Literatura académica sobre el tema "Energy"

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Artículos de revistas sobre el tema "Energy"

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Shirzeh, Hassan, Fazel Naghdy, Philip Ciufo y Montserrat Ros. "Stochastic energy balancing in substation energy management". AIMS Energy 3, n.º 4 (2015): 810–37. http://dx.doi.org/10.3934/energy.2015.4.810.

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Inoue, Sho, Shun Ikemoto, Tomoyuki Funaki, Ryosuke Ito, Hidetoshi Ohkubo, Natsuo Suzuki y Yousuke Yamamoto. "Education of Energy through Energy Contest". International Conference on Business & Technology Transfer 2010.5 (2010): 142–47. http://dx.doi.org/10.1299/jsmeicbtt.2010.5.0_142.

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A. Gabbar, Hossam, Ahmed Eldessouky y Jason Runge. "Evaluation of renewable energy deployment scenarios for building energy management". AIMS Energy 4, n.º 5 (2016): 742–61. http://dx.doi.org/10.3934/energy.2016.5.742.

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Jin, Taeyoung. "Improving Korean Energy Efficiency Resource Standards to Vitalize Energy Efficiency Investment". Journal of Energy Engineering 31, n.º 2 (30 de junio de 2022): 87–97. http://dx.doi.org/10.5855/energy.2022.31.2.087.

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Abdullah ALHinai, Humaid, Azrul Mohd Ariffin y Miszina Osman. "Revolutionizing Oman's energy network with an optimal mixture renewable energy source". AIMS Energy 11, n.º 4 (2023): 628–62. http://dx.doi.org/10.3934/energy.2023032.

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<abstract> <p>The electricity demand has increased to 240% during the last decade in the Sultanate of Oman due to population growth and industrial expansion. Solar energy can act as an alternate source of energy production to meet the surge in demand for electric power. Also, the government has planned to derive 30% of the electricity from renewables by 2030. Moreover, agreements have been made to reduce greenhouse gas (GHG) emissions by decreasing 7% by 2030. The main objective of this paper is to design a grid-connected PV solar system based on the real-time data collected from the location called Nizwa, Oman using Hybrid Optimization of Multiple Electric Renewables (HOMER) software. The real-time data of average high and low temperature, solar radiation, estimated monthly average daily sunshine and peak hours of solar radiation of Nizwa has been collected from Meteorological Office Oman for January to December 2022. Nizwa recorded a temperature max of 43 ℃ during summer and 12 ℃ in January. Daily sun radiation in July averages between 5,500 and 6,000 Wh/m<sup>2</sup>, and the average sunshine is 9 hours per day at the selected project area (Nizwa). The collected data has been analyzed and designed using HOMER software. HOMER is used to model, optimize and analyze an integrated energy system that primarily utilizes renewable and non-conventional resources for both grid connected and autonomous systems. A 9-kW grid-connected PV solar panel has been designed and implemented in the proposed system. The proposed PV solar system worked perfectly and gave the results of an estimated number of hours of operation to be 4,362 hrs/year; the cost of energy per kilowatt is $ 0.044 and the annual energy saving cost of the hybrid system is $ 173.696. For the environmental feasibility of producing 14,765 kWh/yr, carbon dioxide emissions have decreased from 7,230,440 g to 4,396.001 g, with a difference of 7,226,043.9 g of carbon dioxide.</p> </abstract>
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Doddamallappanavar, Shweta, Deepa S. Haveri y Asst Prof Chaitanya K. Jambotkar. "Energy Management System Using Renewable Energy Sources". International Journal of Trend in Scientific Research and Development Volume-3, Issue-2 (28 de febrero de 2019): 331–34. http://dx.doi.org/10.31142/ijtsrd21343.

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Assad, Mamdouh El Haj y Siamak Hoseinzadeh. "Editorial to the 'Special Issue-Analyzing energy storage systems for the applications of renewable energy sources' of AIMS Energy". AIMS Energy 10, n.º 5 (2022): 1074–76. http://dx.doi.org/10.3934/energy.2022050.

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Kim, Young-Min, Sun-Youp Lee y Jang-Hee Lee. "Energy Analysis of Constant-Pressure Compressed Air Energy Storage (CAES) Generation System". Journal of Energy Engineering 20, n.º 3 (30 de septiembre de 2011): 178–84. http://dx.doi.org/10.5855/energy.2011.20.3.178.

