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Date of download: 10/25/2017 Copyright © ASME. All rights reserved.

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1 Date of download: 10/25/2017 Copyright © ASME. All rights reserved. From: Experimental Study of the Characteristics of Heat Transfer in an HLMC Cross-Flow around Tubes ASME J of Nuclear Rad Sci. 2015;1(4): doi: / Figure Legend: Layout of the FT-2B experimental facility. 1, melting tank; 2, buffer vessel; 3, condenser; 4, vacuum pump; 5, liquid-metal pump; 6, ejector; 7, filter; 8, measuring vessel; 9, liquid-metal flow meter; 10, ejector collector; 11, melting-tank collector; 12, low-pressure collector; 13, measuring vessel; 14, liquid-metal electric pump; 15, buffer vessel; 16, filter; 17, experimental site; 18, melting tank; 19, seal collector; 20, ejector; 21, liquid-metal flow meter; 22, flow meter; 23, condenser; 24, coating samples tank; 25, high-pressure argon collector; 26, low-pressure argon collector; 27, hydrogen collector; 28, heater; 29, compressor; 30, flow meter; 31, vessel with hydrogen; 32, vessel with argon; 33, ES speed sensor; 34, measuring tanks; 35, high-pressure heat-sensor collector; 36; low-pressure speed-sensor collector; T, temperature sensor; M, pressure gauge; MB, vacuum pressure gauge; Y, level sensor; A, thermodynamic oxygen

2 Date of download: 10/25/2017 Copyright © ASME. All rights reserved. From: Experimental Study of the Characteristics of Heat Transfer in an HLMC Cross-Flow around Tubes ASME J of Nuclear Rad Sci. 2015;1(4): doi: / Figure Legend: Experimental model diagram

3 Date of download: 10/25/2017 Copyright © ASME. All rights reserved. From: Experimental Study of the Characteristics of Heat Transfer in an HLMC Cross-Flow around Tubes ASME J of Nuclear Rad Sci. 2015;1(4): doi: / Figure Legend: Microthermocouple embedding into test section. 1, Heat-transfer tube; 2, heat-transfer tube simulator; 3, test section casing; T-microthermocouple

4 Date of download: 10/25/2017 Copyright © ASME. All rights reserved. From: Experimental Study of the Characteristics of Heat Transfer in an HLMC Cross-Flow around Tubes ASME J of Nuclear Rad Sci. 2015;1(4): doi: / Figure Legend: Velocity sensor. 1, Test section casing; 2, heavy liquid-metal coolant flow; 3, deflector; 4, total pressure head off-take channel; 5, total pressure head recording unit; 6, transfer mechanism; 7, capillary tube; 8, measuring probe; 9, bellows; 10, guide flange; 11, bellows housing; 12, pressure recording unit tank; 13, free lead level; 14, electric-contact level annunciator; 15, gaseous system; 16, static pressure head off-take channel; 17, static pressure head recording unit; 18, thermoprobe; CY, point level switch

5 Date of download: 10/25/2017 Copyright © ASME. All rights reserved. From: Experimental Study of the Characteristics of Heat Transfer in an HLMC Cross-Flow around Tubes ASME J of Nuclear Rad Sci. 2015;1(4): doi: / Figure Legend: Local heat-transfer characteristics. Consolidated graphs Nu=f(Pe)

6 Date of download: 10/25/2017 Copyright © ASME. All rights reserved. From: Experimental Study of the Characteristics of Heat Transfer in an HLMC Cross-Flow around Tubes ASME J of Nuclear Rad Sci. 2015;1(4): doi: / Figure Legend: Integral heat-transfer characteristics. Consolidated graph Nu=f(Pe)

7 Date of download: 10/25/2017 Copyright © ASME. All rights reserved. From: Experimental Study of the Characteristics of Heat Transfer in an HLMC Cross-Flow around Tubes ASME J of Nuclear Rad Sci. 2015;1(4): doi: / Figure Legend: Dimensionless temperature profiles

8 Date of download: 10/25/2017 Copyright © ASME. All rights reserved. From: Experimental Study of the Characteristics of Heat Transfer in an HLMC Cross-Flow around Tubes ASME J of Nuclear Rad Sci. 2015;1(4): doi: / Figure Legend: Dimensionless temperature profiles

9 Date of download: 10/25/2017 Copyright © ASME. All rights reserved. From: Experimental Study of the Characteristics of Heat Transfer in an HLMC Cross-Flow around Tubes ASME J of Nuclear Rad Sci. 2015;1(4): doi: / Figure Legend: Velocity profile across the gap

10 Date of download: 10/25/2017 Copyright © ASME. All rights reserved. From: Experimental Study of the Characteristics of Heat Transfer in an HLMC Cross-Flow around Tubes ASME J of Nuclear Rad Sci. 2015;1(4): doi: / Figure Legend: Graphs of heat-transfer surface temperature variation in time. (a) Qgas=0. 012 m3/h, (b) Qgas=0. 028 m3/h, (c) Qgas=0. 068 m3/h, (d) Qgas=0. 127 m3/h, (e) Qgas=0. 186 m3/h, and (f) Qgas=0. 250 m3/h


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