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Expand Up @@ -99,7 +99,7 @@
title="",
columns=8,
width="80%",
mobile_width="100%",
mobile_width="90%",
background_image_url="../../../../../assets/water/water_bg.png",
background_image_opacity=0.25,
background_image_size="100%",
Expand Down Expand Up @@ -149,7 +149,7 @@
icons = [
{"id": "icon1", "img": "../../../../../assets/water/20221123_OrangaWai_IconEcoli.png", "hover": "E. <i>coli</i>", "md_dir": "md/ecoli", "map_file": "results/Map_E coli.html"},
{"id": "icon2", "img": "../../../../../assets/water/20221123_OrangaWai_IconSuspendedSediment.png", "hover": "Suspended sediment", "md_dir": "md/Sediment", "map_file": "results/FMU_Boundary_Only.html"},
{"id": "icon3", "img": "../../../../../assets/water/20221123_OrangaWai_IconN.png", "hover": "Nitrogen", "md_dir": "md/Nitrogen", "map_file": "results/Map_Nitrate-N.html"},
{"id": "icon3", "img": "../../../../../assets/water/20221123_OrangaWai_IconN.png", "hover": "Nitrogen", "md_dir": "md/Nitrogen", "map_file": "results/Map_Combined_Nitrogen.html"},
{"id": "icon4", "img": "../../../../../assets/water/20221123_OrangaWai_IconP.png", "hover": "Phosphorus", "md_dir": "md/Phosphorus", "map_file": "results/Map_DRP.html"},
{"id": "icon5", "img": "../../../../../assets/water/20221123_OrangaWai_IconChlA.png", "hover": "Algae", "md_dir": "md/Algae", "map_file": "results/FMU_Boundary_Only.html"},
{"id": "icon6", "img": "../../../../../assets/water/20221123_OrangaWai_IconAquaticLife.png", "hover": "Invertebrates", "md_dir": "md/inverts", "map_file": "results/FMU_Boundary_Only.html"}
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title="",
columns=8,
width="80%",
mobile_width="100%",
mobile_width="90%",
background_image_url="../../../../../assets/water/water_bg.png",
background_image_opacity=0.25,
background_image_size="100%",
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@media (max-width: 900px) {
.dashboard-container {
max-width: 100%;
max-width: 90%;

gap: 0.35rem;

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/* Force Mobile Layout */
body.force-mobile .dashboard-container {
max-width: 100% !important;
max-width: 90% !important;

gap: 0.35rem !important;

Expand Down Expand Up @@ -1859,7 +1859,7 @@ <h2 id="sidebar-title">Details</h2>



window.sivoOverlayData['button_trend'] = "# Diving Deeper: How We Calculate Trends\n\nTo understand if our water quality is truly improving or degrading, we look at long-term trends. In this report, we specifically calculate and focus on 15-year trends to include more monitoring sites that have a reliable, consistent length of data. If you are interested in exploring trends over 5, 10, or 20 years, you can visit the Land, Air, Water Aotearoa (LAWA) website.\n\n### Strict Data Rules\nBefore we calculate a trend, the raw data goes through strict quality control to remove any missing or compromised measurements. To calculate a reliable 15-year trend, a monitoring site must have at least 90% of its expected water samples, covering at least 90% of those 15 years.\n\n### Dealing with \"Invisible\" Pollution\nSometimes, the amount of a pollutant in the water is so tiny that standard laboratory tests cannot even detect it. If a monitoring site has too many of these undetected results, or if it is missing too much overall data, scientists cannot calculate a reliable trend. In these cases, the site is simply marked as \"Not Assessed\".\n\n### Accounting for the Seasons\nWater quality naturally fluctuates with the changing seasons and weather. To ensure these natural cycles do not hide the real long-term trend, scientists use a specific statistical method that compares data from the exact same time of year. For example, they only compare January water samples with other January samples.\n\n### The Impact of River Flow\nWater quality can also change drastically depending on how fast or high a river is flowing. For instance, a flooded river will naturally carry much more dirt and sediment than a calm one. While it would be ideal to adjust the data to account for river flow, many water quality monitoring sites do not have flow meters installed. Therefore, these trends show the actual, real-world changes in water quality, regardless of how high or low the river was at the time.