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Heshmati, Almas, Shahrouz Abolhosseini y Masoomeh Rashidghalam. "Energy security and competition over energy resources in Iran and Caucasus region". AIMS Energy 5, n.º 2 (2017): 224–38. http://dx.doi.org/10.3934/energy.2017.2.224.

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Le-Anh, Tuan. "Energy benchmark and energy saving potential in the pulp and paper industry". AIMS Energy 11, n.º 6 (2023): 1306–27. http://dx.doi.org/10.3934/energy.2023059.

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<abstract> <p>In this research, I established an energy benchmark for the pulp and paper industry of Vietnam. I, therefore, focus on three major paper product families, including packaging paper, printing and writing paper, and tissue paper. In this research, I use specific energy consumption (SEC) as the energy performance indicator (EnPI) for computing energy benchmarks for the main sub-sectors in the pulp and paper industry of Vietnam. The factories in the pulp and paper industry of Vietnam are divided into three production scales, and the energy benchmarks are specified by production scales. Energy surveys and energy audits have been used to calculate energy benchmarks. Here, I establish the energy benchmark for the main sub-sectors in the pulp and paper industry of Vietnam according to the three production scales. I also estimate the energy saving potential for the pulp and paper industry of Vietnam based on surveying and auditing results.</p> </abstract>
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Tesis sobre el tema "Energy"

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Золотова, Світлана Григорівна, Светлана Григорьевна Золотова, Svitlana Hryhorivna Zolotova y T. V. Konoplenko. "Energy producing: solar energy". Thesis, Видавництво СумДУ, 2011. http://essuir.sumdu.edu.ua/handle/123456789/13440.

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Gohar, Ali Hina. "Maximum Power Point Tracking of Photovoltaic system using Non-Linear Controllers". Doctoral thesis, Universitat Autònoma de Barcelona, 2020. http://hdl.handle.net/10803/671122.

