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Influence of geometric and environmental parameters on air-cooled steam condenser performanceJoubert, Retief 03 1900 (has links)
Thesis (MScEng (Mechanical and Mechatronic Engineering))--University of Stellenbosch, 2010. / ENGLISH ABSTRACT: Air-cooled steam condensers (ACSCs) are used in the power generation industry to directly
condense turbine exhaust steam in areas where cooling water is expensive or unavailable.
Large axial flow fans force ambient air through A-frame heat exchanger bundles made up of a
number of rows of finned tubes through which the steam is ducted and consequently
condensed during the heat transfer process to the air. The heat rejection rate or performance
of an ACSC is proportional to the air mass flow rate, determined by fan volumetric
performance, and the temperature difference between the finned tubes and the air.
The air flow through a 30 fan ACSC (termed the generic ACSC) operating under windy
conditions is solved using the commercial computational fluid dynamics (CFD) code FLUENT
and the required data is extracted from the solution to calculate performance trends. It is
found that fan performance is reduced due to a combination of factors. The first is additional
upstream flow losses caused by separated flow occurring primarily at the leading edge of the
ACSC and secondarily at the fan bellmouth inlets. The second factor leading to reduced fan
performance is the presence of distorted flow conditions at the fan inlets. Hot plume air
recirculation is responsible for decreased ACSC thermal performance due to increased fan inlet
air temperatures. It is found that reduced fan performance is the greater contributor to
reduced ACSC performance.
The performance effects of varying two geometrical parameters of the generic ACSC, namely
the fan platform height and the windwall height, are investigated under windy conditions. It is
found that each parameter is linked to a specific mechanism of performance reduction with
the fan platform height affecting fan performance and the windwall height affecting
recirculation. The respective platform and windwall heights specified for the generic ACSC are
found to provide acceptable performance results.
To mitigate wind induced performance reductions a number of modification and additions to
the ACSC are investigated. These primarily aim at improving fan performance and included the
addition of walkways or skirts, the addition of wind screens beneath the fan platform,
removing the bellmouth fan inlets, using different types of fans and increasing fan power. The
addition of a periphery walkway and windscreens is considered to be the most practical
methods of improving ACSC performance under windy conditions. The generic ACSC is
modified to include both modifications and under high wind conditions the performance is
found to increase measurably. The modifications also resulted in the ACSC performance being
less sensitive to wind direction effects. / AFRIKAANSE OPSOMMING: Lugverkoelde kondensators word in die kragopwekkings industrie gebruik om turbine
uitlaatstoom te kondenseer, veral in gebiede waar verkoelingwater duur of onbeskikbaar is.
Aksiaalvloei-waaiers forseer omgewingslug deur A-raam warmteuitruiler bondels wat bestaan
uit verskeie rye vinbuise. Die uitlaatstoom vloei in die vinbuise en kondenseer as gevolg van
die warmteoordrag na die lug. Die warmteoordragkapasiteit van die lugverkoelde stoom
kondensator is eweredig aan die massavloei-tempo van die lug, wat bepaal word deur die
waaierwerkverigting, en die temperatuur verskil tussen die vinbuise en die lug.
Die lugvloei deur 'n 30 waaier lugverkoelde stoom kondensator (genoem die generiese
lugverkoelde stoom kondensator) onderworpe aan winderige toestande word opgelos deur die
gebruik van die kommersiële vloeidinamika-pakket, FLUENT. Die nodige data is onttrek uit die
oplossing en werkverrigting neigings is bereken. Dit is gevind dat waaierwerkverigting
verminder as gevolg van 'n kombinasie van faktore. Die eerste is bykomende vloeiverliese wat
veroorsaak word deur vloeiwegbreking wat plaasvind primêr by die voorste rand van die
lugverkoelde stoom kondensator asook by die klokvormige waaier-inlate. 'n Tweede faktor wat
lei tot vermindere waaierwerkverigting is die teenwoordigheid van lugvloeiversteurings by die
waaier-inlate. Hersirkulering van warm pluim lug is ook verantwoordelik vir verminderde
lugverkoelde stoom kondensator werkverrigting. Daar word bevind dat die vermindering in
waaierwerkverrigting die grootste bydraende faktor tot vermindere lugverkoelde stoom
kondensator werkverrigting is.
