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23 results for “heating rate”

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zenodo40/100

Estimation of groundwater flow rate by an actively heated fiber optics based thermal response test in a grouted borehole

<p>The dataset contains the numerical&nbsp;data and the <em>in-situ</em> measurements in the manuscript titled &quot;Estimation of groundwater flow rate by an actively heated fiber-optics-based thermal response test in a grouted borehole&quot;. The data is stored in MAT files, which are Binary MATLAB files. There are a series of codes used in this manuscript to estimate groundwater flow rates. The codes were written in MATLAB Live Script, version 2021b.</p> <ul> <li>The numerical&nbsp;data contains temperatures of the heating stage in&nbsp;different thermal response tests in a numerical model, which considers the borehole effects. The model is set up by&nbsp;COMSOL Multiphysics, and a series of flow rates&nbsp;is set to the model&nbsp;respectively for&nbsp;different thermal response tests.</li> <li>The <em>in-situ</em> measurements include&nbsp;temperatures of the heating stage in an actively heated fiber-optics-based thermal response test, which was performed in July 2021 in the grouted borehole, which is located in the lower section of the Sima bend of the Yangtze River. The temperature for the flow rate estimation&nbsp;was thinned to 120 s records from 10s records for the limited computing resources.</li> <li>The <em>data_process.mlx</em>&nbsp;provides pre-processing for the observational data recorded by&nbsp;Silixa Ultima-M MK2 DTS. The&nbsp;<em>estimation_process.mlx </em>gives a groundwater flow estimation case in&nbsp;a grouted borehole.</li> </ul>

opencc-by-4.0Apr 2022View details →
zenodo40/100

A Dataset of the Operating Station Heat Rate for 806 Indian Coal Plant Units using Machine Learning

<div> <div> <div> <div> <p>India aims to achieve net-zero emissions by 2070 and has set an ambitious target of 500 GW of renewable power generation capacity by 2030. Coal plants currently contribute to more than 60% of India&rsquo;s electricity generation in 2022. Upgrading and decarbonizing high-emission coal plants became a pressing energy issue. A key technical parameter for coal plants is the operating station heat rate (SHR), which represents the thermal efficiency of a coal plant. Yet, the operating SHR of Indian coal plants varies and is not comprehensively documented. This study extends from several existing databases and creates an SHR dataset for 806 Indian coal plant units using machine learning (ML), presenting the most comprehensive coverage to date. Additionally, it incorporates environmental factors such as water stress risk and coal prices as prediction features to improve accuracy. This dataset, easily downloadable from our visualization platform, could inform energy and environmental policies for India&rsquo;s coal power generation as the country transitions towards its renewable energy targets.</p> </div> </div> </div> </div>

opencc-by-4.0Mar 2024View details →
dryad36/100

Experimental facilitation of heat loss affects work rate and innate immune function in a breeding passerine bird

The capacity to get rid of excess heat produced during hard work is a possible constraint on parental effort during reproduction (heat dissipation limit [HDL] theory). We released hard-working blue tits (Cyanistes caeruleus) from this constraint by experimentally removing ventral plumage. We then assessed if this changed their reproductive effort (feeding rate and nestling size) and levels of self-maintenance (change in body mass and innate immune function). Feather-clipped females reduced the number of feeding visits and increased levels of constitutive innate immunity compared to unclipped females but did not fledge smaller nestlings. Thus, they increased self-maintenance without compromising current reproductive output. In contrast, feather-clipping did not affect the number of feeding visits or innate immune function in males, despite increased heat loss rate. Our results show that analyses of physiological parameters, such as constitutive innate immune function, can be important when trying to understand sources of variation in investment in self-maintenance versus reproductive effort and that risk of overheating can influence innate immune function during reproduction.

opencc-zeroMar 2020View details →
dryad36/100

Data from: Heating rates are more strongly influenced by near-infrared than visible reflectance in beetles

