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Sprawdź 19 najlepszych książek naukowych na temat „Industrial Process Heat (IPH)”.

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1

Whitehouse, Adrian Paul. Heat transfer fluid in an industrial process refrigeration system. Birmingham: University of Birmingham, 1991.

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2

Great Britain. Energy Efficiency Office. i Atomic Energy Research Establishment. Energy Technology Support Unit., red. Industrial heat recovery: The availability of waste heat in eight UK high temperature process industries. Newmarket: Energy Publications, 1985.

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3

Nee, Michael J. Heat exchanger engineering techniques: Process, air conditioning, and electronic systems. New York: ASME Press, 2003.

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4

Wallin, Erik. Process integration of industrial heat pumps in grass-root and retrofit situations. Goteborg: Chalmers Universityof Technology, 1996.

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5

International, Conference on Compact Heat Exchangers for the Process Industries (1997 Snowbird Utah). Compact heat exchangers for the process industries: Proceedings of an International Conference on Compact Heat Exhangers for the Process Industries, held at the Cliff Lodge andf Conferene Center, Snowbird, Utah during June 22-27, 1997. New York: Begell House, 1997.

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6

International Conference on Compact Heat Exchangers and Enhancement Technology for the Process Industries (2nd 1999 Banff, Alta.). Compact heat exchangers and enhancement technology for the process industries: Proceedings of the International Conference on Compact Heat Exchangers and Enhancement Technology for the Process Industries held at the Banff Centre for Conferences, Banff, Canada, July 18-23, 1999. Redaktor Shah R. K. New York: Begell House, 1999.

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7

Nee, Michael J. Heat exchanger engineering techniques: Process, air conditioning, and electronic systems : a treatise on heat exchanger installations that did not meet performance. New York: ASME Press, 2003.

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8

Claire, Soares, red. Turboexpanders and process application. Boston, Mass: Gulf Professional Pub., 2001.

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9

Hakan, Gür Cemil, i Pan Jiansheng, red. Handbook of thermal process modeling of steels. Boca Raton: Taylor & Francis, 2009.

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10

Shilyaev, Mihail, Elena Hromova, Aleksandr Bogomolov, A. Pavlenko i V. Butov. Modeling of hydrodynamics and heat and mass transfer in dispersed media. ru: INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1865376.

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The monograph presents methods for calculating the dehydration of wet granular materials in industrial centrifuges, filter presses and vacuum filters under the influence of gravitational forces, as well as by purging the granular layer with dry air with elevated temperature; physical and mathematical models of gas absorption and the theory of capturing submicron dust by condensation in foam, centrifugal bubbling apparatus and hollow nozzle scrubbers, packing columns and tubular absorbers; physical and mathematical models of dry adsorption of gases in packing columns and flues by injecting a dispersed adsorbent into the flow are presented, a method for determining the phase equilibrium constants of sorption processes based on the developed models is proposed; physical and mathematical modeling and analysis of the combustion process of dispersed solid ash fuel in a four-stage cyclone gorenje is carried out. the furnace. It can be useful in the educational process for a number of specialties, in particular thermal power engineering, chemical-technological, metallurgical profiles, environmentalists, as well as for researchers and graduate students and in engineering practice.
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11

Desideri, Umberto, Giampaolo Manfrida i Enrico Sciubba, red. ECOS 2012. Florence: Firenze University Press, 2012. http://dx.doi.org/10.36253/978-88-6655-322-9.

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The 8-volume set contains the Proceedings of the 25th ECOS 2012 International Conference, Perugia, Italy, June 26th to June 29th, 2012. ECOS is an acronym for Efficiency, Cost, Optimization and Simulation (of energy conversion systems and processes), summarizing the topics covered in ECOS: Thermodynamics, Heat and Mass Transfer, Exergy and Second Law Analysis, Process Integration and Heat Exchanger Networks, Fluid Dynamics and Power Plant Components, Fuel Cells, Simulation of Energy Conversion Systems, Renewable Energies, Thermo-Economic Analysis and Optimisation, Combustion, Chemical Reactors, Carbon Capture and Sequestration, Building/Urban/Complex Energy Systems, Water Desalination and Use of Water Resources, Energy Systems- Environmental and Sustainability Issues, System Operation/ Control/Diagnosis and Prognosis, Industrial Ecology.
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12

Industrial Chemical Process Design. McGraw-Hill Companies, 2002.

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13

Gordon, O. Design, Analysis and Optimization of Solar Industrial Process Heat Plants Without Storage. Amer Solar Energy Society, 1985.

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14

A process story on biomass gasifiers for heat applications in small and micro enterprises. New Delhi: The Energy and Resources Institute, 2007.

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15

Bloch, Heinz P., i Claire Soares. Turboexpanders and Process Applications. Gulf Professional Publishing, 2001.

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16

Ludwig's Applied Process Design for Chemical and Petrochemical Plants: Contains Process Design and Equipment Details for Heat Transfer, Process Integration, Refrigeration Systems, Compression Equipment, Mechanical Drivers and Industrial Reactors. Elsevier Science & Technology Books, 2014.

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17

Handbook of Thermal Process Modeling of Steels. CRC, 2008.

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18

Gur, Cemil Hakan, i Jiansheng Pan. Handbook of Thermal Process Modeling of Steels. Taylor & Francis Group, 2009.

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19

Floudas, Christodoulos A. Nonlinear and Mixed-Integer Optimization. Oxford University Press, 1995. http://dx.doi.org/10.1093/oso/9780195100563.001.0001.

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Filling a void in chemical engineering and optimization literature, this book presents the theory and methods for nonlinear and mixed-integer optimization, and their applications in the important area of process synthesis. Other topics include modeling issues in process synthesis, and optimization-based approaches in the synthesis of heat recovery systems, distillation-based systems, and reactor-based systems. The basics of convex analysis and nonlinear optimization are also covered and the elementary concepts of mixed-integer linear optimization are introduced. All chapters have several illustrations and geometrical interpretations of the material as well as suggested problems. Nonlinear and Mixed-Integer Optimization will prove to be an invaluable source--either as a textbook or a reference--for researchers and graduate students interested in continuous and discrete nonlinear optimization issues in engineering design, process synthesis, process operations, applied mathematics, operations research, industrial management, and systems engineering.
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