Journal of Living Architecture: Full Archive
Volume 11 Issue 1
Investigating the Climate Mitigation Performance of A Green Roof System in the Flint Hills Ecoregion, USAL https://doi.org/10.46534/jliv.2023.11.01.001
Native Forbs Grown Under Green Roof Conditions Have Altered Biomass Allocation Strategies and Can be Supported by Commercially-Available Arbuscular Mycorrhizal Fungi: https://doi.org/10.46534/jliv.2024.11.01.020
A Rooftop Agrivoltaic System: Pollinator Plant Establishment: https://doi.org/10.46534/jliv.2024.11.01.041
Volume 10 Issue 2
Incorporation of Green Infrastructure on Road Tunnel Ventilation Stacks: Potential Ambient Air Quality Improvement: https://doi.org/10.46534/jliv.2023.10.02.001
Cooling Effects of a Modular Living Wall System in a Humid Subtropical Climate: https://doi.org/10.46534/jliv.2023.10.02.016
Volume 10 Issue 1
Extensive Green Roof Study of a Retrofit Building in Berlin, Germany: Report After 34 Years of Monitoring: https://doi.org/10.46534/jliv.2023.10.01.001
Autumn Production of Romaine Lettuce on an Extensive Green Roof: https://doi.org/10.46534/jliv.2023.10.01.013
Volume 9 Issue 2
Disentangling Dynamics of Green Roof Vegetation Analogue to Dry Grassland Over 3 Years: Plant and Substrate Response to Microenvironmental Variations https://doi.org/10.46534/jliv.2022.09.02.001
Improving Stormwater Retention on Green Roofs: https://doi.org/10.46534/jliv.2022.09.02.002
Volume 9, Issue 1
Experimental evidence for delayed stormwater runoff from building roofs covered with suspended vine canopies: https://doi.org/10.46534/jliv.2022.09.01.001
Volume 8, Issue 2
Container gardens: Possibilities and challenges for environmental and social benefits in cities: https://doi.org/10.46534/jliv.2021.08.02.001
Volume 8, Issue 1
Evaluating the potential stormwater retention of a living retaining wall system: https://doi.org/10.46534/jliv.2021.08.01.001
Observations on the survival capacity of 118 plant taxa on a green roof in a semi-arid climate: 12 year update: https://doi.org/10.46534/jliv.2021.08.01.019
Stormwater Calculation Application for Low Impact Development in the Conceptual Design Phase of Urban Site Development: https://doi.org/10.46534/jliv.2021.08.01.041
Volume 7, Issue 2
Overview: The role of spatial heterogeneity in shaping green roof ecosystems: https://doi.org/10.46534/jliv.2020.07.02.001
Spatial heterogeneity as a driver of biodiversity on green roofs: https://doi.org/10.46534/jliv.2020.07.02.005
Heterogeneous substrate depth supports greater functional diversity with comparable stormwater retention and substrate temperature services to Sedum-dominant green roofs: https://doi.org/10.46534/jliv.2020.07.02.019
Effects of heterogeneity in solar exposure and soil moisture on the distribution of green roof plant functional groups: https://doi.org/10.46534/jliv.2020.07.02.040
The influence of microclimates created by photovoltaic panels and irrigation on green roof ecosystem properties:
https://doi.org/10.46534/jliv.2020.07.02.062Reintroducing rare plants in green roofs for terrestrial restoration: https://doi.org/10.46534/jliv.2020.07.02.081
Volume 7, Issue 1
Carrying the ball: A portrait of leadership in urban rooftop agriculture: https://doi.org/10.46534/jliv.2020.07.01.001
Green Roof Research in North America: A Recent History and Future Strategies
https://doi.org/10.46534/jliv.2020.07.01.027
Volume 6, Issue 2
Rooftop urban agriculture for the small stakeholder: https://doi.org/10.46534/jliv.2019.06.02.001
Volume 6, Issue 1
Modular living wall: Collaborative, regional design on an urban campus in Texas: https://doi.org/10.46534/jliv.2019.06.01.001
Thermal Heat Flux Evaluation of Sloped Green Roofs and Shingle Roofs: https://doi.org/10.46534/jliv.2019.06.01.015
