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[0] => Our customers use FluidFlow to:- Model shell & tube and plate heat exchangers.
- Consider effect of insulation on pipelines.
- Perform buried pipe heat transfer calculations.
- Evaluate adiabatic compression at boosters.
- Consider Joule-Thomson (J-T) effect in gas systems.
Engineers can choose from a range of heat transfer options:
- Buried pipe calculations.
- Pipe heat loss/gain calculation.
- Fixed heat transfer rate.
- Fixed temperature change.
- Ignore heat loss/gain.
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- Model shell & tube and plate heat exchangers.
- Consider effect of insulation on pipelines.
- Perform buried pipe heat transfer calculations.
- Evaluate adiabatic compression at boosters.
- Consider Joule-Thomson (J-T) effect in gas systems.
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- Buried pipe calculations.
- Pipe heat loss/gain calculation.
- Fixed heat transfer rate.
- Fixed temperature change.
- Ignore heat loss/gain.
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- Model shell & tube and plate heat exchangers.
- Consider effect of insulation on pipelines.
- Perform buried pipe heat transfer calculations.
- Evaluate adiabatic compression at boosters.
- Consider Joule-Thomson (J-T) effect in gas systems.
Engineers can choose from a range of heat transfer options:
- Buried pipe calculations.
- Pipe heat loss/gain calculation.
- Fixed heat transfer rate.
- Fixed temperature change.
- Ignore heat loss/gain.
Our customers use FluidFlow to:
- Model shell & tube and plate heat exchangers.
- Consider effect of insulation on pipelines.
- Perform buried pipe heat transfer calculations.
- Evaluate adiabatic compression at boosters.
- Consider Joule-Thomson (J-T) effect in gas systems.
Engineers can choose from a range of heat transfer options:
- Buried pipe calculations.
- Pipe heat loss/gain calculation.
- Fixed heat transfer rate.
- Fixed temperature change.
- Ignore heat loss/gain.
FLUIDFLOW. Thermal Energy Transfer
(0/5)
Overview
Overview
Company Name:
Product Summary:
FluidFlow includes heat transfer functionality on all modules. Engineers can study heat transfer effects at heat exchangers, pipes and fittings. Heating and cooling of fluids is fundamental to any process plant, particularly in Chemical + Petrochemical industries. Full evaluation of heat transfer for energy recovery or energy efficiency is a critical task that can be performed easily within FluidFlow. A comprehensive database of insulation materials means engineers can optimize energy usage by including conduction, radiation, and convection losses.
Full Product Description:
Our customers use FluidFlow to:
- Model shell & tube and plate heat exchangers.
- Consider effect of insulation on pipelines.
- Perform buried pipe heat transfer calculations.
- Evaluate adiabatic compression at boosters.
- Consider Joule-Thomson (J-T) effect in gas systems.
Engineers can choose from a range of heat transfer options:
- Buried pipe calculations.
- Pipe heat loss/gain calculation.
- Fixed heat transfer rate.
- Fixed temperature change.
- Ignore heat loss/gain.
Product Status:
Commercial
View More Details
Integrability
From an IT professional / Systems Intgration perspective, on-boarding a new technology product could be an organized chaos not apparent to the Asset and Business Leadership team who need to ensure technical staff are equipped with the right tool on-time. For optimum DATA and Systems INTEGRATION performance at every phase of your business, contact one of our experts today in your selection of the ideal technology.