<p>Adaptations to control heat transfer through the integument are a key component of temperature regulation in animals. However, there remain significant gaps in our understanding of how different optical and morphological properties of the integument affect heating rates. To address these gaps, we examined the effect of reflectivity in both ultraviolet-visible and near-infrared wavelengths, surface micro-sculpturing, effective area (area subjected to illumination) and cuticle thickness on radiative heat gain in jewel beetles (Buprestidae). We measured heating rate using a solar simulator to mimic natural sunlight, a thermal chamber to control the effects of conduction and convection, and optical filters to isolate different wavelengths. We found that effective area and reflectivity predicted heating rate. The thermal effect of reflectivity was driven by variation in near-infrared rather than ultraviolet-visible reflectivity. By contrast, cuticle thickness and surface rugosity had no detectable effect. Our results provide empirical evidence that near-infrared reflectivity has an important effect on radiative heat gain. Modulating reflectance of near-infrared wavelengths of light may be a more widespread adaptation to control heat gain than previously appreciated.</p>

opencc-zeroSep 2021View details →
zenodo36/100

Bio-Optic bio-shortwave model code, initial conditions, river and boundary forcing for "Estimating the seaonal impact of optically significant water constituents on surface heating rates in the Western Baltic Sea" paper.

<p>Bio-Optic bio-shortwave model code, initial conditions, river and boundary forcing as well as selected model output used for analysis and producing figures in the paper &quot;Estimating the seaonal impact of optically significant water constituents on surface heating rates in the Western Baltic Sea&quot;. Contact Bronwyn Cahill if you have questions at: bronwyn.cahill@io-warnemuende.de</p>

opencc-by-4.0Mar 2023View details →
ClinicalTrials.gov36/100

Intramuscular Heating Rates of a Chattanooga Intelect XT Therapeutic Ultrasound

ClinicalTrials.gov study NCT03816709. IPD Sharing: NO. Countries: 1. Publications: 3.

closedIPD-NOFeb 2026View details →
dryad36/100

Data from: Heating up parasitoid-host interactions: high temperature increased mortality of late-instar braconid larvae and reduced ladybird recovery rate

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publicOct 2025View details →
dryad36/100

Experimental facilitation of heat loss affects work rate and innate immune function in a breeding passerine bird

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publicMar 2020View details →
dryad36/100

Data from: Heating rates are more strongly influenced by near-infrared than visible reflectance in beetles

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publicSep 2021View details →
dryad36/100

Critical thermal maxima of early life stages of three tropical fishes: effects of rearing temperature and experimental heating rate

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publicApr 2020View details →
zenodo32/100

Heating Rates for Protons and Electrons in Polar Coronal Holes: Empirical Constraints from UVCS/SOHO (Associated Data)

<p>The accompanying files provide some &quot;data behind the figures,&quot; as well as some supplementary data (e.g., properties of Monte Carlo trial models), for the paper titled &quot;Heating Rates for Protons and Electrons in Polar Coronal Holes: Empirical Constraints from the Ultraviolet Coronagraph Spectrometer&quot; (by Steven R. Cranmer), which was submitted to the Astrophysical Journal on 25 May 2020, and is currently undergoing revision in response to the referee&#39;s report as of 25 June 2020.&nbsp; All files ought to be in standard &quot;Machine Readable Table&quot; format.</p> <p>v1.1 note: The paper has been published as ApJ, vol. 900, paper number 105.<br> ADS link: https://ui.adsabs.harvard.edu/abs/2020ApJ...900..105C/abstract<br> &nbsp;</p>

opencc-by-4.0Jun 2020View details →
dryad32/100

Colonization history affects heating rates of invasive cane toads

<p>Amphibians in hot climates may be able to avoid high temperatures by controlling their rates of heating. In northern Australia, invasive cane toads (<span class="Italic">Rhinella marina</span>) experience hot dry conditions in newly-colonized (western) sites but milder conditions in longer-occupied (eastern) sites. Under standardized conditions, toads from western sites heated less rapidly than did conspecifics from an eastern site. The availability of free water slowed heating rates of eastern but not western toads. Thus, the colonization of climatically extreme sites has been accompanied by a rapid shift in the toads' ability to remain cool under hot conditions, even when free water is not available.</p>

opencc-zeroAug 2020View details →
zenodo32/100

[Dataset] Evaluation of the Empirical Scaling Factor of Joule Heating Rates in TIE-GCM with EISCAT Measurements

