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<div class=3DSection1>

<h2 style=3D'margin-left:0cm;text-indent:0cm;mso-list:none;tab-stops:35.4pt=
'><b><span
lang=3DIT style=3D'font-size:10.0pt;line-height:150%;mso-ansi-language:IT'>=
Material
Manager </span></b><span lang=3DIT style=3D'font-size:10.0pt;line-height:15=
0%;
mso-ansi-language:IT;mso-bidi-font-weight:bold'>(matermgr.exe)</span><span
lang=3DIT style=3D'font-size:10.0pt;line-height:150%;mso-ansi-language:IT'>=
 <o:p></o:p></span></h2>

<h2 style=3D'margin-left:0cm;text-indent:0cm;line-height:normal;mso-list:no=
ne;
tab-stops:35.4pt'><span lang=3DIT style=3D'font-size:10.0pt;mso-ansi-langua=
ge:IT'>Aprendo
il programma ci si ritrova in un ambiente di tipo Excel che contiene i dati=
 di
assorbimento ed isolamento acustico dei materiali. L'utente potr&agrave; qu=
indi
facilmente creare nuovi materiali editandone il nome e le corrispondenti
caratteristiche acustiche nelle relative celle. Si possono visualizzare, ba=
nda
per banda, i coefficienti di assorbimento </span><span style=3D'font-size:1=
0.0pt;
font-family:Symbol'>a</span><span lang=3DIT style=3D'font-size:10.0pt;mso-a=
nsi-language:
IT'> (</span><span style=3D'font-size:10.0pt;font-family:"SymbolPS \(PCL6\)=
";
mso-ascii-font-family:Verdana;mso-hansi-font-family:Verdana;mso-char-type:s=
ymbol;
mso-symbol-font-family:"SymbolPS \(PCL6\)"'><span style=3D'mso-char-type:sy=
mbol;
mso-symbol-font-family:"SymbolPS \(PCL6\)"'>&THORN;</span></span><span lang=
=3DIT
style=3D'font-size:10.0pt;mso-ansi-language:IT'> Sezione 2, <span class=3DS=
pellE>cap</span>
6), oppure i poteri <span class=3DSpellE>fonoisolanti</span> in <span
class=3DSpellE>dB</span> R (</span><span style=3D'font-size:10.0pt;font-fam=
ily:
"SymbolPS \(PCL6\)";mso-ascii-font-family:Verdana;mso-hansi-font-family:Ver=
dana;
mso-char-type:symbol;mso-symbol-font-family:"SymbolPS \(PCL6\)"'><span
style=3D'mso-char-type:symbol;mso-symbol-font-family:"SymbolPS \(PCL6\)"'>&=
THORN;</span></span><span
lang=3DIT style=3D'font-size:10.0pt;mso-ansi-language:IT'> Sezione 2, <span
class=3DSpellE>cap</span> 6), sempre nelle 10 bande di frequenza considerat=
e (da <st1:metricconverter
ProductID=3D"31.5 a" w:st=3D"on">31.5 a</st1:metricconverter> 16000 Hz).<o:=
p></o:p></span></h2>

