2 edition of Numerical simulation of dual-media thermal energy storage systems found in the catalog.
Numerical simulation of dual-media thermal energy storage systems
Robert John Gross
by Dept. of Energy, [Office of the Assistant Secretary for Defense Programs], Sandia Laboratories, [Springfield, Va., for sale by the National Technical Information Service] in Albuquerque, N.M
Written in English
|Statement||Robert J. Gross, Charles E. Hickox, Colin E. Hackett, Fluid Mechanics and Heat Transfer Division II, 5512, Sandia Laboratories ; prepared by Sandia Laboratories for the United States Department of Energy under contract DE-AC04-76DP00789.|
|Series||SAND ; 78-2282, SAND (Series) (Albuquerque, N.M.) -- 78-2282.|
|Contributions||Hickox, Charles E., Hackett, Colin E., United States. Dept. of Energy., Sandia Laboratories. Fluid Mechanics and Heat Transfer Division II, Division 5512., Sandia Laboratories.|
|The Physical Object|
|Pagination||34 p. :|
|Number of Pages||34|
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Get this from a library. Numerical simulation of dual-media thermal energy storage systems. [Robert John Gross; Charles E Hickox; Colin E Hackett; United States. Department of Energy.; Sandia Laboratories. Fluid Mechanics and Heat Transfer. A thorough comparison with the classical Schumann model is presented, along with other examples which demonstrate the versatility of the numerical method.
Calculations are also compared with results obtained from an experimental study of Cited by: Numerical Simulation of Single- and Dual-media Thermocline Tanks for Energy Storage in Concentrating Solar Power Plants December Energy Procedia Alkali-metal carbonate salts meet many of the working fluid and storage medium requirements for high temperature, °C, solar central receiver systems.
But, because of Author: R. West. Numerical investigation of sensible thermal energy storage in high temperature solar systems Conference Paper in WIT Transactions on Modelling and Simulation.
A concentrated solar power (CSP) plant typically has thermal energy storage (TES), which offers advantages of extended operation and power dispatch. Using dual-media, TES can be cost-effective because of the reduced use of heat transfer fluid (HTF), usually an expensive by: 9.
Dear Colleagues, We are inviting submissions to a Special Issue of the Energies Journal on the subject area of “Advanced Mathematical Modeling Technology for Heat Storage and Conversion Systems”. Thermal energy storage units are usually used when the heat flow rate or electrical power is too high during a certain period of 24 hours, and too low during another period of 24.
Due to the relatively large latent heat (in the phase change process) compared to sensible heat, PCMs are attractive for large quantity thermal energy storage with small volume.
This introduces another type of dual-media thermal storage with HTF flowing through a packed bed of PCM materials, as shown in Fig. Downloadable (with restrictions). In this paper, a new high-temperature packed-bed thermal energy storage system (PBTES) with macro-encapsulation of molten salt phase change material has been established.
A new phase change material (PCM) capsule is designed and constructed with the macro-encapsulated molten salt as its PCM. The ternary carbonate Li2CO3-K2CO3.
Introduction. Thermal energy storage (TES) is indispensable for concentrating solar power (CSP) plant applications.The main advantages of integrating a CSP system with thermal storage include extended utilization of the power block, improved dispatchability, and extended life expectancy of the components due to the reduction of thermal transients.Cited by: Fluid Charge and Discharge Strategies of Dual-Media Thermal Storage Systems in the Starting-Up Process of Daily Cyclic Operations.
In ASME. Downloadable (with restrictions). We investigate the dynamic thermal performance of a molten-salt packed-bed thermal energy storage (TES) system using capsules filled with high-temperature phase change material (PCM), which is identified as a promising low-cost TES system for concentrating solar power (CSP) plants.
A transient two-dimensional dispersion-concentric (D. Solar energy is the most viable and abundant renewable energy source. Its intermittent nature and mismatch between source availability and energy demand, however, are critical issues in its deployment and market penetrability.
This problem can be addressed by storing surplus energy during peak sun hours to be used during nighttime for continuous electricity production in Cited by: 1.
At present, numerical simulation models for shale gas mainly include dual media, multiple discrete media, and equivalent media, among which dual media models are widely used.
Sawyer and Kucuk  first studied the pressure changes of shale gas reservoirs based on a dual-porosity continuous medium. Hybrid desalination technology is defined as any combination of thermal and membrane processes in seawater desalination systems.
So far, the two technologies have evolved rather independently with some degree of competition. Traditionally, in co-generation market applications, thermal desalination has succeeded in establishing a stronghold where large Cited by: 1.
Riyaz Kharrat (born in Karbala) is one of the eminent Iranian scientists in the field of chemical engineering and petroleum is the full professor of Montanuniversität Leoben. His interest research and activities is about the enhanced oil recovery (EOR), improved oil recovery (IOR), asphaltene & wax studies, thermal recovery methods, and reservoir modeling and.
Dual media storage – Phase change energy storage – Storage capacity – Other storage methods – Solar dehumidification – Design, performance and applications – Combined state simulation of large systems.
References 1. Jaluria: MED ENERGY CONSERVATION IN THERMAL SYSTEMS L T P C 3 1 0 3 Module I (10 hours). Thermal Desalination Processes Joachim Gebel Thermodynamic Fundamentals First and Second Rule of Thermodynamics Boiling and Boiling Point Elevation Heat Transfer Compression of Gases Mass- and Energy Balances Single-Stage Evaporation Multiple-Effect Distillation (MED) Multi-Stage-Flash.
Some compressed air energy storage systems under development, such as advanced adiabatic compressed air energy storage, use a thermal energy storage unit that absorbs heat from the hot compressed air and saves the heat energy for later use to reheat the air before expansion, thus avoiding CO 2 emissions.
Influence of flow distribution on the thermal performance of dual-media thermocline energy storage systems Applied Energy Janu Junior Year Research WorkTitle: Senior System Engineer at. Impacts of DNAPL Source Treatment: Experimental and Modeling Assessment of the Benefits of Partial DNAPL Source Removal SERDP Project ER A.
Lynn Wood, Principal Investigator U.S. Environmental Protection Agency Michael D. Annable James W. Jawitz University of Florida Ronald W. Falta Clemson University Michael C. Brooks Carl G. Enfield .Mathematical and Computational Issues in the Geosciences September 11–14, • Erlangen (Germany) and energy storage systems requires understanding of coupled processes that can result in complete alteration of the system dynamics.
The numerical simulation of coupled mechanical deformation and fluid flow in porous media has.(Civil Engg.) Syllabus. MC/ Engineering Graphics UG (All Branches) (), Credit 4 General: Importance, significance and scope of engineering graphics, dimensioning, scales, different types of projections, orthographic projections, 2 Projection of Points and lines in different quadrants, traces, inclinations, and true lengths of the lines, projections on auxiliary .