<p>Dataset used for "Evaluation of the Empirical Scaling Factor of Joule Heating Rates in TIE-GCM with EISCAT Measurements"</p>

opencc-by-4.0Nov 2023View details →
zenodo32/100

Data from: Extreme escalation of heat failure rates in ectotherms with global warming

<p>Data from: Extreme escalation of heat failure rates in ectotherms with global warming</p>

opencc-by-4.0Oct 2022View details →
zenodo32/100

Effects of strain rate and adiabatic heating on mechanical behavior of medium manganese Q&P steels - dataset

<p>The data set used in Effects of strain rate and adiabatic heating on mechanical behavior of medium manganese Q&amp;P steels by Veera Langi</p>

opencc-by-4.0Jan 2023View details →
dryad32/100

Slow heating rates increase thermal tolerance and alter mRNA HSP expression in juvenile white sturgeon (Acipenser transmontanus)

<p><span>Fresh</span><span>water fish such as white sturgeon (<em>Acipenser transmontanus</em>) are particularly vulnerable to the effects of anthropogenically induced global warming. Critical thermal maximum tests (CT<sub>max</sub>) are often conducted to provide insight of the impacts of changing temperatures; however, little is known about how the rate of temperature increase in these assays affects thermal tolerance. To assess the effect of heating rate (0.3<span>°C/min, 0.03°C/min, 0.003°C/min) we measured thermal tolerance, somatic indices, and Hsp mRNA expression. </span>Contrary to what has been observed in most other fish species,<span> white sturgeon thermal tolerance</span> was highest at the slowest heating rate of 0.003°C/min, suggesting an ability to rapidly acclimate to slowly increasing temperatures. Hepatosomatic index decreased in all heating rates relative to control fish, indicative of the metabolic costs of thermal stress. <span>At the transcriptional level</span>, slower heating rates resulted in higher mRNA expression of<em> Hsp90a,</em> <em>Hsp90b, </em>and <em>Hsp70. Hsp70 </em>mRNA expression was increased in all heating rates relative to controls, whereas<em> </em>expression of<em> Hsp90a </em>and <em>Hsp90b</em> mRNA only increased in the two slower trials. Together these data indicate that white sturgeon have a very plastic thermal response, which is likely energetically costly to induce. <span>Acute temperature changes may be more detrimental to sturgeon as they struggle to acclimate to rapid changes in their environment, however under slower warming rates they demonstrate strong thermal plasticity to warming.</span></span></p>

opencc-zeroDec 2022View details →
dryad32/100

Colonization history affects heating rates of invasive cane toads

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publicAug 2020View details →
dryad32/100

Slow heating rates increase thermal tolerance and alter mRNA HSP expression in juvenile white sturgeon (Acipenser transmontanus)

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publicMay 2023View details →
dryad28/100

Data from: Thermal conductance and basal metabolic rate are part of a coordinated system for heat transfer regulation

Thermal conductance measures the ease with which heat leaves or enters an organism's body. Although the analysis of this physiological variable in relation to climatic and ecological factors can be traced to studies by Scholander and colleagues, only small advances have occurred ever since. Here, we analyse the relationship between minimal thermal conductance estimated during summer (Cmin) and several ecological, climatic and geographical factors for 127 rodent species, in order to identify the exogenous factors that have potentially affected the evolution of thermal conductance. In addition, we evaluate whether there is compensation between Cmin and basal metabolic rate (BMR)—in such a way that a scale-invariant ratio between both variables is equal to one—as could be expected from the Scholander–Irving model of heat transfer. Our major findings are (i) annual mean temperature is the best single predictor of mass-independent Cmin. (ii) After controlling for the effect of body mass, there is a strong positive correlation between log10 (Cmin) and log10 (BMR). Further, the slope of this correlation is close to one, indicating an almost perfect compensation between both physiological variables. (iii) Structural equation modelling indicated that Cmin values are adjusted to BMR values and not the other way around. Thus, our results strongly suggest that BMR and thermal conductance integrate a coordinated system for heat regulation in endothermic animals and that summer conductance values are adjusted (in an evolutionary sense) to track changes in BMRs.

opencc-zeroDec 2012View details →
dryad28/100

Data from: Thermal conductance and basal metabolic rate are part of a coordinated system for heat transfer regulation

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publicJul 2013View details →

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