Friday, October 29, 2010

Scheduled River Improvements in San Antonio

The historic San Antonio River has long served as the heart of the city. Each year the world-renowned River Walk draws millions of visitors, yet miles of urban river with untapped potential lie beyond downtown and the famed Paseo del Rio. A comprehensive, multi-year project is underway to restore and enhance 13 miles of the San Antonio River both north and south of downtown.

The San Antonio River Improvements Project (SARIP) is a $384.5 million on-going investment by the City of San Antonio, Bexar County, San Antonio River Authority (SARA), the U.S. Army Corps of Engineers (USACE) and the San Antonio River Foundation in flood control, amenities, ecosystem restoration and recreational improvements along 13 miles of the San Antonio River from Hildebrand Avenue south to Loop 410 South. Throughout the project, SARA will provide project and technical management, as well as overall project coordination between the project partners. SARA will also conduct on-going operation and maintenance activities when the project is completed.

SARIP is comprised of four distinctive reaches: The Museum Reach, a four-mile segment of the river from Hildebrand Avenue south to Lexington Avenue; the Downtown Reach, a segment of the original River Walk from Lexington Avenue to Houston Street; the Eagleland, a one-mile segment from South Alamo to Lonestar Boulevard; and the Mission Reach, a eight-mile section of the river extending from Lonestar Boulevard south to Loop 410 South.

A concerted community effort to revitalize the river began in 1998 when Bexar County, the City of San Antonio and SARA created the San Antonio River Oversight Committee. The 22 civic and neighborhood leaders appointed to the committee were given the responsibility of overseeing the planning, design, project management, construction and funding necessary to complete the project. In addition, the committee was charged with providing an open public forum for citizen input into the project's development. The Oversight Committee meets monthly and is co-chaired by former mayor Lila Cockrell and architect Irby Hightower.

http://www.sanantonioriver.org/

LA's methodology for similar project

LA did a similar project and there's a pretty thorough user guide online at http://www.labmpmethod.org/.  I think it will be very useful as we develop something like this ourselves.  Their approach was:
  1. Prioritize catchments based on need (i.e., pollutant-loading, receiving water issues, etc.);
  2. Identify potential BMPs opportunities within high priority catchments (based on factors such as land ownership, etc.);
  3. Identify appropriate BMPs (based on factors such as cost, maintenance, effectiveness, etc.); and
  4. Develop site-specific implementation strategies (based on site-specific evaluations).
Some questions I have:
  • are we focusing on wet weather only or including dry weather?
  • what pollutants?  bateria?  metals?  trash?
  • what pollution data can we get?

Thursday, October 28, 2010

Map Server

This is the City of San Antonio's Map server. They are using Flex Viewer which serves up ArcMap files.

San Antonio Map

And here are pre-made maps of San Antonio

Maps

Wednesday, October 27, 2010

"Site fingerprinting"

Yesterday Lee-Anne mentioned "site fingerprinting" and I wasn't really sure what that was so I looked it up. Here's what I found. I'm not really sure how this is different than a site analysis that includes environmental considerations...
 
1.1 What is Site Fingerprinting?
 
Site fingerprinting is a planning tool used to design communities where protection of natural resources is the primary focus. This process enables the user to view, identify, and analyze the natural, built, economic, and social aspects of a prospective site. Site fingerprinting has five key objectives:
  • Identify general site features,
  • Determine and locate primary and secondary conservation areas,
  • Consider the impact of other important factors such as adjacent land uses, accessibility, transportation and infrastructure availability,
  • Use collected information to derive the actual buildable area, and
  • Synthesize this information to create various development scenarios which incorporate the natural features of the site."Synthesize this information to create various development scenarios which incorporate the natural features of the site."
 
 
 

Tuesday, October 26, 2010

San Antonio neighborhood tours

http://www.saculturaltours.com/

Online tours + maps of San Antonio done by city's Office of Cultural Affairs.

Westside
Downtown/ North river
Eastside

Monday, October 25, 2010

Edwards Aquifer Protection Program

http://www.tceq.state.tx.us/compliance/field_ops/eapp/program.html

"Anyone who plans to build on the recharge, transition, or contributing zones of the Edwards Aquifer must first have an application including construction plans approved by the TCEQ. Personnel from the Edwards Aquifer Protection Program review these plans. If a plan is approved, the site is monitored for compliance."