<p class=3DNormale style=3D'margin-left:36.0pt;text-indent:-36.0pt'><span l=
ang=3DIT
style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:Verdana;
mso-ansi-language:IT'>Nota:<span style=3D'mso-tab-count:1'>&nbsp; </span>E&=
#8217;
possibile inserire nel programma i valori di </span><span style=3D'font-siz=
e:
10.0pt;mso-bidi-font-size:12.0pt;font-family:Symbol'>a</span><span lang=3DIT
style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:Verdana;
mso-ansi-language:IT'> forniti dalla ditta produttrice di quel materiale. N=
el
programma &egrave; gi&agrave; predisposta la funzione di conversione da </s=
pan><span
style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:Symbol'>a</=
span><sub><span
lang=3DIT style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:V=
erdana;
mso-ansi-language:IT'>Sabine</span></sub><span lang=3DIT style=3D'font-size=
:10.0pt;
mso-bidi-font-size:12.0pt;font-family:Verdana;mso-ansi-language:IT'> ad </s=
pan><span
style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:Symbol'>a</=
span><sub><span
lang=3DIT style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:V=
erdana;
mso-ansi-language:IT'>Ramsete</span></sub><span lang=3DIT style=3D'font-siz=
e:10.0pt;
mso-bidi-font-size:12.0pt;font-family:Verdana;mso-ansi-language:IT'> (</spa=
n><span
style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:"SymbolPS \=
(PCL6\)";
mso-ascii-font-family:Verdana;mso-hansi-font-family:Verdana;mso-char-type:s=
ymbol;
mso-symbol-font-family:"SymbolPS \(PCL6\)"'><span style=3D'mso-char-type:sy=
mbol;
mso-symbol-font-family:"SymbolPS \(PCL6\)"'>&THORN;</span></span><span lang=
=3DIT
style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:Verdana;
mso-ansi-language:IT'> pag. 15).</span><span lang=3DIT style=3D'mso-ansi-la=
nguage:
IT'><o:p></o:p></span></p>

<p align=3Dleft style=3D'text-align:left'><span lang=3DIT style=3D'font-siz=
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<p class=3DMsoBodyText2><span lang=3DIT style=3D'font-size:10.0pt;font-fami=
ly:Verdana;
color:windowtext;mso-ansi-language:IT'>La gran parte dei materiali predefin=
iti
contiene solo i dati del coefficiente di assorbimento </span><span
style=3D'font-size:10.0pt;font-family:Symbol;color:windowtext'>a</span><span
lang=3DIT style=3D'font-size:10.0pt;font-family:Verdana;color:windowtext;
mso-ansi-language:IT'>. Tuttavia &egrave; possibile aggiungere i dati del
potere <span class=3DSpellE>fonoisolante</span> e <span class=3DSpellE>fono=
diffondente</span>.<o:p></o:p></span></p>

<p align=3Dleft style=3D'text-align:left'><span lang=3DIT style=3D'font-siz=
e:10.0pt;
font-family:Verdana;color:windowtext;mso-ansi-language:IT'>Si fa notare che=
 per
la maggior parte delle superfici tali dati di potere <span class=3DSpellE>f=
onoisolante</span>
sono superflui: soltanto le superfici marcate &quot;<span class=3DSpellE>ob=
structing</span>&quot;
in Ramsete CAD possono essere attraversate da energia sonora (barriere
antirumore, schermi, etc.). In questi casi, oltre a considerare l&#8217;ene=
rgia
che attraversa tali schermi, Ramsete considera anche la quota di energia <s=
pan
class=3DSpellE>diffratta</span> dai bordi liberi (se ce ne sono), utilizzan=
do le
note relazioni di <span class=3DSpellE>Maekawa</span>.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'margin-left:36.0pt;text-indent:-36.0pt'><span
lang=3DIT style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:V=
erdana;
mso-ansi-language:IT'>Nota: <span style=3D'mso-tab-count:1'> </span>Come si=
 fa a
simulare l&#8217;isolamento di pareti multistrato?<o:p></o:p></span></p>

<p class=3DMsoBodyText2 style=3D'margin-left:36.0pt'><span lang=3DIT
style=3D'font-size:10.0pt;font-family:Verdana;color:windowtext;mso-ansi-lan=
guage:
IT'>Se il materiale &egrave; lo stesso su tutte e due le facce della parete
&egrave; sufficiente attribuire al materiale il potere fonoassorbente del
materiale esterno e come potere <span class=3DSpellE>fonoisolante</span> il
potere <span class=3DSpellE>fonoisolante</span> complessivo di tutti gli st=
rati. Infine
&egrave; necessario dichiarare questa parete <span class=3DSpellE>obstructi=
ng</span>.
Se la parete composta presenta invece sulle due facce materiali diversi, si
dovr&agrave;, oltre ad avere disegnato la parete, disegnarne una parallela =
a <st1:metricconverter
ProductID=3D"10 cm" w:st=3D"on">10 cm</st1:metricconverter> di distanza del
materiale di finitura della seconda faccia. Tale seconda parete non deve mai
essere dichiarata <span class=3DSpellE>obstructing</span> e quindi non ha
importanza il potere <span class=3DSpellE>fonoisolante</span> attribuito nel
Material Manager.<o:p></o:p></span></p>

