COMMEN

Rabu, 18 September 2013

Satuan Metric Dan Satuan Internasional

"KONVERSI"
SATUAN MATRIC
SATUAN INTERNATIONAL
1 kg / cm2
0,968 bar
1 kg / cm2
105 Nm-2
1 kg
10 N
1 kkal
4,187 kj
1 kalori
4,187 joule
1 kgm
0,01 kj
1 kkal / kg
4,187 kj kg-1
1 kkal / kg oc
4,187 kj kg-1 oc
1 HP
0,735 KW
1,36 HP
1 KW (1 kj det -1)atau 1 KN m det -1
1 gram/IHP-jam
1,36 gram IKW -1jam
1 gram/IHP-jam
0,0003779 gram IKW -1det
1 gram/EHP-jam
1,36 gram EKW -1jam
1 gram/EHP-jam
0,0003779 gram EKW -1det
1 mile/jam (1 knot)
0,5144 m det -1

"SYSTEM SATUAN"

"SYSTEM SATUAN"
No
Uraian
Satuan Metric
Satuan International
Simbol
Satuan
Simbol
Satuan
1
Panjang
L
m
L
m
2
Lebar
B
m
B
m
3
Tinggi
H
m
H
m
4
Dalam
D
m
D
m
5
Luas
A
m2
A
m2
6
Volume
V
m3
V
m3
7
Tekanan
p
kg/cm2
p
bar(Nm-2)
8
Temperatur
t
oc
t (T)
oc (oK)
9
Gaya
K
kg
F
 N
10
Momen
W
kg
W
N
11
Panas
Q
kkal
Q
kj
12
Entalpi
H ( I )
kkal/kg
H ( I )
kj kg-1
13
Entropi
S
kkal/kgoc
S
kj kg-1oc
14
Kecepatan
C
m/detik
C
mdet-1
15
Volume Jenis
V
m3/kg
V
m3kg-1
16
Massa
 M
kgm
M
Nm
17
Panas Jenis
Cp (pj)
kkal/kgoc
Cp (pj)
kj kg-1oc
18
Tekanan Rata2 Indikator
pi
kg/cm2
pi
bar(Nm-2)
19
Tekanan Rata2 Efektif 
pe
kg/cm2
pe
bar(Nm-2)
20
Tenaga Indikator
Ni
IHP
Pi
IKW
21
Tenaga Efektif
Ne
EHP
Pe
EKW
22
Putaran
n
RPM
n
RPS
23
Nilai Pembakaran bb
NO
kkal/kg
NO
kj kg-1

Rumus-Rumus Motor Diesel

Rumus-Rumus Motor Diesel
I. Daya Motor
                a). Daya indicator 
                (Pi) = 0,785.D2.S.Z.pi.n.100 (2tak)
 (Pi) = 0,785.D2.S.Z .pi.n.50  (4tak)
                b). Daya efectif   
 (Pe) = 0,785.D2.S.Z.pe.n.100 (2tak)
                                 (Pe) = 0,785. D2.S.Z.pe.n.50  (4tak)
                c). Daya Gesekan mekanis:
                                Pf = Pi – Pe ( 2tak & 4tak)
                d). Tekanan Gesekan:
                                pf = pi – pe  (2tak & 4tak)
Ket:
                PI = Daya indicator (ikW)
                Pe = Daya Effective (ekW)
                Pf = Daya gesekan (kW)
                pf = Tekanan gesekan (bar)
                D = Diameter Silinder (m)
                S = Langkah torak (m)
                Z = Jumlah silinder
                pi = Tekanan rata2 indikator (bar)
                pe = Tekanan rata2 efektive (bar)
II. Randemen2 untuk motor (2tak & 4tak)                                    
ηth  =         1            .           
                               bi. NO                                    
ηm = .Pe . = pe = bi  = ηtot           
           Pi      pi      be    ηth
ηtot =      1       .
             be . NO      
NO = 340C + 1200 {H .     0  .} + 105S
                                            8
Ket:         ηth           = Randemen Thermis (%)
                ηm            = Randemen Mechanic (%)
                ηtot         = Randemen Total (%)
                be         = Pemakaian BB specific (kg/ekWs)
                bi = Pemakaian BB specific (kg/ik Ws)
                NO = Nilai opak (pemb.) BB (kj/ kg bb)
                C,O,S,  = Komposisi BB tdk dlm %

