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GENERAL
INFORMATION
8
dome of a pyranometer also has this emission and is cooling down
several degrees below air temperature (the emissivity of glass for the
particular wavelength region is nearly 1). The emitted heat is attracted
from the body (by conduction in the dome), from the air (by wind) and
from the inner dome (through infrared radiation). The inner dome is
cooling down too and will attract heat from the body by conduction
and from the sensor by the net infrared radiation again. The latter heat
flow is opposite to the heat flow from absorbed solar radiation and
causes the well known zero depression at night of approximately -5
W/m
2
. This negative zero offset is also present on a clear day,
however, hidden in the solar radiation signal.
Figure 1 Approximate construction of Kipp & Zonen pyranometer CM 11.
During indoor measurements with a solar simulator, the inner dome
can become warmer than the pyranometer body due to net thermal
radiation from the lamp housing. A positive zero offset A is the result.
The zero offset A can be checked by placing a light and IR reflecting
cap over the pyranometer. A thin aluminium foil cap covering only the
dome seems to be the best solution. The response to solar radiation
Summary of Contents for CM 11
Page 1: ...INSTRUCTION MANUAL Kipp Zonen 0305 201 PYRANOMETER ALBEDOMETER 14 11...
Page 13: ...GENERAL INFORMATION 12...
Page 17: ...TECHNICAL DATA 16 Figure 5 Kipp Zonen pyranometer CM 11 outline dimensions in mm...
Page 18: ...TECHNICAL DATA 17 Figure 6 Kipp Zonen albedometer CM 14 outline dimensions in mm...
Page 35: ...OPERATION 34...
Page 43: ...CALIBRATION 42...
Page 47: ...TROUBLE SHOOTING 46...
Page 51: ...APPENDIX I 50...
Page 53: ...APPENDIX II 52...
Page 55: ...APPENDIX IV 54...
Page 57: ...APPENDIX IV 56...
Page 59: ...APPENDIX IV 58...
Page 61: ...APPENDIX IV 60...
Page 63: ...APPENDIX IV 62...