Pumping, irrigation, 15m total pumping head, 100% diesel {AU}| | AusLCI, U
Unit process Australia v00.00.000
Included processes: Include infrastructure, fuel production and use of pump for irrigation. Remark: This inventory has been developed as part of the AusAgLCI initiative funded by a partnership of Australian Research and Development Corporations (RIRDC, CRDC, GRDC, SRDC, HAL, MLA, DA, FWPA) and Research Agencies (CSIRO, USQ and Q DAFF), with technical support from Life Cycle Strategies. More detail on inventory development can be found in the 'AusAgLCI Methodology for developing Life Cycle Inventory' documents located at www.auslci.alcas.asn.au. Using pumping energy formula Power=pgQh/1000n where p is density of the liquid, g is gravitation constant, Q is discharge, H is head pumped, n is efficiency of pump and motor. The infractructure is based on typical assumption in flygt EPD. Functional flow is 1m3 of liquid. Geography: Refers to an average production in Australia. Technology: Average Time period: Data collected for 2012 Version: 1.0 Record: Data entry by: Tim Grant Telephone: 0061 408104977; E-mail: tim@lifecycles.com.au; Company: LCS; Country: AU Generator: Data entry by: Tim Grant Telephone: 0061 408104977; E-mail: tim@lifecycles.com.au; Company: LCS; Country: AU
- Sector
- Processing
- Contributor
- —
- Last updated
- 30 Aug 2012
- Reference ID
5db87150-faa4-3a2f-aea7-0181dcdc3125
Download this dataset Ask a question about this dataset
Downloads require a free account. You'll be asked to register or sign in.
Documentation
- Quantitative reference
- Pumping, irrigation, 15m total pumping head, 100% diesel {AU}| | AusLCI, U
- Sampling procedure
- —
- Creation date
- 30 Aug 2012
- Is copyright protected
- No
- Is infrastructure process
- No
- Tags
- processing
- Sources
- —
Product outputs
| Flow | Amount | Unit | Comment |
|---|---|---|---|
| Pumping, irrigation, 15m total pumping head, 100% diesel {AU}| | AusLCI, U | 1.0 | m3 | — |
Technical inputs
| Flow | Amount | Unit | Comment |
|---|---|---|---|
| Diesel, burned in building machine {GLO}| market for diesel, burned in building machine | Cut-off, U | 0.49494949494949486 | MJ | — |
| Diesel, burned in building machine {GLO}| market for diesel, burned in building machine | Cut-off, U | 0.0 | MJ | — |
| Electricity, low voltage {AU}| market for electricity, low voltage | AusLCI, U | 0.0 | kWh | — |
| Water pump, irrigation, 25kg {AU}| | AusLCI, U | 0.000015017757483510909 | Item(s) | water pump in ratios to mass of pump specified and divided by total volume of water pumped over life. |
Parameters
| Name | Value | Formula | Description |
|---|---|---|---|
| Duty_of_Pump | 197100.0 | Pump_Life_years*Hours_use_peryear*Flowrate | — |
| Mass_of_pump | 74.0 | — | Total mass of pump and motor in kg - used for infrastructure calculation |
| Hours_use_peryear | 3650.0 | — | Hours of use per year - used for infrastructure |
| D_liquid | 1.0 | — | kg/l density of liquid being pumps for water assume 1 |
| Pump_Eff | 0.66 | — | Efficiency of pump at moving water. Default is 66% or 0.66 |
| Fraction_electric | — | — | Fraction of energy delivered by electric motors. Alternative is diesel motor |
| Power_Diesel_MJ | 0.49494949494949486 | (1-Fraction_electric)*3.6*(9.8*D_liquid*Head_m/(Diesel_Motor_Eff*Pump_Eff))/3600 | Diesel energy required |
| Pump_Life_years | 15.0 | — | life of pump, used for infrastructure |
| Power_Elec_KWh | — | Fraction_electric*(9.8*D_liquid*Head_m/(Elec_Motor_Eff*Pump_Eff))/3600 | Electrical energy required |
| Elec_Motor_Eff | 0.8 | — | Efficiency of motor energy delivery to pump, default for electricity is 0.8 or 80% |
| Flowrate | 3.6 | — | m3 per hour, used for infrastructure |
| Diesel_Motor_Eff | 0.45 | — | Efficiency of motor energy delivery to pump, default for electricity is 0.45 or 45%^ Diesel Engine. Freedom CAR & Vehicle Technologies Program. U.S. Department of Energy, Aug. 2003. Web. |
| Fraction_low_pop | 1.0 | — | Fraction of pumping happening in low population areas |
| Head_m | 15.0 | — | Head being pumped against. Combination of lift and backpressure |