Move from an identified production need to a coherent, operable facility. This handbook explains how requirements become a documented basis, how that basis becomes a flowsheet, how balances and physical properties become duties, and how those duties become specifications for real machinery and supporting systems.
The opening chapters establish requirements, operating cases, units, margins, documentation, project stages, interface ownership, review gates and change control. Readers learn how grassroots construction, replacement, expansion, revamping and debottlenecking differ in scope, uncertainty and execution.
Flowsheet chapters develop block diagrams, flow diagrams and piping and instrumentation information. Recycle, purge, bypass, batch and continuous operation, route selection, separation order, pressure levels and energy use are treated as connected decisions rather than isolated drafting tasks.
Calculation foundations cover material and energy balances, thermodynamics, phase behavior, property methods, reaction stoichiometry, conversion, yield, equilibrium, fluid flow, pressure loss, heat transfer and mass transfer. Simulation chapters address model selection, convergence, validation, sensitivity studies and calculation records that another engineer can inspect.
The distinction between preliminary estimates, specification duties, vendor guarantees and mechanical code requirements remains clear throughout. Readers learn why a technically correct equation can still produce a poor result when its assumptions, property data or operating case are unsuitable.
Facility-wide chapters integrate utilities, instrumentation, control philosophy, construction materials, corrosion, relief and disposal arrangements, hazard review, environmental controls, plot planning, maintainability, operability and reliability. Margins are treated as deliberate decisions so that hidden conservatism is not compounded across several disciplines.
Major machinery and unit operations receive dedicated coverage, including vessels, storage tanks, mixers, reactors, heat exchangers, evaporators, dryers, distillation columns, absorbers, extractors, adsorbers, membrane units, filters, centrifuges, crystallizers, solids-handling systems, piping, pumps, compressors, blowers and valves.
Cost-estimation chapters connect capital expenditure, operating costs, profitability, uncertainty and project evaluation. Revamp cases examine existing constraints, incomplete records, tie-ins, shutdown limitations, retained assets and the consequences of changing one part of an operating facility.
Worked examples connect equations to specifications and show how one decision propagates through utilities, controls, piping, layout and cost. Practice problems, integrated cases, review points, checklists and traceability methods reinforce unit discipline, assumption tracking and communication across technical interfaces.
Readers will learn how to:
Written for senior students, process engineers, project engineers and practitioners strengthening their judgment, this reference supports preliminary and educational work. Actual projects require current codes, verified properties, vendor information, formal hazard analysis, independent review and qualified professional responsibility.
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Seller: Grand Eagle Retail, Bensenville, IL, U.S.A.
Paperback. Condition: new. Paperback. Move from an identified production need to a coherent, operable facility. This handbook explains how requirements become a documented basis, how that basis becomes a flowsheet, how balances and physical properties become duties, and how those duties become specifications for real machinery and supporting systems.The opening chapters establish requirements, operating cases, units, margins, documentation, project stages, interface ownership, review gates and change control. Readers learn how grassroots construction, replacement, expansion, revamping and debottlenecking differ in scope, uncertainty and execution.Flowsheet chapters develop block diagrams, flow diagrams and piping and instrumentation information. Recycle, purge, bypass, batch and continuous operation, route selection, separation order, pressure levels and energy use are treated as connected decisions rather than isolated drafting tasks.Calculation foundations cover material and energy balances, thermodynamics, phase behavior, property methods, reaction stoichiometry, conversion, yield, equilibrium, fluid flow, pressure loss, heat transfer and mass transfer. Simulation chapters address model selection, convergence, validation, sensitivity studies and calculation records that another engineer can inspect.The distinction between preliminary estimates, specification duties, vendor guarantees and mechanical code requirements remains clear throughout. Readers learn why a technically correct equation can still produce a poor result when its assumptions, property data or operating case are unsuitable.Facility-wide chapters integrate utilities, instrumentation, control philosophy, construction materials, corrosion, relief and disposal arrangements, hazard review, environmental controls, plot planning, maintainability, operability and reliability. Margins are treated as deliberate decisions so that hidden conservatism is not compounded across several disciplines.Major machinery and unit operations receive dedicated coverage, including vessels, storage tanks, mixers, reactors, heat exchangers, evaporators, dryers, distillation columns, absorbers, extractors, adsorbers, membrane units, filters, centrifuges, crystallizers, solids-handling systems, piping, pumps, compressors, blowers and valves.Cost-estimation chapters connect