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Mesh heat exchangers

Mesh heat exchanger Bonded layers of woven wire mesh As for foams, also giving structural contribution 4... [Pg.42]

Structure is mentioned specifically in research reported recently at Cambridge University (Tian et al 2007). Here metal meshes (woven as textiles) have been tested as heat exchangers. Although not a new concept, the mesh heat exchanger is... [Pg.90]

With most inorganic materials this type of equipment produces ciystals in the range 30 to 100 mesh. The design is based on the allowable rates of heat exchange and the retention required to grow the product ciystals. [Pg.1665]

These anodes, like platinised Ti may be supplied in different forms e.g. rod, tube, mesh, wire, etc. They may be used for the cathodic protection of offshore structures, heat exchangers, or even pipelines as they can be installed in the soil surrounded by carbonaceous backfill, and are comparable in cost to platinised titanium. ... [Pg.173]

A small-scale PROX system was manufactured in a type of heat exchanger using non-pellet catalyst. Pt-Ru catalyst screened was impregnated on the support sheet. The support sheet was made by coating y-AlaOs on porous SUS-mesh plate (thickness 1.0 mm). The surface area of the catalyst sheet was 96 mVg. The catalyst sheet was applied to a heat exchanger type reactor of PROX as shown in Fig. 2. The PROX reactor was manufactured as a unit module and tested. Fig. 3 is the test-set of the PROX. Air was applied as the coolant. [Pg.626]

The inlet air duct, starting at the roof level of the cubicle, leads to the inlet air flap, inlet air filters, and steam heated heat exchanger coils to heat the inlet air. This heated air is directed through a 1/2 supporting grid and 100 mesh screen on the bottom of the product container. [Pg.160]

As a last resort, the cooling surface area can be increased. In [112], the slot between the electrodes was 6 mm wide and this was transformed into a heat exchanger. It consisted of teflon capillary tubes (d = 0.4 mm, do = 0.7 mm) aligned and spaced by woven Teflon mesh. 5 layers of tubes were separated and spaced by 6 layers of mesh. The bed performs cooling and, at the same time, suppresses the convection. [Pg.175]

Power supply, 9 from a not gas stream, 12 generation with steam, 11 Pressure control, 42,44,51,52,59,60 Pressure drop cyclone separators, 617 gas-solid flow, 119-120 granular beds, 117 heat exchanger example, 193, 194 heat exchangers, 188 non-Newtonian flow, 106-109 wire mesh pads, 616 Pressure drop, piplines, 92 chart method, 96 two-phase flow, 116 typical values, 95 Ptaskie vessel code, ASME, 625 Prilling, 361,362 equipment size, 367 flowsketch, 366 operating, data. 367 products of, 367 size distribution, 362 Prism membrane separation process, 633 643... [Pg.753]

A commercial Computational Fluid Dynamics package (FIDAP Version 7.6, Fluid Dynamics International, Evanston, IL) based on the finite element method was used to solve the governing continuity, momentum and heat transport equations. A mesh was defined with more nodes near the wall and the entrance of the tubular heat exchanger to resolve the larger variations of temperature and velocities near the wall and the entrance. [Pg.451]

The off-gas condenser was a shell-and-tube (water-cooled) heat exchanger a 260 liter capacity stainless steel tank was used to collect condensate and a stainless steel wire-mesh de-entrainer, a shell-and-tube (steam-heated) preheater and a HEPA filter were used in the off-gas system. [Pg.528]


See other pages where Mesh heat exchangers is mentioned: [Pg.90]    [Pg.90]    [Pg.180]    [Pg.473]    [Pg.96]    [Pg.106]    [Pg.859]    [Pg.329]    [Pg.98]    [Pg.1594]    [Pg.473]    [Pg.377]    [Pg.243]    [Pg.246]    [Pg.252]    [Pg.96]    [Pg.106]    [Pg.292]    [Pg.26]    [Pg.69]    [Pg.628]    [Pg.343]    [Pg.213]    [Pg.775]    [Pg.2604]   
See also in sourсe #XX -- [ Pg.90 ]




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