Die effek van verandering van twee geometriese lugverkoelde stoom kondensator parameters,
naamlik die waaierplatformhoogte en die windwandhoogte is ondersoek onder winderige
toestande. Daar word bevind dat elk van die parameters gekoppel is aan 'n spesifieke
meganisme van vermindere lugverkoelde stoom kondensator verrigting: Die
waaierplatformhoogte beïnvloed waaierverrigting terwyl die windwandhoogte hersirkulering
beinvloed. Daar word ook bevind dat die onderskeie waaierplatform- and windwandhoogtes
van die generiese lugverkoelde stoom kondensator, van so 'n aard is dat dit aanvaarbare
werkverrigting tot gevolg het.
Om verlaging in werksverrigting in winderige toestande te verminder is verskeie modifikasies
en byvoegings tot die lugverkoelde stoom kondensator ondersoek wat primêr gemik is op
verbetering in waaierwerkverigting. Die ondersoek dek die byvoeging van 'n loopvlak, die
byvoeging van windskerms onder die waaierplatform, verwydering van die klokvormige
waaier-inlate, die gebruik van verskillende waaiers en die verhoging van waaierdrywing. Daar
was besluit dat die byvoeging van 'n loopvlak rondom die rand van die lugverkoelde stoom
kondensator en die byvoeging van windskerms die mees praktiese manier was om die
lugverkoelde stoom kondensator verigting te verbeter. Die generiese lugverkoelde stoom
kondensator was aangepas om beide veranderings in te sluit en meetbare verbetering in
werkrigting was verkry. Die veranderings het ook meegebring dat die lugverkoelde stoom
kondensator minder sensitief is vir windrigting effekte.
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Simultaneous measurement of air flow conditions and resultant blade and gearbox loading at large-scale cooling system fansMuiyser, Jacques 12 1900 (has links)
Thesis (MScEng)--Stellenbosch University, 2012. / ENGLISH ABSTRACT: Axial flow fans used in large-scale air-cooled steam condensers (ACSCs) may operate
under distorted inflow conditions. These conditions occur due to the prevailing wind
conditions, the presence of buildings, and the location of the fan within the ACSC. Fans
located on the periphery of the ACSC are affected the most due to their exposure to
strong winds and the inner fans drawing in air past them. Distorted inflow conditions
cause varying fan blade and gearbox loading conditions.
The purpose of the investigation was to simultaneously measure the inlet air flow
and the resultant blade and gearbox loading conditions of a single fan located on the
periphery of a large-scale ACSC. Inlet and heat exchanger bundle outlet air flow velocities
were measured using a combination of ultrasonic and propeller anemometers while
blade loading was measured with strain gauges attached at the neck of the specific blade
being monitored. Strain gauges were also attached to the low-speed fan shaft to measure
gearbox loading.
Measurements were recorded over a period of 8 days where it was found that increased
wind resulted in increased air flow in the axial direction of the fan, which then
caused a reduction in average blade loading. This was due to a decreased static pressure
rise over the fan. The fan blade was found to vibrate at its own natural frequency of
6 Hz when excited by the variable aerodynamic loading. The aerodynamic loading was
extracted from the measured data and was found to correlate well with previous experimental
work performed by Bredell et al. (2006a). Shaft bending stresses and torque were
found to oscillate at the fan’s rotational frequency of 2Hz with a large torque exerted on
the shaft during fan start-up. / AFRIKAANSE OPSOMMING: Aksiaalvloeiwaaiers wat by groot lugverkoelde stoomkondensors gebruik word, werk
dikwels onder verwronge inlaat lugvloei toestande wat geskied as gevolg van heersende
winde, die teenwoordigheid van geboue en die posisie van die waaier in die kondensor.
Waaiers wat geleë is op die rand van die kondensor word die meeste beïnvloed as gevolg
van blootstelling aan die sterk winde en dwarsvloei wat deur die binneste waaiers geïnduseer
word. Verwronge inlaat lugvloei veroorsaak gevolglik variërende waaierlem en
ratkas belastingstoestande.
Die doel van hierdie ondersoek was om terselfdetyd die inlaat lugvloei asook waaierlem
en ratkas belastingstoestande van ’n enkele waaier wat op die rand van ’n grootskaalse
lugverkoelde stoomkondensor geleë is, te meet. Waaier inlaat en warmteruiler
uitlaat lugvloei snelhede is gemeet met ’n kombinasie van ultrasoniese- en skroefwindsnelheidsmeters
terwyl die lem en ratkas belastings gemeet is met rekstrokies.
