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مشخصات نشــریه/اطلاعات دوره


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مرکز اطلاعات علمی SID1
Scientific Information Database (SID) - Trusted Source for Research and Academic Resources
Scientific Information Database (SID) - Trusted Source for Research and Academic Resources
Scientific Information Database (SID) - Trusted Source for Research and Academic Resources
Scientific Information Database (SID) - Trusted Source for Research and Academic Resources
Scientific Information Database (SID) - Trusted Source for Research and Academic Resources
Scientific Information Database (SID) - Trusted Source for Research and Academic Resources
Scientific Information Database (SID) - Trusted Source for Research and Academic Resources
Scientific Information Database (SID) - Trusted Source for Research and Academic Resources
نویسندگان: 

ROSEN MARC A. | KUMAR RAKESH

اطلاعات دوره: 
  • سال: 

    2011
  • دوره: 

    2
  • شماره: 

    4
  • صفحات: 

    1-12
تعامل: 
  • استنادات: 

    0
  • بازدید: 

    412
  • دانلود: 

    0
چکیده: 

The steady state effect of vertical fins is assessed on a photovoltaic/thermal solar air heater having a double pass configuration in which fins are placed in the lower channel perpendicular to the direction of air flow. Air passes through the upper channel of the air heater and before passing in the opposite direction through the lower channel. The effects of design, climatic and operating parameters are evaluated on temperatures, efficiencies and other parameters. For fixed operating conditions, fins are observed to increase heat transfer area and rate, reduce cell temperature about 16oC, and improve thermal and electrical efficiencies. Higher packing factors are advantageous as they increase electrical output per collector area and reduce cell temperature.

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بازدید 412

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نویسندگان: 

GAMBINI MARCO | VELLINI MICHELA

اطلاعات دوره: 
  • سال: 

    2011
  • دوره: 

    2
  • شماره: 

    4
  • صفحات: 

    13-31
تعامل: 
  • استنادات: 

    0
  • بازدید: 

    253
  • دانلود: 

    0
چکیده: 

Hydrogen technology is becoming ever more relevant because hydrogen use can help containing greenhouse gas emission if CO2 capture and storage techniques are implemented in the hydrogen production technology (when hydrogen is produced from fossil fuels). For this reason this work aims at carrying out a comparative analysis of possible energy scenarios in urban districts: a medium-small Italian city is taken into consideration, and its energy consumptions, both for domestic and industrial use, are evaluated. The current situation, in which conventional technologies meet the energy needs, is compared to a hypothetical scenario where clean energy vectors, namely hydrogen and electricity, are utilized together with traditional primary energy supply. Hydrogen production by means of coal decarbonization is investigated, as well as hydrogen use in advanced energy systems for transport and for electric and thermal energy generation.

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نویسندگان: 

RAJ SINGH BHARAT | SINGH ONKAR

اطلاعات دوره: 
  • سال: 

    2011
  • دوره: 

    2
  • شماره: 

    4
  • صفحات: 

    33-44
تعامل: 
  • استنادات: 

    0
  • بازدید: 

    466
  • دانلود: 

    0
چکیده: 

Globally excessive consumption of hydrocarbon fuel in transport sector is a serious threat to the civilization due to the paucity of fuel in future. Also this growing use of vehicles for transport is contributing about 70% of total air pollution and causing environmental and ecological imbalances. Thus the worldwide fast depletion of conventional energy resources and impact of emissions on environment necessitates the search of alternative non-conventional energy sources, and other direct energy conversion systems. This paper deals with the study of sustainable renewable energy resources and their conversion system. Air has been considered as a sustainable renewable energy resource and an emission free compressed air driven engine has been analyzed for better and sustainable energy future in this paper. Here parametric study of a vane type novel air turbine is carried out for arriving at optimal turbine specifications and operating conditions. The optimum power output obtained ranges from: 1.0 kW, 4.0 kW and 9.0 kW at D=50 mm, 100 mm and 150 mm respectively, when rotor/ casing ratio (d/D) = 0.70, vane angle (q) is kept 30o to 45o (vanes =12 to 8 nos.), and other parameters such as: injection angle (60o), injection pressure (6 bar) and speed of rotation (2500 rpm) are kept constant throughout the study.

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بازدید 466

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اطلاعات دوره: 
  • سال: 

    2011
  • دوره: 

    2
  • شماره: 

    4
  • صفحات: 

    45-56
تعامل: 
  • استنادات: 

    0
  • بازدید: 

    327
  • دانلود: 

    0
چکیده: 

The method of entropy production minimization for finding energy efficient paths of operation of process equipment is first presented using an instructive example with optimal control theory. With reference to the earlier investigations, the researchers present some design rules that relate to the designs’ entropy production. Minimum entropy production is not obtained in special cases, not generally, by equipartition of entropy production or of thermodynamic forces. the researchers show that two well established industrial technologies, namely the Haldor Topsoe steam reformer and the Linde technology for air separation understood in terms of the design rules. The entropy production minimization technique is thus able to predict well proven technology, technology that has developed over several decades. This gives an argument for early use of this technique in the designing phase of energy intensive processes.