\n\n### The Influence of Climate Cycles\nWater quality is always changing due to natural events like floods, droughts, and broader climate patterns. While human activities directly impact our rivers, natural forces we cannot control\u2014such as long-term climate cycles\u2014also significantly influence trend results. This makes identifying the exact cause of a trend a complex task. By analysing data over a 15-year period, we make the trends more reliable and less sensitive to these short-term weather and climatic fluctuations.\n\n### Understanding the Limits of Trends\nWhen a trend is categorised as \"very likely\" or \"likely,\" it simply means experts are confident the water quality is generally moving in a certain direction. However, it is important to remember what trends *cannot* tell us:\n\n* **Size:** A trend indicates the direction of change, not the magnitude or scale. Even a \"very likely improving\" waterway might only have a tiny decrease in pollution.\n* **Steadiness:** A trend does not mean the change happened smoothly. Water quality can still jump up and down year to year within that 15-year period. \n* **The Future:** We only calculate changes within the strict 15-year window. We cannot use this data to guess what the water was like before, or predict exactly what it will do next.\n";
window.sivoOverlayData['button_trend'] = "# Diving Deeper: How We Calculate Trends\n\nTo understand if our water quality is truly improving or degrading, we look at long-term trends. In this report, we specifically calculate and focus on 15-year trends to include more monitoring sites that have a reliable, consistent length of data. If you are interested in exploring trends over 5, 10, or 20 years, you can visit the Land, Air, Water Aotearoa (LAWA) website.\n\n### Strict Data Rules\nBefore we calculate a trend, the raw data goes through strict quality control to remove any missing or compromised measurements. To calculate a reliable 15-year trend, a monitoring site must have at least 90% of its expected water samples, covering at least 90% of those 15 years.\n\n### Dealing with \"Invisible\" Pollution\nSometimes, the amount of a pollutant in the water is so tiny that standard laboratory tests cannot even detect it. If a monitoring site has too many of these undetected results, or if it is missing too much overall data, scientists cannot calculate a reliable trend. In these cases, the site is simply marked as \"Not Assessed\".\n\n### Accounting for the Seasons\nWater quality naturally fluctuates with the changing seasons and weather. To ensure these natural cycles do not hide the real long-term trend, scientists use a specific statistical method that compares data from the exact same time of year. For example, they only compare January water samples with other January samples.\n\n### The Impact of River Flow\nWater quality can also change drastically depending on how fast or high a river is flowing. For instance, a flooded river will naturally carry much more dirt and sediment than a calm one. While it would be ideal to adjust the data to account for river flow, many water quality monitoring sites do not have flow meters installed. Therefore, these trends show the actual, real-world changes in water quality, regardless of how high or low the river was at the time.\n\n### The Influence of Climate Cycles\nWater quality is always changing due to natural events like floods, droughts, and broader climate patterns. While human activities directly impact our rivers, natural forces we cannot control\u2014such as long-term climate cycles\u2014also significantly influence trend results. This makes identifying the exact cause of a trend a complex task. By analysing data over a 15-year period, we make the trends more reliable and less sensitive to these short-term weather and climatic fluctuations.\n\n### Understanding the Limits of Trends\nWhen a trend is categorised as \"very likely\" or \"likely,\" it simply means experts are confident the water quality is generally moving in a certain direction. However, it is important to remember what trends *cannot* tell us:\n\n* **Size:** A trend indicates the direction of change, not the magnitude or scale. Even a \"very likely improving\" waterway might only have a tiny decrease in pollution.\n* **Steadiness:** A trend does not mean the change happened smoothly. Water quality can still jump up and down year to year within that 15-year period.\n* **The Future:** We only calculate changes within the strict 15-year window. We cannot use this data to guess what the water was like before, or predict exactly what it will do next.\n";
