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8 results for “experimental cooling”
Steady-state operation dataset of an experimental Wet Cooling Tower pilot plant located at Plataforma Solar de Almería
<p>Repository that contains experimental data obtained from a Wet Cooling Tower (WCT) plant located at <a href="https://www.psa.es/es/index.php">Plataforma Solar de Almería</a>.</p> <p>For the article "Wet cooling tower performance prediction in CSP plants: A comparison between artificial neural networks and Poppe’s model", three experimental campaigns were used, quoting from the article:</p> <blockquote> <p>A total of 132 steady-state experimental points have been obtained thanks to the thorough experimentation conducted. These data cover a large variety of ambient conditions (different seasons, days and nights) and thermal loads (from 27 kW to 207 kW). </p> </blockquote> <p> </p> <p>See <code>README.md</code> for a more detailed description and instructions on how to use the data.</p> <h2><br>License</h2> <p><a href="https://creativecommons.org/licenses/by/4.0/">CC BY 4.0. Attribution 4.0 International</a></p> <p>If the data is used as part of a scientific publication, please cite the source publication:</p> <div> <div>Serrano, Juan Miguel, Pedro Navarro, Javier Ruiz, Patricia Palenzuela, Manuel Lucas, and Lidia Roca. “Wet Cooling Tower Performance Prediction in CSP Plants: A Comparison between Artificial Neural Networks and Poppe’s Model.” <em>Energy</em> 303 (September 15, 2024): 131844. <a href="https://doi.org/10.1016/j.energy.2024.131844">https://doi.org/10.1016/j.energy.2024.131844</a>.</div> </div>
Experimental X-ray Diffraction Data for "Cooling-Induced Order-Disorder Phase Transition in CsPbBr3 Nanocrystal Superlattices"
<p>Experimental X-ray diffraction data: </p> <p>-- temperature-dependent diffraction patterns (theta:2theta, rocking curves) for C18 and C8 CsPbBr3 nanocrystal superlattice samples;</p> <p>-- room temperature diffraction patterns (theta:2theta, rocking curves) for C6, C8, C10, C12, and C18 CsPbBr3 nanocrystal superlattices;</p> <p>in all files, first column is angle in degrees and the second column is intensity.</p>
Numerical and experimental dataset for an air-cooled data center
<p>This dataset contains the<em> </em><em>underling data</em><em> </em>for the papers:</p> <p><em>M. Kuzay, A. Dogan, S. Yilmaz, O. Herkiloglu, A.S. Atalay, C. Yilmaz, E. Demirel, Retrofitting of an air-cooled data center for energy efficiency, Case Studies in Thermal Engineering (2022), 36, 102228. <a href="https://doi.org/10.1016/j.csite.2022.102228">https://doi.org/10.1016/j.csite.2022.102228</a>.</em></p> <p><em>M. Kuzay, A. Dogan, S. Yilmaz, O. Herkiloglu, A.S. Atalay, C. Yilmaz, E. Demirel, Numerical and experimental dataset for an air-cooled data center, </em><em>Data in Brief (2022).</em></p> <p>All cases were prepared using OpenFOAM 8 for the simulation of flow and thermal structures inside the data center for both previous and retrofitted designs.</p> <p> </p> <p><strong><a href="https://doi.org/10.1016/j.csite.2022.102228">data.tar.xz</a>: </strong>Temperature data obtained from the experimental studies conducted for previous and retrofitted designs.</p> <p><strong><a href="http://doi.org/10.1016/j.csite.2022.102228">experimentalScenarios.tar.xz:</a> </strong>OpenFOAM files and scripts for the simulation of flow and thermal structures under the same thermal conditions as in the experimental studies for previous and retrofitted designs.</p> <p><strong><a href="http://doi.org/10.1016/j.csite.2022.102228">fictiousScenarios.tar.xz</a>: </strong>OpenFOAM files and scripts for the simulation of flow and thermal structures for a working scenario of 15.5 kW for previous and retrofitted designs.</p> <p><strong><a href="http://doi.org/10.1016/j.csite.2022.102228">postProcess.tar.xz</a>: </strong>Numerical results obtained from the validated numerical model.</p>
Experimental data for latent thermal storage cooling
<p>Datasets contain experimental data for a thermal storage tank. In the datasets provided two experiments are carried out - one where the tank is filled only with water and the second where part of the volume in the top portion of the tank is replaced by containers containing phase change materials. In both cases, the system is firstly heated up to 65 °C. After water and PCM has reached that temperature, the system is being cooled by a direct flow of cold water. Temperature measurements are logged on the side of the tank describing different levels within tank. For the measurement of PCM, temperature sensor is placed inside the PCM container. </p> <p>Data can be used to validate mathematical models of the latent thermal storage systems. </p> <p>More detailed information in added Description.pdf file. </p>
