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Artykuły w czasopismach na temat "Gay Games (6th"

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Demirhan, Bilal, İhsan Kısadere, Mehmet Kılıç, Süleyman Patlar, Mehmet Günay, Kanat Dzhanuzakov i Hasan Güzelbekteş. "SEASONAL VARIATIONS IN BLOOD PARAMETERS AMONG KYRGYZ ELITE JUDO ATHLETES". Revista Brasileira de Medicina do Esporte 26, nr 5 (październik 2020): 406–9. http://dx.doi.org/10.1590/1517-8692202026052019_0032.

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ABSTRACT Introduction: Evaluation of health status and physical condition of Kyrgyz Judo Athletes before the Olympic Games. Objective: To evaluate changes in hematological, biochemical and blood gas values of athletes during the training period. Methods: Eight elite athletes (n=8 men), participated to the study. Before and after the exercise periods (baseline, 3rd month and 6th month), blood samples were taken, to determine plasma red blood cell (RBC), white blood cell (WBC), blood clot cell (PLT), granulocyte (NOTR) and agranulocyte (LNF) counts, hemoglobin (HGB) and hematocrit (HCT) values, mean corpuscular volume (MCV), mean corpuscular hemoglobin concentration (MCHC), and venous blood pH, PO2, PCO2, SAT O2, HCO3, BE, Na, K, Cl values. In addition, serum glucose (Glu), total protein (TP), total cholesterol (TC), HDL cholesterol, triglyceride (Trig), blood urea nitrogen (BUN), creatinine (Creat), lactate dehydrogenase (LDH) and creatine phosphokinase (CPK) values were measured. Results: Although, the athletes’ WBC and LNF counts increased significantly (p<0.05) in post-exercise periods, no statistical significance (p>0.05) was found in the other hematological parameters. Blood pH, pCO2, HCO3 and BE values decreased (P<0.05) after the exercise periods. Conclusion: The effects of exercise on judo athletes were evaluated before the Olympics. Level of Evidence III; Case-control study.
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Rozprawy doktorskie na temat "Gay Games (6th"

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Burns, Kellie Jean, i n/a. "Blood, sweat and queers : (re)imagining global queer citizenship at the Sydney 2002 Gay Games". University of Otago. School of Physical Education, 2008. http://adt.otago.ac.nz./public/adt-NZDU20080514.131842.

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This thesis takes the Sydney 2002 Gay Games: Under New Skies �02, as a case study into the production of global queer citizenship. In the existing body of work around the Gay Games they are analysed as an international gay and lesbian sporting event (Cramer, 1996; Krane et al., 2001; Pronger, 2000; Waitt, 2005), as a gay and lesbian community event (Krane & Waldron, 2000; Symons, 2002, 2004; Waitt, 2003, 2006), and as a cultural site where discourses of nationality, sport and sexuality converge (Miller, 2001; Probyn, 2000; Rowe et al., 2006; Stevenson et al., 2005; Waitt, 2005; Waitt & Markwell, 2006). This thesis builds on these investigations, asking specific questions about the ways in which discourses of sexuality and citizenship are produced and governed within and across the Sydney 2002 Gay Games promotional and media materials. The analysis is guided by Michel Foucault�s notion of governmentality (1991) and the works of related theorists who map the disparate array of neoliberal mechanisms of government that �conduct the conduct� and �act on the actions� of individuals and certain populations (Bratich et al., 2003; Gordon, 1991; Larner, 2000; Larner & Walters, 2002, 2004; Miller, 1993; Rabinow & Rose, 2003; Rose, 1996a, 1999). The analysis begins by asking how discourses of the autonomous, neo-liberal subject converge with discourses of �global living� such that individuals are invited to imagine themselves as increasingly flexible, freedom-loving (Rose, 1999), self-assured, cosmopolitan global citizens. The idea of the global imagination is then used to explore the ways in which the Gay Games commitment to �total inclusion� and its promise of personal and community transformation rely on similar neo-liberal renderings of tbe subject. It argues that the event�s �political� promises not only normalise certain forms of identity-based consumption (Chasin, 2000), they also (re)produce and normalise a very entrepreneurial, western-centric, cosmopolitan �brand� of global queer citizenship. The thesis also emphasises the important role that images and image-related technologies played in upholding normative meanings around queer sexuality and queer citizenship at the Games. In doing so, the thesis argues that images and technologies do more than simply represent individuals� lived experiences. Images, it argues, are (inter)active entities that produce and shape individuals� understanding of the �real� and how they come to know themselves as certain types of subjects. Where the Sydney 2002 Gay Games were concerned, images were integral in producing normative meanings around gender, sexuality and citizenship and in governing participants� experiences as �locals�, �global visitors�, �athletes�, �cultural participants� and consumers.
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Książki na temat "Gay Games (6th"