window.sivoOverlaySizes['button_trend'] = {
width: "90%",
height: "90%"
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title="",
columns=8,
width="80%",
mobile_width="100%",
mobile_width="90%",
background_image_url="../../../../../assets/water/water_bg.png",
background_image_opacity=0.25,
background_image_size="100%",
Expand Down Expand Up @@ -148,7 +148,7 @@
icons = [
{"id": "icon1", "img": "../../../../../assets/water/20221123_OrangaWai_IconEcoli.png", "hover": "E. <i>coli</i>", "md_dir": "md/ecoli", "map_file": "results/Map_E coli.html"},
{"id": "icon2", "img": "../../../../../assets/water/20221123_OrangaWai_IconSuspendedSediment.png", "hover": "Suspended sediment", "md_dir": "md/Sediment", "map_file": "results/Map_Visual Clarity.html"},
{"id": "icon3", "img": "../../../../../assets/water/20221123_OrangaWai_IconN.png", "hover": "Nitrogen", "md_dir": "md/Nitrogen", "map_file": "results/Map_Nitrate-N.html"},
{"id": "icon3", "img": "../../../../../assets/water/20221123_OrangaWai_IconN.png", "hover": "Nitrogen", "md_dir": "md/Nitrogen", "map_file": "results/Map_Combined_Nitrogen.html"},
{"id": "icon4", "img": "../../../../../assets/water/20221123_OrangaWai_IconP.png", "hover": "Phosphorus", "md_dir": "md/Phosphorus", "map_file": "results/Map_DRP.html"},
{"id": "icon6", "img": "../../../../../assets/water/20221123_OrangaWai_IconAquaticLife.png", "hover": "Invertebrates", "md_dir": "md/inverts", "map_file": "results/Map_MCI.html"}
]
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Expand Up @@ -99,7 +99,7 @@
title="",
columns=8,
width="80%",
mobile_width="100%",
mobile_width="90%",
background_image_url="../../../../../assets/water/water_bg.png",
background_image_opacity=0.25,
background_image_size="100%",
Expand Down Expand Up @@ -149,7 +149,7 @@
icons = [
{"id": "icon1", "img": "../../../../../assets/water/20221123_OrangaWai_IconEcoli.png", "hover": "E. <i>coli</i>", "md_dir": "md/ecoli", "map_file": "results/Map_E coli.html"},
{"id": "icon2", "img": "../../../../../assets/water/20221123_OrangaWai_IconSuspendedSediment.png", "hover": "Suspended sediment", "md_dir": "md/Sediment", "map_file": "results/Map_Visual Clarity.html"},
{"id": "icon3", "img": "../../../../../assets/water/20221123_OrangaWai_IconN.png", "hover": "Nitrogen", "md_dir": "md/Nitrogen", "map_file": "results/Map_Nitrate-N.html"},
{"id": "icon3", "img": "../../../../../assets/water/20221123_OrangaWai_IconN.png", "hover": "Nitrogen", "md_dir": "md/Nitrogen", "map_file": "results/Map_Combined_Nitrogen.html"},
{"id": "icon4", "img": "../../../../../assets/water/20221123_OrangaWai_IconP.png", "hover": "Phosphorus", "md_dir": "md/Phosphorus", "map_file": "results/Map_DRP.html"},
{"id": "icon5", "img": "../../../../../assets/water/20221123_OrangaWai_IconChlA.png", "hover": "Algae", "md_dir": "md/Algae", "map_file": "results/Map_Chlorophyll A.html"},
{"id": "icon6", "img": "../../../../../assets/water/20221123_OrangaWai_IconAquaticLife.png", "hover": "Invertebrates", "md_dir": "md/inverts", "map_file": "results/Map_MCI.html"}
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title="",
columns=8,
width="80%",
mobile_width="100%",
mobile_width="90%",
background_image_url="../../../../../assets/water/water_bg.png",
background_image_opacity=0.25,
background_image_size="100%",
Expand Down Expand Up @@ -149,7 +149,7 @@
icons = [
{"id": "icon1", "img": "../../../../../assets/water/20221123_OrangaWai_IconEcoli.png", "hover": "E. <i>coli</i>", "md_dir": "md/ecoli", "map_file": "results/Map_E coli.html"},
