The Experts below are selected from a list of 366636 Experts worldwide ranked by ideXlab platform
Scott H Fogler - One of the best experts on this subject based on the ideXlab platform.
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effects of operating conditions on wax deposit carbon number Distribution Theory and experiment
Energy & Fuels, 2013Co-Authors: Sheng Zheng, Fan Zhang, Zhenyu Huang, Scott H FoglerAbstract:Wax deposition in subsea pipelines is a problem of enormous economic consequences. The carbon number Distribution (CND) is an important characteristic of the deposit because it significantly affects the yield stress of wax deposit , which is important in the design of the remediation technique of pigging. In this study, the recent theories for wax thermodynamic modeling are coupled with heat and mass transport modeling to identify the critical factors that determine the carbon number Distribution of wax deposits. It is found that the deposit carbon number Distribution is closely related to the diffusion of different n-alkane components and their respective concentration driving forces. The impact of molecular diffusion of the multiple components on the evolution of deposit carbon number Distribution is quantified by evaluating of the mass driving force for each n-paraffin component. In addition, the effects of operating conditions on the deposit carbon number Distribution are investigated by modeling and ...
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effects of operating conditions on wax deposit carbon number Distribution Theory and experiment
Energy & Fuels, 2013Co-Authors: Sheng Zheng, Fan Zhang, Zhenyu Huang, Scott H FoglerAbstract:Wax deposition in subsea pipelines is a problem of enormous economic consequences. The carbon number Distribution (CND) is an important characteristic of the deposit because it significantly affect...
Sheng Zheng - One of the best experts on this subject based on the ideXlab platform.
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effects of operating conditions on wax deposit carbon number Distribution Theory and experiment
Energy & Fuels, 2013Co-Authors: Sheng Zheng, Fan Zhang, Zhenyu Huang, Scott H FoglerAbstract:Wax deposition in subsea pipelines is a problem of enormous economic consequences. The carbon number Distribution (CND) is an important characteristic of the deposit because it significantly affects the yield stress of wax deposit , which is important in the design of the remediation technique of pigging. In this study, the recent theories for wax thermodynamic modeling are coupled with heat and mass transport modeling to identify the critical factors that determine the carbon number Distribution of wax deposits. It is found that the deposit carbon number Distribution is closely related to the diffusion of different n-alkane components and their respective concentration driving forces. The impact of molecular diffusion of the multiple components on the evolution of deposit carbon number Distribution is quantified by evaluating of the mass driving force for each n-paraffin component. In addition, the effects of operating conditions on the deposit carbon number Distribution are investigated by modeling and ...
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effects of operating conditions on wax deposit carbon number Distribution Theory and experiment
Energy & Fuels, 2013Co-Authors: Sheng Zheng, Fan Zhang, Zhenyu Huang, Scott H FoglerAbstract:Wax deposition in subsea pipelines is a problem of enormous economic consequences. The carbon number Distribution (CND) is an important characteristic of the deposit because it significantly affect...
Evelyn N Wang - One of the best experts on this subject based on the ideXlab platform.
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size Distribution Theory for jumping droplet condensation
Applied Physics Letters, 2019Co-Authors: Lenan Zhang, Evelyn N WangAbstract:Jumping-droplet condensation is promising for various applications where the droplet size Distribution plays a key role in the overall system performance. Despite being extensively studied in recent works, inconsistencies existed in previous size Distribution models as the droplet growth and removal mechanisms were often not properly described. Here, we developed a theoretical framework where the contact and the coalescence of droplets were identified as the dominant mechanisms for instantaneous size Distribution change. We found a critical droplet diameter comparable to the average nucleation site distance, beyond which the droplet population decreased rapidly. This result is analogous to the well-known Fermi-Dirac Distribution due to the underlying exclusive principle. We also showed the effect of the contact angle, that is, larger droplets become more probable as surface hydrophobicity increases. The coalescence count Distribution given by the current Theory agrees well with experimental data. Furthermore, we demonstrated the use of the proposed model in predicting condensation heat transfer coefficients, which also shows good agreement with previous experiments. Our size Distribution Theory elucidates the fundamental process of droplet growth and interactions leading to an overall size Distribution during jumping-droplet condensation, which can be generally applied to self-cleaning, anti-icing/frosting, power generation, and water harvesting.
