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Loadings simulations

Breer 11., and Dorer V. Industrial buildings with high thermal loads simulation of natural ventilation. RoomVent 98 conference,. Stockholm, 1998. [Pg.1081]

Gehrig R, Zeyer K, Bukowiecki N, Lienemann P, Poulikakos LD, Furger M, Buchmann B (2010) Mobile load simulators - a tool to distinguish between the emissions due to abrasion and resuspension of PM10 from road surfaces. Atmos Environ 44(38) 4937-4943... [Pg.192]

Fig. 8.3 Vertically integrated aerosol load simulated by (a) BOLCHEM and (b) seen by MODIS AQUA... Fig. 8.3 Vertically integrated aerosol load simulated by (a) BOLCHEM and (b) seen by MODIS AQUA...
To map loaded simulator data, click the map button on the toolbar (which maps all items) or right-click on an area or plant item in the process view window (which... [Pg.330]

Figure 2 Dynamic thermal loading simulating the service phase in figure 1... Figure 2 Dynamic thermal loading simulating the service phase in figure 1...
The amount of strain in various parts of a transparent plastic model of a machine part, subjected to loads simulating those in actual operation, is determined by measuring the anisotropy with polarized light therefore from this measurement the distribution of stress and strain in the actual metal part can be deduced. Very complicated shapes, including complete structures such as bridges or aircraft wings, have been successfully analyzed in this manner, employing plastic models. [Pg.359]

Engines were run at steady speed and load simulating the indicated vehicle speeds. [Pg.229]

Third, the General Project Data dialog box appears. Since no adjustments are needed in this example, press the OK button. Fourth, the Load Simulator Data dialog box is displayed. Enter Yes to do so. [Pg.792]

The wheel-tracking test was developed for the determination of asphalt susceptibility to deformation under moving load simulating conditions that exist on the road. The tests are all described in CEN EN 12697-22 (2007). [Pg.367]

Uniformly distributed load simulated using water-filled plastic tanks... [Pg.500]

A spectrum analyzer (Spectro 320, Instrument Systems, Germany) was used to study the optical transmission characteristics (in the visible spectrum) of the dyes and of the dye-sensitized photoelectrodes. The I-V characteristics, and hence efficiency, were obtained using a locally made manual I-V measuring apparatus with a 500 Q linear potentiometer as the variable load. Simulated light (Phillips Electric, Japan) of 1,000 W/m incident radiation was used. The overall conversion efficiency was determined from the relationship... [Pg.35]

Tensile FOTP-33 Measures the performance of the cable at its rated tensile load simulating installation by pulhng. [Pg.121]

FEA with a computer analysis provides a means to theoretically predict the structural integrity of a product using mathematical geometry and load simulation. A stress analysis can be taken of finite sections for analysis of the forces and loads the part will experience in service. It generates an analysis that shows the force concentrations in the section and determines if the material and design shape selected will meet product performance requirements. [Pg.361]

Keywords— internal bone remodeling, electric loading, magnetic loading, simulation. [Pg.458]

Zachman NJ, Hillbery BM, Kettlekamp DB. Design of a load simulator for the dynamic evaluation of prosthetic knee joints. ASME 1978 78-DET-59. [Pg.406]

A hybrid system consisting of a fuel cell and lithium-ion battery has been successfully introduced in a pulse power load simulation similar to military electronics and communications equipment. The hybrid consists of a 35 W proton exchange membrane fuel cell stack in parallel with a lithium-ion battery. Two cycling regimes are utilized. Each consists of a baseline load for 9 min followed by a higher pulse load for 1 min. One regime consists of 20 W (baseline)/40 W (pulse) load, whereas the second is 25 W/50 W. Under both scenarios, the hybrid provides significantly enhanced performance over the individual components tested separately. [Pg.540]

Figure 30.37 shows the variation of service capacity with temperature for a general-purpose D-size carbon-zinc cell discharged continuously on a 2.25 load to aO.9 V cut-off. The initial curve drain (instantaneous value) is 667 mA. The load simulates a 0.5 A lamp. [Pg.335]


See other pages where Loadings simulations is mentioned: [Pg.343]    [Pg.159]    [Pg.126]    [Pg.283]    [Pg.35]    [Pg.381]    [Pg.2103]    [Pg.169]    [Pg.347]    [Pg.149]    [Pg.118]    [Pg.108]    [Pg.176]    [Pg.773]    [Pg.775]    [Pg.232]    [Pg.115]   
See also in sourсe #XX -- [ Pg.303 ]




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