WQ1181 - Ros! S River Basin
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Queensland Public Boat Ramps
Queensland public boat ramps Ramp Location Ramp Location Atherton shire Brisbane city (cont.) Tinaroo (Church Street) Tinaroo Falls Dam Shorncliffe (Jetty Street) Cabbage Tree Creek Boat Harbour—north bank Balonne shire Shorncliffe (Sinbad Street) Cabbage Tree Creek Boat Harbour—north bank St George (Bowen Street) Jack Taylor Weir Shorncliffe (Yundah Street) Cabbage Tree Creek Boat Harbour—north bank Banana shire Wynnum (Glenora Street) Wynnum Creek—north bank Baralaba Weir Dawson River Broadsound shire Callide Dam Biloela—Calvale Road (lower ramp) Carmilla Beach (Carmilla Creek Road) Carmilla Creek—south bank, mouth of creek Callide Dam Biloela—Calvale Road (upper ramp) Clairview Beach (Colonial Drive) Clairview Beach Moura Dawson River—8 km west of Moura St Lawrence (Howards Road– Waverley Creek) Bund Creek—north bank Lake Victoria Callide Creek Bundaberg city Theodore Dawson River Bundaberg (Kirby’s Wall) Burnett River—south bank (5 km east of Bundaberg) Beaudesert shire Bundaberg (Queen Street) Burnett River—north bank (downstream) Logan River (Henderson Street– Henderson Reserve) Logan Reserve Bundaberg (Queen Street) Burnett River—north bank (upstream) Biggenden shire Burdekin shire Paradise Dam–Main Dam 500 m upstream from visitors centre Barramundi Creek (Morris Creek Road) via Hodel Road Boonah shire Cromarty Creek (Boat Ramp Road) via Giru (off the Haughton River) Groper Creek settlement Maroon Dam HG Slatter Park (Hinkson Esplanade) downstream from jetty Moogerah Dam AG Muller Park Groper Creek settlement Bowen shire (Hinkson -
Record of Proceedings
ISSN 1322-0330 RECORD OF PROCEEDINGS Hansard Home Page: http://www.parliament.qld.gov.au/work-of-assembly/hansard Email: [email protected] Phone (07) 3553 6344 FIRST SESSION OF THE FIFTY-SIXTH PARLIAMENT Tuesday, 26 February 2019 Subject Page ASSENT TO BILLS ............................................................................................................................................................... 311 Tabled paper: Letter, dated 21 February 2019, from His Excellency the Governor to the Speaker advising of assent to certain bills on 21 February 2019. .................................................................... 311 REPORT................................................................................................................................................................................ 311 Auditor-General ................................................................................................................................................. 311 Tabled paper: Auditor-General of Queensland: Report to Parliament No. 13: 2018-19— Health: 2017-18 results of financial audits. ....................................................................................... 311 SPEAKER’S RULING ........................................................................................................................................................... 311 Irregularities in Petition ................................................................................................................................... -
Environmental Officer
View metadata, citation and similar papers at core.ac.uk brought to you by CORE provided by GBRMPA eLibrary Sunfish Queensland Inc Freshwater Wetlands and Fish Importance of Freshwater Wetlands to Marine Fisheries Resources in the Great Barrier Reef Vern Veitch Bill Sawynok Report No: SQ200401 Freshwater Wetlands and Fish 1 Freshwater Wetlands and Fish Importance of Freshwater Wetlands to Marine Fisheries Resources in the Great Barrier Reef Vern Veitch1 and Bill Sawynok2 Sunfish Queensland Inc 1 Sunfish Queensland Inc 4 Stagpole Street West End Qld 4810 2 Infofish Services PO Box 9793 Frenchville Qld 4701 Published JANUARY 2005 Cover photographs: Two views of the same Gavial Creek lagoon at Rockhampton showing the extreme natural variability in wetlands depending on the weather. Information in this publication is provided as general advice only. For application to specific circumstances, professional advice should be sought. Sunfish Queensland Inc has taken all steps to ensure the information contained in this publication is accurate at the time of publication. Readers should ensure that they make the appropriate enquiries to determine whether new information is available on a particular subject matter. Report No: SQ200401 ISBN 1 876945 42 7 ¤ Great Barrier Reef Marine Park Authority and Sunfish Queensland All rights reserved. No part of this publication may be reprinted, reproduced, stored in a retrieval system or transmitted, in any form or by any means, without prior permission from the Great Barrier Reef Marine Park Authority. Freshwater Wetlands and Fish 2 Table of Contents 1. Acronyms Used in the Report .......................................................................8 2. Definition of Terms Used in the Report.........................................................9 3. -
Mismanagement of Major Public Infrastructure Continues in Queensland
