SUBJECTS
|
BROWSE
|
CAREER CENTER
|
POPULAR
|
JOIN
|
LOGIN
Business Skills
|
Soft Skills
|
Basic Literacy
|
Certifications
About
|
Help
|
Privacy
|
Terms
|
Email
Search
Test your basic knowledge |
Energy Engineering
Start Test
Study First
Subject
:
engineering
Instructions:
Answer 50 questions in 15 minutes.
If you are not ready to take this test, you can
study here
.
Match each statement with the correct term.
Don't refresh. All questions and answers are randomly picked and ordered every time you load a test.
This is a study tool. The 3 wrong answers for each question are randomly chosen from answers to other questions. So, you might find at times the answers obvious, but you will see it re-enforces your understanding as you take the test each time.
1. Many decades and up to 100 yrs left reserves increasing due to fracking and tight gas recovery almost always seen with oil and frequently without
Octane number of gas sold in Utah
NG production
Europe Hard vs. Brown Coal
Natural Gas Reserves?
2. Little more than half=fuel cost - rest is transportation and distribution
NG compostion from ground
Cetane number
Modern vs. Old Coal Power Plants
Cost of NG for consumer
3. Coal rank correlates with both hydrogen:carbon and oxygen:carbon ratio - with rank decreasing with increasing values of both ratio. ex. anthracite low ratios and lignites have high ratios
Making Diesel Like fuels from Coal - NG - and biomass
coal rank and H:C ratio and O:C ratio
Compression ignited (diesel)
Brayton Cycle efficiency
4. Coal contributes to essentially every criteria air pollutant and to CO2 and Hg. In most cases (except CO) - coal is a major contributor.
Coal Conversion Technologies
Coal and Air Pollution
Europe Hard vs. Brown Coal
Natural Gas Reserves?
5. Brayton Cycle
Natural Gas Reserves?
Jet Engines Cycle
jet Engine Pressure Ratio
Brayton Cycle efficiency
6. Coal- fired power generation costs are roughly 50% capital and the remaining fuel and operating costs. Fuel costs have remained stable and low historically - making coal an attractive investment for power
diesel engines
Cost to Generate Coal Power
Coal Production and Environment
How to get diesel
7. Constant pressure combustion - isentropic and adiabatic compression and expansion
Diesel Cycle
Eastern US
Cetane number
Brayton Cycle efficiency
8. Not very common - small particulate and SO2 and some NOx are problems for this cycle with coal
Fuel Injection of compression ignited
Coal Conversion Technologies
Gas/Brayton Cycle coal power
why use higher octane fuels
9. Hg - As - trace other metals - no dioxins and furans
Otto Cycle
Trace emissions of coal
Combined Cycle
jet Engine Pressure Ratio
10. China - and rapidly growing - India also rapdily growing
Coal Ranking (oldest to newest)
Largest Coal Consumers
Brayton Cycle efficiency
NG transportation
11. Fracture rock with water and other stuff - replace with sand - suck out liberated NG
Fuel Injection of compression ignited
Protect Jet Engine Fan Blades
size of reactors for subbitmunious vs. bituminous
Fracking
12. Distillate fraction (heavier than naptha) - though it requires some additional treatment for sulfur removal -
Spark ignited engines (gasoline)
Fracking
How to get diesel
Natural Gas Reserves?
13. Have broader range of fuels - have higher compression ratios - nearly always super/turbo charged
Coal Ranking (oldest to newest)
US coal reserves
Coal Conversion Technologies
diesel engines
14. Critical pressure (218 psi) and above - 38-39% efficient - supercritical from 45-47% efficient - materials limit max temp to 600 degC - pressure ratios up to 10 -000 because condenser reaches really low pressures
subbituminous vs. bituminous coals
coal rank and H:C ratio and O:C ratio
Rankine Cycle Coal Conversion/Steam Turbines
Gas/Brayton Cycle coal power
15. Mid 80s
Octane number of gas sold in Utah
Fuel Injection of compression ignited
Diesel differences from gasoline
Coal Ranking (oldest to newest)
16. Inlet/intake - compression - expansion/combustion/power - exhaust
Jet Engines Cycle
size of reactors for subbitmunious vs. bituminous
Jet Engines Lifetime/Reliability
4 stokes of spark ignited 4 stroke
17. 100 bar inside pipelines (1/600 of normal volume) - pumping stations every 40 to 100 mi - pipelines maintained and made sure safe by pigs(devices that measure stuff to make sure nothing's wrong) distribution pipelines are lower pressure and plastic
Natural Gas Reserves?
