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11 | <td> |
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12 | <img src="browser_files/logo.jpg" alt="Australian Government, Geoscience Australia" width="327" height="80" border="0"/> |
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13 | </td> |
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14 | <td width="50"> |
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15 | |
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16 | </td> |
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17 | <td> |
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18 | <H1>Tsunami Inundation Models for the BATEMANS BAY region</H1> |
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19 | </td> |
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20 | </tr> |
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21 | </table> |
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22 | <hr> |
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23 | <!-- |
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24 | <ul class="navbar"> |
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25 | <li><a href="#introduction">Introduction</a> |
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26 | <li><a href="#installing">Installing</a> |
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27 | <li><a href="#simulating">Running</a> |
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28 | <li><a href="#userslist">Mailing list</a> |
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29 | <li><a href="#auxscripts">Auxiliary scripts</a> |
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30 | <li><a href="#FAQ">Frequently Asked Questions</a> |
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31 | <li><a href="#extra">Extra stuff</a> |
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32 | </ul> |
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33 | --> |
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34 | |
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35 | <a name="introduction"<h3><b>Introduction</b></h3></a> |
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36 | The information on this DVD and the associated report is intended to assist emergency managers in developing preparation and |
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37 | response plans that can be used during a tsunami threat or emergency. |
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38 | <p> |
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39 | The Attorney General's Department (AGD) has supported Geoscience Australia (GA) in developing a range of products to support |
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40 | the understanding of tsunami hazard through the Australian Tsunami Warning System Project. The work reported here is intended |
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41 | to further build the capacity of the Jurisdictions in developing inundation models for prioritised locations. |
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42 | <p> |
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43 | While the associated report provides background, model results and interpretations, the DVD contains all data, scripts and |
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44 | software necessary to reproduce and potentially augment the models underpinning the report. This will allow the Jurisdiction |
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45 | to rerun the models with minor modifications or new elevation data as needed and also potentially replicate the methodology |
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46 | to other locations if desired. |
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47 | <p> |
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48 | The data provided on this DVD is: |
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49 | <ul> |
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50 | <li> The Professional Opinion Report 2009/XX entitled <i>Capacity Building for Tsunami Planning and Preparation: |
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51 | Inundation Models for Four East Coast Australian Communities</i> |
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52 | <li> Elevation data used with the tsunami inundation model |
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53 | <li> Input data for a range of tsunami events |
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54 | <li> The Python scripts used to run the models |
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55 | </ul> |
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56 | |
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57 | <a name="requirements"<h3><b>Requirements</b></h3></a> |
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58 | |
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59 | The tsunami inundation simulations are based on the Open Source software package called ANUGA. |
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60 | For more information about ANUGA visit <a href="https://datamining.anu.edu.au/anuga">https://datamining.anu.edu.au/anuga</a>. |
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61 | <p> |
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62 | ANUGA has been developed and tested under the Windows XP and Linux (Ubuntu, Mint and Red Hat) operating systems. |
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63 | ANUGA may also be installed on a Windows Vista system and Debian Linux, but these have not been extensively tested. |
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64 | <p> |
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65 | The ANUGA scripts on this DVD require a minimum of 3GB of memory and possibly more, if mesh resolutions are increased. For this reason |
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66 | we recommend using 64 bit Ubuntu Linux as this operating system can use more than 3GB of memory, whereas Windows XP cannot. |
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67 | |
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68 | <a name="installing"<h3><b>Installing ANUGA</b></h3></a> |
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69 | |
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70 | You must install ANUGA according to the <a href="documents/anuga_installation_guide.pdf">Installation Guide</a>. |
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71 | As the installation procedure comprises a number of steps we suggest that it is carried out by someone with a |
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72 | basic understanding of how to install software packages on the operating system of choice. |
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73 | |
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74 | <a name="simulating"<h3><b>How to run a simulation</b></h3></a> |
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75 | |
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76 | This is how a user should run a model from the 'Tsunami Inundation Models' DVDs. |
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77 | We assume that you are using Windows and will give examples for that operating system. |
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78 | The translation to Linux is left as an exercise for the student! |
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79 | <p> |
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80 | <hr align="left" width="100"> |
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81 | <p> |
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82 | First, it is assumed you have installed the ANUGA software according to the |
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83 | <a href="documents/anuga_installation_guide.pdf">Installation Guide</a>. |
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84 | <p> |
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85 | <hr align="left" width="100"> |
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86 | <p> |
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87 | Next, you must copy the entire contents of the DVD to a place in your filesystem. Let's assume |
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88 | that you want to put the data into <b>C:\ANUGA</b>. You would do this in a Command Prompt window: |
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89 | <table class="code"><tr><td> |
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90 | C:<br> |
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91 | cd \<br> |
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92 | mkdir ANUGA<br> |
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93 | xcopy /e X:\ ANUGA |
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94 | </td></tr></table> |
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95 | <p> |
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96 | Of course, you could just drag all files on the DVD (X:\ is the assumed drive letter) to the desired target directory with Explorer. |
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97 | <p> |
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98 | <hr align="left" width="100"> |
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99 | <p> |
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100 | Now you must create an environment variable <b>ANUGADATA</b> that points to the directory you just created: |
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101 | <table class="code"><tr><td> |
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102 | set ANUGADATA=C:\ANUGA |
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103 | </td></tr></table> |