capital expenditure, operating costs, profitability, uncertainty and project evaluation. Revamp cases examine existing constraints, incomplete records, tie-ins, shutdown limitations, retained assets and the consequences of changing one part of an operating facility.Worked examples connect equations to specifications and show how one decision propagates through utilities, controls, piping, layout and cost. Practice problems, integrated cases, review points, checklists and traceability methods reinforce unit discipline, assumption tracking and communication across technical interfaces.Readers will learn how to: Convert requirements into a controlled basis and flowsheetApply balances, properties, thermodynamics and simulationEvaluate fluid flow, pressure loss and transfer dutiesDevelop specifications for major unit operationsIntegrate utilities, controls, materials and relief arrangementsCompare alternatives using cost and uncertaintyApproach revamps and debottlenecking systematicallyProduce transparent and reviewable calculation recordsWritten for senior students, process engineers, project engineers and practitioners strengthening their judgment, this reference supports preliminary and educational work. Actual projects require current codes, verified properties, vendor information, formal hazard analysis, independent review and qualified professional responsibility. This item is printed on deman Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Seller Inventory # 9798170016884
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PAP. Condition: New. New Book. Shipped from UK. Established seller since 2000. Seller Inventory # L2-9798170016884
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Paperback. Condition: new. Paperback. Move from an identified production need to a coherent, operable facility. This handbook explains how requirements become a documented basis, how that basis becomes a flowsheet, how balances and physical properties become duties, and how those duties become specifications for real machinery and supporting systems.The opening chapters establish requirements, operating cases, units, margins, documentation, project stages, interface ownership, review gates and change control. Readers learn how grassroots construction, replacement, expansion, revamping and debottlenecking differ in scope, uncertainty and execution.Flowsheet chapters develop block diagrams, flow diagrams and piping and instrumentation information. Recycle, purge, bypass, batch and continuous operation, route selection, separation order, pressure levels and energy use are treated as connected decisions rather than isolated drafting tasks.Calculation foundations cover material and energy balances, thermodynamics, phase behavior, property methods, reaction stoichiometry, conversion, yield, equilibrium, fluid flow, pressure loss, heat transfer and mass transfer. Simulation chapters address model selection, convergence, validation, sensitivity studies and calculation records that another engineer can inspect.The distinction between preliminary estimates, specification duties, vendor guarantees and mechanical code requirements remains clear throughout. Readers learn why a technically correct equation can still produce a poor result when its assumptions, property data or operating case are unsuitable.Facility-wide chapters integrate utilities, instrumentation, control philosophy, construction materials, corrosion, relief and disposal arrangements, hazard review, environmental controls, plot planning, maintainability, operability and reliability. Margins are treated as deliberate decisions so that hidden conservatism is not compounded across several disciplines.Major machinery and unit operations receive dedicated coverage, including vessels, storage tanks, mixers, reactors, heat exchangers, evaporators, dryers, distillation columns, absorbers, extractors, adsorbers, membrane units, filters, centrifuges, crystallizers, solids-handling systems, piping, pumps, compressors, blowers and valves.Cost-estimation chapters connect capital expenditure, operating costs, profitability, uncertainty and project evaluation. Revamp cases examine existing constraints, incomplete records, tie-ins, shutdown limitations, retained assets and the consequences of changing one part of an operating facility.Worked examples connect equations to specifications and show how one decision propagates through utilities, controls, piping, layout and cost. Practice problems, integrated cases, review points, checklists and traceability methods reinforce unit discipline, assumption tracking and communication across technical interfaces.Readers will learn how to: Convert requirements into a controlled basis and flowsheetApply balances, properties, thermodynamics and simulationEvaluate fluid flow, pressure loss and transfer dutiesDevelop specifications for major unit operationsIntegrate utilities, controls, materials and relief arrangementsCompare alternatives using cost and uncertaintyApproach revamps and debottlenecking systematicallyProduce transparent and reviewable calculation recordsWritten for senior students, process engineers, project engineers and practitioners strengthening their judgment, this reference supports preliminary and educational work. Actual projects require current codes, verified properties, vendor information, formal hazard analysis, independent review and qualified professional responsibility. This item is pri Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Seller Inventory # 9798170016884
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Taschenbuch. Condition: Neu. Neuware. Seller Inventory # 9798170016884
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