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1956-, Gale J., Kaya Yōichi 1934- i IEA Greenhouse Gas R & D Programme., red. Greenhouse gas control technologies: Proceedings of the 6th International Conference on Greenhouse Gas Control Technologies, 1-4 October 2002, Kyoto, Japan. Amsterdam: Pergamon, 2003.

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D, Kinney Christian, i 1st Century Project, red. The XXVI Olympiad: Atlanta 1996, Nagano 1998. Los Angeles: World Sport Research & Publications, 2000.

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(Editor), John Gale, i Yoichi Kaya (Editor), red. Greenhouse Gas Control Technologies - 6th International Conference (Tribology Series, Vol 41). Pergamon, 2003.

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(Editor), John Gale, i Yoichi Kaya (Editor), red. Greenhouse Gas Control Technologies - 6th International Conference (Tribology Series, Vol 41). Pergamon, 2003.

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Journals, Xfuture. Level 63 Unlocked Celebrate 63th Birthday Video Game: 6x9 Journal for Writing down Daily Habits,Diary,Notebook,Gag Gift -120 Pages-. Independently Published, 2020.

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Części książek na temat "Gay Games (6th"

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GALE, J., F. DELACHESHNAYE i M. VIANIO. "The Non-CO2 Greenhouse Gases Network". W Greenhouse Gas Control Technologies - 6th International Conference, 1787–90. Elsevier, 2003. http://dx.doi.org/10.1016/b978-008044276-1/50298-1.

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ZHENG, X., Y. DIAO, B. HE, C. CHEN, X. XU i W. FENG. "Carbon Dioxide Recovery from Flue Gases By Ammonia Scrubbing". W Greenhouse Gas Control Technologies - 6th International Conference, 193–97. Elsevier, 2003. http://dx.doi.org/10.1016/b978-008044276-1/50031-3.

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KAWAKAMI, K., T. CHIKAHISA i Y. HISHINUMA. "Analysis of Cogeneration Network Systems Effective for Reducing Greenhouse Gases". W Greenhouse Gas Control Technologies - 6th International Conference, 1713–16. Elsevier, 2003. http://dx.doi.org/10.1016/b978-008044276-1/50282-8.

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IIDA, Y., i M. MORITA. "Simplified Monitoring Technique of HFC Mixed Gases in a Coolant Recycle System". W Greenhouse Gas Control Technologies - 6th International Conference, 1807–10. Elsevier, 2003. http://dx.doi.org/10.1016/b978-008044276-1/50303-2.

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COELHO, L., J. AZEVEDO i M. CARVALHO. "Numerical Study of Boiler Retrofitting to Use Recirculated Flue Gases with O2 Injection". W Greenhouse Gas Control Technologies - 6th International Conference, 1567–70. Elsevier, 2003. http://dx.doi.org/10.1016/b978-008044276-1/50247-6.

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AMORELLI, A., M. WILKINSON, P. BEDONT, P. CAPOBIANCO, B. MARCENARO, F. PARODI i A. TORAZZA. "An Experimental Investigation Into the Use of Molten Carbonate Fuel Cells to Capture CO2 from Gas Turbine Exhaust Gases". W Greenhouse Gas Control Technologies - 6th International Conference, 1325–30. Elsevier, 2003. http://dx.doi.org/10.1016/b978-008044276-1/50210-5.

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Streszczenia konferencji na temat "Gay Games (6th"

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Baek, Seugnwhan, Yongmin Kim i Joongmyeon Bae. "Effect of Anode-Off Gas Recirculation at Solid Oxide Fuel Cell System". W ASME 2008 6th International Conference on Fuel Cell Science, Engineering and Technology. ASMEDC, 2008. http://dx.doi.org/10.1115/fuelcell2008-65043.