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La creixent demanda energètica, l’esgotament dels combustibles fòssils i l’augment de l’escalfament global a causa de l’emissió de carboni ha donat lloc a la necessitat d’un sistema energètic alternatiu, global i respectuós amb el medi ambient. L’energia solar es considera una de les formes d’energia més inesgotables d’aquest univers, però té el problema de la baixa eficiència a causa de les diferents condicions ambientals. El panell solar presenta un comportament no lineal en condicions climàtiques reals i la potència de sortida fluctua amb la variació de la irradiació solar i la temperatura. El canvi de les condicions meteorològiques i el comportament no lineal dels sistemes fotovoltaics suposen un repte en el seguiment de diferents PowerPoint màxims. Per tant, per extreure i lliurar contínuament la màxima potència possible del sistema fotovoltaic, en determinades condicions ambientals, s’ha de formular l’estratègia de control de seguiment del punt de potència màxima (MPPT) que funcioni contínuament el sistema fotovoltaic al seu MPP. Es necessita un controlador no lineal robust per garantir el MPPT mitjançant la manipulació de les línies no lineals d’un sistema i el fa robust contra les condicions ambientals canviants. El control de mode lliscant (SMC) s’utilitza àmpliament en sistemes de control no lineals i s’ha implementat en sistemes fotovoltaics (PVC) per rastrejar MPP. SMC és robust contra les pertorbacions, les incerteses del model i les variacions paramètriques. Representa fenòmens indesitjables com el xerramec, inherent al fet que provoca pèrdues d’energia i calor. En aquesta tesi, en primer lloc, es formula un controlador SMC d’ordre sencer per extreure la màxima potència d’un sistema solar fotovoltaic en condicions climàtiques variables que utilitzen l’esquema MPPT de pertorbació i observació (P \ & O) del sistema fotovoltaic autònom proposat. El sistema proposat consta de dos esquemes de bucles, a saber, el bucle de cerca i el bucle de seguiment. P&O MPPT s’utilitza al bucle de cerca per generar el senyal de referència i un controlador SMC de seguiment s’utilitza a l’altre bucle per extreure la màxima potència fotovoltaica. El sistema fotovoltaic es connecta amb la càrrega mitjançant el convertidor d’alimentació electrònic DC-DC de potència. Primer es deriva un model matemàtic del convertidor d’augment i, basat en el model derivat, es formula un SMC per controlar els impulsos de la porta del commutador del convertidor d’augment. L’estabilitat del sistema de bucle tancat es verifica mitjançant el teorema d’estabilitat de Lyapunov. L’esquema de control proposat es prova amb diferents nivells d’irradiació i els resultats de la simulació es comparen amb el controlador de derivades integrals proporcionals clàssiques (PID). El SMC clàssic representa fenòmens indesitjables com el xerramec, inherent al fet que provoca pèrdues d’energia i calor. A la següent part d’aquesta tesi, es discuteix el disseny del controlador de mode lliscant adaptatiu (ASMC) per al sistema fotovoltaic proposat. El control adoptat s’executa mitjançant un ASMC i la millora s’actualitza mitjançant un algorisme d’optimització MPPT de mètode de cerca de patrons millorats (IPSM). S’utilitza un MPPT IPSM per generar la tensió de referència per tal de comandar el controlador ASMC subjacent. S’ha dut a terme una comparació amb altres dos algoritmes d’optimització, a saber, Perturb \ & Observe (P&O) i Particle Swarm Optimization (PSO) amb IPSM per MPPT. Com a estratègia no lineal, l’estabilitat del controlador adaptatiu es garanteix mitjançant la realització d’una anàlisi de Lyapunov. El rendiment de les arquitectures de control proposades es valida comparant les propostes amb la del conegut i àmpliament utilitzat controlador PID.
La creciente demanda de energía, el agotamiento de los combustibles fósiles y el aumento del calentamiento global debido a la emisión de carbono han hecho surgir la necesidad de un sistema energético alternativo, de eficiencia general y respetuoso con el medio ambiente. La energía solar se considera una de las formas de energía más inagotables de este universo, pero tiene el problema de la baja eficiencia debido a las diferentes condiciones ambientales. El panel solar exhibe un comportamiento no lineal en condiciones climáticas reales y la potencia de salida fluctúa con la variación de la irradiancia solar y la temperatura. Las condiciones climáticas cambiantes y el comportamiento no lineal de los sistemas fotovoltaicos plantean un desafío en el seguimiento de la variación máxima de PowerPoint. Por lo tanto, para extraer y entregar continuamente la máxima potencia posible del sistema fotovoltaico, en determinadas condiciones ambientales, se debe formular la estrategia de control de seguimiento del punto de máxima potencia (MPPT) que opere continuamente el sistema fotovoltaico en su MPP. Se requiere un controlador no lineal robusto para asegurar MPPT manejando las no linealidades de un sistema y haciéndolo robusto frente a condiciones ambientales cambiantes. El control de modo deslizante (SMC) se usa ampliamente en sistemas de control no lineales y se ha implementado en sistemas fotovoltaicos (PVC) para rastrear MPP. SMC es robusto contra perturbaciones, incertidumbres del modelo y variaciones paramétricas. Representa fenómenos indeseables como el parloteo, inherentes a él, que provocan pérdidas de energía y calor. En esta tesis, en primer lugar, se formula un controlador SMC de orden entero para extraer la máxima potencia de un sistema fotovoltaico solar en condiciones climáticas variables empleando el esquema MPPT de perturbar y observar (P&O) para el sistema fotovoltaico autónomo propuesto. El sistema propuesto consta de dos esquemas de bucles, a saber, el bucle de búsqueda y el bucle de seguimiento. P&O MPPT se utiliza en el bucle de búsqueda para generar la señal de referencia y se utiliza un controlador SMC de seguimiento en el otro bucle para extraer la máxima potencia fotovoltaica. El sistema fotovoltaico está conectado con la carga a través del convertidor elevador DC-DC electrónico de potencia. Primero se deriva un modelo matemático del convertidor elevador y, en base al modelo derivado, se formula un SMC para controlar los pulsos de puerta del interruptor del convertidor elevador. La estabilidad del sistema de circuito cerrado se verifica mediante el teorema de estabilidad de Lyapunov. El esquema de control propuesto se prueba bajo diferentes niveles de irradiancia y los resultados de la simulación se comparan con el controlador clásico proporcional integral derivado (PID). El SMC clásico describe fenómenos indeseables como el parloteo, inherente a él, que causa pérdidas de energía y calor. En la siguiente parte de esta tesis, se analiza el diseño del controlador de modo deslizante adaptativo (ASMC) para el sistema fotovoltaico propuesto. El control adoptado se ejecuta utilizando un ASMC y la mejora se actualiza utilizando un algoritmo de optimización MPPT del Método de búsqueda de patrón mejorado (IPSM). Se utiliza un IPSM MPPT para generar el voltaje de referencia para controlar el controlador ASMC subyacente. Se ha realizado una comparación con otros dos algoritmos de optimización, a saber, Perturb \ Observe (P&O) y Particle Swarm Optimization (PSO) con IPSM para MPPT. Como estrategia no lineal, la estabilidad del controlador adaptativo está garantizada mediante la realización de un análisis de Lyapunov.
The increasing energy demands, depleting fossil fuels, and increasing global warming due to carbon emission has arisen the need for an alternate, overall efficiency, and environment-friendly energy system. Solar energy is considered to be one of the most inexhaustible forms of energy in this universe, but it has the problem of low efficiency due to varying environmental conditions. Solar panel exhibits nonlinear behavior under real climatic conditions and output power fluctuates with the variation in solar irradiance and temperature. Changing weather conditions and nonlinear behavior of PV systems pose a challenge in the tracking of varying maximum PowerPoint. Hence, to continuously extract and deliver the maximum possible power from the PV system, under given environmental conditions, the maximum power point tracking (MPPT) control strategy needs to be formulated that continuously operates the PV system at its MPP. A robust nonlinear controller is required to ensure MPPT by handling nonlinearities of a system and making it robust against changing environmental conditions. Sliding mode control (SMC) is extensively used in non-linear control systems and has been implemented in photovoltaic systems (PV) to track MPP. SMC is robust against disturbances, model uncertainties, and parametric variations. It depicts undesirable phenomena like chattering, inherent in it causing power and heat losses. In this thesis, first, an integer order SMC controller is formulated for extracting maximum power from a solar PV system under variable climatic conditions employing the perturb and observe (P&O) MPPT scheme for the proposed stand-alone PV system. The proposed system consists of two loops schemes, namely the searching loop and the tracking loop. P&O MPPT is utilized in the searching loop to generate the reference signal and a tracking SMC controller is utilized in the other loop to extract the maximum PV power. PV system is connected with load through the power electronic DC-DC boost converter. A mathematical model of the boost converter is derived first, and based on the derived model, an SMC is formulated to control the gate pulses of the boost converter switch. The closed-loop system stability is verified through the Lyapunov stability theorem. The proposed control scheme is tested under varying irradiance levels and the simulation results are compared with the classical proportional integral derivative (PID) controller. Classical SMC depicts undesirable phenomena like chattering, inherent in it causing power and heat losses. In the next part of this thesis, the design of the adaptive sliding mode controller (ASMC) is discussed for the proposed PV system. The adopted control is executed utilizing an ASMC and the enhancement is actualized utilizing an Improved Pattern Search Method (IPSM) MPPT optimization algorithm. An IPSM MPPT is used to generate the reference voltage in order to command the underlying ASMC controller. Comparison with two other optimization algorithms, namely, a Perturb & Observe (P&O) and Particle Swarm Optimization (PSO) with IPSM for MPPT has been conducted. As a non-linear strategy, the stability of the adaptive controller is guaranteed by conducting a Lyapunov analysis. The performance of the proposed control architectures is validated by comparing the proposals with that of the well-known and widely used PID controller. The simulation results validate that the proposed controller effectively improves the voltage tracking, system power with reduced chattering effect, and steady-state error. A tabular comparison is provided at the end of each optimization algorithm category as a resume quantitative comparison. It is anticipated that this work will serve as a reference and provides important insight into MPPT control of the PV systems.
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Pizarro, Ramón y Guillermo Mella. "Brokers de energía en Chile energy advisory". Tesis, Universidad de Chile, 2018. http://repositorio.uchile.cl/handle/2250/168296.