Metings is oor ’n tydperk van 8 dae geneem. Die bevindinge toon dat ’n toename
in windsnelheid ’n toename in aksiale lugvloei tempo, deur die waaier veroorsaak. ’n
Afname in die gemiddelde lembelasting is waargeneem as gevolg van ’n afname in die
waaier statiese druk. Daar is ontdek dat die waaierlem teen ’n natuurlike frekwensie van
6 Hz vibreer wanneer dit opgewek word deur die wisselende aerodinamiese belasting.
Die aerodinamiese belasting is verkry uit die gemete data en vergelyk goed met die numeriese
werk van Bredell et al. (2006a). Daar is ook bevind dat waaier-as buigspannings
en wringkragte ossileer teen die waaier se rotasiefrekwensie van 2Hz met ’n groot wringkrag
wat op die as uitgeoefen word wanneer die waaier aangeskakel word.
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Perimeter fan performance in forced draught air-cooled steam condensersVan der Spuy, Sybrand Johannes 12 1900 (has links)
Thesis (PhD)--Stellenbosch University, 2011. / ENGLISH ABSTRACT: Axial flow fan arrays form part of air-cooled steam condensers in direct drycooled
power plants. This dissertation investigates the performance of axial flow
fans when located at the perimeter of a fan array. The perimeter (or edge) fans
may experience a reduction in air flow through the fan due to the prevalence of
distorted inlet conditions upstream of the fan. The reduction in air flow leads to a
reduction in the heat transfer capability of the steam condenser and a consequent
reduction in the electricity output of the power plant.
Due to the physical size of an air-cooled condenser, full-scale experiments are
often impractical and computational fluid dynamics (CFD) is used to model its
performance under various conditions. To limit the size of the CFD model the
axial flow fans in the CFD analysis are represented by means of simplified
methods. Three different simplified methods are presented and applied to a CFD
model of a single axial flow fan, namely the pressure jump method (PJM),
actuator disc method (ADM) and extended actuator disc method (EADM). The
results are compared to experimental values. The comparison highlights the
limitations of the models: The ADM fails to model fan performance correctly at
low flow rates, while the PJM ignores the variation in fan blade properties at
different locations within the fan rotor. The EADM is presented as an
improvement on both the other two models.
A multiple fan test facility is constructed, consisting of three 630 mm diameter
fans extracting air from a common inlet chamber. The inlet chamber is
constructed in such a way that one of the three fans act as the perimeter (edge)
fan. The floor of the inlet chamber can be adjusted to increase or reduce the inlet
flow distortion experienced by the edge fan. Six different fan configurations are
tested in the position of the edge fan and an empirical method is derived by which
the volumetric effectiveness of an edge fan can be predicted. The experimental
results are compared to CFD results for the same facility using the three different
simplified simulation methods investigated previously. Particle image velocimetry
(PIV) measurements are also performed upstream of the edge fan and the velocity
profiles at the inlet of the fan are compared to the profiles obtained numerically.
The comparisons show that the EADM predicts the performance of the edge fan
more accurately than the ADM en PJM.
The effect of adding a walkway and removing the bell mouth upstream of the
edge fan was investigated using the EADM. The results are used to show the
location of the loss mechanisms upstream of the edge fan. The addition of a
walkway moves the location of the pressure loss away from the edge fan bell
mouth towards the edge of the walkway. Consequently the distortion directly
upstream of the edge fan is reduced and its volumetric effectiveness increased.
The effect of removing the edge fan’s bell mouth is similar to the effect of adding
a walkway upstream of the edge fan. / AFRIKAANSE OPSOMMING: Aksiaalwaaiermatrikse vorm deel van lugverkoelde kondensors in direk droëverkoelde
kragstasies. Hierdie verhandeling ondersoek die werkverrigting van
aksiaalwaaiers wat geleë is op die rand van ‘n groot waaiermatriks. Die
randwaaiers kan ’n vermindering in deurvloei ondervind as gevolg van versteurde
inlaattoestande stroom-op vanaf die waaier. Die vermindering in lugvloei lei tot ’n
vermindering in die warmetoordagvermoë van die stoomkondensor en ’n
gepaardgaande afname in die elektrisiteitslewering van die kragstasie.
As gevolg van die fisiese grootte van die lugverkoelde kondensor is volskaalse
eksperimente gewoonlik onprakties en word berekeningsvloeimeganika (BVM)
gebruik om die werking van die aanleg onder verskeie toestande te modelleer. Ten
einde die grootte van die BVM model te beperk, word die aksiaalwaaiers in so ‘n
BVM analiese voorgestel met behulp van vereenvoudigde metodes. Drie
verskillende vereenvoudigde metodes word aangebied en toegepas op ‘n BVM
model van ‘n enkelwaaier, naamlik die druksprongmetode, die aksieskyfmetode
en die verlengde aksieskyfmetode. Die resultate word vergelyk met
eksperimentele waardes. Die vergelyking benadruk die beperkings van die
modelle: Die aksieskyfmetode kan nie die werking van die waaier akkuraat
voorspel by lae vloeie nie en die druksprongmetode ignoreer die variasie in
lemeienskappe op verskillende liggings binne-in die waaierrotor. Die verlengde
aksieskyfmetode word voorgestel as ‘n verbetering op die ander twee metodes.