why use higher octane fuels
NG transportation
How to get diesel
18. Steam Turbines (Rankine Cycle) - Gas Turbines (Brayton Cycle) - Combined Cycle (not very economically feasible) - Liquid Fuels and Other products (chemicals - Fischer Tropsh - Coal to Methanol for gasoline but less history)
Eastern US
Spark ignited engines location of fuel injection
Coal Conversion Technologies
Fuel Injection of compression ignited
19. Good alternative to petroleum based fuels?
CNG for transportation
Brayton Cycle efficiency
Gas/Brayton Cycle coal power
NG simple cycle
20. Modern only output CO2 and no significant impact on other pollutants - Most Coal Power are old and many have significant impact on air pollution
Cost to Generate Coal Power
4 stokes of spark ignited 4 stroke
Coal and Air Pollution
Modern vs. Old Coal Power Plants
21. Less efficient than either Otto or Diesel cycle at same pressure ratio/compression ratio - but in practice pressure ratio is higher leading to higher efficiencies.
Diesel differences from gasoline
Cost of NG for consumer
Rankine Cycle Coal Conversion/Steam Turbines
Brayton Cycle efficiency
22. Same as Brayton cycle
Coal Production and Environment
NG simple cycle
Compression ignited (diesel)
Gas/Brayton Cycle coal power
23. Anthracites - bituminous coals - subbituminous coals - lignites.
Compression ignited (diesel)
size of reactors for subbitmunious vs. bituminous
Coal Ranking (oldest to newest)
diesel engines
24. Fischer Tropsh synthesis
Most Jet Engines on Commercial Aircraft
why use higher octane fuels
Making Diesel Like fuels from Coal - NG - and biomass
Europe Hard vs. Brown Coal
25. Contains an odorant - deliberately added so leaks will be noticed
gasoline composition and formation
Making Diesel Like fuels from Coal - NG - and biomass
NG as delivered to a home and most industries
why use higher octane fuels
26. Hard=bituminous - Brown=subbituminous/lignite
size of reactors for subbitmunious vs. bituminous
Coal Ranking (oldest to newest)
Europe Hard vs. Brown Coal
Compression ignited (diesel)
27. Cetane numbers greater than ___ generally have no advantage over a fuel of 50. Common cetane numbers are 40-45 and 45-50 for regular and premium diesel fuels.
Octane number of gas sold in Utah
50
Diesel differences from gasoline
Trace emissions of coal
28. Methane (70-90%) - heavier hydrocarbons (up to 20% through C4) - CO2 (up to 8% - but occasionally much higher) - H2O (usually saturated) - sometimes H2S (up to 5%) - oxygen (< 0.2%) nitrogen (up to 5%) - and other trace quantities.
NG transportation
NG compostion from ground
How to get diesel
Rankine Cycle Coal Conversion/Steam Turbines
29. 2 stroke and 4 stroke - Combustion rate limited by gas - phase kinetics and is very rapid.
Spark ignited engines (gasoline)
Europe Hard vs. Brown Coal
Otto Cycle
Cetane number
30. Drilling - then set up production wells with nothing above surface - production decreases exponentially with time
Coal Production and Environment
subbituminous vs. bituminous coals
NG production
natural gas emissions
31. Brayton cycle with exhaust powering a Rankine Cycle (efficiencies of up to 60%) - possibly most economical choice - can't respond to load changes as rapidly as simple cycle
Fracking
Diesel vs Gasoline engines
NG compostion from ground
Combined Cycle
32. Almost zero aromatics in it
why use higher octane fuels
50
US coal reserves
Diesel differences from gasoline
33. Is dominantly CH4 - but the ethane content is always >1 % and important to the fuel
NG compostion from ground
NG composition in pipeline
Coal Ranking (oldest to newest)
Coal Production and Environment
34. Compressor stator (trailing edge points axially) - turbine stator (trailing edge has significant tangential component).
