What Can you do with CHEMCAD?

  • Increase Productivity by Performing Everyday Chemical Engineering Calculations.
  • Maximize Profitability by Designing More Efficient New Processes and Equipment.
  • Reduce Costs and Capital Expeditures by Optimizing/De-Bottlenecking Existing Processes and Equipment.
  • Comply with Regulatory Agencies by Assessing the Environmental Impact of New or Existing Processes.
  • Leverage Corporate Information by Maintaining a Central Database of Proprietary and Laboratory Data.

What are some common applications of CHEMCAD?

  • Distillations/Extractions (Batch & Continuous)
  • Reactions (Batch & Continuous)
  • Electrolytic Processes
  • Thermo-Physical Property Calculations
  • Vapor/Liquid/Liquid Equilibrium Calculations
  • Equipment Sizing
  • Heat Exchanger Networks
  • Environmental Calculations
  • Safety Analyses
  • Cost Estimations
  • Flare Header systems
  • Utility Networks
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It's Easy Because It's Integrated…

  • In heat exchanger programs, integration means accuracy, and accuracy starts with entering the process data. Here is where you will appreciate. CHEMCAD-THERM's full integration, because process data is automatically transferred from CHEMCAD's flowsheets. Furthermore, automatic data transfer eliminates the tedium and potential inaccuracies of manual data transfer. Best of all, CC-THERM uses the same Thermodynamics routines and physical properties databases as CHEMCAD. The problems and inconsistencies that typically occur when processes are designed using different programs are totally eliminated with CHEMCAD-THERM.

It's Easy Because the Expertise is Built in…

  • Built-in expertise means two things: First, CHEMCAD-THERM is rigorous and comprehensive. It is designed to handle your most complex heat exchanger rating or design, particularly the difficult problems. CC-THERM takes no short cuts, makes no assumptions, runs a full zone analysis and stringent stream analyses. And like all CHEMCAD programs, CC-THERM runs quickly and accurately.
CHEMCAD Therm have integration with MT-Exchange Heat Exchanger Design software for Mechanical Design.

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  • CHEMCAD DCOLUMN is fast, accurate, applicable to a wide range of processes and easy to learn and use. It is fully integrated with CHEMCAD, which can perform steady-state simulation, equipment design, and DIERS analysis. This allows you to move easily around and between all aspects of your design. Only in such an environment can you achieve significant paybacks that dynamic studies can provide.

  • Steady State Simulations miss the dynamic aspects of process design such as operability, the impact of disturbances, and many facets of safety issues. These are important selection criteria for any process and the inability to fully understand them generally leads to over designs which cost millions of dollars in both capital and operating costs.

  • The ability to perform dynamic simulations means that these tradeoffs can be evaluated early in the design before any decisions have been make. Thus, from the beginning you will be able to quantify the requirements of operability, control loop tuning, changes in throughput or ambient conditions, safety demands, etc. This will save your money only in capital investments, but also in production costs. A plant which is designed with operability in mind can produce considerably more than a plant where operability issues were never explicitly addressed.
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The PC on your desk can now be used for highly accurate simulation of batch reaction processes without the time-intensive learning curve that would generally be expected with complex-software. That is because CC-ReACS builds models using a simple but comprehensive input system with intelligent dialog boxes, on-line data checking and context sensitive help. There is no special input language. So the most powerful, flexible and advanced batch process modeling software available today is actually easy to use. It was designed specifically for the batch chemical industry by a team with experience in chemistry, chemical engineering and process control.

REACTIVE DISTILLATIONT
ogether with Chemstations fully integrated dynamic distillation model, CC-DCOLUMN, CC-ReACS can rigorously simulate combined reactor/distillation systems.

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  • CC-SAFETY NET is an engineering software tool designed to simulate the steady state behavior of pressure relief devices and piping systems under actual flowing conditions. It also provides powerful facilities for environmental audits in the prediction of volatile organic compound (VOC) emissions to atmosphere at equilibrium conditions.


  • CC-SAFETY NET provides facilities for the design and analysis of flare relief systems including all system components. These facilities include.

    • Simulation of the piping network including the blowdown drum. Flow can be vapor, liquid, or two-phase, and critical flow is computed and limiting.
    • Identification of the worst relieving case using case studies.
    • Optimization of the system using the of sensitivity analysis.
    • Sizing (and costing) of system equipment including pipes relief valves, and pressure vessels.

  • CC-SAFETY NET will simulate any type of steady state piping network. flow loops, distribution systems, and collection networks can all be assembled and simulated in any combination. These networks can also include:

    • Pumps, compressors, expanders, valves, pipes, fittings, heat exchangers, and pressure vessels. 0
    • Performance curves for pumps and compressors.
    • Critical flow restrictions.
    • Sizing and costing of all compon
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Why Should You Use CC-BATCH?

  • Short learning curve and very little re-learning required
  • Unique interface allows intuitive set up of your batch distillation process
  • Batch distillation processes may be integrated into CHEMCAD flowsheets
  • Rigorous use of built-in thermodynamic models and thermo physical property data
  • Flexible flowsheet set up and operational procedures allows most any batch distillation process to be simulated

HOW Do You Actually Use CC-BATCH?

  • Draw your flowsheet
  • hoose your chemical components
  • Choose your thermodynamic model
  • Specify the column/charge/additional feeds
  • Define the operational procedures
  • Run the calculations
  • Generate the plots and reports

What Are Some Common Applications Of CC-BATCH?

  • Model existing batch column equipment
  • Explore alternative processes for existing products
  • Design new equipment
  • Validate thermodynamic using laboratory batch column equipment
  • Predict minimum boiling ternary azeotropes quick
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