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Suggested Citation:"References." National Research Council. 2006. Assessment of the Benefits of Extending the Tropical Rainfall Measuring Mission: A Perspective from the Research and Operations Communities: Interim Report. Washington, DC: The National Academies Press. doi: 10.17226/11195.
×

References

Adler, R. F., G. J. Huffman, D. T. Bolvin, S. Curtis, and E. J. Nelkin. 2000. Tropical rainfall distributions determined using TRMM combined with other satellite and raingauge information. Journal of Applied Meteorology 39:2007-2023.

Adler, R. F., C. Kummerow, D. Bolvin, S. Curtis, and C. Kidd. 2003. Status of TRMM monthly estimates of tropical precipitation. Pp. 223-234 in Symposium on Cloud Systems, Hurricanes and TRMM, W.-K. Tao and R. Adler, eds. Meteorological Monographs 29(51).

Andreae, M. O., D. Rosenfeld, P. Artaxo, A. A. Costa, G. P. Frank, K. M. Longo, and M. A. F. Silva-Dias. 2004. Smoking rain clouds over the Amazon. Science 303:1337-1342.

Aonashi, K., N. Yamazaki, H. Kamahori, and K. Takahashi. 2004. Variational assimilation of TMI rain type and precipitation retrievals into global numerical weather prediction. Journal of the Meteorological Society of Japan 82:671-693.

Benedetti, A., P. Lopez, P. Bauer, and E. Moreau. 2004a. Experimental use of TRMM precipitation radar observations in 1D+4D-var assimilation. Technical Memorandum No. 448, ECMWF Research Department. (Paper submitted to Quarterly Journal of the Royal Meteorological Society, August 2004.)

Benedetti, A., P. Lopez, E. Moreau, and P. Bauer. 2004b. Verification of TMI-adjusted rainfall analyses of tropical cyclones at ECMWF using TRMM precipitation radar observations. Technical Memorandum No. 451, ECMWF Research Department. (Paper submitted to Journal of Applied Meteorology, October 2004.)

Berg, W., 2004. The Relationship of TRMM Rainfall Biases to the Synoptic Environment. Proceedings of the 8th International Conference on Precipitation, 8-11 August, Vancouver, Canada.

Betts, A. K., and C. Jakob. 2002. Study of the diurnal cycle of convective precipitation over Amazonia using a single column model. Journal of Geophysical Research 107.

Chang, D. E., J. A. Weinman, C. A. Morales, and W. S. Olson. 2001. The effect of spaceborne microwave and ground-based continuous lightning measurements on forecasts of the 1998 Groundhog Day storm. Monthly Weather Review 129:1809-1833.

Dunion, J. P., C. S. Velden, J. D. Hawkins, and J. R. Parrish. 2004. The Saharan Air Layer: Insights from the 2002 and 2003 Atlantic hurricane seasons. Preprints, AMS 26th Conference on Hurricanes and Tropical Meteorology, May 2004, Miami, Fla. pp. 495-496. Boston, Mass.: Ameri-can Meteorological Society.

Suggested Citation:"References." National Research Council. 2006. Assessment of the Benefits of Extending the Tropical Rainfall Measuring Mission: A Perspective from the Research and Operations Communities: Interim Report. Washington, DC: The National Academies Press. doi: 10.17226/11195.
×

Elsberry, R. L., and C. Velden. 2003. A survey of tropical cyclone forecast centres—uses and needs of satellite data. Bulletin, World Meteorological Organization 52(3):258-264.

Gaiser, P. W., K. M. St. Germain, E. M. Twarog, G. A. Poe, W. Purdy, D. Richardson, W. Grossman, W. L. Jones, D. Spencer, G. Golba, M. Mook, J. Cleveland, L. Choy, R.M. Bevilacqua, and P. S. Chang. 2004. The WindSat space borne polarimetric microwave radiometer: sensor description and early orbit performance. IEEE Transactions on Geoscience and Remote Sensing 42(11):2347-2361.

Gentemann, C. L., F. J. Wentz, C. M. Mears, and D. K. Smith. 2004. In-situ validation of TRMM microwave sea surface temperatures. Journal of Geophysical Research 109:C04201.

Gugliotta, G. 2004. NASA denies funding for key satellite: decision on orbiter frustrates scientists. Washington Post, July 19, 2004, p. A01.

