Data for: Evaporation driven by conductive heat transport (doi:10.18419/darus-2230)

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Part 2: Study Description
Part 5: Other Study-Related Materials
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Document Description

Citation

Title:

Data for: Evaporation driven by conductive heat transport

Identification Number:

doi:10.18419/darus-2230

Distributor:

DaRUS

Date of Distribution:

2021-11-11

Version:

1

Bibliographic Citation:

Homes, Simon; Heinen, Matthias; Vrabec, Jadran; Fischer, Johann, 2021, "Data for: Evaporation driven by conductive heat transport", https://doi.org/10.18419/darus-2230, DaRUS, V1

Study Description

Citation

Title:

Data for: Evaporation driven by conductive heat transport

Identification Number:

doi:10.18419/darus-2230

Authoring Entity:

Homes, Simon (Technische Universität Berlin)

Heinen, Matthias (Technische Universität Berlin)

Vrabec, Jadran (Technische Universität Berlin)

Fischer, Johann (Universität für Bodenkultur, Wien, Austria)

Grant Number:

84292822

Grant Number:

01IH16008

Distributor:

DaRUS

Access Authority:

Vrabec, Jadran

Depositor:

Homes, Simon

Date of Deposit:

2021-11-08

Holdings Information:

https://doi.org/10.18419/darus-2230

Study Scope

Keywords:

Engineering, Physics, Molecular dynamics, MD, Computer Simulation, Stationary evaporation

Abstract:

<p>The present data is a digest of the simulations conducted in the scope of the related publication. The phenomena of stationary evaporation of the Lennard-Jones-truncated-shifted fluid was studied using large scale Molecular Dynamics (MD) simulations. The domain of the conducted simulations consisted of one liquid and one vapor phase. The bulk liquid was thermostated until a distance Ln to the interface. As a right boundary condition, a vacuum was employed. The deleted particles in the vacuum were replenished by pushing liquid slabs into the liquid on the left side of the domain.</p> The present data consists of the input files to run the simulations (config*.xml) and the postprocessed result files including profile data at stationarity (profile_data*.dat). The file names indicate the variation of the two controlled variables Ln (length of non-thermostated liquid region) and T (or Tliq; bulk liquid temperature).

Methodology and Processing

Sources Statement

Data Access

Other Study Description Materials

Related Publications

Citation

Title:

Simon Homes, Matthias Heinen, Jadran Vrabec & Johann Fischer (2021) Evaporation driven by conductive heat transport, Molecular Physics, 119:15-16

Identification Number:

10.1080/00268976.2020.1836410

Bibliographic Citation:

Simon Homes, Matthias Heinen, Jadran Vrabec & Johann Fischer (2021) Evaporation driven by conductive heat transport, Molecular Physics, 119:15-16

Other Study-Related Materials

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config_01_T0.625_Ln005.2.xml

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text/xml

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config_02_T0.625_Ln010.4.xml

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text/xml

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config_03_T0.625_Ln015.6.xml

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text/xml

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config_04_T0.625_Ln020.8.xml

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text/xml

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config_05_T0.625_Ln026.xml

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text/xml

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config_06_T0.625_Ln052.xml

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text/xml

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config_07_T0.625_Ln104.xml

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text/xml

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config_08_T0.625_Ln208.xml

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text/xml

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config_101_T0.650_Ln005.2.xml

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text/xml

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config_102_T0.650_Ln010.4.xml

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text/xml

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config_103_T0.650_Ln015.6.xml

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text/xml

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config_104_T0.650_Ln020.8.xml

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text/xml

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Label:

config_105_T0.650_Ln026.xml

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text/xml

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config_106_T0.650_Ln052.xml

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text/xml

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config_107_T0.650_Ln104.xml

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text/xml

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config_108_T0.650_Ln208.xml

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text/xml

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config_201_T0.700_Ln005.2.xml

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text/xml

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config_202_T0.700_Ln015.6.xml

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text/xml

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config_203_T0.700_Ln026.xml

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text/xml

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config_204_T0.700_Ln052.xml

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text/xml

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config_205_T0.700_Ln104.xml

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text/xml

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config_206_T0.700_Ln208.xml

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text/xml

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config_301_T0.750_Ln005.2.xml

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text/xml

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config_302_T0.750_Ln015.6.xml

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text/xml

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config_303_T0.750_Ln026.xml

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text/xml

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config_304_T0.750_Ln052.xml

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text/xml

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Label:

config_305_T0.750_Ln104.xml

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text/xml

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Label:

config_306_T0.750_Ln208.xml

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text/xml

Other Study-Related Materials

Label:

profile_data_01_T0.625_Ln005.2.dat

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text/x-fixed-field

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Label:

profile_data_02_T0.625_Ln010.4.dat

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text/x-fixed-field

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profile_data_03_T0.625_Ln015.6.dat

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text/x-fixed-field

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profile_data_04_T0.625_Ln020.8.dat

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text/x-fixed-field

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Label:

profile_data_05_T0.625_Ln026.dat

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text/x-fixed-field

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profile_data_06_T0.625_Ln052.dat

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text/x-fixed-field

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profile_data_07_T0.625_Ln104.dat

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text/x-fixed-field

Other Study-Related Materials

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profile_data_08_T0.625_Ln208.dat

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text/x-fixed-field

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Label:

profile_data_101_T0.650_Ln005.2.dat

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text/x-fixed-field

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profile_data_102_T0.650_Ln010.4.dat

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text/x-fixed-field

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profile_data_103_T0.650_Ln015.6.dat

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text/x-fixed-field

Other Study-Related Materials

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profile_data_104_T0.650_Ln020.8.dat

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text/x-fixed-field

Other Study-Related Materials

Label:

profile_data_105_T0.650_Ln026.dat

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text/x-fixed-field

Other Study-Related Materials

Label:

profile_data_106_T0.650_Ln052.dat

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text/x-fixed-field

Other Study-Related Materials

Label:

profile_data_107_T0.650_Ln104.dat

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text/x-fixed-field

Other Study-Related Materials

Label:

profile_data_108_T0.650_Ln208.dat

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text/x-fixed-field

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profile_data_201_T0.700_Ln005.2.dat

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text/x-fixed-field

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profile_data_202_T0.700_Ln015.6.dat

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text/x-fixed-field

Other Study-Related Materials

Label:

profile_data_203_T0.700_Ln026.dat

Notes:

text/x-fixed-field

Other Study-Related Materials

Label:

profile_data_204_T0.700_Ln052.dat

Notes:

text/x-fixed-field

Other Study-Related Materials

Label:

profile_data_205_T0.700_Ln104.dat

Notes:

text/x-fixed-field

Other Study-Related Materials

Label:

profile_data_206_T0.700_Ln208.dat

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text/x-fixed-field

Other Study-Related Materials

Label:

profile_data_301_T0.750_Ln005.2.dat

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text/x-fixed-field

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profile_data_302_T0.750_Ln015.6.dat

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text/x-fixed-field

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profile_data_303_T0.750_Ln026.dat

Notes:

text/x-fixed-field

Other Study-Related Materials

Label:

profile_data_304_T0.750_Ln052.dat

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text/x-fixed-field

Other Study-Related Materials

Label:

profile_data_305_T0.750_Ln104.dat

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text/x-fixed-field

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Label:

profile_data_306_T0.750_Ln208.dat

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text/x-fixed-field