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The aim of this work is to analyze system efficiency when anode-off gases are recirculated at a diesel driven solid oxide fuel cell system. Diesel was chosen as a fuel due to advantages of its high energy density and well-established infrastructure. Three systems were mainly investigated which have different system configurations. First system does not use recirculation of anode-off gas at the system. At second model anode-off gases are recirculated to a diesel reformer in the system. Finally anode-off gases are recirculated to the anode side of a solid oxide fuel cell stack. Three different systems are compared in terms of total efficiency, performances of diesel reformer and solid oxide fuel cell. It was found that various inlet conditions and split conditions would make differences of total efficiencies and component performances at the three different systems.
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Dora, Y., A. Chakraborty, L. McCarthy, S. Keller, S. DenBaars i U. Mishra. "High-Breakdown Voltage AlGaN/GaN HEMTs using trench gates". W 2006 64th Device Research Conference. IEEE, 2006. http://dx.doi.org/10.1109/drc.2006.305166.

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Qazi Zade, Azad, Metin Renksizbulut i Jacob Friedman. "Boundary Conditions for Multi-Component Slip-Flows Based on the Kinetic Theory of Gases". W ASME 2008 6th International Conference on Nanochannels, Microchannels, and Minichannels. ASMEDC, 2008. http://dx.doi.org/10.1115/icnmm2008-62178.

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General temperature-jump, velocity-slip, and concentration-jump conditions on solid surfaces in rarefied multi-component gas flows are developed using the kinetic theory of gases. The presented model provides general boundary conditions which can be simplified according to the problem under consideration. In some limiting cases, the results of the current work are compared to the previously available and widely used boundary conditions reported in the literature. The details of the mathematical procedure are also provided to give a better insight about the physical importance of each term in the slip/jump boundary conditions. Also the disagreements between previously reported results are investigated to arrive at the most proper expressions for the slip/jump boundary conditions. The temperature-jump boundary condition is also modified to handle polyatomic gas flows unlike previously reported studies which were mostly concerned with monatomic gases.
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Ottino, Gabriele, Luca Ratto i Massimiliano Maritano. "A Joined MBL-Zonal Method Technique for Evaluating Radiative Thermal Loads Into Combustion Chambers of Industrial Gas Turbines". W ASME 2011 Turbo Expo: Turbine Technical Conference and Exposition. ASMEDC, 2011. http://dx.doi.org/10.1115/gt2011-45675.

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Thermal radiation is typically one of the most important phenomenon to be taken into account in the evaluation of combustor walls thermal loads due to the high temperatures reached into them. A classical approach is based on the so called Zonal Method, originally developed by Hottel and Sarofim (1967), and actually widely employed in the industrial environment. Even if its accuracy has been largely demonstrated, its efficiency is affected by computational costly solution of 4th – 6th fold integrals constituting the DEAs. A direct integration is usually employed, subsequently smoothing the results in order to obey the conservation constraints. The last decades have seen a growing interest on developing new techniques able to simplify these time consuming direct numerical integrations. Among them one of the most promising approaches has been recently introduced by Yuen (2008) which is based on the classic Mean Beam Length concept. The emittance (absorptance) coefficients of the radiating (receiving) gas volume zones of cubic shape are treated as those of a grey gas filled hemisphere. According to Yuen (2008), a correlative expression has been employed for evaluating the MBL corresponding to each single volume zone. In the present work its application has been extended to more complex zone shapes by means of an Artificial Neural Network trained on a properly selected geometry database. In this way the DEA integral folds can be all reduced to the 4th order, and, employing well known geometrical techniques (Walton, 2002), can be further decreased to lower order integrals. The proposed model has been compared with 3D benchmark test cases available in literature: the accuracy has been tested against the results of DTM, FVM and classical Zonal Method. Moreover an industrial application is shown. The geometry of the AE94.2 gas turbine combustion chamber has been considered; the gas mixture has been treated as a non-grey gas using the well known Weighted Sum of Gray Gases (WSGG) model. In comparison with the classical zonal method approach, the efficiency of the proposed one demonstrates the possibility of a zone refinement enabling a more accurate evaluation of radiative thermal loads at the same computational cost. Results are presented and discussed.
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Kotani, Junji, Masafumi Tajima i Tamotsu Hashizume. "Analysis of lateral surface leakage in the vicinity of Schottky gates in AlGaN/GaN HEMTs". W 2007 65th Annual Device Research Conference. IEEE, 2007. http://dx.doi.org/10.1109/drc.2007.4373642.