Hawkins, J. D., and M. Helveston. 2004. Tropical cyclone multi-eyewall characteristics. Preprints, AMS 26th Conference on Hurricanes and Tropical Meteorology, May 2004, Miami, Fla. pp. 276-277. Boston, Mass.: American Meteorological Society.

Hawkins, J. D., T. F. Lee, J. Turk, C. Sampson, J. Kent, and K. Richardson. 2001. Real-time Internet distribution of satellite products for tropical cyclone reconnaissance. Bulletin of the American Meteorological Society 82:567-578.

Hou, A. Y., S. Q. Zhang, A. M. daSilva, W. S. Olson, C. D. Kummerow, and J. Simpson. 2001. Improving global analysis and short-range forecast using rainfall and moisture observations derived from TRMM and SSM/I passive microwave sensors. Bulletin of the American Meteorological Society 82:659-679.

Hou, A. Y., S. Q. Zhang, and O. Reale. 2004. Variational continuous assimilation of TMI and SSM/ I rain rates: impact on GEOS-3 hurricane analyses and forecasts. Monthly Weather Review 132:2094-2109.

Houze, R. A., Jr. 1997. Stratiform precipitation in regions of convection: a meteorological paradox? Bulletin of the American Meteorological Society 78: 2179-2196.

Huffman, G. J., R. F. Adler, E. F. Stocker, D. T. Bolvin, and E. J. Nelkin. 2004. Analysis of TRMM 3-hourly multi-satellite precipitation estimates computed in both real and post-real time. Combined Preprints CD-ROM, 83rd AMS Annual Meeting. Poster P4.11 in: 12th Conference on Satellite Meteorology and Oceanography, 9-13 Feb. 2003, Long Beach, Calif. Boston, Mass.: American Meteorological Society.

Joyce, R. J., J. E. Janowiak, P. A. Arkin, and P. Xie. 2004. CMORPH, a method that produces global precipitation estimates from passive microwave and infrared data at high spatial and temporal resolution. Journal of Climate 5:487-503.

Kato, T., M. Yoshizaki, K. Bessho, T. Inoue, and Y. Sato. 2003. Reasons for the failure of the simulation of heavy rainfall during X-BAIU-01—importance of a vertical profile of water vapor for numerical simulations. Journal of the Meteorological Society of Japan 81: 993-1013.

Kelley, O., J. Stout, and J. Halverson. 2004. Tall precipitation cells in tropical cyclone eyewalls are associated with tropical cyclone intensification. Geophysical Research Letters 31:L24112.

Krishnamurti, T. N., S. Surendran, D. W. Shin, R. J. Correa-Torres, T. S. V. V. Kumar, E. Williford, C. Kummerow, R. F. Adler, J. Simpson, R. Kakar, W. S. Olson, and F. J. Turk. 2001. Real-time multianalysis-multimodel superensemble forecasts of precipitation using TRMM and SSM/I products. Monthly Weather Review 129:2861-2883.

Kummerow, C., J. Simpson, O. Thiele, W. Barnes, A. T. C. Chang, E. Stocker, R. F. Adler, A. Hou, R. Kakar, F. Wentz, P. Ashcroft, T. Kozu, Y. Hong, K. Okamoto, T. Iguchi, H. Kuroiwa, E. Im, Z. Haddad, G. Huffman, B. Ferrier, W. S. Olson, E. Zipser, E. A. Smith, T. T. Wilheit, G. North, T. Krishnamurti, and K. Nakamura. 2000. The status of the Tropical Rainfall Measuring Mission (TRMM) after two years in orbit. Journal of Applied Meteorology 39:1965-1982.

Lawler, A. 2004. NASA satellite wins reprieve. Science 305:927.

Suggested Citation:"References." National Research Council. 2006. Assessment of the Benefits of Extending the Tropical Rainfall Measuring Mission: A Perspective from the Research and Operations Communities: Interim Report. Washington, DC: The National Academies Press. doi: 10.17226/11195.
×

Lee, K., and E. N. Anagnostou. 2004. Investigation of the nonlinear hydrologic response to precipitation forcing in physically based land surface modeling. Canadian Journal of Remote Sensing 30(5):706-716.

Lee, T. F., J. D. Hawkins, F. J. Turk, K. Richardson, C. Sampson, and J. Kent. 1999. Tropical cyclone images now can be viewed “live” on the Web. EOS, Transactions of the American Geophysical Union 50:612-614.