‘n Veelvuldige waaiertoetsfasiliteit is saamgestel, bestaande uit drie 630 mm
deursnee waaiers wat lug uit ’n gemeenskaplike inlaatkamer suig. Die inlaatkamer
is so saamgestel dat een van die waaiers in die fasiliteit ‘n randwaaier
verteenwoordig. Die vloerhoogte van die inlaatkamer kan aangepas word om die
inlaatversteuring wat deur die raandwaaier ondervind word te vermeerder of te
verminder. Ses verskillende waaierkonfigurasies is getoets in die
randwaaierposisie. ‘n Empiriese metode waarmee die volumetriese effektiwiteit
van ‘n randwaaier voorspel kan word is afgelei. Die eksperimentele resultate word
vergelyk met ooreenstemmende BVM resultate vir dieselfde fasiliteit deur gebruik
te maak van die drie verskillende vereenvoudigde metodes wat vroeër ondersoek
is. Partikelbeeld snelheidsmetings word ook stroom-op vanaf die randwaaier
uitgevoer en die snelheidsprofiele by die inlaat van die waaier word vergelyk met
profiele wat numeries bereken word. Die vergelykings wys dat die verlengde
aksieskyfmetode die werkverrigting van ’n aksiaalwaaier meer akkuraat voorspel
as die aksieskyf- of druksprongmetodes.
Die effek van die installering van ‘n loopvlak en die verwydering van die
randwaaier se inlaatmondstuk word ondersoek met behulp van BVM deur gebruik
te maak van die verlengde aksieskyfmetode. Die resultate word spesifiek gebruik
om die ligging van die verliesmeganismes stroom-op vanaf die randwaaier aan te
dui. Die resultate wys dat die installering van ‘n loopvlak die ligging van die
drukverlies wegneem vanaf die rand van die waaierinlaat na die rand van die
loopvlak. Dit verminder die inlaatversteuring stroom-op vanaf die randwaaier en die volumetriese effektiwiteit word verhoog. Die verwydering van die randwaaier
se inlaatmondstuk het ‘n soortgelyke effek as die installering van ‘n loopvlak
stroom-op vanaf die randwaaier.
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Simulating the effect of wind on the performance of axial flow fans in air-cooled steam condenser systemsFourie, Neil 12 1900 (has links)
Thesis (MEng) -- Stellenbosch University, 2014. / ENGLISH ABSTRACT: The use of air-cooled steam condensers (ACSCs) is the preferred cooling
method in the chemical and power industry due to stringent environmental and
water use regulations. The performance of ACSCs is however highly dependent
on the influence of windy conditions. Research has shown that the presence of
wind reduces the performance of ACSCs. It has been found that cross-winds
(wind perpendicular to the longest side of the ACSC) cause distorted inlet flow
conditions, particularly at the upstream peripheral fans near the symmetry
plane of the ACSC. These fans are subjected to what is referred to as '2-D' wind
conditions, which are characterised by flow separation on the upstream edge
of the fan inlets. Experimental investigations into inlet flow distortion have
simulated these conditions by varying the fan platform height. Low platform
heights resulted in higher levels of inlet flow distortion, as also found to exist
with high cross-wind speeds. This investigation determines the performance of
various fan configurations (representative of configurations used in the South-
African power industry) subjected to distorted inlet flow conditions through
experimental and numerical investigations. The similarity between platform
height and cross-wind effects is also investigated and a correlation between
system volumetric effectiveness, platform height and cross-wind velocity is
found. / AFRIKAANSE OPSOMMING: Die gebruik van lugverkoelde stoom kondensors (LVSK's) word verkies as
'n verkoelingsmetode in die chemiese- en kragvoorsieningsindustrie as gevolg
van streng omgewings- en waterverbruiksregulasies. Die werkverrigting van
LVSK's word egter grootliks beïnvloed deur die teenwoordigheid van wind.
