A physical-statistical model for predicting the effective thermal conductivity of nanofluids is proposed. The volumetric unit of nanofluids in the model consists of solid, liquid, and gas particles and is treated as a system made up of regular geometric figures, spheres, filling the volumetric unit by layers. The model assumes that connections between layers of the spheres and between neighbouring spheres in the layer are represented by serial and parallel connections of thermal resistors, respectively. This model is expressed in terms of thermal resistance of nanoparticles and fluids and the multinomial distribution of particles in the nanofluids. The results for predicted and measured effective thermal conductivity of several nanofluids (...
A methodology is proposed for predicting the effective thermal conductivity of dilute suspensions of...
This work experimentally investigated the effects of different factors, including nanoparticle size ...
The thermal conductivities of nanofluids were measured as a function of temperature, particle size, ...
ABSTRACT This paper presents a model to determine the effective thermal conductivity (ETC) of nanofl...
Thermal conductivity is an important characteristic of a nanofluid in laminar flow heat transfer. Th...
A mathematical model for the calculation of thermal conductivity of nanofluids containing nanopartic...
This paper provides an overview of the important physical phenomena necessary for the determination ...
Nanofluids exhibits larger thermal conductivity due to the presence of suspended nanosized solid par...
Efficiency of energy systems can be improved in different ways. One of these consists in adopting he...
Efficiency of energy systems can be improved in different ways. One of these consists in adopting he...
Efficiency of energy systems can be improved in different ways. One of these consists in adopting he...
Statistical methods, and especially machine learning, have been increasingly used in nanofluid model...
Abstract This paper provides an overview of the important physical phenomena necessary for the deter...
This work experimentally investigated the effects of different factors, including nanoparticle size ...
The interaction of nano particulates with conventional materials generally has the effect of dramati...
A methodology is proposed for predicting the effective thermal conductivity of dilute suspensions of...
This work experimentally investigated the effects of different factors, including nanoparticle size ...
The thermal conductivities of nanofluids were measured as a function of temperature, particle size, ...
ABSTRACT This paper presents a model to determine the effective thermal conductivity (ETC) of nanofl...
Thermal conductivity is an important characteristic of a nanofluid in laminar flow heat transfer. Th...
A mathematical model for the calculation of thermal conductivity of nanofluids containing nanopartic...
This paper provides an overview of the important physical phenomena necessary for the determination ...
Nanofluids exhibits larger thermal conductivity due to the presence of suspended nanosized solid par...
Efficiency of energy systems can be improved in different ways. One of these consists in adopting he...
Efficiency of energy systems can be improved in different ways. One of these consists in adopting he...
Efficiency of energy systems can be improved in different ways. One of these consists in adopting he...
Statistical methods, and especially machine learning, have been increasingly used in nanofluid model...
Abstract This paper provides an overview of the important physical phenomena necessary for the deter...
This work experimentally investigated the effects of different factors, including nanoparticle size ...
The interaction of nano particulates with conventional materials generally has the effect of dramati...
A methodology is proposed for predicting the effective thermal conductivity of dilute suspensions of...
This work experimentally investigated the effects of different factors, including nanoparticle size ...
The thermal conductivities of nanofluids were measured as a function of temperature, particle size, ...