Convective heat transfer coefficients of open and closed Cryotop® systems under different warming conditions

The warming of cryopreserved samples supported by small volume devices is governed by heat transfer phenomena which are mathematically described by the solution of the transient heat conduction partial differential equations; the convective heat transfer coefficient (h) is an important parameter inv...

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Detalles Bibliográficos
Autores principales: Santos, María Victoria, Sansinena, Marina, Chirife, Jorge, Zaritzky, Noemí Elisabet
Formato: Articulo Preprint
Lenguaje:Inglés
Publicado: 2018
Materias:
Acceso en línea:http://sedici.unlp.edu.ar/handle/10915/128568
Aporte de:
id I19-R120-10915-128568
record_format dspace
institution Universidad Nacional de La Plata
institution_str I-19
repository_str R-120
collection SEDICI (UNLP)
language Inglés
topic Química
Numerical simulation
Vitrification
Warming rates
Surface heat transfer coefficient
Cryotop®
spellingShingle Química
Numerical simulation
Vitrification
Warming rates
Surface heat transfer coefficient
Cryotop®
Santos, María Victoria
Sansinena, Marina
Chirife, Jorge
Zaritzky, Noemí Elisabet
Convective heat transfer coefficients of open and closed Cryotop® systems under different warming conditions
topic_facet Química
Numerical simulation
Vitrification
Warming rates
Surface heat transfer coefficient
Cryotop®
description The warming of cryopreserved samples supported by small volume devices is governed by heat transfer phenomena which are mathematically described by the solution of the transient heat conduction partial differential equations; the convective heat transfer coefficient (h) is an important parameter involved in the boundary condition which is related to the fluid dynamic behavior at the interface device-warming fluid (water, sucrose solution or air). Unfortunately, h values for small volume devices (i.e. Cryotop®) have not been experimentally determined. Moreover, heat transfer coefficients during warming of Cryotop® cannot be obtained through classical dimensionless correlations expressed in terms of Nusselt vs. Reynolds and Prandtl numbers that are available for regular geometries and single materials. It is the purpose of present work to determine the convective heat transfer coefficients (h) by numerically solving the heat transfer equation applying the finite element method. Numerical simulations allowed to predict time-temperature histories and warming rates under different protocols in Cryotop® system which were compared with literature warming rates reported for this device. The h values were calculated considering the heterogeneous structure of the domain (microdrop, plastic-support) and the irregular three-dimensional geometry. The warming conditions analyzed were: a) open system in contact with air and sucrose solution at 23 °C) and b) closed system in contact with air and water at 23 °C. The h values of the Cryotop® open system immersed in sucrose solution (23 °C), that according to literature achieved a survival in the order of 80%, are in the range of 1800–2200 W/m2K. The h values obtained in this work for warming conditions are critical parameters for cryobiologists when studying heat transfer rate in this small volume device.
format Articulo
Preprint
author Santos, María Victoria
Sansinena, Marina
Chirife, Jorge
Zaritzky, Noemí Elisabet
author_facet Santos, María Victoria
Sansinena, Marina
Chirife, Jorge
Zaritzky, Noemí Elisabet
author_sort Santos, María Victoria
title Convective heat transfer coefficients of open and closed Cryotop® systems under different warming conditions
title_short Convective heat transfer coefficients of open and closed Cryotop® systems under different warming conditions
title_full Convective heat transfer coefficients of open and closed Cryotop® systems under different warming conditions
title_fullStr Convective heat transfer coefficients of open and closed Cryotop® systems under different warming conditions
title_full_unstemmed Convective heat transfer coefficients of open and closed Cryotop® systems under different warming conditions
title_sort convective heat transfer coefficients of open and closed cryotop® systems under different warming conditions
publishDate 2018
url http://sedici.unlp.edu.ar/handle/10915/128568
work_keys_str_mv AT santosmariavictoria convectiveheattransfercoefficientsofopenandclosedcryotopsystemsunderdifferentwarmingconditions
AT sansinenamarina convectiveheattransfercoefficientsofopenandclosedcryotopsystemsunderdifferentwarmingconditions
AT chirifejorge convectiveheattransfercoefficientsofopenandclosedcryotopsystemsunderdifferentwarmingconditions
AT zaritzkynoemielisabet convectiveheattransfercoefficientsofopenandclosedcryotopsystemsunderdifferentwarmingconditions
bdutipo_str Repositorios
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