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Auswahl der wissenschaftlichen Literatur zum Thema „Correlations Steam Entropy Superheated Compressed liquid“

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Zeitschriftenartikel zum Thema "Correlations Steam Entropy Superheated Compressed liquid"

1

Mumah, S. N., and H.F. Nwafulugo F.U. &. Alexander S. Akande. "RELATIONSHIPS FOR GENERATING ENTROPY OF SUPERHEATED STEAM AND COMPRESSED LIQUID WATER." Nigerian Journal of Renewable Energy Research 1, no. 3 (2025): 56–68. https://doi.org/10.5281/zenodo.15031091.

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<em>For chemical processes to be effectively designed, simulated, and optimised, accurate data correlations are essential. However, it can be difficult to produce accurate correlations, especially for complicated systems with many independent variables. The primary goal of this work is to produce precise correlations for superheated steam and compressed liquid water at different pressures and temperatures. Entropy is the property under consideration in this study. Across a wide range of temperatures and pressures, the Proportional Nodes technique has demonstrated remarkable efficacy in produci
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2

Mumah, S. N., and H.F. Nwafulugo F.U. &. Alexander S. Akande. "SATURATED PROPERTIES CORRELATIONS FOR STEAM AND VAPOUR OVER SATURATED ICE." Nigerian Journal of Renewable Energy Research 1, no. 3 (2025): 97–106. https://doi.org/10.5281/zenodo.15031464.

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<em>Accurate data correlations are fundamental for the effective design, simulation, and optimization of chemical processes. However, generating precise correlations, particularly for complex systems involving multiple independent variables, poses significant challenges. This study focuses on the generation of accurate correlations for saturated properties of steam and water vapour over ice. To validate the correlations, all the values generated were compared with the EES data. All showed coefficient of determination (R<sup>2</sup>) higher or equal to 0.9998. The correlations therefore demonst
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3

Mumah, S. N., and G. I. Akande H.F. Nwafulugo F.U. &. Alexander S. Tanimu. "APPLICATION OF PROPORTIONAL NODES METHOD TO GENERATE CORRELATIONS FOR SPECIFIC VOLUME OF SUPERHEATED STEAM AND COMPRESSED LIQUID WATER." Nigerian Journal of Renewable Energy Research 1, no. 3 (2025): 82–96. https://doi.org/10.5281/zenodo.15011403.

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<em>Accurate data correlations are fundamental for the effective design, simulation, and optimization of chemical processes. However, generating precise correlations, particularly for complex systems involving multiple independent variables, poses significant challenges. This study focuses on the critical need to generate accurate correlations for specific volume of superheated steam and compressed liquid water at various temperatures and pressures, The Proportional Nodes Method has proven highly effective in generating accurate correlations for specific volume of superheated steam and compres
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4

Mumah, S. N., and G. I. Akande H.F. Nwafulugo F.U. &. Alexander S. Tanimu. "DEVELOPMENT OF CORELLATIONS FOR GENERATING INTERNAL ENERGY OF SUPERHEATED STEAM AND COMPRESSED LIQUID WATER." Nigerian Journal of Renewable Energy Research 1, no. 3 (2025): 69–81. https://doi.org/10.5281/zenodo.15034452.

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<em>Accurate data correlations are fundamental for the effective design, simulation, and optimization of chemical processes. However, generating precise correlations, particularly for complex systems involving multiple independent variables, poses significant challenges. This study focuses on the critical need to generate accurate correlations for internal energy of superheated steam and compressed liquid water at various temperatures and pressures, The Proportional Nodes Method has proven highly effective in generating accurate correlations for internal energy of superheated steam and compres
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5

Mumah, S. N., and H.F. Nwafulugo F.U. &. Alexander S. Akande. "CORRELATIONS FOR GENERATING ENTHALPY OF SUPERHEATED STEAM AND COMPRESSED LIQUID WATER." Nigerian Journal of Renewable Energy Research 1, no. 3 (2025): 44–55. https://doi.org/10.5281/zenodo.15011711.

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<em>Accurate data correlations are fundamental for the effective design, simulation, and optimization of chemical processes. However, generating precise correlations, particularly for complex systems involving multiple independent variables, poses significant challenges. This study focuses on the critical need to generate accurate correlations for enthalpy of superheated steam and compressed liquid water at various temperatures and pressures, The Proportional Nodes Method has proven highly effective in generating accurate correlations for enthalpy of superheated steam and compressed liquid wat
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