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size Distribution Theory for jumping droplet condensation
Applied Physics Letters, 2019Co-Authors: Lenan Zhang, Evelyn N WangAbstract:Jumping-droplet condensation is promising for various applications where the droplet size Distribution plays a key role in the overall system performance. Despite being extensively studied in recent works, inconsistencies existed in previous size Distribution models as the droplet growth and removal mechanisms were often not properly described. Here, we developed a theoretical framework where the contact and the coalescence of droplets were identified as the dominant mechanisms for instantaneous size Distribution change. We found a critical droplet diameter comparable to the average nucleation site distance, beyond which the droplet population decreased rapidly. This result is analogous to the well-known Fermi-Dirac Distribution due to the underlying exclusive principle. We also showed the effect of the contact angle, that is, larger droplets become more probable as surface hydrophobicity increases. The coalescence count Distribution given by the current Theory agrees well with experimental data. Furthermore, we demonstrated the use of the proposed model in predicting condensation heat transfer coefficients, which also shows good agreement with previous experiments. Our size Distribution Theory elucidates the fundamental process of droplet growth and interactions leading to an overall size Distribution during jumping-droplet condensation, which can be generally applied to self-cleaning, anti-icing/frosting, power generation, and water harvesting.Jumping-droplet condensation is promising for various applications where the droplet size Distribution plays a key role in the overall system performance. Despite being extensively studied in recent works, inconsistencies existed in previous size Distribution models as the droplet growth and removal mechanisms were often not properly described. Here, we developed a theoretical framework where the contact and the coalescence of droplets were identified as the dominant mechanisms for instantaneous size Distribution change. We found a critical droplet diameter comparable to the average nucleation site distance, beyond which the droplet population decreased rapidly. This result is analogous to the well-known Fermi-Dirac Distribution due to the underlying exclusive principle. We also showed the effect of the contact angle, that is, larger droplets become more probable as surface hydrophobicity increases. The coalescence count Distribution given by the current Theory agrees well with experimental data. Furtherm...
Fan Zhang - One of the best experts on this subject based on the ideXlab platform.
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effects of operating conditions on wax deposit carbon number Distribution Theory and experiment
Energy & Fuels, 2013Co-Authors: Sheng Zheng, Fan Zhang, Zhenyu Huang, Scott H FoglerAbstract:Wax deposition in subsea pipelines is a problem of enormous economic consequences. The carbon number Distribution (CND) is an important characteristic of the deposit because it significantly affects the yield stress of wax deposit , which is important in the design of the remediation technique of pigging. In this study, the recent theories for wax thermodynamic modeling are coupled with heat and mass transport modeling to identify the critical factors that determine the carbon number Distribution of wax deposits. It is found that the deposit carbon number Distribution is closely related to the diffusion of different n-alkane components and their respective concentration driving forces. The impact of molecular diffusion of the multiple components on the evolution of deposit carbon number Distribution is quantified by evaluating of the mass driving force for each n-paraffin component. In addition, the effects of operating conditions on the deposit carbon number Distribution are investigated by modeling and ...
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effects of operating conditions on wax deposit carbon number Distribution Theory and experiment
Energy & Fuels, 2013Co-Authors: Sheng Zheng, Fan Zhang, Zhenyu Huang, Scott H FoglerAbstract:Wax deposition in subsea pipelines is a problem of enormous economic consequences. The carbon number Distribution (CND) is an important characteristic of the deposit because it significantly affect...
Zhenyu Huang - One of the best experts on this subject based on the ideXlab platform.
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effects of operating conditions on wax deposit carbon number Distribution Theory and experiment
Energy & Fuels, 2013Co-Authors: Sheng Zheng, Fan Zhang, Zhenyu Huang, Scott H FoglerAbstract:Wax deposition in subsea pipelines is a problem of enormous economic consequences. The carbon number Distribution (CND) is an important characteristic of the deposit because it significantly affects the yield stress of wax deposit , which is important in the design of the remediation technique of pigging. In this study, the recent theories for wax thermodynamic modeling are coupled with heat and mass transport modeling to identify the critical factors that determine the carbon number Distribution of wax deposits. It is found that the deposit carbon number Distribution is closely related to the diffusion of different n-alkane components and their respective concentration driving forces. The impact of molecular diffusion of the multiple components on the evolution of deposit carbon number Distribution is quantified by evaluating of the mass driving force for each n-paraffin component. In addition, the effects of operating conditions on the deposit carbon number Distribution are investigated by modeling and ...
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effects of operating conditions on wax deposit carbon number Distribution Theory and experiment
Energy & Fuels, 2013Co-Authors: Sheng Zheng, Fan Zhang, Zhenyu Huang, Scott H FoglerAbstract:Wax deposition in subsea pipelines is a problem of enormous economic consequences. The carbon number Distribution (CND) is an important characteristic of the deposit because it significantly affect...