To: Rebecca Gilsenan; IMF Bentham; The Premier of Queensland; Reception; Townsville Mayor Cc: Phil Hassid; Greg McMahon; Michael Gillis; David Stark; Matt Wordsworth; Hedley Thomas; Sam Weir; Michael Madigan; Mark Solomons Subject: Townsville Flooding - Ross River Dam Mismanagement of major public infrastructure continues in Queensland With devastating consequences for the community, costing billions The outcome of flooding in the Townsville area this last week may had been very different had the Wivenhoe Dam class action proceeded with due diligence. It has been eight years since the 2011 floods - it is simply not that big a task. Even the much bigger banking royal commission was able to be undertaken in less than twelve months. It is most likely to have meant that a far more professional approach would have been taken in operating the crest gates on Ross River Dam during the recent floods; and that the havoc in the downstream community would have been avoided. The challenge for operators of dams like Ross River Dam is to minimise downstream flooding; and the implications for the community. They conventionally do this by keeping the water level in the dam as low as prudently possible; and by increasing the discharge from the dam as slowly as prudently possible. Reservoirs are operated at the lowest possible level in order to maximise the potential to mitigate the flood peak; reduce the prospects of the dam amplifying the flood peak; and reduce the risk of the dam failing. The evidence is that the level in Ross River Dam rose continuously from the onset of the flood to a peak of about 247% when the discharge from the dam doubled due to the automatics fully opening the crest gates. -
The Non-Human Reservoirs of Ross River Virus: a Systematic Review of the Evidence Eloise B
Stephenson et al. Parasites & Vectors (2018) 11:188 https://doi.org/10.1186/s13071-018-2733-8 REVIEW Open Access The non-human reservoirs of Ross River virus: a systematic review of the evidence Eloise B. Stephenson1*, Alison J. Peel1, Simon A. Reid2, Cassie C. Jansen3,4 and Hamish McCallum1 Abstract: Understanding the non-human reservoirs of zoonotic pathogens is critical for effective disease control, but identifying the relative contributions of the various reservoirs of multi-host pathogens is challenging. For Ross River virus (RRV), knowledge of the transmission dynamics, in particular the role of non-human species, is important. In Australia, RRV accounts for the highest number of human mosquito-borne virus infections. The long held dogma that marsupials are better reservoirs than placental mammals, which are better reservoirs than birds, deserves critical review. We present a review of 50 years of evidence on non-human reservoirs of RRV, which includes experimental infection studies, virus isolation studies and serosurveys. We find that whilst marsupials are competent reservoirs of RRV, there is potential for placental mammals and birds to contribute to transmission dynamics. However, the role of these animals as reservoirs of RRV remains unclear due to fragmented evidence and sampling bias. Future investigations of RRV reservoirs should focus on quantifying complex transmission dynamics across environments. Keywords: Amplifier, Experimental infection, Serology, Virus isolation, Host, Vector-borne disease, Arbovirus Background transmission dynamics among arboviruses has resulted in Vertebrate reservoir hosts multiple definitions for the key term “reservoir” [9]. Given Globally, most pathogens of medical and veterinary im- the diversity of virus-vector-vertebrate host interactions, portance can infect multiple host species [1]. -
Black River Flood Study
City Wide Flood Constraints Project Townsville City Council 24-Jun-2014 Black River Flood Study Base-line Flooding Assessment J:\MMPL\60285746\8. Issued Docs\8.6 Clerical\flooding assessment\final copy\report.docx Revision A – 24-Jun-2014 Prepared for – Townsville City Council – ABN: 44 741 992 072 AECOM City Wide Flood Constraints Project Black River Flood Study Black River Flood Study Base-line Flooding Assessment Client: Townsville City Council ABN: 44 741 992 072 Prepared by AECOM Australia Pty Ltd 21 Stokes Street, PO Box 5423, Townsville QLD 4810, Australia T +61 7 4729 5500 F +61 7 4729 5599 www.aecom.com ABN 20 093 846 925 24-Jun-2014 Job No.: 60285746 AECOM in Australia and New Zealand is certified to the latest version of ISO9001, ISO14001, AS/NZS4801 and OHSAS18001. © AECOM Australia Pty Ltd (AECOM). All rights reserved. AECOM has prepared this document for the sole use of the Client and for a specific purpose, each as expressly stated in the document. No other party should rely on this document without the prior written consent of AECOM. AECOM undertakes no duty, nor accepts any responsibility, to any third party who may rely upon or use this document. This document has been prepared based on the Client’s description of its requirements and AECOM’s experience, having regard to assumptions that AECOM can reasonably be expected to make in accordance with sound professional principles. AECOM may also have relied upon information provided by the Client and other third parties to prepare this document, some of which may not have been verified. -