Lee, T. F., F. J. Turk, J. D. Hawkins, and K. A. Richardson. 2002. Interpretation of TRMM TMI images of tropical cyclones. Earth Interactions E-Journal 6:3.

Lonfat, M., F. D. Marks, Jr., and S. S. Chen. 2004. Precipitation distribution in tropical cyclones using the Tropical Rainfall Measuring Mission (TRMM) microwave imager: a global perspective. Monthly Weather Review 132:1645-1660.

Marchok T., R. Rogers, and R. Tuleya. 2004. Improving the Validation and Prediction of Tropical Cyclone Rainfall. Midterm progress report, February 2004, to the Joint Hurricane Testbed Program [Online]. Available at http://www.aoml.noaa.gov/hrd/Landsea/jht/midterm/jhtrainfall_mid.pdf [accessed December 21, 2004].

Marecal, V., and J. F. Mahfouf. 2002. Four-dimensional variational assimilation of total column water vapor in rainy areas. Monthly Weather Review 130:43-58.

Marecal, V., J. F. Mahfouf, and P. Bauer. 2002. Comparison of TMI rainfall estimates and their impact on 4D-var assimilation. Quarterly Journal of the Royal Meteorological Society 128: 2737-2758.

Martin, P. R. 2002. TRMM Disposal Risk Review. NASA Office of Systems and Mission Assurance, Goddard Space Flight Center. August 13, 2002. Greenbelt, Md.: NASA.

Miller, S. D., J. D. Hawkins, F. J. Turk, T. F. Lee, J. Kent, K. Richardson, and A. Kuciauskas. 2004. Mission support role played by MODIS during Operation Iraqi Freedom. Proceedings of SPIE 5548:253-262.

NASA (National Aeronautics and Space Administration). 2004. Global Precipitation Mission [Online]. Available at http://gpm.gsfc.nasa.gov/index.html [accessed November 29, 2004].

Nesbitt, S. W., and E. J. Zipser. 2003. The diurnal cycle of rainfall and convective intensity according to three years of TRMM measurements. Journal of Climate 16(10):1456-1475.

NOAA (National Oceanographic and Atmospheric Administration)/NESDIS Office of Systems Development. 2002. Geostationary Operational Environmental Satellite System (GOES) GOES-R Sounder and Imager Cost/Benefit Analysis, prepared for the Department of Commerce by November 15th 2002 [Online]. Available at http://www.osd.noaa.gov/goes_R/docs/GOESR_CBA_Final_Jan_9_2003.pdf [accessed December 12, 2004].

NRC (National Research Council). 2003. Satellite Observations of the Earth’s Environment: Accelerating the Transition from Research to Operations. Washington, D.C.: The National Academies Press.

NRC. In review. NOAA’s Role in Space-Based Global Precipitation Estimation and Application. Washington, D.C.: The National Academies Press.

Pielke, R., Jr., S. Avery, R. Anthes, S. Barlow, R. Byerly, Jr., R. Carbone, M. DeMaria, M. H. Freilich, R. Harriss, J. Hawkins, M. Macauley, R. Malow, F. Marks, R. Morss, and M. F. Myers. 2001. Report of the NASA Workshop on Risk-Benefit Assessment of Observing System Decision Alternatives, June 18-19, 2001, University Corporation for Atmospheric Research, Boulder, Colorado [Online]. Available at http://sciencepolicy.colorado.edu/about_us/meet_us/roger_pielke/workshops/trmm/trmm.report.pdf [accessed August 3, 2006].

Pu, Z. X., W. K. Tao, S. Braun, J. Simpson, Y. Q. Jia, J. Halverson, W. Olson, and A. Hou. 2002. The impact of TRMM data on mesoscale numerical simulation of supertyphoon Paka. Monthly Weather Review 130:2448-2458.

Ramanathan, V., P. J. Crutzen, J. T. Kiehl, and D. Rosenfeld. 2001. Aerosols, climate and the hydrological cycle. Science 294:2119-2124.

Suggested Citation:"References." National Research Council. 2006. Assessment of the Benefits of Extending the Tropical Rainfall Measuring Mission: A Perspective from the Research and Operations Communities: Interim Report. Washington, DC: The National Academies Press. doi: 10.17226/11195.
×

Randall, D. A., M. F. Khairoutdinov, A. Arakawa, and W. W. Grabowski. 2003. Breaking the cloud paramerization deadlock. Bulletin of the American Meteorological Society 84(11):1547-1564.