III. PEMAKAIAN BBM
                B = bi.PI = be.Pe (2tak & 4tak)                     
                Binj = bi.Pj = be.Pe =   B   .      (2tak)
                         Z . n   Z . n     Z . n                            
                Binj = bi.Pi.2. =be.Pe.2. = B.2. (4tak)
                        Z . n       Z . n       Z . n
                Vinj = Binj.   (2tak & 4tak)
                             γ b
           Ket:
           B   = Pemakaian BBM (kg/det)
         Binj                = Peakmakaian bb. Tiap injkecsi tiap       
                    Silinder (kg/sil/proses kompressi)
         Vinj                = Vol. inj. bb (cm3,Dm3)
          γ bb               = Berat jenis bb (kg/dm3atau grm/ cm3
                           atau ton/jam)
IV. PERBANDINGAN KOMPRESSI (Є)DAN
      DERAJAT PENGISIAN(dp)
                    Є =   (Vs – Vx) + Vc
                             Vc
                dp = (Vs – Vs) + Vc
                                   Vs
Ket : Vs = Volume langkah (m3)
          Vx = Volume awal Kompresi  (m3)
          Vc = Volume ruang rugi (R.bakar) (m3)
V. KECEPATAN TORAK (2tak & 4tak)
a. Kecepatan rata2 torak ( vp)
Vp = 2.S.n    (2tak & 4tak)
b. Kecepatan sesaat torak (Vpλ)
Vpλ = ω.R.(sin λ + R . cos 2 λ) m/s
                   2.L
  Þ ω = 2.Π.n              
           Vpλ = 2.Π.n.R.(sin λ +  R . cos 2 λ) m/s
                           2.L
c. Percepatan torak (a)                          
a λ =        ω2.R.(cos λ +  R . cos 2 λ) m/s
                         L                                       
a λ = (2.Π.n)2.R.(cos λ + . cos 2 λ) m/s
                              L
d. Jarak yang ditempuh Torak
     setelah Engkol bergerak λo derajat     (Sλ)                                                                 
Sλ = R (1 – cos λ) + ( R2  . sin λ)                                       
                                     2L
Ket: V     = kecepatan rata2 torak (m/s)
         S = langkah torak (m)
         N = putaran (Rps)
         λ = sudut engkol ( derajat )
         R = jari2 Engkol (m)
         ω = Kecepatan sudut (radian)
                 ÞΠ = 3.14, n = Rps

VII. NERACA PANAS                          
Gudth 100  { 8 . C + 8 H – 0 + S }
               23       3
Gudpr = fu.Gudth = dp.0.785 D2.S.pudud273                                                                                                                                                                                                                                                                                                                                        
                                                                    273+tud
Ggas = Gudpr. Gbb
Qgas = Ggas. pj gas.t gas
Qap = 100% - (ηth + Qgas + Qrad )
Qges.mek  = Qsil – Qporos = ηth.- ηtot = Pi – Pe
Q air.B.NO = Gair.pjair.∆tair                                                                     
Kapasitas pompa = Qair
                                 γair
Ket:        
 Gudth = berat udara theoritis kg/kg bb
C,H,O&S= Komposisi BBM (dlm %)
Gudpr = Berat udara praktis kg/kg bb (kg/sil,kg/proses compressi.)
fu = faktor udara 


VI. WAKTU PEMBUKAAN DAN PENUTUPAN
       KATUP ( t  )              
                t = .  λ .  ( 2tak & 4tak)

      360.n