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بازدید 327

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نویسندگان: 

PALAZZO PIERFRANCESCO

اطلاعات دوره: 
  • سال: 

    2011
  • دوره: 

    2
  • شماره: 

    4
  • صفحات: 

    57-70
تعامل: 
  • استنادات: 

    0
  • بازدید: 

    275
  • دانلود: 

    0
چکیده: 

The mechanical aspect of entropy-exergy relationship, together with the thermal aspect usually considered, leads to an extended formulation of physical exergy based on both maximum useful work and maximum useful heat that are the outcome of available energy of a thermodynamic system.This approach suggests that a mechanical entropy can be studied, in addition to the already used thermal entropy, with respect to work interaction due to volume variation. The mechanical entropy is related to energy transfer by means of work and it is complementary to the thermal entropy that accounts energy transfer by means of heat. Furthermore, the paper proposes a definition of exergy based on Carnot cycle that is reconsidered in the case the inverse cycle is adopted and, as a consequence, the concept that work depends on pressure similarly as heat depends on temperature, is pointed out. Then, the logical sequence to get mechanical exergy expression to evaluate work withdrawn from available energy is demonstrated. On the basis of the mechanical exergy, the mechanical entropy set forth is deduced in a general form valid for any process.Finally, the extended formulation of physical exergy is proposed, that summarizes the contribution of either heat and work interactions and related thermal exergy as well as mechanical exergy that both result as the outcome from the available energy of the system interacting with an external reference environment (reservoir). The extended formulation contains an additional term that takes into account the volume, and consequently the pressure, that allows to evaluate exergy with respect to the reservoir characterized by constant pressure other than constant temperature. The conclusion is that the extended physical exergy takes into account the equality of pressure, other than equality of temperature, as a further condition of mutual stable equilibrium state between system and reservoir.

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نویسندگان: 

YADAV J.P. | SINGH ONKAR

اطلاعات دوره: 
  • سال: 

    2011
  • دوره: 

    2
  • شماره: 

    4
  • صفحات: 

    71-82
تعامل: 
  • استنادات: 

    0
  • بازدید: 

    316
  • دانلود: 

    0
چکیده: 

Combined cycle performance can be improved by improving the performance of gas turbine based topping cycle. Amongst various options the effective cooling of gas turbine blade for realizing the higher turbine inlet temperatures is one of the attractive options. The present paper deals with the thermodynamic analysis of advanced technology gas/steam combined cycle based power plant having closed loop cooling in gas turbine stages employing water/steam as coolants. Results have been obtained for the cycle pressure ratios varying between 12 to 20 and turbine inlet temperatures (TITs) varying in 1400 K to 1700 K for studying the influence of water and steam coolants upon the overall cycle performance.

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بازدید 316

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نویسندگان: 

ANGLANI NORMA | MULIERE GIUSEPPE

اطلاعات دوره: 
  • سال: 

    2011
  • دوره: 

    2
  • شماره: 

    4
  • صفحات: 

    83-94
تعامل: 
  • استنادات: 

    2
  • بازدید: 

    368
  • دانلود: 

    0
چکیده: 

Research topics dealing with the application of the MarkAl model have been quite common in the last 20+ years. Every new paper has added new insight into the potential of using such  a model for a variety of purposes. Not only global but also local applications have shown both limits and benefits when dealing with manifold energy-environmental-resources optimal management.The aim of this work is to strengthen the idea that such models, even with the limits that have been underlined, can continue to contribute as a valid tool to assist local policy makers to have a better/objective idea of the impact and potential of certain actions. Besides, it provides a non-biased tool in case incentive resources run out and a diverse portfolio of actions to achieve set environmental targets does exist. In times where economic crises strike every sphere of political and civil actions, it is more important to be able to rely on objective instruments to support choices at every level. Thus the local level becomes more and more strategic.The paper deals with an application of the Standard MarkAl model to a Northern Italian province (190 municipalities and half a million people), in order to give useful circumscribed information on the results coming out from a simple, but interconnected, optimized energy model, when a previous skimming has been performed to identify the target actions of possible incentives.The choice is to benefit only few actions, in order to make the effect of it keener.In this case the two competing actions in the residential sector are (i) fostering more efficient buildings vs. (ii) additional support for renewable technologies.The scope of the applied research is to give economic and environmental indexes useful to decide where to invest the limited local resources. For this scope different energy development scenarios have been analyzed and their performance indicators identified.Developing consistent local energy plans, by using a consolidated bottom up approach and by a combination of long-term planning strategy based upon technological development and replacement is still far from a routine procedure from a local policy makers’ standpoint.The study focuses on the thermal use of energy in the residential sector, being it the main target of the EPB Directive (2002/91/EC), whose impact, along with the role of renewable energies, are investigated with and without a public support.Also, the role of the public commitment is highlighted in terms of effective policy that could drive the technological competition and the real estate market to achieve the optimal configuration of the energy system (the lowest cost and the lowest environmental impact), by means of subsidies for thermal solar and biomass technologies.

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بازدید 368

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