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TESIS PARA OPTAR AL GRADO DE MAGÍSTER EN ADMINISTRACIÓN
Pizarro, Ramón, [Parte I], Mella, Guillermo, [Parte II]
A partir de la publicación de la Ley 20.805 del Ministerio de Energía, clientes de energía eléctrica podrán optar por un régimen de tarifa libre, en detrimento de una tarifa regulada, por las empresas distribuidoras de energía del mercado local. El cambio supuso la creación de una oportunidad de negocio e involucró al sector energético, a los encargados de la generación (Generadoras), a los encargados de la transmisión y encargados de la distribución (Empresas Eléctricas). El proyecto de "Brokers de Energía en Chile”, asume como desafío el asesoramiento estratégico y técnico, para usuarios susceptibles de cambiarse de tarifas reguladas a tarifas libres de mercado, dado que para muchas empresas las materias energéticas, no son el core de sus negocios. El servicio será suministrado por la sociedad Energy Advisory Ltda., con marca comercial “Energi-A”, que prestará servicios de asesorías de eficiencia energética a compañías comerciales, industriales, empresas de servicios y explotación de materias primas, ubicadas en la I, II y Región Metropolitana del país. El objetivo de Energi-A, es alcanzar en el plazo de 3 años, ingresos por sobre los MM$222, que es el proyectado de ingresos de contratos solo con 7 nuevos clientes que tenga la capacidad conectada mínima que indica la ley. El ingreso corresponde al cobro de la comisión del servicio de asesoría, a un promedio del 12% con una proyección a 12 meses, sobre los ahorros de eficiencia en materia energética del cliente. Con una inversión para capital de trabajo de MM$28, principalmente destinado a soportar la operación los primeros años del proyecto. Por la naturaleza del servicio de asesorías en eficiencia energética, el proyecto no presenta riesgos críticos en la propuesta del plan estratégico. Por lo tanto, la invitación es a sumarse a un proyecto que promueve “La eficiencia energética”, que reviste una importancia crítica para alcanzar mejores usos de recursos y aporta un gramo de arena a combate por el cambio climático.
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Yan, Zuanhong. "Control of fluctuating renewable energy sources : energy quality & energy filters". Thesis, University of Birmingham, 2018. http://etheses.bham.ac.uk//id/eprint/8568/.

