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1

Ford, Brian, Rosa Schiano-Phan, and Juan A. Vallejo. The Architecture of Natural Cooling. Second edition. | Abingdon, Oxon ; New York : Routledge, 2020. | First edition published by PHDC Press 2010.: Routledge, 2019. http://dx.doi.org/10.4324/9781315210551.

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2

Sweetser, Richard S. The fundamentals of natural gas cooling. Lilburn, GA: Fairmont Press, Inc., 1996.

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3

Meeting, American Society of Mechanical Engineers Winter. Natural and mixed convection in electronic equipment cooling. New York: American Society of Mechanical Engineers, 1988.

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4

McHugh, P. R. Natural circulation cooling in U.S. pressurized water reactors. Washington, DC: Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1992.

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5

1964-, Matsui Kazue, ed. Kūrā-irazu no suzushii seikatsu 99 no waza. Tōkyō-to Shinjuku-ku: Komonzu, 2011.

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6

Parareda, Guillermo Yáñez. Arquitectura solar: Aspectos pasivos, bioclimatismo e iluminación natural. Madrid: MOPU, Dirección General para la Vivienda y Arquitectura, 1988.

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7

Johnson, Olga S. Determination of natural heating and cooling of intake air in underground mines. Sudbury, Ont: Laurentian University, School of Graduate Studies, 2004.

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8

Davis, G. de Vahl. Three-dimensional natural convection in a cavity with localised heating and cooling. Kensington, N.S.W: University of New South Wales, School of Mechanical and Industrial Engineering, 1988.

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9

L, Haggard Kenneth, ed. Passive solar architecture: Heating, cooling, ventilation, daylighting and more using natural flows. White River Junction, Vt: Chelsea Green Pub., 2010.

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10

Wheeler, C. L. Review of the natural circulation effect in the Vermont Yankee spent-fuel pool. Washington, DC: Division of Engineering and Systems Technology, Office of Nuclear Reactor Regulation, U.S. Nuclear Regulatory Commission, 1988.

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11

Bayless, Paul D. Analysis of natural circulation during a Surry Station blackout using SCDAP/RELAP5. Washington, DC: Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1988.

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12

Winters, L. Assessment of RELAP5/MOD2 against a natural circulation experiment in nuclear power plant Borssele. Washington, DC: Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1993.

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13

Paje, Rufino A. Experiments on liquid immersion natural convection cooling of leadless chip carriers mounted on ceramic substrate. Monterey, Calif: Naval Postgraduate School, 1989.

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14

Gaiser, Alfred O. Natural convection liquid immersion cooling of high density columns of discrete heat sources in a vertical channel. Monterey, Calif: Naval Postgraduate School, 1989.

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15

Thompson, Ronald G. Natural convection heat transfer studies of simulated and actual electronic components using dielectric liquids for immersion cooling. Monterey, Calif: Naval Postgraduate School, 1992.

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16

American Society of Mechanical Engineers. Winter Meeting. Natural and mixed convection in electronic equipment cooling: Presented at the Winter Annual Meeting of the American Society of Mechanical Engineers, Chicago, Illinois, November 27-December 2, 1988. New York, N.Y. (United Engineering Center, 345 E. 47th St., New York 10017): The Society, 1988.

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17

Benocci, C. A prediction method for the air-droplets flow in the inlet section of a natural draught cooling tower. Rhode Saint Genese, Belgium: von Karman Institute for Fluid Dynamics, 1986.

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18

Benedict, Terry J. An advanced study of natural convection immersion cooling of 3 x 3 array of simulated components in an enclosure filled with dielectric liquid. Monterey, California: Naval Postgraduate School, 1988.

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19

Aytar, Erol. Natural convection immersion cooling of an array of heated protrusions in an enclosure filled with dielectric liquid: Effects of enclosure width and fluid Prandtl number. Monterey, Calif: Naval Postgraduate School, 1991.

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20

Torres, Edgardo I. Natural convection cooling of a 3 by 3 array of rectangular protrusions in an enclosure filled with dielectric liquid: Effects of boundary conditions and component orientation. Monterey, Calif: Naval Postgraduate School, 1988.

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21

Matthews, Scott T. Natural convection immersion cooling of an array of vertically oriented heated protrusions in an enclosure filled with a dielectric liquid: Effects of enclosure width, Prandtl number and component orientation. Monterey, Calif: Naval Postgraduate School, 1991.

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22

The taste divine: Indian vegetarian cooking the natural way. Albany: State University of New York Press, 1993.

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23

Bejan, Adrian, and Giuseppe Grazzini, eds. Shape and Thermodynamics. Florence: Firenze University Press, 2008. http://dx.doi.org/10.36253/978-88-8453-836-9.

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Shape and Thermodynamics is a two-day international Workshop focused on the Constructal Theory of generation of configuration in nature and engineering. From the early developments related to tree configurations for the cooling of electronics, today Constructal theory is being applied to conceptual design of transportation net-works, river basins, living bodies, building materials and many other flow systems. Constructal theory is also enriching thermo-dynamics, from basic theory to design and optimization. This theory approaches design "as science", with the generation of configuration regarded as a phenomenon of all physics, based on principle (the Constructal law). For example, Constructal Theory contributes to the evolution of fuel cells, in the design of cooling channels, the optimal feeding of reactants, etc. Important applications are also found in the design of heat exchangers, district heating networks, etc. The growing scientific literature on Constructal Theory has an important Italian component, although further dissemination is timely. Moreover, the relation with other thermodynamic research areas deserves to be explored. Website: Shape and Thermodinamics
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24

Rajagopal, Sanjeevi. Operational and Environmental Consequences of Large Industrial Cooling Water Systems. Boston, MA: Springer US, 2012.

