Lesson 3.2.3.5
3.2.3.5 Urban drainage Quiz: AQA Geography, Unit 2
20 questions
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Lesson 3.2.3.5, Urban drainage: 20 multiple choice questions for the AQA Geography (7037), Unit 2: Human geography, written with Revision Ninja.
Host it live on the board and students join with a game code on their own devices, or revise alone with Free Play. The answers are revealed in the game.
The 20 questions
-
What is the main effect of urban surfaces on the hydrological cycle?
- No effect because drainage systems remove all water instantly
- Increased infiltration because urban soils are highly permeable
- Impermeable surfaces increase surface runoff and reduce infiltration into the ground
- Reduced surface runoff because cities have more vegetation
-
On a hydrograph, what does a shorter lag time usually indicate in an urbanised catchment?
- Rainfall has stopped completely before the river responds
- Water reaches the river more quickly, producing a faster response to rainfall
- The river has dried up and no runoff is recorded
- Water takes longer to reach the river because of reduced runoff
-
Which change in an urbanised drainage basin most directly increases peak river discharge?
- Greater infiltration into deep permeable soils
- Reduced rainfall intensity across the entire catchment
- Greater area of impermeable surfaces and drains that speed water to the channel
- Increased storage in ponds and wetlands across the basin
-
A catchment's urbanisation rises from 10% to 50% impermeable cover. What is the most likely effect on flood risk?
- Lower flood risk, because impermeable surfaces slow runoff
- No change, because drains move water at the same speed as before
- Higher peak discharge and greater flood risk for the same rainfall event
- Lower peak discharge because more water is stored in urban soils
-
Which sustainable urban drainage system uses a shallow vegetated channel to slow and filter runoff?
- Soakaway
- Storm drain
- Sewage outfall
- Swale
-
Which SUDS feature is best suited to reducing runoff from a car park?
- Impermeable tarmac that drains straight to a storm drain
- Permeable paving that lets water infiltrate through the surface
- A high kerb that prevents any water from reaching the ground
- A concrete channel that accelerates flows to the river
-
A river restoration scheme in an urban catchment is best described as aiming to:
- Straighten the channel to speed water through the city, removing bends and vegetation so flows reach the outfall as quickly as possible
- Replace the river with a concrete flood channel along its full length, lining the banks and bed so that water moves at a steady speed
- Reconnect the channel to its floodplain, reduce pollution and improve habitat
- Culvert the river entirely underground to prevent flooding, sealing the channel from the surface so that no further flooding can occur
-
Which catchment characteristic would most reduce the flashiness of an urban river?
- Steep channel gradients with no vegetation along the banks, which carry water quickly from the upland catchment to the city outfall
- Large areas of green space and ponds that store runoff before it reaches the channel
- Dense networks of storm drains feeding the river quickly, with every street gully connected directly to the channel by a short pipe
- Extensive paved car parks draining directly to the river, so that runoff from every vehicle bay enters the channel within minutes
-
Which statement about urban water management is most accurate?
- Sustainable drainage avoids all use of vegetation and soil, relying instead on concrete channels that never hold any water at all
- Sustainable drainage aims to remove all water from the city as fast as possible, using large pipes to carry every storm away quickly
- Sustainable drainage increases flood peaks on purpose to protect downstream areas, pushing water into the lower catchment in short bursts
- Sustainable drainage aims to mimic natural runoff patterns by slowing, storing and infiltrating water
-
A hydrograph for an urban catchment shows a peak discharge of 60 cumecs compared with 25 cumecs before urbanisation, for the same storm. What is the percentage increase in peak discharge?
- 240%
- 35%
- 140%
- 60%
-
Which argument best evaluates the value of SUDS in a heavily built-up city?
- They have no effect on flood peaks and only add cost, because their storage capacity is too small to change runoff in any real storm
- They are only useful in rural catchments with no development, because urban surfaces cannot be fitted with any sustainable features
- They work in every city without any maintenance or land take, since they need no space and require no upkeep once installed
- They reduce peak flows and pollution but may need space and maintenance, which can limit use in dense areas
-
Which pair of processes best explains why flooding is often more severe after urban development?
- Reduced runoff and more natural wetland storage across the catchment, because urban growth tends to restore lost floodplain wetlands
- More permeable surfaces and greater storage capacity in the basin, so flood peaks fall as urban development spreads across the land
- Increased runoff from impermeable surfaces and reduced storage in the drainage basin
- Increased infiltration from paved surfaces and extended lag times, as urban soils absorb more rainfall before it reaches the river
-
A city's storm drains are designed for a 1 in 30-year storm, but a 1 in 100-year storm causes flooding. What does this illustrate?
- Drainage capacity is exceeded by extreme rainfall, so systems may fail during rare events
- Drainage is unrelated to rainfall intensity, since the capacity of pipes depends only on their material and the age of the network
- Flooding is caused only by river channels rather than the drainage system, so the storm drains are never the source of any flooding
- Drains are working perfectly for all storms, including the rarest, because the design standard already accounts for every possible event
-
Which catchment management approach best addresses water pollution from urban runoff?
- Source control such as green roofs and rain gardens that treat runoff near where it falls
- Discharging all runoff untreated straight into the nearest river, which avoids the cost of treatment and sends the water away quickly
- Increasing the number of road gullies that bypass treatment, so that polluted water reaches the river without any filtering along the way
- Removing all vegetation to make runoff drain faster, which clears the surface so that water and pollutants move straight into the channel
-
Which statement about urban groundwater is most accurate?
- Urban groundwater recharge always increases because of paved surfaces, which channel rain into the ground through drains and cracks
- Urban rivers always have higher baseflow than rural rivers, because sewage discharges keep the channel full through the dry season
- Reduced infiltration in cities can lower groundwater recharge and affect baseflow to rivers
- Groundwater has no connection to urban drainage, since the water table is isolated from pipes, sewers and surface channels in cities
-
Which combination best describes the typical effect of urbanisation on the urban water cycle?
- Unchanged runoff with no pollution impacts on water bodies, because cities drain water so efficiently that streams remain clean
- Reduced peak flows and increased evapotranspiration from paved areas, since sealed surfaces lose more water to the air each day
- Higher runoff and peak flows, reduced infiltration and evapotranspiration, and increased pollution load in streams
- Lower runoff and higher infiltration across the whole city, as paved surfaces let water soak into the ground more readily than before
-
A catchment is 40 km2 and 30% of it is impermeable. Which computed value gives the impermeable area?
- 12 km2
- 30 km2
- 28 km2
- 4 km2
-
A river channel in a city is culverted underground for a long stretch. Which drainage consequence is most likely?
- Less surface storage and conveyance capacity that can increase flood risk downstream
- Greater floodplain storage and reduced peak flows, since the underground channel spreads water over a wider area of the valley
- Improved habitat for fish along the reach, because the culvert gives fish a stable channel that is protected from storm flows
- Lower pollutant loads entering the channel from runoff, because the culvert filters water as it passes beneath the surface streets
-
Which hydrological term describes water that soaks into the ground and recharges groundwater?
- Evaporation
- Overland flow
- Interception
- Infiltration
-
A green roof retains 60% of rainfall during a storm of 20 mm. How much rainfall runs off the roof?
- 12 mm
- 4 mm
- 20 mm
- 8 mm
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