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104 | <p> |
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105 | Doing the above in a Command Prompt window is temporary - if you open another |
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106 | window you will not have the ANUGADATA environment variable defined. To make |
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107 | the variable permanent you must set it in the <b>Start|Settings|Control Panel|System</b> |
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108 | tool (<b>Advanced</b> tab). See the <a href="documents/anuga_installation_guide.pdf">Installation Guide</a> |
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109 | if you don't know how to do this. |
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110 | <p> |
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111 | <hr align="left" width="100"> |
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112 | <p> |
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113 | At this point you should run the <font color="red">build_elevation.py</font> |
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114 | script to convert the raw elevation data to a set of 'combined_elevation' |
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115 | files ready to be used by the ANUGA system. It is possible that you have not |
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116 | been given the elevation data on the DVD as it is too large. In that case you |
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117 | cannot run the <font color="red">build_elevation.py</font> script and you |
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118 | should skip to the next step. |
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119 | <table class="code"><tr><td> |
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120 | cd C:\ANUGA<br> |
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121 | cd project<br> |
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122 | python build_elevation.py |
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123 | </td></tr></table> |
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124 | <p> |
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125 | When you get to the point of running the model with your own data, you must |
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126 | run <font color="red">build_elevation.py</font> to recreate the combined elevation files every time |
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127 | you change the elevation data. |
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128 | <p> |
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129 | <hr align="left" width="100"> |
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130 | <p> |
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131 | Next, you prepare and execute the model: |
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132 | <table class="code"><tr><td> |
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133 | python setup_model.py<br > |
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134 | python run_model.py |
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135 | </td></tr></table> |
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136 | <p> |
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137 | <hr align="left" width="100"> |
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138 | <p> |
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139 | This should all run to completion, though it may take several days, depending on |
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140 | the hardware used. |
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141 | <p> |
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142 | If you do get an error from <font color="red">setup_model.py</font> |
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143 | or <font color="red">run_model.py</font> look for some explanation in the log |
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144 | files, which you should find somewhere under <b>C:\ANUGA\data</b>. Just keep |
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145 | drilling down from that point until you find a directory called <b>outputs</b>. |
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146 | The latest directory in outputs should contain a file called screen_error.txt |
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147 | with an explanation of the error at the end. |
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148 | <p> |
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149 | Once the simulation has completed you may view the results using the ANUGA |
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150 | viewer as described in the <a href="documents/anuga_installation_guide.pdf">Installation Guide</a> |
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151 | and <a href="documents/anuga_user_manual.pdf">User Manual</a>, run the script |
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152 | <font color="red">export_results_max.py</font> to generate rasters suitable |
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153 | for GIS mapping, or write dedicated scripts extracting timeseries at selected |
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154 | locations. |
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155 | <p> |
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156 | The input waves are all derived from events available in the Australian Tsunami |
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157 | Hazard Map. As this dataset is very large, this DVD only contains the events |
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158 | described in the report. If other events from the Hazard Map are obtained, |
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159 | the script <font color="red">build_urs_boundary.py</font> has been designed |
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160 | to prepare the associated input wave for ingestion into ANUGA. This script |
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161 | is documented in the <a href="documents/anuga_user_manual.pdf">User Manual</a>. |
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162 | <p> |
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163 | The ANUGA <a href="documents/anuga_user_manual.pdf">User Manual</a> describes |
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164 | how to use the ANUGA system in general and provides some examples of its use. |
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165 | |
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166 | <a name="userslist"<h3><b>How to join the ANUGA user's mailing list</b></h3></a> |
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167 | |
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168 | One of the quickest ways to get your ANUGA questions answered is by asking them on the <b>ANUGA-user</b> mailing list. |
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169 | You can subscribe to the list <a href="https://lists.sourceforge.net/lists/listinfo/anuga-user">here</a> |
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170 | and can view the mailing list <a href="https://sourceforge.net/mailarchive/forum.php?forum_name=anuga-user">archives</a>. |
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171 | <p> |
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172 | It costs nothing to register and you can choose to have list mail sent to you as individual emails or have them batched |
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173 | into a few emails per day. You can unsubscribe at any time through the subscribe link above. |
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174 | |
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175 | <a name="auxscripts"<h3><b>How to use the auxiliary scripts</b></h3></a> |
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176 | |
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177 | On this disk there are a selection of auxiliary scripts that you can use to extract various pieces of information |
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178 | from the generated SWW files. The <a href="auxiliary_scripts.html">auxiliary scripts</a> page explains how to use the scripts. |
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179 | |
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180 | <a name="FAQ"<h3><b>Frequently Asked Questions</b></h3></a> |
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181 | |
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182 | There is a <b>Frequently Asked Questions</b> (FAQ) page at |
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183 | <a href="https://datamining.anu.edu.au/anuga/wiki/FrequentlyAskedQuestions">https://datamining.anu.edu.au/anuga/wiki/FrequentlyAskedQuestions</a>. |
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184 | Look in here and search the mailing list archives before asking questions on the ANUGA user's mailing list. |
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185 | Someone may already have asked your question! |
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186 | <p> |
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187 | Note that you can edit the FAQ pages, so it is helpful if you can update the FAQ with your question and its answer if you feel |
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188 | it would be helpful to others. |
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189 | </body> |
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190 | </html> |
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