Experimental and numerical thermal analysis of a lithium-ion battery module based on a novel liquid cooling plate embedded with phase change material
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Data from: Differential temperature sensitivity of synaptic and firing processes in a neural mass model of epileptic discharges explains heterogeneous response of experimental epilepsy to focal brain cooling
Experiments with drug-induced epilepsy in rat brains and epileptic human brain region reveal that focal cooling can suppress epileptic discharges without affecting the brain's normal neurological function. Findings suggest a viable treatment for intractable epilepsy cases via an implantable cooling device. However, precise mechanisms by which cooling suppresses epileptic discharges are still not clearly understood. Cooling experiments in vitro presented evidence of reduction in neurotransmitter release from presynaptic terminals and loss of dendritic spines at post-synaptic terminals offering a possible synaptic mechanism. We show that termination of epileptic discharges is possible by introducing a homogeneous temperature factor in a neural mass model which attenuates the post-synaptic impulse responses of the neuronal populations. This result however may be expected since such attenuation leads to reduced post-synaptic potential and when the effect on inhibitory interneurons is less than on excitatory interneurons, frequency of firing of pyramidal cells is consequently reduced. While this is observed in cooling experiments in vitro, experiments in vivo exhibit persistent discharges during cooling but suppressed in magnitude. This leads us to conjecture that reduction in the frequency of discharges may be compensated through intrinsic excitability mechanisms. Such compensatory mechanism is modelled using a reciprocal temperature factor in the firing response function in the neural mass model. We demonstrate that the complete model can reproduce attenuation of both magnitude and frequency of epileptic discharges during cooling. The compensatory mechanism suggests that cooling lowers the average and the variance of the distribution of threshold potential of firing across the population. Bifurcation study with respect to the temperature parameters of the model reveals how heterogeneous response of epileptic discharges to cooling (termination or suppression only) is exhibited. Possibility of differential temperature effects on post-synaptic potential generation of different populations is also explored.
Data from: Differential temperature sensitivity of synaptic and firing processes in a neural mass model of epileptic discharges explains heterogeneous response of experimental epilepsy to focal brain cooling
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Data from: Practical and experimental work on thatch characteristics from cool season turfgrass monocultures and mixtures
<p><span>In a practical setup on a 3-yr old nursery green of golf course Bernardus in the southern part of the Netherlands with plots of 1.5 m<sup>2</sup> each with 38 commercial varieties of the Dutch seed company Barenbrug in total of 7 different turfgrass (sub)species, varieties of <em>Festuca rubra</em> <em>commutata (Frc)</em>, <em>Festuca rubra trichophylla (Frt)</em>, <em>Festuca rubra rubra (Frr)</em>, <em>Agrostis capillaris</em> (Ac) and <em>Lolium perenne (Lp)</em> were selected for measuring thatch and mat depth. From every variety 8 samples from a plot were taken according to the method described in Evers et al (2024). The construction of the nursery green was a USGA coarse textured sand based construction. The nursery green was maintained like the greens in the 18-holes course, with daily mowing at 5 mm, low nitrogen input (50 kg N ha<sup>-1</sup> year<sup>-1</sup>), regular sand dressing and aeration.</span></p> <p><span><span>In a 4-yr pot experiment thatch thickness in monocultures of different </span><em>Festuca rubra</em><span> subspecies and 3 varieties per subspecies in three different mixtures of these varieties of monocultures of </span><em>Festuca rubra</em><span> subspecies under low input management, (30 and 90 kg N ha-1.year-1 and no disturbance by sand dressing or aeration, was analysed. Given the possible synergistic effects between subspecies and their varieties on plant biomass production, it was interesting to compare actual measured thatch thickness and visible plant biomass (VPB) concentration in thatch with values that might be expected, calculated based on their monocultures and their relative abundance. </span></span></p>
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International Brain Laboratory public data
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OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.