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This doctoral study discusses how to control fluctuating renewable energy sources at converter, unit, and system layers to deliver smoothed power output to the grid. This is particularly relevant to renewable power generation since the output power of many kinds of renewable energy sources have huge fluctuations (e.g. solar, wind and wave) that needs to be properly treated for grid integration. In this research, the energy quality is developed to describe the friendliness and compatibility of power flows/waveforms to the grid, by contrast with the well-known concept of power quality which is used to assess the voltage and current waveforms. In Chapter 1 & 2, a background introduction and a literature review of studied subjects are presented, respectively. In Chapter 3, the problem of determining the PI parameters in dq decoupling control of voltage source converter (VSC) is studied based on a state-space model. The problems of the conventional method when there is insufficient interface resistance are addressed. New methods are proposed to overcome these drawbacks. In Chapter 4 & 5, energy quality and the energy filters (EFs) are proposed as tools to assess and manage power fluctuations of renewable energy sources. The proposed EFs are energy storage control systems that could be implemented on a variety of energy storage hardware. EFs behave like low-pass filters to the power flows. Finally, in Chapter 6, as an application example of renewable power plant with energy filter control and smoothed power output, a master-slave wave farm system is proposed. The wave farm system uses enlarged rotor inertia of electric machines as self-energy storage devices.
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Li, Ka-ming y 李家明. "Energy audit for building energy conservation". Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 1995. http://hub.hku.hk/bib/B31253192.

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Mandryka, V. "Energy efficiency in energy consumption systems". Thesis, Sumy State University, 2015. http://essuir.sumdu.edu.ua/handle/123456789/40670.

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There has been used four times more energy in the world compared to 1950 year. The main share falls primarily on households and the growing industry. The economic downturn in Ukraine and the countries of former USSR does not influence the consumption of energy – it remains high.
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Li, Ka-ming. "Energy audit for building energy conservation /". Hong Kong : University of Hong Kong, 1995. http://sunzi.lib.hku.hk/hkuto/record.jsp?B14723244.

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Long, Courtney. "Energy". Thesis, Wichita State University, 2010. http://hdl.handle.net/10057/3316.

