Ana Lázaro
University of Zaragoza
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Publication
Featured researches published by Ana Lázaro.
Measurement Science and Technology | 2006
Ana Lázaro; Eva Günther; Harald Mehling; Stefan Hiebler; Jose M. Marin; Belén Zalba
Phase change materials (PCM) are able to store thermal energy in small temperature intervals very efficiently due to their high latent heat. Accurate knowledge of the enthalpy as a function of temperature, or the storage capacity at each temperature, is the key to design any application. Conventional methods for thermal analysis however often lack sufficient accuracy or sample size to be applied to PCM. The T-history method is a simple method to determine the storage capacity of PCM and allows the use of large sample sizes. The experimental setup and methods of data analysis have been significantly improved in recent years. In this paper, a proper methodology to verify the correct setup and data analysis method of a T-history installation using standard materials with known properties is described and tested. The implementation of the T-history method has been done at the ZAE-Bayern. Three standard materials, gallium, water and hexadecane, were measured, as well as two commercial PCM, RT27 and sodium acetate trihydrate graphite compound (SAT+G). The obtained results confirm that the T-history installation can be used to analyse different PCM.
Measurement Science and Technology | 2015
Javier Mazo; Mónica Delgado; Ana Lázaro; Pablo Dolado; Conchita Peñalosa; José María Marín; Belén Zalba
The present work analyses the effect of radial thermal gradients inside T-history samples on the enthalpy temperature curve measurement. A conduction heat transfer model has been utilized for this purpose. Some expressions have been obtained that relate the main dimensionless numbers of the experiments with the deviations in specific heat capacity, phase change enthalpy and phase change temperature estimations. Although these relations can only be strictly applied to solid materials (e.g. measurements of shape stabilized phase change materials), they can provide some useful and conservative bounds for the deviations of the T-history method. Biot numbers emerge as the most relevant dimensionless parameters in the accuracy of the specific heat capacity and phase change enthalpy estimation whereas this model predicts a negligible influence of the temperature levels used for the experiments or the Stefan number.
Archive | 2012
Pablo Dolado; Ana Lázaro; José María Marín; Belén Zalba
Energy efficiency and the search for new energy sources and uses are becoming main objectives for the scientific community as well as for society in general. This search is due to various environmental issues and shortages of conventional and non-sustainable energy resources, for example fossil fuels, that are essential to industrial development and to daily life. Free-cooling in buildings, bioclimatic architecture applications, demand and production coupling in renewable energy sources, as solar energy, are examples of thermal energy storage contributions to achieve these objectives. The application of Phase Change Materials (hereafter PCM) in Thermal Energy Storage (hereafter TES) is an expanding field due to the variety of materials being developed. There are four critical considerations for the technical viability of these applications: 1) The features of both the PCM and the encapsulation material must be stable during the system lifetime; 2) A reliable numerical model of the system to simulate different operational conditions; 3) The thermophysical properties of the PCM; 4) The cost of the system.
Renewable & Sustainable Energy Reviews | 2010
Antoni Gil; Marc Medrano; Ingrid Martorell; Ana Lázaro; Pablo Dolado; Belén Zalba; Luisa F. Cabeza
Renewable & Sustainable Energy Reviews | 2012
Mónica Delgado; Ana Lázaro; Javier Mazo; Belén Zalba
Applied Thermal Engineering | 2005
Manuel Ibáñez; Ana Lázaro; Belén Zalba; Luisa F. Cabeza
Energy Conversion and Management | 2009
Ana Lázaro; Pablo Dolado; Jose M. Marin; Belén Zalba
Applied Energy | 2013
Ana Lázaro; Conchita Peñalosa; Aran Solé; Gonzalo Diarce; Thomas Haussmann; Magali Fois; Belén Zalba; Stefan Gshwander; Luisa F. Cabeza
Energy Conversion and Management | 2011
Pablo Dolado; Ana Lázaro; Jose M. Marin; Belén Zalba
Renewable Energy | 2010
Cecilia Castellón; Marc Medrano; Joan Roca; Luisa F. Cabeza; Maria Elena Navarro; Ana Inés Fernández; Ana Lázaro; Belén Zalba