Includes spreadsheet to calculate TSS.  Might be useful for quantifying advantages of our proposals?  Or sizing BMPs in our designs?

2007 Texas State Water Plan

2007 Texas State Water Plan
http://www.twdb.state.tx.us/wrpi/swp/swp.asp


Has some really good background info on Texas climate, water, etc.


@Chapter 2 (Regional Summaries) provides graphics, tables, and text summarizing results for each planning area.

@ Chapter 3 (Fifty Years of Water Planning in Texas) presents the general history of state water planning in Texas, including how water management strategies and the planning process have evolved over the past 50 years, and discusses the implementation status of water management strategies recommended in the 2002 State Water Plan.

@ Chapter 4 (Population and Water Demand Projections) summarizes the methodology and results for population and water demand projections, including discussions of how different economic sectors use water.

@ Chapter 5 (Climate of Texas) discusses the climate of Texas, including general rainfall patterns and information on the frequency and magnitude of drought in the state.

@ Chapter 6 (Surface Water Resources) presents detailed information on the state’s surface water resources and includes estimates of available and existing surface water.

@ Chapter 7 (Groundwater Resources) presents detailed information on the state’s groundwater resources and includes estimates of available and existing groundwater.

@ Chapter 8 (Water Reuse) discusses water reuse in Texas, including projections of existing water supplies generated by this practice.

@ Chapter 9 (Water Supply Needs) summarizes water supply needs for different water users in the state during drought conditions and the potential socioeconomic impacts of not addressing water supply needs.

@ Chapter 10 (Water Management Strategies) discusses water management strategies recommended by planning groups and the volume and costs associated with these strategies.

@ Chapter 11 (Plan Implementation Funding) summarizes implementation costs of the 2007 State Water Plan, including statewide and regional cost estimates for water supply, water distribution and transmission infrastructure, wastewater treatment, and flood control.

@ Chapter 12 (Challenges and Uncertainties in Water Supply Planning) analyzes the challenges and uncertainties, such as changing conditions, natural or human disasters, and policy and legislative impacts, that affect regional and state water planning.

@ Chapter 13 (Planning Group Policy Recommendations) presents the range of policy issues and recommendations identified by planning groups.

New Report: Sprayed Away: Seven Ways to Reduce Texas' Outdoor Water Use

Sprayed Away: Seven Ways to Reduce Texas' Outdoor Water Use.  July 2010.
http://www.texaswatermatters.org/pdfs/sprayed%20away_report.pdf


The National Wildlife Federation and the Lone Star Chapter of the Sierra Club released a joint report on 18 Texas cities (incl Austin + San Antonio)

The report recommends seven efficiency measures that have a proven track report at reducing landscaping water use. Not very in depth but gives some good background info about Texas.  The measures include:

Improving Automatic Irrigation Systems: Irrigation systems are becoming increasingly common in Texas. The American Water Works Association estimates that homes with in-ground irrigation systems use 35% more water than homes without irrigation systems. Many of these systems are not designed or installed correctly-staff at the Austin Water Utility report water waste of 20% to 50% from poor system design. The report recommends that cities should take steps to make sure that these systems are as efficient as possible by offering free system audits and rebates on upgrades such as rain sensors.

Rethinking the Lawn: Over the past five years, permits for close to 600,000 new single family homes have been issued in Texas. Decisions made today about the types of lawns and landscapes to install in new developments have the potential to influence water use for decades to come. Smaller areas of turfgrass and the use of drought-resistant grasses can make a big contribution to reducing water use. Unfortunately, with only a few notable exceptions, Texas cities are currently doing little to guide new developments in this way.

Landscaping Rebates: Cities across the country have created programs paying customers to replace their turfgrass with more water-efficient landscaping. These programs are becoming more common in Texas, with entities such as the City of Pflugerville, San Antonio Water System and BexarMet Water District offering rebate programs. To ensure that customers learn new watering habits, the report recommends that utilities should make payment of rebates contingent on customers actually reducing their water use.

Rainwater Harvesting: Capturing rainwater has real potential as a source of water for Texas. A report published by the Texas Water Development Board estimated that a metropolitan area the size of Dallas could capture roughly 2 billion gallons of water annually if just 10 percent of the roof area was used to harvest rainwater. Although several Texas cities currently offer rebates on rain barrels, this source of water is currently seriously underutilized.

