated committee members on: the diagnosis of DCI; first aid strategies for DCI; remote triage of poss
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Nurfantri, Nurfantri. "The Effect of a Combination between In-Water Recompression (IWR) and Leg Posterior Massage Toward Neurotic Symptom for Those Who Suffer Decompression." KLASICS 1, no. 02 (2021): 29–32. http://dx.doi.org/10.46233/klasics.v1i02.491.

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Indonesia has lots of marine biota and has been associated with coral reefs such as sponges, sea urchins, crustaceans, mollusks, and more. In addition, fishery products of Indonesian’s biota are the biggest contributor for marine’s fishery in the world (Burke, 2001). Saponda Laut is an area at Toronipa beach, Konawe. It is inhabited by 90 households and their economic income is from coral reefs and other biota. Most of the fishermen don’t care about the safety stop in a rescue process causes them suffer decompression. This study aims to obtain the effect of a combination between in-water recom
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Hofstetter, Daniel W., and Jude Liu. "Power Requirement and Energy Consumption of Small Bale Recompression." Journal of the ASABE 67, no. 3 (2024): 689–98. http://dx.doi.org/10.13031/ja.15469.

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Highlights Compression pressure has a nonlinear relationship with bale density. Increasing compression speed increased the energy, power, and specific energy required to recompress bales. The effect of speed on compression pressure and density was dependent on type of crop. Abstract. Biomass densification can reduce space needs during storage and transportation. It is important to quantify the amount of energy needed to densify biomass. Small bales (0.36 × 0.46 × 0.86 m) of herbaceous biomass crops, corn stover, indiangrass, switchgrass, and wheat straw, were recompressed in a compression cham
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Ravi, Nikhil, Matthew J. Roelle, Adam F. Jungkunz, and J. Christian Gerdes. "MODEL BASED CONTROL OF EXHAUST RECOMPRESSION HCCI." IFAC Proceedings Volumes 40, no. 10 (2007): 295–302. http://dx.doi.org/10.3182/20070820-3-us-2918.00041.

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