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Rensink, Dirk, Jo¨rg Roth i Stephan Fell. "Liquid Water Transport and Distribution in Fibrous Porous Media and Gas Channels". W ASME 2008 6th International Conference on Nanochannels, Microchannels, and Minichannels. ASMEDC, 2008. http://dx.doi.org/10.1115/icnmm2008-62087.

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In a polymer electrolyte membrane (PEM) fuel cell water is produced by electrochemical reactions in the catalyst layer on the cathode side. The water diffuses through the catalyst layer and a fibrous substrate into gas channels where it is transported away by convection. The fibrous substrate represents the gas diffusion media (GDM). Sometimes the GDM has a thin microporous layer on the side facing the catalyst layer. The same layer structure can be found on the anode side. All layers together are the porous layers of a PEM fuel cell. Under certain operating conditions condensation can occur in the porous layers which might lead to flooding conditions and — if the liquid water forms droplets which grow together in the gas channels — the complete blockage of the channels. Both situations can lead to a local starvation of reactant gases with negative impact on fuel cell performance and durability. The void space of the hydrophobic fibrous substrate in a PEM fuel cell can be interpreted as micro channels in a broader sense, especially if liquid phase transport from the catalyst layer towards the gas channels is in focus. Due to the small dimensions with effective channel diameter in the range of micrometer the flow of liquid water is governed by capillary forces. The same applies for the gas channels at low gas velocities since the Bond and Capillary numbers are well below one. Thus the investigation of liquid water flow and distribution under low gas velocities in the hydrophobic fibrous substrate and the spreading of liquid water along the hydrophilic gas channel walls under capillary action is of special interest for PEM fuel cells and investigated here.
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Dalet, Corinne, Olivier Lottin, Gae¨l Maranzana i Mouad Diny. "Criteria for Characterizing the Performances of Fuel Cell Humidifiers: Theoretical Approach and Experimental Results". W ASME 2008 6th International Conference on Fuel Cell Science, Engineering and Technology. ASMEDC, 2008. http://dx.doi.org/10.1115/fuelcell2008-65182.

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In a proton exchange membrane fuel cell (PEMFC), humidification of reactant gases must be carefully optimized. Extremes in humidity levels at the low end (membrane dehydratation) and at the high end of the range (cathode flooding) can seriously reduce PEMFC performances. Various devices already exist to humidify and to adjust the temperature of gas streams. Criteria for the evaluation of their performances depend on the technology and/or differ from one manufacturer to the other, which makes comparison difficult. A fortiori, there is no consensus regarding their ideal values and no general method for their evaluation. The purpose of this article is to define two parameters (efficiencies) suitable for all humidification technologies and characterizing air humidifier performances in term of mass and heat transfer. These parameters allow to compare the different technologies and to define, for all of them, the range of performances required to supply fuel cells with properly humidified gases.
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Owejan, Jon P., Jeffrey J. Gagliardo, Jacqueline M. Sergi i Thomas A. Trabold. "Two-Phase Flow Considerations in PEMFC Design and Operation". W ASME 2008 6th International Conference on Nanochannels, Microchannels, and Minichannels. ASMEDC, 2008. http://dx.doi.org/10.1115/icnmm2008-62037.