<p align=3Dleft style=3D'text-align:left'><b style=3D'mso-bidi-font-weight:=
normal'><span
lang=3DIT style=3D'font-size:10.0pt;font-family:Verdana;color:windowtext;
mso-ansi-language:IT'><o:p>&nbsp;</o:p></span></b></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span lang=3D=
IT
style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:Verdana;
mso-ansi-language:IT'>Che differenza c&#8217;&egrave; tra </span></b><b
style=3D'mso-bidi-font-weight:normal'><span style=3D'font-size:10.0pt;mso-b=
idi-font-size:
12.0pt;font-family:Symbol'>a</span></b><b style=3D'mso-bidi-font-weight:nor=
mal'><sub><span
lang=3DIT style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:V=
erdana;
mso-ansi-language:IT'>ramsete</span></sub></b><b style=3D'mso-bidi-font-wei=
ght:
normal'><span lang=3DIT style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;
font-family:Verdana;mso-ansi-language:IT'> ed </span></b><b style=3D'mso-bi=
di-font-weight:
normal'><span style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-fami=
ly:
Symbol'>a</span></b><b style=3D'mso-bidi-font-weight:normal'><sub><span lan=
g=3DIT
style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:Verdana;
mso-ansi-language:IT'>sabine</span></sub></b><b style=3D'mso-bidi-font-weig=
ht:
normal'><span lang=3DIT style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;
font-family:Verdana;mso-ansi-language:IT'>?<o:p></o:p></span></b></p>

<p class=3DMsoNormal><span lang=3DIT style=3D'font-size:10.0pt;mso-bidi-fon=
t-size:
12.0pt;font-family:Verdana;mso-ansi-language:IT'><o:p>&nbsp;</o:p></span></=
p>

<p class=3DMsoBodyText2><span lang=3DIT style=3D'font-size:10.0pt;font-fami=
ly:Verdana;
color:windowtext;mso-ansi-language:IT'>Ramsete, come la maggioranza dei
programmi tipo &#8216;<span class=3DSpellE>ray</span> <span class=3DSpellE>=
tracing&#8217;</span>,
richiede in ingresso i valori &#8216;veri&#8217; del coefficiente di
assorbimento, non i valori &#8216;di <span class=3DSpellE>Sabine&#8217;</sp=
an>. I
valori veri sono in generale pi&ugrave; bassi di quelli di Sabine; i primi =
non
superano mai il valore 1 i secondi s&igrave;. Questo argomento &egrave; sta=
to
studiato sia dall&#8217;ing. <span class=3DSpellE>Oliaro</span> del Politec=
nico
di Torino sia da un gruppo di ricercatori inglesi (<span class=3DSpellE>Mil=
lington</span>);
a ci&ograve; &egrave; seguita una pubblicazione su <span class=3DSpellE>App=
lied</span>
<span class=3DSpellE>Acoustics</span>. Si &egrave; visto che i programmi ba=
sati
sull&#8217;acustica geometrica richiedono in ingresso i coefficienti di
assorbimento di <span class=3DSpellE>Millington</span> e non di Sabine (si
consiglia la lettura dell&#8217;articolo &#8216;Studio <span class=3DSpellE=
>numerico-sperimentale</span>
sulle potenzialit&agrave; e sulle prestazioni di un codice di simulazione d=
el
campo sonoro in spazi confinati; P. <span class=3DSpellE>Oliaro</span>, M.
Castellani). A seguito della pubblicazione di tali studi, &egrave; stata
introdotta in Ramsete la conversione automatica fra i due valori. Quindi se
sono disponibili i valori di </span><span style=3D'font-size:10.0pt;font-fa=
mily:
Symbol;color:windowtext'>a</span><span lang=3DIT style=3D'font-size:10.0pt;
font-family:Verdana;color:windowtext;mso-ansi-language:IT'> Sabine tratti da
una prova ISO 354 e si introducono in Ramsete questi vengono automaticamente
convertiti, ovvero ridotti, nei corrispondenti valori di <span class=3DSpel=
lE>Millington</span>.
Se invece sono disponibili i dati di </span><span style=3D'font-size:10.0pt;
font-family:Symbol;color:windowtext'>a</span><span lang=3DIT style=3D'font-=
size:
10.0pt;font-family:Verdana;color:windowtext;mso-ansi-language:IT'>
&#8216;veri&#8217; (misurati con tecnica <span class=3DSpellE>intensimetric=
a</span>
o con il tubo di <span class=3DSpellE>Kundt</span>) e li si introducono in
Ramsete, saranno automaticamente convertiti in </span><span style=3D'font-s=
ize:
10.0pt;font-family:Symbol;color:windowtext'>a</span><span lang=3DIT
style=3D'font-size:10.0pt;font-family:Verdana;color:windowtext;mso-ansi-lan=
guage:
IT'> Sabine. Si riporta di seguito il grafico relativo e la geometria
dell&#8217;ambiente di prova che hanno permesso la conversione fra i due
parametri.<o:p></o:p></span></p>