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Instrumentation: Flute -- Clarinet in Bb -- Bass Clarinet in Bb -- Alto Saxophone in Eb -- Baritone Saxophone in Eb -- Bassoon -- Horns I and II in F -- Trumpet in Bb -- Bass Trombone -- Percussion I (Suspended Cymbal, Woodblocks, Timpani: 32-30”, 29-28”, 26-25”, and 23”) -- Percussion II (Tom-Toms, Suspended Cymbal) -- Keyboard Percussion (Marimba, Vibraphone) -- Violin I -- Violin II -- Viola -- Violoncello Double Bass All wind instruments should be one to a part, unless the conductor thinks doubling is necessary for balance. The string doublings should be as follows: 3 players to a part for Violin I, Violin II, Viola, and Violoncello; and 2 players for the Double Bass part.
Thesis (M.Mus.)--Wichita State University, College of Fine Arts, Dept. of Music
The score is in C. Energy is a four movement, continuous piece. The movements are: I. Upward -- II. Forward -- III. Circular -- IV. Namaste. Each movement intends to convey the different energies created in certain yoga positions.
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Kořista, Ján. "Energetický audit". Master's thesis, Vysoké učení technické v Brně. Fakulta stavební, 2016. http://www.nusl.cz/ntk/nusl-240419.

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The goal of the master's thesis is elaborating energy audit within the current legislation in Czech republic. Thesis includes introduction, in which has been described photovolatics panels. The building is evaluated in terms of energetic, economic and environmental. Part of the energy audit was to designed and evaluated austerity measures.
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Favre-Perrod, Patrick. "Hybrid energy transmission for multi-energy networks /". Zürich : ETH, 2008. http://e-collection.ethbib.ethz.ch/show?type=diss&nr=17905.

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Libros sobre el tema "Energy"

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Bowden, Rob. Energy: Wind energy. North Mankato, MN: Stargazer Books, 2006.

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K, Bürk, Buckel Werner y Fachinformationszentrum Energie Physik Mathematik, eds. Energie Daten =: Energy data. Karlsruhe: Fachinformationszentrum Energie, Physik, Mathematik, 1986.

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1965-, Johnson Kenneth F. y Veliotti Thomas R, eds. Energy research developments: Tidal energy, energy efficiency, and solar energy. Hauppauge NY: Nova Science Publishers, 2009.

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Program, Ontario Ministry of Energy Government and Institutional Buildings. Energy: Energy Efficient Lighting. S.l: s.n, 1987.

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Canada. Dept. of Energy, Mines and Resources. Energy Sector. Energy Question: Energy Options. S.l: s.n, 1987.

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Ramachandra, T. V. Energy alternatives: Renewable energy and energy conservation technologies. Bangalore: Karnataka Environment Research Foundation, 2000.

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United States. Dept. of Energy. Office of Energy Efficiency and Renewable Energy, ed. Tomorrow's energy today: Energy Efficiency and Renewable Energy. Washington, DC: U.S. Dept. of Energy, Office of Energy Efficiency and Renewable Energy, 1995.

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Aubrecht, Gordon J. Energy. Columbus: Merrill Pub. Co., 1989.

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Ager, Janet. Energy. Harlow: Longman, 1985.

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Fieldhouse, Jack. Energy. Oxford: Oxford U.P., 1989.

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Capítulos de libros sobre el tema "Energy"

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Hopp, Vollrath. "Energie [E. energy]". En Chemische Kreisläufe in der Natur, 385–411. Berlin, Heidelberg: Springer Berlin Heidelberg, 2018. http://dx.doi.org/10.1007/978-3-662-55860-7_14.

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Sun, Qiuye. "Energy and Energy Internet". En Energy Internet and We-Energy, 1–25. Singapore: Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-13-0523-8_1.

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Kenney, V. P. y J. W. Lucey. "Energy Demand-Energy Supplies". En Nuclear Energy, 49–72. Boston, MA: Springer US, 1985. http://dx.doi.org/10.1007/978-1-4684-4589-3_3.

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Botti, Silvana y Julien Vidal. "Energy Generation: Solar Energy". En Computational Approaches to Energy Materials, 29–69. Oxford, UK: John Wiley & Sons Ltd, 2013. http://dx.doi.org/10.1002/9781118551462.ch2.