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A proton exchange membrane fuel cell (PEMFC) must maintain a balance between the hydration level required for efficient proton transfer and excess liquid water that can impede the flow of gases to the electrodes where the reactions take place. Therefore, it is critically important to understand the two-phase flow of liquid water combined with either the co-flowing hydrogen (anode) or air (cathode) streams. In this paper, we describe the design of an in-situ test apparatus that enables investigation of two-phase channel flow within PEMFCs, including the flow of water from the porous gas diffusion layer (GDL) into the channel gas flows; the flow of water within the bipolar plate channels themselves; and the dynamics of flow through multiple channels connected to common manifolds which maintain a uniform pressure differential across all possible flow paths. These two-phase flow effects have been studied at relatively low operating temperatures under steady-state conditions and during transient air purging sequences.
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Saha, Litan Kumar, Eru Kurihara, Wanyuan Shi i Nobuyuki Oshima. "Numerical Study of Pressure Drop in the Separator Channel and Gas Diffusion Layer of Polymer Electrolyte Fuel Cell and Deformation Effect of Porous Media". W ASME 2008 6th International Conference on Nanochannels, Microchannels, and Minichannels. ASMEDC, 2008. http://dx.doi.org/10.1115/icnmm2008-62211.

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The flow behavior in the separator channel and gas diffusion layer (GDL) of a polymer electrolyte fuel cell (PEFC) has been investigated by using a transient, isothermal and three-dimensional numerical model. Gas channel and gas diffusion layers are considered as the important parts of PEFC as they transport reactant gases to the catalyst layer and also byproduct from the catalyst layer. The deformation of GDL plays an important role on the performance of polymer electrolyte fuel cell since the physical properties such as porosity and permeability of the GDL and the cross sectional area of the gas channel are affected by the structural deformation of GDL. In this present investigation, non-uniform deformations shape of GDL are taken into consideration and chosen as in the experimental data. Numerical simulations are performed for a wide range of porosity and permeability values. Further, the effects of these parameters on the pressure distribution are measured. It is revealed that the increase of porosity and permeability parameter caused the decrease of pressure drop (difference of pressure from inlet and outlet) but the decreasing rate is not uniform. It is also found that there is an effective range of porosity and permeability values for which these parameters have a very strong effect on the pressure drop. The results obtained by numerical simulation are also compared with the experimental as well as theoretical solution.
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Mayer, Luke J., i Darryl L. James. "Experimental Analysis of Flow Crossover in a Solar Thermochemical Reactor". W ASME 2012 10th International Conference on Fuel Cell Science, Engineering and Technology collocated with the ASME 2012 6th International Conference on Energy Sustainability. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/fuelcell2012-91398.

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As energy and fuel security continue to be of increasing importance to economies around the world, countries are looking to move away from oil dependency. Energy solutions are being sought in the area of solar fuels to meet these growing needs. Concentrated solar thermochemical technology has the potential to directly convert sunlight into a useable, carbon-neutral liquid fuel that can be easily stored and integrated into our existing forms of energy demand such as transportation and heating fuels. Ongoing research performed by several groups at Sandia National Laboratories seeks to fundamentally understand the complex physics and chemistry occurring within a solar thermochemical reactor prototype named the CR5 [counter-rotating-ring receiver/reactor/recuperator]. The CR5 utilizes a stack of counter-rotating disks with metal oxide reactive material fins which are cycled through oxidation and reduction zones. The metal oxide is thus used to reduce H2O and CO2 into H2 and CO respectively, which can be combined using known processes to form a liquid fuel. The effectiveness of such a solar thermochemical reactor depends on its ability to efficiently integrate reduction and oxidation reactions, a solar receiver, thermal recuperation, and separation of end product gases. Efficient separation of end product gases within the reactor is of critical importance as without it, the crossover of gases occurs, which results in lower reduction rates, recombination of end product gases, and additional energy spent in downstream processes. A validation reactor model called the CR5v (v for validation) has been fabricated to validate numerical models of the reactor processes. Crossover testing is done without any chemical reactions (therefore with no O2 or H2 present), but rather by examining the flow of CO2 and Argon. This work presents experimental crossover for the CR5v reactor as a function of ring rotation speed, internal purge gas, and sweep gas to injection gas ratio. Initial crossover experimental results from the CR5v reactor suggest that crossover levels are largely not affected by ring rotation, center purge or injection gas/sweep gas ratio. Argon flow remained on average at a crossover value of 52 %, while CO2 crossover levels were on average around 8 %. The crossover flow in the system is thought to be dominated by the flow rates of the two pumps used in the system and to a lesser degree, the geometry of the system.
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