The Experts below are selected from a list of 39 Experts worldwide ranked by ideXlab platform
Giuseppe Panno - One of the best experts on this subject based on the ideXlab platform.
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Exergy recovery in Regasification facilities - cold utilization: a modular unit
Applied Thermal Engineering, 2009Co-Authors: Celidonio Dispenza, Giorgio Dispenza, Vincenzo La Rocca, Giuseppe PannoAbstract:The paper deals with the problem of cold recovery for direct utilization both in the site of Regasification Facility and far from it.
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Exergy recovery in Regasification facilities – Cold utilization: A modular unit
Applied Thermal Engineering, 2009Co-Authors: Celidonio Dispenza, Giorgio Dispenza, Vincenzo La Rocca, Giuseppe PannoAbstract:The paper deals with the problem of cold recovery for direct cold utilization both in the site of Regasification Facility and far from it. \ud A modular LNG Regasification unit is proposed having the Regasification capacity of 2 billion standard cubic meters/year of gas. The modular plant is based on use of a Power Cycle working with Ethane or Ethylene which allows operation of cold energy transfer, contained in LNG to be regasified, in a range of temperatures suitable for multipurpose use of cold, reducing Regasification process irreversibility. Some electric energy is produced by the Power Cycle, but the own mission of modular unit proposed is addressed to deliver cold suitable for industrial and commercial use in the proper temperature range. The option considers, also, the use of Carbon dioxide as a secondary fluid for transfer of cold from Regasification site to far end users. This option seems very attractive due to expected wide future exploitation of LNG Regasification in the World.\ud Results of a detailed thermodynamic and economic analysis demonstrate the suitability of the proposal
Celidonio Dispenza - One of the best experts on this subject based on the ideXlab platform.
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Exergy recovery in Regasification facilities - cold utilization: a modular unit
Applied Thermal Engineering, 2009Co-Authors: Celidonio Dispenza, Giorgio Dispenza, Vincenzo La Rocca, Giuseppe PannoAbstract:The paper deals with the problem of cold recovery for direct utilization both in the site of Regasification Facility and far from it.
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Exergy recovery in Regasification facilities – Cold utilization: A modular unit
Applied Thermal Engineering, 2009Co-Authors: Celidonio Dispenza, Giorgio Dispenza, Vincenzo La Rocca, Giuseppe PannoAbstract:The paper deals with the problem of cold recovery for direct cold utilization both in the site of Regasification Facility and far from it. \ud A modular LNG Regasification unit is proposed having the Regasification capacity of 2 billion standard cubic meters/year of gas. The modular plant is based on use of a Power Cycle working with Ethane or Ethylene which allows operation of cold energy transfer, contained in LNG to be regasified, in a range of temperatures suitable for multipurpose use of cold, reducing Regasification process irreversibility. Some electric energy is produced by the Power Cycle, but the own mission of modular unit proposed is addressed to deliver cold suitable for industrial and commercial use in the proper temperature range. The option considers, also, the use of Carbon dioxide as a secondary fluid for transfer of cold from Regasification site to far end users. This option seems very attractive due to expected wide future exploitation of LNG Regasification in the World.\ud Results of a detailed thermodynamic and economic analysis demonstrate the suitability of the proposal
Giorgio Dispenza - One of the best experts on this subject based on the ideXlab platform.
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Exergy recovery in Regasification facilities - cold utilization: a modular unit
Applied Thermal Engineering, 2009Co-Authors: Celidonio Dispenza, Giorgio Dispenza, Vincenzo La Rocca, Giuseppe PannoAbstract:The paper deals with the problem of cold recovery for direct utilization both in the site of Regasification Facility and far from it.
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Exergy recovery in Regasification facilities – Cold utilization: A modular unit
Applied Thermal Engineering, 2009Co-Authors: Celidonio Dispenza, Giorgio Dispenza, Vincenzo La Rocca, Giuseppe PannoAbstract:The paper deals with the problem of cold recovery for direct cold utilization both in the site of Regasification Facility and far from it. \ud A modular LNG Regasification unit is proposed having the Regasification capacity of 2 billion standard cubic meters/year of gas. The modular plant is based on use of a Power Cycle working with Ethane or Ethylene which allows operation of cold energy transfer, contained in LNG to be regasified, in a range of temperatures suitable for multipurpose use of cold, reducing Regasification process irreversibility. Some electric energy is produced by the Power Cycle, but the own mission of modular unit proposed is addressed to deliver cold suitable for industrial and commercial use in the proper temperature range. The option considers, also, the use of Carbon dioxide as a secondary fluid for transfer of cold from Regasification site to far end users. This option seems very attractive due to expected wide future exploitation of LNG Regasification in the World.\ud Results of a detailed thermodynamic and economic analysis demonstrate the suitability of the proposal
Vincenzo La Rocca - One of the best experts on this subject based on the ideXlab platform.
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Exergy recovery in Regasification facilities - cold utilization: a modular unit
Applied Thermal Engineering, 2009Co-Authors: Celidonio Dispenza, Giorgio Dispenza, Vincenzo La Rocca, Giuseppe PannoAbstract:The paper deals with the problem of cold recovery for direct utilization both in the site of Regasification Facility and far from it.
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Exergy recovery in Regasification facilities – Cold utilization: A modular unit
Applied Thermal Engineering, 2009Co-Authors: Celidonio Dispenza, Giorgio Dispenza, Vincenzo La Rocca, Giuseppe PannoAbstract:The paper deals with the problem of cold recovery for direct cold utilization both in the site of Regasification Facility and far from it. \ud A modular LNG Regasification unit is proposed having the Regasification capacity of 2 billion standard cubic meters/year of gas. The modular plant is based on use of a Power Cycle working with Ethane or Ethylene which allows operation of cold energy transfer, contained in LNG to be regasified, in a range of temperatures suitable for multipurpose use of cold, reducing Regasification process irreversibility. Some electric energy is produced by the Power Cycle, but the own mission of modular unit proposed is addressed to deliver cold suitable for industrial and commercial use in the proper temperature range. The option considers, also, the use of Carbon dioxide as a secondary fluid for transfer of cold from Regasification site to far end users. This option seems very attractive due to expected wide future exploitation of LNG Regasification in the World.\ud Results of a detailed thermodynamic and economic analysis demonstrate the suitability of the proposal
Panno G. - One of the best experts on this subject based on the ideXlab platform.
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EXERGY RECOVERY IN Regasification FACILITIES - COLD UTILIZATION: A MODULAR UNIT
'Elsevier BV', 2009Co-Authors: Dispenza C., Dispenza G., La Rocca, Panno G.Abstract:The paper deals with the problem of cold recovery for direct cold utilization both in the site of Regasification Facility and far from it. A modular LNG Regasification unit is proposed having the Regasification capacity of 2 billion standard cubic meters/year of gas. The modular plant is based on use of a Power Cycle working with Ethane or Ethylene which allows operation of cold energy transfer, contained in LNG to be regasified, in a range of temperatures suitable for multipurpose use of cold, reducing Regasification process irreversibility. Some electric energy is produced by the Power Cycle, but the own mission of modular unit proposed is addressed to deliver cold suitable for industrial and commercial use in the proper temperature range. The option considers, also, the use of Carbon dioxide as a secondary fluid for transfer of cold from Regasification site to far end users. This option seems very attractive due to expected wide future exploitation of LNG Regasification in the World. Results of a detailed thermodynamic and economic analysis demonstrate the suitability of the proposal