Navorsing het gewys dat die teenwoordigheid van wind die werkverrigting van
LVSK's verminder. Daar was gevind dat kruiswinde (wind loodreg tot die
langste sy van die LVSK) versteurde inlaat vloeitoestande veroorsaak, veral
by waaiers wat aan die stroomop kant van die LVSK naby die simmetrievlak
geleë is. Hierdie waaiers word blootgestel aan na wat verwys word as
'2-D' windtoestande wat gekenmerk word deur vloeiwegbreking wat plaasvind
by die stroomop rand van die waaierinlate. Eksperimentele ondersoeke van
inlaat vloeiversteurings het hierdie toestande gesimuleer deur die waaier platformhoogte
te verstel. Lae platform hoogtes het gelei tot hoër vlakke van
inlaat vloeiversteuring, soortgelyk aan wat gevind word met hoë kruiswindsnelhede.
Hierdie ondersoek gebruik numeriese en eksperimentele metodes om die
werkverrigting van verskeie waaierkon gurasies (verteenwoordigend van kon-
gurasies wat gebruik word in die Suid-Afrikaanse kragvoorsieningsindustrie)
wat blootgestel word aan versteurde inlaat vloeitoestande te bepaal. Die ooreenkoms
tussen platformhoogte en kruiswind e ekte word ook ondersoek en
'n korrelasie tussen die sisteem volumetriese e ektiwiteit, platformhoogte en
kruiswindsnelheid word bepaal.
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Avaliação da concentração de metais e elementos terras raras em amostras de sedimentos dos reservatórios dos sistemas Billings e Guarapiranga / Evaluation of the concentration of toxic metals and rare ground elements in samples of sediments of the Billings and Guarapiranga systems reservoirsSILVA, LARISSA de S. 22 November 2017 (has links)
Submitted by Pedro Silva Filho (pfsilva@ipen.br) on 2017-11-22T17:15:11Z
No. of bitstreams: 0 / Made available in DSpace on 2017-11-22T17:15:11Z (GMT). No. of bitstreams: 0 / O excessivo processo de urbanização da Região Metropolitana de São Paulo resultou na perda das características naturais dos seus cursos d\'água ocasionando profundas alterações nos regimes de vazão e de qualidade. O objetivo desse estudo foi avaliar a concentração de metais tóxicos, os semi-metais As, Sb e Se e os elementos terras raras, presentes em amostras de sedimento superficiais coletadas nos Reservatórios Billings, Guarapiranga e Rio Grande. Os elementos Ag, Al, As, Ba, Ca, Cd, Co, Cr, Cu, Fe, K, Li, Mg, Mn, Na, Ni, Pb, Sb, Se e Zn foram determinados pela técnica de Espectrometria de Emissão Ótica com Plasma Indutivamente Acoplado (ICP OES). Alguns elementos maiores, traço e elementos terras raras (Ce, Eu, La, Lu, Nd, Sm, Tb e Yb) foram determinados pela técnica de Análise por Ativação Neutrônica Instrumental (INAA). A concentração de Hg total foi determinada pela técnica Espectrometria de Absorção Atômica com Geração de Vapor Frio (CVAAS). A validação das metodologias foi realizada por meio da análise de materiais de referência certificados. Para avaliar as possíveis fontes de contaminação antrópicas foram utilizadas as ferramentas de fator de enriquecimento (FE) e o índice de geoacumulação (IGeo). Os resultados obtidos pelas técnicas foram comparados com os valores orientadores TEL e PEL estabelecidos pelo CCME (Canadian Council of Ministers of the Environment) e adotados pela CETESB. Todos os pontos analisados apresentaram valores > TEL para todos os metais e dois pontos da represa Billings (BILL02100 e 02030), valores > PEL para As, Cr, Cu, Hg, Ni, Pb e Zn, provavelmente em decorrência do recebimento das águas do Rio Pinheiros e das bacias de drenagem do ribeirão Cocaia e Bororé. Os valores de FE e IGeo calculados apontaram possíveis contaminações antrópicas para Sb e Se para os elementos determinados por ICP OES e de As, Cr, Sb e Zn, por INAA. O reservatório Billings apresentou, em geral, as maiores concentrações para os elementos analisados, indicando uma má qualidade de seus sedimentos. Este estudo confirma a necessidade de um monitoramento frequente da qualidade do sedimento nos reservatórios estudados como procedimento indispensável para avaliação periódica da qualidade das bacias, considerando sua importância no fornecimento de água para a Região Metropolitana de São Paulo. / Dissertação (Mestrado em Tecnologia Nuclear) / IPEN/D / Instituto de Pesquisas Energéticas e Nucleares - IPEN-CNEN/SP
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