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2‐6 General Information
MN2408
S
Steel spring isolators are a very effective and commonly used. Steel spring isolators
are typically 95-98% efficient (reduces the transmitted vibration 95-98%) while a pad
type can be 75-88% efficient. Spring isolators also level the genset sub-base in the
event the foundation pad is not perfectly level.
Spring steel isolators offer the highest level of vibration isolation, however higher levels
of vibration (although not detrimental) may be seen on some areas of the genset when
mounted on steel springs, due to the (almost) total isolation from the foundation. The
base of most steel spring isolators contains a non-skid pad. The base should be
mounted to the foundation pad as shown in Figure 2‐1 or as recommended by the
isolator manufacturer.
A common practice is to pour a concrete pad directly on top of the floor slab and to
mount the genset on this pad. The purpose of the pad is to facilitate cleaning around
the genset and to provide a more level base. When using this method, floor strength
must support the pad and the genset. The pad should be at least 6in (150mm) thick
and extend beyond the genset in all directions 12in (300mm).
Weight Of The Genset
The dry weight of the entire genset is shown on the Generator Set Specification Sheet. The wet
weight includes the fluids (coolant and oil). Figure 2‐2 can be used to design the foundation
except in critical situations.
Figure 2‐2 Approximate Weight vs. kW Output
Summary of Contents for GLC10
Page 12: ...2 2 General Information MN2408...
Page 24: ...2 14 General Information MN2408...
Page 40: ...3 16 Receiving Installation MN2408...
Page 58: ...4 18 Operation MN2408 Figure 4 15 Engine Controller Inputs Outputs...
Page 70: ...4 30 Operation MN2408 Figure 4 16 Configuration Data Sheet j j j j j j j j j...
Page 74: ...4 34 Operation MN2408...
Page 88: ...A 10 Series GLC MN2408...
Page 90: ...B 2 Series GLC MN2408 Figure B 11 Customer Interface Connection Diagram MEC20 MEC2...
Page 91: ...Series GLC B 3 MN2408 Figure B 12 Customer Interface w o Breaker Power Connection Diagram...
Page 92: ...B 4 Series GLC MN2408 Figure B 13 Single Phase w o Breaker Connection Diagram...
Page 93: ...Series GLC B 5 MN2408 Figure B 14 Single Phase One Breaker Connection Diagram...
Page 94: ...B 6 Series GLC MN2408 Figure B 15 Single Phase Two Breaker Connection Diagram...
Page 99: ...Series GLC B 11 MN2408 Figure B 20 Three Phase Connection Diagram...
Page 100: ...B 12 Series GLC MN2408 Figure B 21 Three Phase Connection Diagram with PMG...
Page 101: ...Series GLC B 13 MN2408 Figure B 22 Three Phase Connection Diagram Wire 1 0 and larger...
Page 106: ...B 18 Series GLC MN2408 Figure B 27 Control Box Connections with MEC20 Controller...
Page 107: ...Series GLC B 19 MN2408 Figure B 28 Control Box Connections with MEC20 Controller Governor...
Page 108: ...B 20 Series GLC MN2408 Figure B 29 Control Box Connections with MEC2 Controller...
Page 109: ...Series GLC B 21 MN2408 Figure B 30 Engine Wiring Woodward 4 3L GM...
Page 110: ...B 22 Series GLC MN2408 Figure B 31 Engine Wiring Woodward 5 7L GM...
Page 111: ...Series GLC B 23 MN2408 Figure B 32 Engine Wiring Woodward 8 1L GM...
Page 112: ...B 24 Series GLC MN2408...
Page 113: ...Baldor District Offices...