Reynolds, R. W., C. L. Gentemann, and F. Wentz. 2004. Impact of TRMM SSTs on a climate-scale SST analysis. Journal of Climate 17(15):2938-2952.

Robertson, F., D. Fitzgerald, and C. Kummerow. 2003. Effects of uncertainty in TRMM precipitation radar path integrated attenuation on interannual variations of tropical oceanic rainfall. Geophysical Research Letters 30(4):1180.

Rosenfeld, D. 1999. TRMM observed first direct evidence of smoke from forest fires inhibiting rainfall. Geophysical Research Letters 26(20):3105-3108.

Rosenfeld, D. 2000. Suppression of rain and snow by urban and industrial air pollution. Science 287(5459):1793-1796.

Rosenfeld D., Y. Rudich, and R. Lahav. 2001. Desert dust suppressing precipitation—a possible desertification feedback loop. Proceedings of the National Academy of Sciences U. S. A. 98:5975-5980.

Schumacher, C., and R. A. Houze, Jr. 2003. Stratiform rain in the tropics as seen by the TRMM precipitation radar. Journal of Climate 16:1739-1756.

Schumacher, C., R. Houze, Jr., and I. Kraucunas. 2004. The tropical dynamical response to latent heating derived from the TRMM precipitation radar. Journal of the Atmospheric Sciences 61(12):1341-1358.

Simpson, J., ed. 1988. TRMM—a satellite mission to measure tropical rainfall. Report of the Science Steering Group, NASA Goddard Space Flight Center, Greenbelt, Md.

Simpson, J., R. F. Adler, and G. R. North. 1988. A proposed Tropical Rainfall Measuring Mission (TRMM) satellite. Bulletin of the American Meteorological Society 69:278-295.

Stammer, D., F. J. Wentz, and C. L. Gentemann. 2003. Validation of microwave sea surface temperature measurements for climate purposes. Journal of Climate 16(1):73-87.

Steiner, M., and R. A. Houze Jr. 1998. Sensitivity of monthly three-dimensional radar-echo characteristics to sampling frequency. Journal of the Meteorological Society of Japan 76(1): 73-95.

Stephens, G. L. 2004. Cloud feedbacks in the climate system: a critical review. Journal of Climate18(2):237-273.

Stephens, G. L., D. G. Vane, R. J. Boain, G. G. Mace, K. Sassen, Z. Wang, A. J. Illingworth, E. J. O’Connor, W. B. Rossow, S. L. Durden, S. D. Miller, R. T. Austin, A. Benedetti, and C. Mitrescu. 2002. The CloudSat Mission and the A-Train: a new dimension of space-based observations of clouds and precipitation. Bulletin of the American Meteorological Society 83(12):1771-1790.

Stephens, G. L., N. Wood, and L. Pakula. 2003. On the radiative effects of dust on tropical convection. Geophysical Research Letters 31.

Tao, W.-K., S. Lang, W. Olson, S. Satoh, S. Shige, Y. Takayabu, and S. Yang. 2004. Heating structure derived from TRMM. The Latent Heating Algorithms Developed from TRMM PR Data, Japan Aerospace Exploration Agency, Earth Observation Research and Application Center, pp. 18-40.

Toracinta, E. R., D. J. Cecil, E. J. Zipser, and S. W. Nesbitt. 2002. Radar, passive microwave, and lightning characteristics of precipitating systems in the tropics. Monthly Weather Review 130:802-824.

Turk, F. J., E. E. Ebert, H. J. Oh, and B. J. Sohn. 2002. Validation and applications of a realtime global precipitation analysis. Preprints, International Geoscience and Remote Sensing Symposium (IGARSS-2002), CD-ROM, Toronto, Institute of Electrical and Electronics Engineers.

Turk, F. J., E. E. Ebert, H. J. Oh, B. J. Sohn, V. Levizzani, and E. Smith. 2003. Validation of an operational global precipitation analysis at short time scales. AMS Conference on Satellite Meteorology and Oceanography, pp. 705-707. Boston, Mass.: American Meteorological Society.