Demographic Consequences of Superabundance in Krefft's River
i The comparative ecology of Krefft’s River Turtle Emydura krefftii in Tropical North Queensland. By Dane F. Trembath B.Sc. (Zoology) Applied Ecology Research Group University of Canberra ACT, 2601 Australia A thesis submitted in fulfilment of the requirements of the degree of Masters of Applied Science (Resource Management). August 2005. ii Abstract An ecological study was undertaken on four populations of Krefft’s River Turtle Emydura krefftii inhabiting the Townsville Area of Tropical North Queensland. Two sites were located in the Ross River, which runs through the urban areas of Townsville, and two sites were in rural areas at Alligator Creek and Stuart Creek (known as the Townsville Creeks). Earlier studies of the populations in Ross River had determined that the turtles existed at an exceptionally high density, that is, they were superabundant, and so the Townsville Creek sites were chosen as low abundance sites for comparison. The first aim of this study was to determine if there had been any demographic consequences caused by the abundance of turtle populations of the Ross River. Secondly, the project aimed to determine if the impoundments in the Ross River had affected the freshwater turtle fauna. Specifically this study aimed to determine if there were any difference between the growth, size at maturity, sexual dimorphism, size distribution, and diet of Emydura krefftii inhabiting two very different populations. A mark-recapture program estimated the turtle population sizes at between 490 and 5350 turtles per hectare. Most populations exhibited a predominant female sex-bias over the sampling period. Growth rates were rapid in juveniles but slowed once sexual maturity was attained; in males, growth basically stopped at maturity, but in females, growth continued post-maturity, although at a slower rate. -
Emergency Management of Sunwater's Dam Portfolio in The
Emergency management of SunWater’s dam portfolio in the 2010-11 Queensland floods Robert Keogh, Rob Ayre, Peter Richardson, Barry Jeppesen, Olga Kakourakis SunWater Limited SunWater owns 23 referable dams and operates a further two dams for other owners. The dams are located across Queensland from Texas and St George in the South to the Atherton Tablelands in the north to Mt Isa in the west. During the period December 2010 to February 2011 there were several significant rainfall events across Queensland. The first occurred in late December 2010, the second in mid January 2011 and third in early February 2011. Generally it was the most significant rainfall event in Queensland since the 1970’s. 22 Emergency Action Plans were activated simultaneously by SunWater. Eleven dams experienced a flood of record during the events. This paper will discuss what has been learnt from these events including the optimisation of management structures for a dam owner with a large portfolio of dams: review of O&M Manuals including the adequacy of backup systems: relationships with the State disaster management framework: the value of rigorous communication protocols: managing fear and a general lack of understanding in the community: and the value of being prepared. Keywords: Emergency Management, Floods, . In addition to the dams SunWater owns, the following 1 Background storages are managed under facility management SunWater and its subsidiary company Burnett Water Pty contracts: Ltd own 231 referable storages consisting of 18 Category 2 Glenlyon Dam – (Category 2 dam) for the Border 2 dams and 5 Category 1 dams under the Water Supply Rivers Commission (Safety and Reliability) Act 2008 and Water Act 2000. -
Wetlands of the Townsville Area
A Final Report to the Townsville City Council WETLANDS OF THE TOWNSVILLE AREA ACTFR Report 96/28 25 November 1996 Prepared by G. Lukacs of the Australian Centre for Tropical Freshwater Research, James Cook University of North Queensland, Townsville Q 4811 Telephone (077 814262 Facsimile (077) 815589 Wetlands of the TCC LGA: Report No.96/28 TABLE OF CONTENTS 1. INTRODUCTION .................................................................................................................................. 1 1.1 Wetlands and the Community............................................................................................................. 1 1.2 The Wetlands of the Townsville Region ............................................................................................. 1 1.3 Values and Functions of Wetlands..................................................................................................... 3 2. METHODOLOGY ................................................................................................................................. 4 2.1 Scope .................................................................................................................................................. 4 2.2 Mapping ............................................................................................................................................. 4 2.3 Classification ..................................................................................................................................... 5 2.4 Sampling............................................................................................................................................ -
