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On March 22, 2023 at 11:35:14 AM +0100,
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in Drought monitoring -
Changed value of field
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in Drought monitoring -
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41 | "metadata_created": "2023-03-20T12:09:25.419823", | 42 | "metadata_created": "2023-03-20T12:09:25.419823", | ||
42 | "metadata_modified": "2023-03-22T10:32:52.238865", | 43 | "metadata_modified": "2023-03-22T10:32:52.238865", | ||
43 | "name": "drought-monitoring", | 44 | "name": "drought-monitoring", | ||
44 | "notes": "A third effect of climate change on the urban environment | 45 | "notes": "A third effect of climate change on the urban environment | ||
45 | is drought: long periods with no significant impact on precipitation. | 46 | is drought: long periods with no significant impact on precipitation. | ||
46 | Urban vegetation (parks, trees), historically adapted to a temperate | 47 | Urban vegetation (parks, trees), historically adapted to a temperate | ||
47 | climate with an average monthly precipitation depth of 60 mm, suffers | 48 | climate with an average monthly precipitation depth of 60 mm, suffers | ||
48 | from these extended dry spells, leading to limited growth and | 49 | from these extended dry spells, leading to limited growth and | ||
49 | increased vulnerability to pests or diseases. This has a negative | 50 | increased vulnerability to pests or diseases. This has a negative | ||
50 | effect on the city's livelihood. \r\n\r\nA government has various | 51 | effect on the city's livelihood. \r\n\r\nA government has various | ||
51 | options for reducing the consequences of drought. water trees and | 52 | options for reducing the consequences of drought. water trees and | ||
52 | parks or switch to other, more drought-resistant vegetation. Because | 53 | parks or switch to other, more drought-resistant vegetation. Because | ||
53 | these measures are expensive, the government wants an optimal strategy | 54 | these measures are expensive, the government wants an optimal strategy | ||
54 | to combat droughts. There is a correlation between soil moisture | 55 | to combat droughts. There is a correlation between soil moisture | ||
55 | available for vegetation and the city's water table. With this | 56 | available for vegetation and the city's water table. With this | ||
56 | correlation established and quantified, the existing groundwater | 57 | correlation established and quantified, the existing groundwater | ||
57 | observation network can be used to characterize the vulnerability to | 58 | observation network can be used to characterize the vulnerability to | ||
58 | drought for different areas within the city (e.g. vulnerable - | 59 | drought for different areas within the city (e.g. vulnerable - | ||
59 | moderate - robust). \r\n\r\nThis information can serve as a basis for | 60 | moderate - robust). \r\n\r\nThis information can serve as a basis for | ||
60 | a drought mitigation plan and as a source of information for urban | 61 | a drought mitigation plan and as a source of information for urban | ||
61 | planning. As a first iteration a regression model is derived to | 62 | planning. As a first iteration a regression model is derived to | ||
62 | estimate the soil moisture content based on observations of the | 63 | estimate the soil moisture content based on observations of the | ||
63 | groundwater level. \r\n\r\n\u2718 The influence of drought on | 64 | groundwater level. \r\n\r\n\u2718 The influence of drought on | ||
64 | groundwater levels and soil moisture in urban areas is unknown | 65 | groundwater levels and soil moisture in urban areas is unknown | ||
65 | \r\n\r\n\u2718 It is not known what the best strategy is for the city | 66 | \r\n\r\n\u2718 It is not known what the best strategy is for the city | ||
66 | to reduce the negative consequences of drought \r\n\r\n\u2718 It is | 67 | to reduce the negative consequences of drought \r\n\r\n\u2718 It is | ||
67 | not known what the best strategy is for the city to reduce the | 68 | not known what the best strategy is for the city to reduce the | ||
68 | negative consequences of drought \r\n\r\nA drought vulnerability map | 69 | negative consequences of drought \r\n\r\nA drought vulnerability map | ||
69 | is made on the basis of groundwater and soil moisture measurements of | 70 | is made on the basis of groundwater and soil moisture measurements of | ||
70 | the city. This map serves as an information product for urban | 71 | the city. This map serves as an information product for urban | ||
71 | planning. The static map based on historical measurements can provide | 72 | planning. The static map based on historical measurements can provide | ||
72 | insight into different parts of the city. A dynamic map where soil | 73 | insight into different parts of the city. A dynamic map where soil | ||
73 | moisture availability for vegetation is estimated in real time based | 74 | moisture availability for vegetation is estimated in real time based | ||
74 | on recent measurements and the regression model can be used to | 75 | on recent measurements and the regression model can be used to | ||
75 | determine if irrigation is required. \r\n\r\n\u2714 Less expenditure | 76 | determine if irrigation is required. \r\n\r\n\u2714 Less expenditure | ||
76 | for reducing the negative effects of drought in the city | 77 | for reducing the negative effects of drought in the city | ||
77 | \r\n\r\n\u2714 Be regarded as a leader in urban drought mitigation ", | 78 | \r\n\r\n\u2714 Be regarded as a leader in urban drought mitigation ", | ||
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81 | "approval_status": "approved", | 82 | "approval_status": "approved", | ||
82 | "created": "2023-03-21T12:22:15.788620", | 83 | "created": "2023-03-21T12:22:15.788620", | ||
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89 | "state": "active", | 90 | "state": "active", | ||
90 | "title": "Amersfoort", | 91 | "title": "Amersfoort", | ||
91 | "type": "organization" | 92 | "type": "organization" | ||
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