Rate Structures: A strongly tiered rate structure is the most equitable way to price water. Most residential customers use limited amounts of water, placing smaller demands on the system, and should pay less per unit of water as a result. For example, the San Antonio Water System has found that about 80% of their residential customers do not see any significant rise in their bills during the summertime. This indicates that the 30% bump in total water use that San Antonio sees during the summertime is primarily caused by a small portion of the utility's customers. However, heavy users in most cities usually pay little more-and often less-per thousand gallons than frugal water users.

Liquid Assets: The State of Texas’ Water Resources

Liquid Assets: The State of Texas’ Water Resources
www.window.state.tx.us/specialrpt/water


Comptroller Susan Combs Says Future Water Shortages
Threaten Texas’ Way of Life

"Combs released a new report, Liquid Assets: The State of Texas’ Water Resources, examining Texas’ current and future water resources, the practical and policy barriers facing local and statewide water planners and possible funding mechanisms that could be tapped to develop Texas’ water resources. The report also looks at the progress made by Texas’ 16 regional water planning groups and the challenges those groups face in addressing their water needs.

Groundwater provides 59 percent of Texas’ available fresh water, surface water provides approximately 40 percent and the remaining 1 percent is made up of reused ground and surface water. Both sources are dwindling — groundwater due to over-pumping and surface water due to sediment accumulation in reservoirs. Liquid Assets: The State of Texas’ Water Resources reports Texas currently does not have enough water to fulfill all of its estimated future needs. Without new management and conservation measures, in the event of a drought, water needs could increase from 3.7 million acre-feet in 2010 to 8.8 million acre-feet in 2060. If Texas were to see a drought-of-record, up to 85 percent of the population in 2060 could experience water shortages."

Landscape Architecture with Stormwater in Mind

Check out J. Robert Anderson's Website. You're going to see lots of his designs on our trip:
Austin - Bergstrom Airport
Wildflower Center
LCRA Redbud Center in Austin
La Cantera in San Antonio

Website

Sunday, October 24, 2010

Article on SA River Walk

Article in Texas Highways

I will bring the magazine into the studio, we need to start claiming some wallspace in the studio.

Saturday, October 23, 2010

Central Texas Greenprint for Growth

Central Texas Greenprint for Growth

"The Central Texas Greenprint for Growth is a tool for balancing sustainable conservation goals with the infrastructure needs of our rapidly urbanizing region. The process combines community stakeholder input about conservation goals and priorities with Geographic Information Systems mapping and modeling technology to produce graphic illustrations highlighting opportunity areas for conservation that meet multiple goals. For the complete Central Texas Greenprint for Growth Report please visit our Publications page."

Go to interactive online map
Go to GIS data downloads

Texas Ecological Assessment Protocol (TEAP) Report

Texas Ecological Assessment Protocol (TEAP) Report (EPA 906-C-05-001)


findings:  some of the areas that have high or moderately high ecologically important areas are the Edwards Plateau

The Texas Ecological Assessment Protocol (TEAP) relies on a previously developed methodology and consists of collecting and analyzing existing electronic data available statewide, which was used to evaluate the following three ecological criteria:
1. Diversity
2. Rarity
3. Sustainability
What areas have the most diverse land cover? What areas have the highest number of rare species and land cover types? What areas can sustain ecosystems now and in the future?

Looks like might include GIS data as zip file

Texas River Basins map


Thursday, October 21, 2010

and then there were four

Unfortunately, Tim has decided to join the Redondo Beach Power Plant group. His unique contributions will be missed. All the best Tim. As we discussed lets keep the conversation between teams ongoing to benefit everyone.

Down to business, we need to get travel plans made. I think we should make every effort to make the Houston workshop. Megan is in for flying out on Tuesday night. She'll miss the conference, but she make the tour. Eric can you make the trip. Fly out on the 7th to Austin and come back on the 15th. Best deal is to fly out of LAX direct to AUS, $229 roundtrip inc. all taxes and fees. In Austin we'll rent a car and drive all around hells half acre. Eric and I will attend the workshop, pick up Megan on Tues or Wed and continue the tour of Austin and SA. Sina, I know you indicated you would rather go next time, but I don't want to leave you out. It's up to you to decide what is best.