A Short History of Thuringowa
its 0#4, Wdkri Xdor# of fhurrngoraa Published by Thuringowa City Council P.O. Box 86, Thuringowa Central Queensland, 4817 Published October, 2000 Copyright The City of Thuringowa This book is copyright. Apart from any fair dealing for the purposes of private study, research, criticism or review, as permitted under the Copyright Act no part may be reproduced by any process without written permission. Inquiries should be addressed to the Publishers. All rights reserved. ISBN: 0 9577 305 3 5 kk THE CITY of Centenary of Federation i HURINGOWA Queensland This publication is a project initiated and funded by the City of Thuringowa This project is financially assisted by the Queensland Government, through the Queensland Community Assistance Program of the Centenary of Federation Queensland Cover photograph: Ted Gleeson crossing the Bohle. Gleeson Collection, Thuringowa Conienis Forward 5 Setting the Scene 7 Making the Land 8 The First People 10 People from the Sea 12 James Morrill 15 Farmers 17 Taking the Land 20 A Port for Thuringowa 21 Travellers 23 Miners 25 The Great Northern Railway 28 Growth of a Community 30 Closer Settlement 32 Towns 34 Sugar 36 New Industries 39 Empires 43 We can be our country 45 Federation 46 War in Europe 48 Depression 51 War in the North 55 The Americans Arrive 57 Prosperous Times 63 A great city 65 Bibliography 69 Index 74 Photograph Index 78 gOrtvard To celebrate our nations Centenary, and the various Thuringowan communities' contribution to our sense of nation, this book was commissioned. Two previous council publications, Thuringowa Past and Present and It Was a Different Town have been modest, yet tantalising introductions to facets of our past. -
Ross River Dam Emergency Action Plan 2021
Ross River Dam Emergency Action Plan 2021 Rural no.: Lot 230 Parish of Ross, County of Elphinstone, City of Townsville o o Location: Lat. - 19.411667 Lon.146.735278 -19o24’42” S 146o44”07”E Note: The Incident Coordinator (IC) is responsible for the decision to activate the EAP. Should the IC be unavailable, the Dam Duty Officer (DDO) is responsible for the decision. Uncontrolled Copy Page 1 of 151 Status: Current Version No: 1.3 Responsible Officer: Team Manager Dam Operations N02632 Next Review Date: 1/09/2022 Townsville Water and Waste RD0031 Ross River Dam Emergency Action Plan 2021 Authorised by: Team Manager Dam Operations N02632 Effective Date: 17/09/2021 Emergency Activation Quick Reference – Dam and Other Hazards This EAP for Ross River Dam covers seven (7) dam hazards and one (1) other hazard evaluated within the Townsville Water and Waste Dam Safety Management Program. Table 1: Emergency Activation Quick Reference Alert Lean Forward Stand Up Stand Down Locally managed (DDO) Locally managed (DDO and IC) Locally managed (DDO and IC) with advice Locally managed (DDO and IC) with advice from from DSTDM DSTDM Dam Hazards Dam Hazard Activation Triggers Flood Operations EL 38.45m and rising (0.1m below FSL) Storage EL 38.65m (gate opening trigger Storage above EL 40.73m Storage FSL 38.55m and falling Refer section 5 level) Chemical Spill/Toxic Reports of contamination or potential Not applicable Confirmation of or highly likely probability of a large Risk assessment that risk has reduced Conditions contamination in the -
Basin-Specific Ecologically Relevant Water Quality Targets for the Great Barrier Reef
Development of basin-specific ecologically relevant water quality targets for the Great Barrier Reef Jon Brodie, Mark Baird, Jane Waterhouse, Mathieu Mongin, Jenny Skerratt, Cedric Robillot, Rachael Smith, Reinier Mann and Michael Warne TropWATER Report number 17/38 June 2017 Development of basin-specific ecologically relevant water quality targets for the Great Barrier Reef Report prepared by Jon Brodie1, Mark Baird2, Jane Waterhouse1, Mathieu Mongin2, Jenny Skerratt2, Cedric Robillot3, Rachael Smith4, Reinier Mann4 and Michael Warne4,5 2017 1James Cook University, 2CSIRO, 3eReefs, 4Department of Science, Information Technology and Innovation, 5Centre for Agroecology, Water and Resilience, Coventry University, Coventry, United Kingdom EHP16055 – Update and add to the existing 2013 Scientific Consensus Statement to incorporate the most recent science and to support the 2017 update of the Reef Water Quality Protection Plan Input and review of the development of the targets provided by John Bennett, Catherine Collier, Peter Doherty, Miles Furnas, Carol Honchin, Frederieke Kroon, Roger Shaw, Carl Mitchell and Nyssa Henry throughout the project. Centre for Tropical Water & Aquatic Ecosystem Research (TropWATER) James Cook University Townsville Phone: (07) 4781 4262 Email: [email protected] Web: www.jcu.edu.au/tropwater/ Citation: Brodie, J., Baird, M., Waterhouse, J., Mongin, M., Skerratt, J., Robillot, C., Smith, R., Mann, R., Warne, M., 2017. Development of basin-specific ecologically relevant water quality targets for the Great Barrier