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25

Mihaylov, Vyacheslav, Elena Sotnikova, and Nina Kalpina. Eco-friendly air protection systems for motor transport facilities. ru: INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1093106.

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The textbook considers the issue of assessing the heat and humidity state of air in the processes of its processing in various systems, provides requirements for air protection means, taking into account their environmental friendliness, shows ways of energy saving in cooling, heating and year-round air conditioning systems, as well as when protecting the atmosphere from harmful emissions. The way of energy saving with individual thermal protection of the operator by means of local cooling during air treatment in an irrigated intensified nozzle is shown and recommendations for reducing its material consumption are developed. The method and means of reducing the toxicity of emissions of tractor internal combustion engines during its operation in rooms of limited volume by water vapor humidification of the fuel-air mixture are demonstrated. The ways of noise reduction of air protection systems are shown. Meets the requirements of the federal state educational standards of higher education of the latest generation. It is intended for students studying in the specialties "Ground transport and technical means", "Operation of transport and technological machines and complexes", "Power engineering", "Ground transport and technological complexes", "Refrigeration, cryogenic equipment and life support systems", "Technosphere safety", "Ecology and nature management".
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26

Office, General Accounting. Nuclear health and safety: Problems continue for Rocky Flats Solar Pond cleanup program : report to the Chairman, Environment, Energy, and Natural Resources Subcommittee, Committee on Government Operations, House of Representatives. Washington, D.C: The Office, 1992.

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27

Office, General Accounting. Nuclear health and safety: Problems continue for Rocky Flats solar pond cleanup program : report to the Chairman, Environment, Energy, and Natural Resources Subcommittee, Committee on Government Operations, House of Representatives. Washington, D.C: U.S. General Accounting Office, 1991.

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28

Office, General Accounting. Nuclear health and safety: Information on award fees paid at selected DOE facilities : fact sheet for the chairman, Environment, Energy and Natural Resources Subcommittee, Committee on Government Operations, House of Representatives. Washington, D.C: The Office, 1989.

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29

Office, General Accounting. Nuclear health and safety: Corrective actions on Tiger Teams' findings progressing slower than planned : report to the Chairman, Environment, Energy, and Natural Resources Subcommittee, Committee on Government Operations, House of Representatives. Washington, D.C: U.S. General Accounting Office, 1993.

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30

Ford, Brian, Rosa Schiano-Phan, and Juan A. Vallejo. Architecture of Natural Cooling. Taylor & Francis Group, 2019.

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31

Natural Draught Cooling Towers. Taylor & Francis, 2004.

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32

Wittek. Natural Draught Cooling Towers. Taylor & Francis, 1996.

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33

Ford, Brian, Rosa Schiano-Phan, and Juan A. Vallejo. Architecture of Natural Cooling. Taylor & Francis Group, 2019.

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34

Mungan, I., and U. Wittek, eds. Natural Draught Cooling Towers. CRC Press, 2004. http://dx.doi.org/10.1201/b17001.

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35

Ford, Brian, Rosa Schiano-Phan, and Juan A. Vallejo. Architecture of Natural Cooling. Taylor & Francis Group, 2019.

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36

Ford, Brian, Rosa Schiano-Phan, and Juan A. Vallejo. Architecture of Natural Cooling. Taylor & Francis Group, 2019.

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37

W, Sohn C., and Construction Engineering Research Laboratories (U.S.), eds. Natural gas cooling in DOD facilities. [Champaign, IL]: US Army Corps of Engineers, Construction Engineering Research Laboratories, 1997.

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38

Natural Gas Cooling/S77124/Marketing Manual. Amer Gas Assn, 1986.

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39

A Guide to natural gas cooling. Lilburn, GA: Fairmont Press, 1994.

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40

Association, American Gas. Guide to Natural Gas Cooling, A. Prentice Hall, 1993.

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41

Ford, Brian, and Rosa Schiano-Phan. Architecture and Engineering of Natural Cooling. Taylor & Francis Group, 2019.

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42

Association, American Gas. Guide to Natural Gas Cooling, A. Prentice Hall, 1993.

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43

Architecture and Engineering of Natural Cooling. Taylor & Francis Group, 2019.

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44

Natural and low energy cooling in buildings. Brussels: European Commission Directorate-General Energy, 1994.

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45

Mungan, I., and U. Wittek. Natural Draught Cooling Towers: Proceedings of the Fifth International Symposium on Natural Draught Cooling Towers, Istanbul, Turkey, 20-22 May 2004. Taylor & Francis Group, 2004.

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46

Mungan, I., and U. Wittek. Natural Draught Cooling Towers: Proceedings of the Fifth International Symposium on Natural Draught Cooling Towers, Istanbul, Turkey, 20-22 May 2004. Taylor & Francis Group, 2004.

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47

Mungan, I., and U. Wittek. Natural Draught Cooling Towers: Proceedings of the Fifth International Symposium on Natural Draught Cooling Towers, Istanbul, Turkey, 20-22 May 2004. Taylor & Francis Group, 2004.

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48

U, Wittek, Krätzig Wilfried B, and International Symposium on Natural Draught Cooling Towers (4th : 1996 : Kaiserslautern, Germany), eds. Natural draught cooling towers: Proceedings of the 4th International Symposium on Natural Draught Cooling Towers, Kaiserslautern, Germany, 29-31 May, 1996. Rotterdam: A. A. Balkema, 1996.

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49

Industrial Applications Guide: Natural Gas Cooling Refrigeration and Dehumidification. Americans Against Suffering, 1993.

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50

Philipp L. Gould Wilfried B. Krätzig and Ernest J. Peck Jr. Natural Draught Cooling Towers: Proceedings of the 2. International Symposium, Ruhr-Universität Bochum, Germany, September 5-7, 1984. Springer, 2011.

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