<p align=3Dleft style=3D'text-align:left'><span style=3D'font-size:10.0pt;f=
ont-family:
Verdana;color:blue'><!--[if gte vml 1]><v:shape id=3D"_x0000_i1025" type=3D=
"#_x0000_t75"
 style=3D'width:555.75pt;height:568.5pt' fillcolor=3D"window">
 <v:imagedata src=3D"MMaterialManager_files/image003.wmz" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img width=3D741 height=3D758
src=3D"MMaterialManager_files/image004.gif" v:shapes=3D"_x0000_i1025"><![en=
dif]></span><span
lang=3DIT style=3D'font-size:10.0pt;font-family:Verdana;color:windowtext;
mso-ansi-language:IT'><o:p></o:p></span></p>

<p class=3DMsoNormal><b style=3D'mso-bidi-font-weight:normal'><span lang=3D=
IT
style=3D'font-size:10.0pt;mso-bidi-font-size:12.0pt;font-family:Verdana;
mso-ansi-language:IT'>Che cosa &egrave; il parametro s?<o:p></o:p></span></=
b></p>

<p align=3Dleft style=3D'text-align:left'><span lang=3DIT style=3D'font-siz=
e:10.0pt;
font-family:Verdana;mso-ansi-language:IT'>Si tratta del coefficiente si
scattering, definito dalla nuova norma ISO sviluppata da <span class=3DSpel=
lE>Vorlander</span>
e <span class=3DSpellE>Rindell</span>. E&#8217; definito il rapporto fra
l&#8217;energia riflessa in direzione non speculare e l&#8217;energia rifle=
ssa
totale. Per le superfici lisce normali il valore standard &egrave; 0.1; per=
 le
superfici meno lisce si possono avere coefficienti fino a 0.5. Valori super=
iori
possono essere attribuiti solo a pannelli diffondenti, usati nello studio di
teatri e studi di registrazione; in tal caso il valore &egrave; fornito
direttamente dal costruttore.</span><span lang=3DIT style=3D'font-size:10.0=
pt;
font-family:Verdana;color:windowtext;mso-ansi-language:IT'><o:p></o:p></spa=
n></p>

<p class=3DMsoNormal><span lang=3DIT style=3D'mso-ansi-language:IT'><o:p>&n=
bsp;</o:p></span></p>

</div>

</body>

</html>

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