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Duffy, Dorothy. "Energy Generation: Nuclear Energy". En Computational Approaches to Energy Materials, 71–107. Oxford, UK: John Wiley & Sons Ltd, 2013. http://dx.doi.org/10.1002/9781118551462.ch3.

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Demirel, Yaşar. "Energy and Energy Types". En Energy, 27–70. London: Springer London, 2012. http://dx.doi.org/10.1007/978-1-4471-2372-9_2.

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Madureira, Nuno Luis. "Primary Energy/Useful Energy". En Key Concepts in Energy, 9–32. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-04978-6_2.

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Gooch, Jan W. "Energy n, (Free Energy)". En Encyclopedic Dictionary of Polymers, 269. New York, NY: Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_4417.

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Tanrioven, Mugdesem. "Energy and Energy Conversion". En Photovoltaic Systems Engineering for Students and Professionals, 1–10. Boca Raton: CRC Press, 2023. http://dx.doi.org/10.1201/9781003415572-1.

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Wellner, Marcel. "Energy". En Elements of Physics, 75–102. Boston, MA: Springer US, 1991. http://dx.doi.org/10.1007/978-1-4615-3860-8_4.

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Actas de conferencias sobre el tema "Energy"

1

Baidoo, Ransford R., F. Ferguson y H. Singh. "A Closed Loop High Efficiency Plasma Waste-to-Power Generation Model". En 2008 IEEE Energy 2030 Conference (Energy). IEEE, 2008. http://dx.doi.org/10.1109/energy.2008.4780990.

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Izquierdo, Mariano David Zerquera, Juan Jose Sanchez Jimenez y Alexis Martinez del Sol. "Matlab Software to Determine the Saving in Parallel Pumps Optimal Operation Systems, by Using Variable Speed". En 2008 IEEE Energy 2030 Conference (Energy). IEEE, 2008. http://dx.doi.org/10.1109/energy.2008.4780991.

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Jimenez, Juan Jose Sanchez, Mariano David Zerquera Izquierdo, Jose Salvador Beltran Leon, Alexis Martinez del Sol y Jose O. Trujillo Valdes. "Cost of the Electrical Energy Obtained by Cogeneration in the Sugar Cane Mills". En 2008 IEEE Energy 2030 Conference (Energy). IEEE, 2008. http://dx.doi.org/10.1109/energy.2008.4780992.

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Closson, Kevin M. "The Role of Intellectual Property Policy in Creating a Global Sustainable Energy Infrastructure". En 2008 IEEE Energy 2030 Conference (Energy). IEEE, 2008. http://dx.doi.org/10.1109/energy.2008.4780993.

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Murahara, Masataka y Kazuichi Seki. "On-Site Sodium Production with Seawater Electrolysis as Alternative Energy for Oil by Offshore Wind Power Generation". En 2008 IEEE Energy 2030 Conference (Energy). IEEE, 2008. http://dx.doi.org/10.1109/energy.2008.4780994.

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Chen, Yihsu y Lizhi Wang. "A Power Market Model with Renewable Portfolio Standards, Green Pricing and GHG Emissions Trading Programs". En 2008 IEEE Energy 2030 Conference (Energy). IEEE, 2008. http://dx.doi.org/10.1109/energy.2008.4780995.

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Aoyama, Yuichi y Toshiaki Yachi. "An LED Module Array System Designed for Streetlight Use". En 2008 IEEE Energy 2030 Conference (Energy). IEEE, 2008. http://dx.doi.org/10.1109/energy.2008.4780996.

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Wang, Lizhi. "Potential Impacts of Plug-in Hybrid Electric Vehicles on Locational Marginal Prices". En 2008 IEEE Energy 2030 Conference (Energy). IEEE, 2008. http://dx.doi.org/10.1109/energy.2008.4780997.

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Oudalov, Alexandre, Tilo Buehler y Daniel Chartouni. "Utility Scale Applications of Energy Storage". En 2008 IEEE Energy 2030 Conference (Energy). IEEE, 2008. http://dx.doi.org/10.1109/energy.2008.4780999.

