From 854f412d6b2c4b3285aade41fee81b869b719193 Mon Sep 17 00:00:00 2001 From: matthipsey Date: Wed, 4 May 2022 03:58:03 +0000 Subject: [PATCH] rebuild site --- docs/Carbon_1.html | 12 +- docs/DO_1.html | 92 ++--- docs/index.html | 4 +- docs/inorganic-nitrogen.html | 360 +++++++++--------- ...thogens-microbial-indicator-organisms.html | 4 +- docs/search_index.json | 2 +- 6 files changed, 237 insertions(+), 237 deletions(-) diff --git a/docs/Carbon_1.html b/docs/Carbon_1.html index 0ba3f29..a232912 100644 --- a/docs/Carbon_1.html +++ b/docs/Carbon_1.html @@ -517,8 +517,8 @@

5.3.1.1 Carbonate buffering and p \end{eqnarray}\]

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Figure 5.1: Bjerrum plot of DIC speciation.

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5.5.1 Case Study : South-east Que


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Figure 5.2: Map of the three estuaries of the Moreton Bay region in south-east Queensland, Australia.

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5.5.2 Case Study : Lake Kinneret<


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Figure 5.4: Map of Lake Kinneret, Israel.

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4.5.1 Case Study: Swan-Canning Es

The Swan-Canning Estuary in Western Australia experiences hypoxia and anoxia due to the strong salt-wedge that forms within the system, and the high sediment oxygen demand. Huang et al. (2018) used the aed_oxygen model with the TUFLOW-FV hydrodynamic model to captured the large spatio-temporal variability in oxygen distribution.


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Using spatial zones with different values of Fsed_oxy, the simulations show very high accuracy in resolving the “dome” of low oxygen associated with the salt-wedge.

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4.5.1 Case Study: Swan-Canning Es

4.5.2 Publications

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