subbituminous vs. bituminous coals
Compressor Stator vs. Turbine Stator
US coal reserves
Otto Cycle
35. 150 yrs
Spark ignited engines (gasoline)
Fuel Injection of compression ignited
US coal reserves
CNG for transportation
36. Less CO2 and most other pollutants than other combustion fuels
Making Diesel Like fuels from Coal - NG - and biomass
Diesel Cycle
natural gas emissions
diesel engines
37. Measures the ability of a fuel to pressure ignite and in this regard is the opposite of the octane number.
Diesel vs Gasoline engines
NG production
Cetane number
why use higher octane fuels
38. Much lower energy density than gasoline and can be corrosive or damaging to engines and seals. Because it requires less oxygen to burn - it has slightly better engine efficiency. However - its lower energy density means a car gets considerably lower
NG production
Europe Hard vs. Brown Coal
Ethanol in combustion engines
Trace emissions of coal
39. Measure of a fuels ability to resist compression ignition - with iso- octane having an octane number of 100 and n - heptane an octane number of 0. (n - octane has an octane number of -10).
Natural Gas Reserves?
Octane Rating
Spark ignited engines (gasoline)
Coal Conversion Technologies
40. Higher than compression ratio in diesel or gasoline engines (note that pressure ratio is not exactly the same as a compression ratio).
NG composition in pipeline
Eastern US
Fuel Injection of compression ignited
jet Engine Pressure Ratio
41. Fuel is injected in cylinder at much higher pressures than gasoline fuel injection and through injectors designed to atomize fuel to small droplets that rapidly vaporize and burn.
Compressor Stator vs. Turbine Stator
Rankine Cycle Coal Conversion/Steam Turbines
Fuel Injection of compression ignited
jet Engine Pressure Ratio
42. More reliable than reciprocating engines because: continuous operation and fewer moving parts
Jet Engines Lifetime/Reliability
CNG for transportation
Eastern US
Modern vs. Old Coal Power Plants
43. your engine is knocking (igniting the gas too early when piston coming up instead of while at top) - High compression engines need higher octane fuels.
gasoline composition and formation
why use higher octane fuels
Compressor Stator vs. Turbine Stator
Eastern US
44. Not produced from any single fraction of crude in the fractionation column but rather are blends and reformates designed specifically for regional markets and specifications/regulations
Natural Gas Reserves?
gasoline composition and formation
Cost to Generate Coal Power
How to get diesel
45. Bituminous coals are in the _____ - subbituminous coals in most of the west (but not Utah) - and lignites primarily in Texas and North Dakota.
Trace emissions of coal
Coal Conversion Technologies
Rankine Cycle Coal Conversion/Steam Turbines
Eastern US
46. Constant volume combustion - isentropic and adiabatic compression and expansion - 2 stroke and 4 stroke engines use (gasoline engines)
Otto Cycle
Jet Engines Cycle
Fuel Injection of compression ignited
Protect Jet Engine Fan Blades
47. Low sulfur vs. high sulfur - bituminous used to provide most power - but switching to cleaner Wyoming subbituminous
Trace emissions of coal
gasoline composition and formation
diesel engines
subbituminous vs. bituminous coals
48. Occurs (with a few exceptions) in the intake manifold prior to the air entering the cylinder. Air entering cylinder is a mixture of air and vaporized fuel.
Compression ignited (diesel)
Spark ignited engines location of fuel injection
CNG for transportation
why use higher octane fuels
49. From inlet temperatures with cooling of blades and thermal barrier couplings
Protect Jet Engine Fan Blades
Compressor Stator vs. Turbine Stator
Crude oil is transformed into commercial products how?
Europe Hard vs. Brown Coal
50. Not too good for it. Strip mined or deep/mountain top mined
Natural Gas Reserves?
Coal Production and Environment
Diesel differences from gasoline
50