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Choudhary, Muhammad Abbas, Nawar Khan, Ayaz Ali y Aisha Abbas. "Achievability of Pakistan's 2030 Electricity Generation Goals Established under Medium Term Development Framework (MTDF): Validation Using Time Series Models and Error Decomposition Technique". En 2008 IEEE Energy 2030 Conference (Energy). IEEE, 2008. http://dx.doi.org/10.1109/energy.2008.4781000.

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Informes sobre el tema "Energy"

1

Mansouri, Noura, Robert J. Budnitz, H.-Holger Rogner, Charles McCombie, Robert N. Schock y Adnan Shihab-Eldin. Keeping the Nuclear Energy Option Open. King Abdullah Petroleum Studies and Research Center, agosto de 2022. http://dx.doi.org/10.30573/ks--2022-dp07.

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Nuclear energy is already playing a crucial role in reducing emissions from electricity generation. However, if this role is not expanded, achieving the international goal of avoiding unacceptable global climate change will be extremely difficult. The evidence presented in this study shows that nuclear energy’s climate benefits can be obtained without significant impacts to safety, security or energy costs.
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Mansori, Noura. Keeping the Nuclear Energy Option Open. King Abdullah Petroleum Studies and Research Center, agosto de 2022. http://dx.doi.org/10.30573/ks--dp07.

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Nuclear energy is already playing a crucial role in reducing emissions from electricity generation. However, if this role is not expanded, achieving the international goal of avoiding unacceptable global climate change will be extremely difficult. The evidence presented in this study shows that nuclear energy’s climate benefits can be obtained without significant impacts to safety, security or energy costs.
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Gischler, Christiaan, Camila Gonzalez Torres, Ramón Espinasa, Malte Humpert y Carlos Sucre. Achieving Sustainable Energy in Barbados: Energy Dossier. Inter-American Development Bank, agosto de 2016. http://dx.doi.org/10.18235/0009310.

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This Energy Dossier is part of a series of publications produced by the Energy Division of the Infrastructure and Environment Department of the Inter-American Development Bank. It is designed to increase the knowledge base about the composition and organization of the energy sector of Latin American and Caribbean countries. Each dossier describes the energy matrix of the country under analysis and then dives deeply into the institutional organization and regulatory framework of the energy sector in that country.
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Cacic, Gordon, Stephen Fairbaum, Alonzo Fulgham, Mark Kammer, Tony Kazmierski, Howard Laine, James Moreland, Valerie Pietro, Michael Silver y Richard Smart. Energy. Fort Belvoir, VA: Defense Technical Information Center, enero de 2001. http://dx.doi.org/10.21236/ada524091.

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Cox, Sarah L., Laura Beshilas y Elizabeth L. Hotchkiss. Renewable Energy to Support Energy Security. Office of Scientific and Technical Information (OSTI), octubre de 2019. http://dx.doi.org/10.2172/1569691.

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Smith, C., J. Blink, M. Fratoni, H. Greenberg, W. Halsey, A. Simon y M. Sutton. Nuclear Energy Return on Energy Investment. Office of Scientific and Technical Information (OSTI), agosto de 2012. http://dx.doi.org/10.2172/1073129.

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Wilkinson, A. y A. M. Jessop. Geothermal energy, Bibliography of geothermal energy. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1986. http://dx.doi.org/10.4095/315265.

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Leslie Roberts y Michael Hagood. Western Energy Corridor -- Energy Resource Report. Office of Scientific and Technical Information (OSTI), junio de 2011. http://dx.doi.org/10.2172/1027917.

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Vitev, Ivan, Duff Neill, Gherardo Vita y Hua Zhu. Energy-Energy Correlators for Precision QCD. Office of Scientific and Technical Information (OSTI), marzo de 2022. http://dx.doi.org/10.2172/1855125.

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Espinasa, Ramón, Fernando Anaya y Augusto Bonzi Teixeira. Energy Dossier: Brazil. Inter-American Development Bank, noviembre de 2016. http://dx.doi.org/10.18235/0009314.

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This Energy Dossier is part of a series of publications produced by the Energy Division of the Infrastructure and Energy Department of the Inter-American Development Bank. It is designed to increase the knowledge base about the composition and organization of the energy sector of Latin American and Caribbean countries. Each dossier describes the energy matrix of the country under analysis and then dives deeply into the institutional organization and regulatory framework of the energy sector in that country.
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