We need to move quick on this. Can we get a final decision by Saturday noon?

--JA


I'm in! So when would yall be in Austin? Should I fly there Tues eve or Wed morning? Direct flights on SW would get me there either Tues 7:35 PM or Wed 2:30 PM. Or I could fly to Houston on Tues and arrive 5:45 PM.

The return I'm looking at is Mon 11/15 leaving Austin at 6:30 PM and arriving LAX 7:55 PM. Would be good if we all left around the same time (if not on same flight).

--MD

New delicious account info

http://www.delicious.com/texas_606

our yahoo sign in/user name is :  texas_606
password:  606studio

also, if we need it, this gives us an email:  texas_606@yahoo.com

--MD

Since the username method is not working as we expected from now on make sure you tag each url with a unique tag, for example la606_tx. Then add a new subscription (menu|tags|my subscriptions) for just that tag. This method will only show the bookmarks tagged with our unique tag.

--JA

Wednesday, October 20, 2010

Using form-based codes for watershed protection

Berg, Hannah and Todd BenDor.  2010.  “A Case Study of Form-Based Solutions for Watershed Protection.”  Environmental Management  46:3 September 2010.  pp. 436-451.
PDF of article here

Good for quotes, etc?
excerpts:

Despite numerous policies at  the federal and state level aimed at regulating stormwater discharges, engineered solutions enacted by local governments often fail to meet water quality standards (Albrecht 2005;  National Research Council 2008).

Land-use planning strategies to direct the location, rate, and extent of urban development are often overlooked as critical initial steps to improving water quality (Clayton 2000).  Dispersed patterns of development lead to increased per-capita impervious surface levels, thus diminishing the land's ability to absorb and treat water naturally (NALGEP 2003).

Although planner have begun to recognize that sustainable planning techniques...are aligned with stormwater management...many local governments lack ordinances and codes through which to fully integrate stormwater into broader urban planning processes.

Describes potential for form-based codes...especially reducing sprawl and requiring site-specific standards like vegetation or building placement.

A growing literature has long demonstrated a clear linkage between impervious surface cover and water quality at the watershed scale (Dunne and Leopole 1978; Schueler 1994; Arnold and Gibbons 1996; NRDC 2000; EPA 2008b).

While minimizing the impacts of development in areas adjacent to water supplies is vital, large lot, low-density development is often misconstrued as low-impact development (EPA 2006).    Form of development important, too.

While BMPs such as rain gardens, cisterns, and bioretention ponds help to mitigate stormwater impact of new development, they do little to address the broader issue of unsustainable development patterns (Hirschman and Kosko 2008; Low Impact Development Center 2008).

Link between sprawling development patterns and declining water quality (Arnold and Gibbons 1996; Knaap 2002; EPA 2004)

...Some evidence, however, indicates that new urban site design may have some advantages over conventional low-density development in protecting water resources. For example, Berke and others (2003) found that new urban, greenfield developments pave over less land, use more BMPs, and protect and restore more sensitive areas than conventional developments. A study in Charleston, South Carolina compared runoff impacts of a conventional low-density development scenario to a new urban development scenario in the same watershed (South South Carolina Coastal Conservation League 1995). Results indicate that for the same amount of development, the conventional neighborhood consumed eight times more land and generated 43 percent more runoff, three times more sediment, and markedly higher nitrogen and phosphorus loadings. However, Girling and others (2000) found that new urbanist developments are only effective at better managing peak flow when they are clustered on sites in way that protects hydrologically sensitive open spaces.

Stormwater Best Management Practice Standards
Additional components can be included in a form-based code to address community-specific needs, including specific standards for stormwater management. Mitigation through BMPs should be considered a final alternative, after managing growth to avoid sensitive areas and designing neighborhoods and parcels to minimize the amount of impervious surfaces. Stormwater standards could mirror those set forth in existing BMP manuals that describe appropriate environmental conditions for proper function of a given BMP (examples include soil drainage, depth to water table, steep slopes, space requirements, etc.; NCDWQ 2007d). In this respect, BMPs could be added to the transect model, showing BMPs that fit into the specific character of each zone (Table 1). For instance, grass swales and large dry pond detention basins may be appropriate in some zones, but certainly not in the most urban areas.
The space required and the costs of installing and maintaining many BMPs are high. Moreover, BMPs can be ineffectual at slowing water flow and filtering pollutants beyond their engineering specifications (EPA 2009a). Therefore, the integration of BMPs into a broader framework of watershed protection is crucial. Table 2 summarizes how each component of a form-based code fits within a larger watershed protection framework to avoid sensitive areas, minimize impervious coverage, and finally, mitigate the impacts of development using stormwater BMPs.