{"id": "icon2", "img": "../../../../../assets/water/20221123_OrangaWai_IconSuspendedSediment.png", "hover": "Suspended sediment", "md_dir": "md/Sediment", "map_file": "results/Map_Visual Clarity.html"},
{"id": "icon3", "img": "../../../../../assets/water/20221123_OrangaWai_IconN.png", "hover": "Nitrogen", "md_dir": "md/Nitrogen", "map_file": "results/Map_Nitrate-N.html"},
{"id": "icon3", "img": "../../../../../assets/water/20221123_OrangaWai_IconN.png", "hover": "Nitrogen", "md_dir": "md/Nitrogen", "map_file": "results/Map_Combined_Nitrogen.html"},
{"id": "icon4", "img": "../../../../../assets/water/20221123_OrangaWai_IconP.png", "hover": "Phosphorus", "md_dir": "md/Phosphorus", "map_file": "results/Map_DRP.html"},
{"id": "icon5", "img": "../../../../../assets/water/20221123_OrangaWai_IconChlA.png", "hover": "Algae", "md_dir": "md/Algae", "map_file": "results/Map_Chlorophyll A.html"},
{"id": "icon6", "img": "../../../../../assets/water/20221123_OrangaWai_IconAquaticLife.png", "hover": "Invertebrates", "md_dir": "md/inverts", "map_file": "results/Map_MCI.html"}
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title="",
columns=8,
width="80%",
mobile_width="100%",
mobile_width="90%",
background_image_url="../../../../../assets/water/water_bg.png",
background_image_opacity=0.25,
background_image_size="100%",
Expand Down Expand Up @@ -149,7 +149,7 @@
icons = [
{"id": "icon1", "img": "../../../../../assets/water/20221123_OrangaWai_IconEcoli.png", "hover": "E. <i>coli</i>", "md_dir": "md/ecoli", "map_file": "results/Map_E coli.html"},
{"id": "icon2", "img": "../../../../../assets/water/20221123_OrangaWai_IconSuspendedSediment.png", "hover": "Suspended sediment", "md_dir": "md/Sediment", "map_file": "results/Map_Visual Clarity.html"},
{"id": "icon3", "img": "../../../../../assets/water/20221123_OrangaWai_IconN.png", "hover": "Nitrogen", "md_dir": "md/Nitrogen", "map_file": "results/Map_Nitrate-N.html"},
{"id": "icon3", "img": "../../../../../assets/water/20221123_OrangaWai_IconN.png", "hover": "Nitrogen", "md_dir": "md/Nitrogen", "map_file": "results/Map_Combined_Nitrogen.html"},
{"id": "icon4", "img": "../../../../../assets/water/20221123_OrangaWai_IconP.png", "hover": "Phosphorus", "md_dir": "md/Phosphorus", "map_file": "results/Map_DRP.html"},
{"id": "icon5", "img": "../../../../../assets/water/20221123_OrangaWai_IconChlA.png", "hover": "Algae", "md_dir": "md/Algae", "map_file": "results/Map_Chlorophyll A.html"},
{"id": "icon6", "img": "../../../../../assets/water/20221123_OrangaWai_IconAquaticLife.png", "hover": "Invertebrates", "md_dir": "md/inverts", "map_file": "results/Map_MCI.html"}
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title="",
columns=8,
width="80%",
mobile_width="100%",
mobile_width="90%",
background_image_url="../../../../../assets/water/water_bg.png",
background_image_opacity=0.25,
background_image_size="100%",
Expand Down Expand Up @@ -149,7 +149,7 @@
icons = [
{"id": "icon1", "img": "../../../../../assets/water/20221123_OrangaWai_IconEcoli.png", "hover": "E. <i>coli</i>", "md_dir": "md/ecoli", "map_file": "results/Map_E coli.html"},
{"id": "icon2", "img": "../../../../../assets/water/20221123_OrangaWai_IconSuspendedSediment.png", "hover": "Suspended sediment", "md_dir": "md/Sediment", "map_file": "results/Map_Visual Clarity.html"},
{"id": "icon3", "img": "../../../../../assets/water/20221123_OrangaWai_IconN.png", "hover": "Nitrogen", "md_dir": "md/Nitrogen", "map_file": "results/Map_Nitrate-N.html"},
{"id": "icon3", "img": "../../../../../assets/water/20221123_OrangaWai_IconN.png", "hover": "Nitrogen", "md_dir": "md/Nitrogen", "map_file": "results/Map_Combined_Nitrogen.html"},
{"id": "icon4", "img": "../../../../../assets/water/20221123_OrangaWai_IconP.png", "hover": "Phosphorus", "md_dir": "md/Phosphorus", "map_file": "results/Map_DRP.html"},
{"id": "icon5", "img": "../../../../../assets/water/20221123_OrangaWai_IconChlA.png", "hover": "Algae", "md_dir": "md/Algae", "map_file": "results/Map_Chlorophyll A.html"},
{"id": "icon6", "img": "../../../../../assets/water/20221123_OrangaWai_IconAquaticLife.png", "hover": "Invertebrates", "md_dir": "md/inverts", "map_file": "results/Map_MCI.html"}
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