Plant performance with and without nutrient addition on a low-maintenance green roof in New England: https://doi.org/10.46534/jliv.2019.06.01.031
Assessment of natural enemies for pest control on an indoor living wall: https://doi.org/10.46534/jliv.2019.06.01.044
An ecomimicry design approach for extensive green roofs: https://doi.org/10.46534/jliv.2019.06.01.062
Volume 5, Issue 1
Green Roof Microclimate: Patch seeding native prairie plants: https://doi.org/10.46534/jliv.2018.05.01.031
Evaluation of a Residential Green Roof System for Stormwater Runoff Retention: https://doi.org/10.46534/jliv.2018.05.01.016
Bench-Study of Green-Wall Plants for Indoor Air Pollution Reduction: https://doi.org/10.46534/jliv.2018.05.01.001
Volume 4, Issue 3
Catalyzing Design-Science Feedback Loop in Green Roof Optimization for Hot Climates: https://doi.org/10.46534/jliv.2017.04.03.001
Photovoltaic Array Influences the Growth of Green Roof Plants: https://doi.org/10.46534/jliv.2017.04.03.009
Volume 4, Issue 2
Deploying Living Walls as Kinetic Facades: https://doi.org/10.46534/jliv.2017.04.01.017
Deploying Shipping Containers for Innovative Living Architecture Design Education: https://doi.org/10.46534/jliv.2017.04.02.001
Volume 4, Issue 1
Kelp Extract (Ascophyllumnodosum) Can Improve Health and Drought Tolerance of Green Roof Plants: https://doi.org/10.46534/jliv.2017.04.01.001
Life Cycle Cost Analysis of Extensive Green Roofs in Switzerland and the Netherlands: https://doi.org/10.46534/jliv.2017.04.01.014
Volume 3, Issue 1
Controlling Ivy Attachment to Wall Surfaces by Applying Paints, Metal Meshes and Sheets: https://doi.org/10.46534/jliv.2016.03.01.001
Volume 2, Issue 4
Green Roof Plant Trials for the Central Great Plains: https://doi.org/10.46534/jliv.2015.02.04.001
Observation of Biodiversity on Minimally Managed Green Roofs in a Tropical City: https://doi.org/10.46534/jliv.2015.02.04.009
Volume 2, Issue 3
Arthropod Habitat of Green Facades in the Humid Temperate Climate of Eastern North America: https://doi.org/10.46534/jliv.2015.02.03.001
Volume 2, Issue 2
Insect Communities On Green Roofs that are Close in Proximity but Vary in Age and Plant Coverage: https://doi.org/10.46534/jliv.2015.02.02.001
Volume 2, Issue 1
Living Architecture and Biological Dispersal: https://doi.org/10.46534/jliv.2014.02.01.001
Observations on the Survival of 112 Plant Taxa on a Green Roof in a Semi-Arid Climate: https://doi.org/10.46534/jliv.2014.02.01.010
Volume 1, Issue 4
Substrate Loss is Minimal in Vegetated and Un-vegetated Extensive Roof Modules Over a 14-Month Period: https://doi.org/10.46534/jliv.2014.01.04.001
Volume 1, Issue 3
Development and Features of the Green Roof Energy Calculator (GREC): https://doi.org/10.46534/jliv.2014.01.03.036
Vegetation Characteristics of Green Facades, Green Cloaks and Naturally Colonized Walls of Wooden Barns Located in the Mid-Atlantic Region of North America: https://doi.org/10.46534/jliv.2014.01.03.001
Volume 1, Issue 2
Native Forbs Produce High Quality Seeds on Chicago Green Roofs: https://doi.org/10.46534/jliv.2014.01.02.021
Aesthetics for Green Roofs and Green Walls: https://doi.org/10.46534/jliv.2014.01.02.001
Volume 1, Issue 1
Plant Species Survival on Three Water Conserving Green Roofs in a Hot Humid Subtropical Climate: https://doi.org/10.46534/jliv.2013.01.01.039
Fertility Management for Tomato Production on an Extensive Green Roof: https://doi.org/10.46534/jliv.2013.01.01.001
Seeding Green Roofs with Native Grasses: https://doi.org/10.46534/jliv.2013.01.01.015
Rethinking Extensive Green roofs to Lessen Emphasis on Above-Ground Biomass: https://doi.org/10.46534/jliv.2013.01.01.036