Table 2 Summary of form-based code components and watershed protection framework
Strategy FBC Component Effects on Watershed
1) Avoid sensitive areas  - Regulating Plan
• Assign transect zones based on ecological factors
• Designate high intensity districts away from wetlands, riparian habitats,
highly erodible soils, steep slopes, etc.
2) Minimize impervious coverage - Public Space Standards; Building Form Standards
• Design street width according to context
• Match the variety of civic spaces with the activities and the intensities they are used for
• Require sidewalks only where appropriate
• Minimize lot widths
• Allow mixed use
• Allow for shared driveways
3) Mitigate development impacts - Stormwater Standards
• Match BMPs with appropriate environmental conditions and development context

Although advocates assert that form-based codes present a viable environmental alternative to traditional zoning practices, a more explicit integration of watershed protection into the code’s framework would strengthen their argument. To accomplish this, the literature suggests a four pronged approach: (1) design a regulating plan at the watershed level, designating different zones of urban intensity based on their relationship with vital ecological features; (2) create public space standards for streets and civic spaces that both reduce impervious surfaces where contextually appropriate and contribute to a high quality public realm; (3) outline building form and lot standards that preserve permeable surfaces or, depending on the transect context, cluster permeable surfaces together in order to preserve permeable open spaces; and (4) outline suitable stormwater mitigation devices for each transect zone.

Sample list of data needed for GIS analysis

This is from a similar watershed analysis done here in LA...

From: Ballona Creek Watershed Bacteria Implementation Plan Draft
Appendix E
Structural BMP Selection Methodology

2.2.1 GIS Level Screening
2.2.1.1 Compilation of GIS Information
At this stage, the evaluation involves gathering the relevant watershed data using
local knowledge as well as relevant GIS themes to assist with site-specific evaluation. Collect and compile any of the following information, as available:

  • Soils type data (or alternatively, zones of poor infiltration)
  • Topographic contours and/or slope map data (used to identify areas of
    prohibitively steep slopes)
  • Digital elevation models or other topographic data (used to verify/identify
    drainage areas)
  • Groundwater elevations/depths (used to identify areas of high groundwater elevation)
  • Floodplain (e.g., FEMA) map data (used to identify areas where flood control isrequired)
  • Landslide and/or liquefaction zones (used to identify areas at risk for landslides or liquefaction)
  • Biologically or Environmentally Sensitive Areas (BSA/ESA) and/or wetlands mapping data (used to identify significant habitat/wetland areas)
  • Aerial photographs at the highest resolution available (used to visually assess parcel/catchment and adjacent land characteristics)
  • Impervious surfaces (used to identify impervious and pervious areas for BMP implementation)
  • Parcel ownership (used to identify whether parcels are publicly or privately owned)
  • Storm drain as-built drawings (including flow direction, slopes, invert elevations, pipe sizes)

Texas planning/zoning laws

Mickelson, Kimberly. 2006. "Texas Legal" Planning February 2006. pp.46-49.

What regulations there are, are done by cities
  • 254 counties in TX!
  • In TX, counties have v little planning authority (only 12/254 counties have). They do have platting authority, but that often controlled by cities.
  • Virtually all regulatory authority is by cities. But most of the state is unicorporated so therefore not much regulation.
  • Historically, little emphasis on comprehensive planning in the state.
  • Municipal comprehensive plans can be carved in stone or flexible.
Planning less strict than other states because republicans and:
1. Private Real Property Rights Preservation Act or "takings statute"
  • Any government entity considering new regulations that would reduce a property's value by 25% or more must file a Takings Impact Analysis (TIA)
2. Vested Rights Law
  • Ordinance changes can't be applied to projects after first permit applied for.
  • Cities can't change zoning of property or apply new regulations relating to landscaping or architectural standards to developments in progress.
Other issues:
Influence of developers and private property rights
Cities can annex land