Suggested Citation:"References." National Research Council. 2006. Assessment of the Benefits of Extending the Tropical Rainfall Measuring Mission: A Perspective from the Research and Operations Communities: Interim Report. Washington, DC: The National Academies Press. doi: 10.17226/11195.
×

Ushio, T., Y. Iida, F. Isoda, K. Okamoto, T. Inoue, and K. Aonashi. 2004. The Global Satellite Mapping of Precipitation (GSMAP) Project: Integration of microwave and infrared radiometers for global precipitation map. Proceedings of the 2nd International Precipitation Working Group, 25-28 October, Monterey, Calif. [Online]. Available at http://www.isac.cnr.it/~ipwg/IPWG.html [accessed December 16, 2004].

Velden, C., J. Simpson, W. T. Liu, J. Hawkins, K. Brueske, and R. Anthes. 2003. The burgeoning role of weather satellites. In: Hurricane! Coping with Disaster, chapter 11. R. Simpson, ed. Washington, D.C.: American Geophysical Union.

Wentz, F. J., C. L. Gentemann, D. K. Smith, and D. B. Chelton. 2000. Satellite measurements of sea surface temperature through clouds. Science 288(5467):847-850.

Williamson, R. A., H. R. Herzfeld, J. Cordes, and J. M. Logsdon. 2002. The socioeconomic benefits of Earth science and applications research: reducing the risks and costs of natural disasters in the USA. Space Policy 18:57-65.

Suggested Citation:"References." National Research Council. 2006. Assessment of the Benefits of Extending the Tropical Rainfall Measuring Mission: A Perspective from the Research and Operations Communities: Interim Report. Washington, DC: The National Academies Press. doi: 10.17226/11195.
×

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Suggested Citation:"References." National Research Council. 2006. Assessment of the Benefits of Extending the Tropical Rainfall Measuring Mission: A Perspective from the Research and Operations Communities: Interim Report. Washington, DC: The National Academies Press. doi: 10.17226/11195.
×
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Suggested Citation:"References." National Research Council. 2006. Assessment of the Benefits of Extending the Tropical Rainfall Measuring Mission: A Perspective from the Research and Operations Communities: Interim Report. Washington, DC: The National Academies Press. doi: 10.17226/11195.
×
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Suggested Citation:"References." National Research Council. 2006. Assessment of the Benefits of Extending the Tropical Rainfall Measuring Mission: A Perspective from the Research and Operations Communities: Interim Report. Washington, DC: The National Academies Press. doi: 10.17226/11195.
×
Page 63
Suggested Citation:"References." National Research Council. 2006. Assessment of the Benefits of Extending the Tropical Rainfall Measuring Mission: A Perspective from the Research and Operations Communities: Interim Report. Washington, DC: The National Academies Press. doi: 10.17226/11195.
×
Page 64
Suggested Citation:"References." National Research Council. 2006. Assessment of the Benefits of Extending the Tropical Rainfall Measuring Mission: A Perspective from the Research and Operations Communities: Interim Report. Washington, DC: The National Academies Press. doi: 10.17226/11195.
×
Page 65
Suggested Citation:"References." National Research Council. 2006. Assessment of the Benefits of Extending the Tropical Rainfall Measuring Mission: A Perspective from the Research and Operations Communities: Interim Report. Washington, DC: The National Academies Press. doi: 10.17226/11195.
×
Page 66
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Launched jointly in 1997 by the National Aeronautics and Space Administration (NASA) and the Japan Aerospace Exploration Agency (JAXA), the Tropical Rainfall Measuring Mission (TRMM) is a satellite mission that placed a unique suite of instruments, including the first precipitation radar, in space. These instruments are used to monitor and predict tropical cyclone tracks and intensity, estimate rainfall, and monitor climate variability (precipitation and sea surface temperature). TRMM has been collecting data for seven years; this data is used by the Joint Typhoon Warning Center, the National Center for Environmental Prediction, and the National Hurricane Center, among others worldwide. In July 2004, NASA announced that it would terminate TRMM in August 2004. At the request of the National Oceanic and Atmospheric Administration (NOAA), the White House, and the science community, NASA agreed to continue TRMM operations through the end of 2004. Meanwhile, NASA asked a National Research Council (NRC) committee to provide advice on the benefits of keeping TRMM in operation beyond 2004. After holding a workshop with a number of experts in the field, the committee found that TRMM will contribute significantly to operations and science if the mission is extended; and therefore, strongly recommends continued operation of TRMM with the caveat that cost and risk will need to be further examined before a final decision about the future of TRMM can be made.

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