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Part 1: Document Description
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Citation |
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Title: |
Transparent Bamboo with High Radiative Cooling Targeting Energy Savings |
Identification Number: |
doi:10.21979/N9/OSXZG9 |
Distributor: |
DR-NTU (Data) |
Date of Distribution: |
2022-11-30 |
Version: |
1 |
Bibliographic Citation: |
Zhou, Chengzhi; Julianri, Iegreat; Wang, Shancheng; Chan, Siew Hua; Long, Yi, 2022, "Transparent Bamboo with High Radiative Cooling Targeting Energy Savings", https://doi.org/10.21979/N9/OSXZG9, DR-NTU (Data), V1, UNF:6:IHtvlPUhsffoDJsgqriPKg== [fileUNF] |
Citation |
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Title: |
Transparent Bamboo with High Radiative Cooling Targeting Energy Savings |
Identification Number: |
doi:10.21979/N9/OSXZG9 |
Authoring Entity: |
Zhou, Chengzhi (Nanyang Technological University) |
Julianri, Iegreat (Nanyang Technological University) |
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Wang, Shancheng (Nanyang Technological University) |
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Chan, Siew Hua (Nanyang Technological University) |
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Long, Yi (Nanyang Technological University) |
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Software used in Production: |
EnergyPlus |
Grant Number: |
Prime Minister’s Office, Singapore, under its Campus for Research Excellence and Technological Enterprise (CREATE) program |
Grant Number: |
Academic Research Fund Tier One (No. RG200/17) |
Grant Number: |
Academic Research Fund Tier One (No. RG200/17) |
Distributor: |
DR-NTU (Data) |
Access Authority: |
Wang, Shancheng |
Depositor: |
Wang, Shancheng |
Date of Deposit: |
2022-11-30 |
Holdings Information: |
https://doi.org/10.21979/N9/OSXZG9 |
Study Scope |
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Keywords: |
Engineering, Engineering, Experiment data |
Abstract: |
We have fabricated a bamboo-derived composite with enhanced radiative cooling via a simple solution-based process. The long-wavelength infrared emissivity (εLWIR) for one side is as low as 0.3, to prevent the heat exchange, and the εLWIR of the other side is near unity (0.95), to promote the radiative cooling. The energy saving simulations have been performed in Singapore, suggesting up to 89% energy savings enhancement, when compared with commercial low-E glass. |
Kind of Data: |
Experimental data |
Methodology and Processing |
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Sources Statement |
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Data Access |
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Other Study Description Materials |
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Related Publications |
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Citation |
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Identification Number: |
10.1021/acsmaterialslett.1c00272 |
Bibliographic Citation: |
Zhou, C., Julianri, I., Wang, S., Chan, S. H., Li, M., & Long, Y. (2021). Transparent Bamboo with High Radiative Cooling Targeting Energy Savings. ACS Materials Letters, 3(6), 883-888. |
Citation |
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Identification Number: |
10356/150852 |
Bibliographic Citation: |
Zhou, C., Julianri, I., Wang, S., Chan, S. H., Li, M. & Long, Y. (2021). Transparent bamboo with high radiative cooling targeting energy savings. ACS Materials Letters, 3, 883-888. |
File Description--f108582 |
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File: Chengzhi simulation.tab |
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Notes: |
UNF:6:mdl9yUcn2odjZis/Vp+Q5A== |
File Description--f108584 |
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File: Material detail.tab |
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Notes: |
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List of Variables: | |
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f108582 Location: |
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f108584 Location: |
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Label: |
Chengzhi 2Meter.csv |
Notes: |
text/csv |
Label: |
ChengzhiMeter.csv |
Notes: |
text/csv |
Label: |
Commercial low-EMeter.csv |
Notes: |
text/csv |
Label: |
GlassMeter.csv |
Notes: |
text/csv |
Label: |
low-EMeter.csv |
Notes: |
text/csv |